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128 lines
3.3 KiB
128 lines
3.3 KiB
#pragma once
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#include <windows.h>
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#include <string_view>
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#include <vector>
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#include <thread>
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#include <atomic>
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#include <mutex>
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#include <functional>
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#include "../vdm/vdm.hpp"
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namespace vdm
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{
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// change this to whatever you want :^)
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constexpr std::pair<const char*, const char*> syscall_hook = { "NtGdiDdDDICreateContext", "win32u.dll" };
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inline std::atomic<bool> is_page_found = false;
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inline std::atomic<void*> syscall_address = nullptr;
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inline std::uint16_t nt_page_offset;
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inline std::uint32_t nt_rva;
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inline std::uint8_t* dxgkrnl_buffer;
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using read_phys_t = std::function<decltype(vdm::read_phys)>;
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using write_phys_t = std::function<decltype(vdm::write_phys)>;
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class vdm_ctx
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{
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public:
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vdm_ctx
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(
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std::function<decltype(vdm::read_phys)>& read_func,
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std::function<decltype(vdm::write_phys)>& write_func
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);
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void set_read(std::function<decltype(vdm::read_phys)>& read_func);
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void set_write(std::function<decltype(vdm::write_phys)>& write_func);
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template <class T, class ... Ts>
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__forceinline std::invoke_result_t<T, Ts...> syscall(void* addr, Ts ... args) const
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{
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static const auto proc =
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GetProcAddress(
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LoadLibraryA(syscall_hook.second),
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syscall_hook.first
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);
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static std::mutex syscall_mutex;
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syscall_mutex.lock();
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// jmp [rip+0x0]
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std::uint8_t jmp_code[] =
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{
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0xff, 0x25, 0x00, 0x00,
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0x00, 0x00, 0x00, 0x00,
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0x00, 0x00, 0x00, 0x00,
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0x00, 0x00
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};
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std::uint8_t orig_bytes[sizeof jmp_code];
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*reinterpret_cast<void**>(jmp_code + 6) = addr;
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read_phys(vdm::syscall_address.load(), orig_bytes, sizeof orig_bytes);
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// execute hook...
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write_phys(vdm::syscall_address.load(), jmp_code, sizeof jmp_code);
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auto result = reinterpret_cast<T>(proc)(args ...);
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write_phys(vdm::syscall_address.load(), orig_bytes, sizeof orig_bytes);
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syscall_mutex.unlock();
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return result;
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}
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template <class T>
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__forceinline auto rkm(std::uintptr_t addr) -> T
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{
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static const auto ntoskrnl_memcpy =
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util::get_kmodule_export("ntoskrnl.exe", "memcpy");
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T buffer;
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this->syscall<decltype(&memcpy)>(
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ntoskrnl_memcpy, &buffer, (void*)addr, sizeof T);
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return buffer;
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}
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template <class T>
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__forceinline void wkm(std::uintptr_t addr, const T& value)
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{
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static const auto ntoskrnl_memcpy =
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util::get_kmodule_export("ntoskrnl.exe", "memcpy");
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this->syscall<decltype(&memcpy)>(
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ntoskrnl_memcpy, (void*)addr, &value, sizeof T);
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}
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__forceinline auto get_virtual(std::uintptr_t addr) -> std::uintptr_t
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{
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static const auto ntoskrnl_get_virtual =
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util::get_kmodule_export(
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"ntoskrnl.exe",
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"MmGetVirtualForPhysical");
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return this->syscall<MmGetVirtualForPhysical>(
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ntoskrnl_get_virtual, addr);
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}
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__forceinline auto get_peprocess(std::uint32_t pid) -> PEPROCESS
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{
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static const auto ps_lookup_peproc =
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util::get_kmodule_export(
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"ntoskrnl.exe",
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"PsLookupProcessByProcessId");
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PEPROCESS peproc = nullptr;
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this->syscall<PsLookupProcessByProcessId>(
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ps_lookup_peproc,
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(HANDLE)pid,
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&peproc
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);
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return peproc;
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}
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private:
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void locate_syscall(std::uintptr_t begin, std::uintptr_t end) const;
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bool valid_syscall(void* syscall_addr) const;
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std::function<decltype(vdm::read_phys)> read_phys;
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std::function<decltype(vdm::write_phys)> write_phys;
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};
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} |