1use std::{
5 any::{Any, TypeId},
6 cell::{Cell, RefCell},
7 collections::HashMap,
8 ffi::CStr,
9 marker::PhantomData,
10 mem::ManuallyDrop,
11 ops::{Deref, DerefMut},
12 pin::Pin,
13 ptr::NonNull,
14 rc::Rc,
15 sync::{
16 atomic::{compiler_fence, AtomicBool, AtomicU64, Ordering},
17 Arc, Once,
18 },
19 thread::ThreadId,
20 time::{Duration, Instant},
21};
22
23use corosensei::{
24 stack::{DefaultStack, Stack},
25 Coroutine, CoroutineResult, ScopedCoroutine, Yielder,
26};
27use futures::{Future, FutureExt};
28use memmap2::{MmapOptions, MmapRaw};
29use parking_lot::{Condvar, Mutex};
30use rand::prelude::SliceRandom;
31
32use crate::{
33 error::{Error, RuntimeError},
34 helpers::Helper,
35 linker::link_elf,
36 pointer_cage::PointerCage,
37 util::nonnull_bytes_overlap,
38};
39
40const NATIVE_STACK_SIZE: usize = 16384;
41const SHADOW_STACK_SIZE: usize = 4096;
42const MAX_CALLDATA_SIZE: usize = 512;
43const MAX_MUTABLE_DEREF_REGIONS: usize = 4;
44const MAX_IMMUTABLE_DEREF_REGIONS: usize = 16;
45
46pub struct InvokeScope {
48 data: HashMap<TypeId, Box<dyn Any + Send>>,
49}
50
51impl InvokeScope {
52 pub fn data_mut<T: Default + Send + 'static>(&mut self) -> &mut T {
54 let ty = TypeId::of::<T>();
55 self
56 .data
57 .entry(ty)
58 .or_insert_with(|| Box::new(T::default()))
59 .downcast_mut()
60 .expect("InvokeScope::data_mut: downcast failed")
61 }
62}
63
64pub struct HelperScope<'a, 'b> {
66 pub program: &'a Program,
68 pub invoke: RefCell<&'a mut InvokeScope>,
70 resources: RefCell<&'a mut [&'b mut dyn Any]>,
71 mutable_dereferenced_regions: [Cell<Option<NonNull<[u8]>>>; MAX_MUTABLE_DEREF_REGIONS],
72 immutable_dereferenced_regions: [Cell<Option<NonNull<[u8]>>>; MAX_IMMUTABLE_DEREF_REGIONS],
73 can_post_task: bool,
74}
75
76pub struct MutableUserMemory<'a, 'b, 'c> {
78 _scope: &'c HelperScope<'a, 'b>,
79 region: NonNull<[u8]>,
80}
81
82impl<'a, 'b, 'c> Deref for MutableUserMemory<'a, 'b, 'c> {
83 type Target = [u8];
84
85 fn deref(&self) -> &Self::Target {
86 unsafe { self.region.as_ref() }
87 }
88}
89
90impl<'a, 'b, 'c> DerefMut for MutableUserMemory<'a, 'b, 'c> {
91 fn deref_mut(&mut self) -> &mut Self::Target {
92 unsafe { self.region.as_mut() }
93 }
94}
95
96impl<'a, 'b> HelperScope<'a, 'b> {
97 pub fn post_task(
99 &self,
100 task: impl Future<Output = impl FnOnce(&HelperScope) -> Result<u64, ()> + 'static> + 'static,
101 ) {
102 if !self.can_post_task {
103 panic!("HelperScope::post_task() called in a context where posting task is not allowed");
104 }
105
106 PENDING_ASYNC_TASK.with(|x| {
107 let mut x = x.borrow_mut();
108 if x.is_some() {
109 panic!("post_task called while another task is pending");
110 }
111 *x = Some(async move { Box::new(task.await) as AsyncTaskOutput }.boxed_local());
112 });
113 }
114
115 pub fn with_resource_mut<'c, T: 'static, R>(
117 &'c self,
118 callback: impl FnOnce(Result<&mut T, ()>) -> R,
119 ) -> R {
120 let mut resources = self.resources.borrow_mut();
121 let Some(res) = resources
122 .iter_mut()
123 .filter_map(|x| x.downcast_mut::<T>())
124 .next()
125 else {
126 tracing::warn!(resource_type = ?TypeId::of::<T>(), "resource not found");
127 return callback(Err(()));
128 };
129
130 callback(Ok(res))
131 }
132
133 pub fn user_memory(&self, ptr: u64, size: u64) -> Result<&[u8], ()> {
135 let Some(region) = self
136 .program
137 .unbound
138 .cage
139 .safe_deref_for_read(ptr as usize, size as usize)
140 else {
141 tracing::warn!(ptr, size, "invalid read");
142 return Err(());
143 };
144
145 if size != 0 {
146 if self
148 .mutable_dereferenced_regions
149 .iter()
150 .filter_map(|x| x.get())
151 .any(|x| nonnull_bytes_overlap(x, region))
152 {
153 tracing::warn!(ptr, size, "read overlapped with previous write");
154 return Err(());
155 }
156
157 let Some(slot) = self
159 .immutable_dereferenced_regions
160 .iter()
161 .find(|x| x.get().is_none())
162 else {
163 tracing::warn!(ptr, size, "too many reads");
164 return Err(());
165 };
166 slot.set(Some(region));
167 }
168
169 Ok(unsafe { region.as_ref() })
170 }
171
172 pub fn user_memory_mut<'c>(
174 &'c self,
175 ptr: u64,
176 size: u64,
177 ) -> Result<MutableUserMemory<'a, 'b, 'c>, ()> {
178 let Some(region) = self
179 .program
180 .unbound
181 .cage
182 .safe_deref_for_write(ptr as usize, size as usize)
183 else {
184 tracing::warn!(ptr, size, "invalid write");
185 return Err(());
186 };
187
188 if size != 0 {
189 if self
191 .mutable_dereferenced_regions
192 .iter()
193 .chain(self.immutable_dereferenced_regions.iter())
194 .filter_map(|x| x.get())
195 .any(|x| nonnull_bytes_overlap(x, region))
196 {
197 tracing::warn!(ptr, size, "write overlapped with previous read/write");
198 return Err(());
199 }
200
201 let Some(slot) = self
203 .mutable_dereferenced_regions
204 .iter()
205 .find(|x| x.get().is_none())
206 else {
207 tracing::warn!(ptr, size, "too many writes");
208 return Err(());
209 };
210 slot.set(Some(region));
211 }
212
213 Ok(MutableUserMemory {
214 _scope: self,
215 region,
216 })
217 }
218}
219
220#[derive(Copy, Clone)]
221struct AssumeSend<T>(T);
222unsafe impl<T> Send for AssumeSend<T> {}
223
224struct ExecContext {
225 native_stack: DefaultStack,
226 copy_stack: Box<[u8; SHADOW_STACK_SIZE]>,
227}
228
229impl ExecContext {
230 fn new() -> Self {
231 Self {
232 native_stack: DefaultStack::new(NATIVE_STACK_SIZE)
233 .expect("failed to initialize native stack"),
234 copy_stack: Box::new([0u8; SHADOW_STACK_SIZE]),
235 }
236 }
237}
238
239pub type PendingAsyncTask = Pin<Box<dyn Future<Output = AsyncTaskOutput>>>;
241pub type AsyncTaskOutput = Box<dyn FnOnce(&HelperScope) -> Result<u64, ()>>;
243
244static NEXT_PROGRAM_ID: AtomicU64 = AtomicU64::new(1);
245
246#[derive(Copy, Clone, Debug)]
247enum PreemptionState {
248 Inactive,
249 Active(usize),
250 Shutdown,
251}
252
253type PreemptionStateSignal = (Mutex<PreemptionState>, Condvar);
254
255thread_local! {
256 static RUST_TID: ThreadId = std::thread::current().id();
257 static SIGUSR1_COUNTER: Cell< u64> = Cell::new(0);
258 static ACTIVE_JIT_CODE_ZONE: ActiveJitCodeZone = ActiveJitCodeZone::default();
259 static EXEC_CONTEXT_POOL: RefCell<Vec<ExecContext>> = Default::default();
260 static PENDING_ASYNC_TASK: RefCell<Option<PendingAsyncTask>> = RefCell::new(None);
261 static PREEMPTION_STATE: Arc<PreemptionStateSignal> = Arc::new((Mutex::new(PreemptionState::Inactive), Condvar::new()));
262 static LOADING_PROGRAM_LOADER: Cell<*const ProgramLoader> = const { Cell::new(std::ptr::null()) };
263}
264
265struct BorrowedExecContext {
266 ctx: ManuallyDrop<ExecContext>,
267}
268
269impl BorrowedExecContext {
270 fn new() -> Self {
271 let mut me = Self {
272 ctx: ManuallyDrop::new(
273 EXEC_CONTEXT_POOL.with(|x| x.borrow_mut().pop().unwrap_or_else(ExecContext::new)),
274 ),
275 };
276 me.ctx.copy_stack.fill(0x8e);
277 me
278 }
279}
280
281impl Drop for BorrowedExecContext {
282 fn drop(&mut self) {
283 let ctx = unsafe { ManuallyDrop::take(&mut self.ctx) };
284 EXEC_CONTEXT_POOL.with(|x| x.borrow_mut().push(ctx));
285 }
286}
287
288#[derive(Default)]
289struct ActiveJitCodeZone {
290 valid: AtomicBool,
291 code_range: Cell<(usize, usize)>,
292 pointer_cage_protected_range: Cell<(usize, usize)>,
293 yielder: Cell<Option<NonNull<Yielder<u64, Dispatch>>>>,
294}
295
296pub trait ProgramEventListener: Send + Sync + 'static {
298 fn did_async_preempt(&self, _scope: &HelperScope) {}
300 fn did_yield(&self) {}
302 fn did_throttle(&self, _scope: &HelperScope) -> Option<Pin<Box<dyn Future<Output = ()>>>> {
304 None
305 }
306 fn did_save_shadow_stack(&self) {}
308 fn did_restore_shadow_stack(&self) {}
310}
311
312pub struct DummyProgramEventListener;
314impl ProgramEventListener for DummyProgramEventListener {}
315
316pub struct ProgramLoader {
318 helpers_inverse: HashMap<&'static str, i32>,
319 event_listener: Arc<dyn ProgramEventListener>,
320 helper_id_xor: u16,
321 helpers: Arc<Vec<(u16, &'static str, Helper)>>,
322}
323
324pub struct UnboundProgram {
326 id: u64,
327 _code_mem: MmapRaw,
328 cage: PointerCage,
329 helper_id_xor: u16,
330 helpers: Arc<Vec<(u16, &'static str, Helper)>>,
331 event_listener: Arc<dyn ProgramEventListener>,
332 entrypoints: HashMap<String, Entrypoint>,
333}
334
335pub struct Program {
337 unbound: UnboundProgram,
338 data: RefCell<HashMap<TypeId, Rc<dyn Any>>>,
339 t: ThreadEnv,
340}
341
342#[derive(Copy, Clone)]
343struct Entrypoint {
344 code_ptr: usize,
345 code_len: usize,
346}
347
348#[derive(Clone, Debug)]
350pub struct TimesliceConfig {
351 pub max_run_time_before_yield: Duration,
353 pub max_run_time_before_throttle: Duration,
355 pub throttle_duration: Duration,
357}
358
359pub trait Timeslicer {
361 fn sleep(&self, duration: Duration) -> impl Future<Output = ()>;
363 fn yield_now(&self) -> impl Future<Output = ()>;
365}
366
367#[derive(Copy, Clone)]
369pub struct GlobalEnv(());
370
371#[derive(Copy, Clone)]
373pub struct ThreadEnv {
374 _not_send_sync: std::marker::PhantomData<*const ()>,
375}
376
377impl GlobalEnv {
378 pub unsafe fn new() -> Self {
383 static INIT: Once = Once::new();
384
385 INIT.call_once(|| {
400 let sa_mask = get_blocked_sigset();
401
402 for (sig, handler) in [
403 (libc::SIGUSR1, sigusr1_handler as *const () as usize),
404 (libc::SIGSEGV, sigsegv_handler as *const () as usize),
405 ] {
406 let act = libc::sigaction {
407 sa_sigaction: handler,
408 sa_flags: libc::SA_SIGINFO,
409 sa_mask,
410 sa_restorer: None,
411 };
412 if libc::sigaction(sig, &act, std::ptr::null_mut()) != 0 {
413 panic!("failed to setup handler for signal {}", sig);
414 }
415 }
416 });
417
418 Self(())
419 }
420
421 pub fn init_thread(self, async_preemption_interval: Duration) -> ThreadEnv {
423 struct DeferDrop(Arc<PreemptionStateSignal>);
424 impl Drop for DeferDrop {
425 fn drop(&mut self) {
426 let x = &self.0;
427 *x.0.lock() = PreemptionState::Shutdown;
428 x.1.notify_one();
429 }
430 }
431
432 thread_local! {
433 static WATCHER: RefCell<Option<DeferDrop>> = RefCell::new(None);
434 }
435
436 if WATCHER.with(|x| x.borrow().is_some()) {
437 return ThreadEnv {
438 _not_send_sync: PhantomData,
439 };
440 }
441
442 let preemption_state = PREEMPTION_STATE.with(|x| x.clone());
443
444 unsafe {
445 let tgid = libc::getpid();
446 let tid = libc::gettid();
447
448 std::thread::Builder::new()
449 .name("preempt-watcher".to_string())
450 .spawn(move || {
451 let mut state = preemption_state.0.lock();
452 loop {
453 match *state {
454 PreemptionState::Shutdown => break,
455 PreemptionState::Inactive => {
456 preemption_state.1.wait(&mut state);
457 }
458 PreemptionState::Active(_) => {
459 let timeout = preemption_state.1.wait_while_for(
460 &mut state,
461 |x| matches!(x, PreemptionState::Active(_)),
462 async_preemption_interval,
463 );
464 if timeout.timed_out() {
465 let ret = libc::syscall(libc::SYS_tgkill, tgid, tid, libc::SIGUSR1);
466 if ret != 0 {
467 break;
468 }
469 }
470 }
471 }
472 }
473 })
474 .expect("failed to spawn preemption watcher");
475
476 WATCHER.with(|x| {
477 x.borrow_mut()
478 .replace(DeferDrop(PREEMPTION_STATE.with(|x| x.clone())));
479 });
480
481 ThreadEnv {
482 _not_send_sync: PhantomData,
483 }
484 }
485 }
486}
487
488impl UnboundProgram {
489 pub fn pin_to_current_thread(self, t: ThreadEnv) -> Program {
491 Program {
492 unbound: self,
493 data: RefCell::new(HashMap::new()),
494 t,
495 }
496 }
497}
498
499pub struct PreemptionEnabled(());
500
501impl PreemptionEnabled {
502 pub fn new(_: ThreadEnv) -> Self {
503 PREEMPTION_STATE.with(|x| {
504 let mut notify = false;
505 {
506 let mut st = x.0.lock();
507 let next = match *st {
508 PreemptionState::Inactive => {
509 notify = true;
510 PreemptionState::Active(1)
511 }
512 PreemptionState::Active(n) => PreemptionState::Active(n + 1),
513 PreemptionState::Shutdown => unreachable!(),
514 };
515 *st = next;
516 }
517
518 if notify {
519 x.1.notify_one();
520 }
521 });
522 Self(())
523 }
524}
525
526impl Drop for PreemptionEnabled {
527 fn drop(&mut self) {
528 PREEMPTION_STATE.with(|x| {
529 let mut st = x.0.lock();
530 let next = match *st {
531 PreemptionState::Active(1) => PreemptionState::Inactive,
532 PreemptionState::Active(n) => {
533 assert!(n > 1);
534 PreemptionState::Active(n - 1)
535 }
536 PreemptionState::Inactive | PreemptionState::Shutdown => unreachable!(),
537 };
538 *st = next;
539 });
540 }
541}
542
543impl Program {
544 pub fn id(&self) -> u64 {
546 self.unbound.id
547 }
548
549 pub fn thread_env(&self) -> ThreadEnv {
550 self.t
551 }
552
553 pub fn data<T: Default + 'static>(&self) -> Rc<T> {
555 let mut data = self.data.borrow_mut();
556 let entry = data.entry(TypeId::of::<T>());
557 let entry = entry.or_insert_with(|| Rc::new(T::default()));
558 entry.clone().downcast().unwrap()
559 }
560
561 pub fn has_section(&self, name: &str) -> bool {
562 self.unbound.entrypoints.contains_key(name)
563 }
564
565 pub async fn run(
567 &self,
568 timeslice: &TimesliceConfig,
569 timeslicer: &impl Timeslicer,
570 entrypoint: &str,
571 resources: &mut [&mut dyn Any],
572 calldata: &[u8],
573 preemption: &PreemptionEnabled,
574 ) -> Result<i64, Error> {
575 self
576 ._run(
577 timeslice, timeslicer, entrypoint, resources, calldata, preemption,
578 )
579 .await
580 .map_err(Error)
581 }
582
583 async fn _run(
584 &self,
585 timeslice: &TimesliceConfig,
586 timeslicer: &impl Timeslicer,
587 entrypoint: &str,
588 resources: &mut [&mut dyn Any],
589 calldata: &[u8],
590 _: &PreemptionEnabled,
591 ) -> Result<i64, RuntimeError> {
592 let Some(entrypoint) = self.unbound.entrypoints.get(entrypoint).copied() else {
593 return Err(RuntimeError::InvalidArgument("entrypoint not found"));
594 };
595
596 let entry = unsafe {
597 std::mem::transmute::<
598 _,
599 unsafe extern "C" fn(ctx: usize, mem_len: usize, stack: usize, stack_len: usize) -> u64,
600 >(entrypoint.code_ptr)
601 };
602 struct CoDropper<'a, Input, Yield, Return, DefaultStack: Stack>(
603 ScopedCoroutine<'a, Input, Yield, Return, DefaultStack>,
604 );
605 impl<'a, Input, Yield, Return, DefaultStack: Stack> Drop
606 for CoDropper<'a, Input, Yield, Return, DefaultStack>
607 {
608 fn drop(&mut self) {
609 unsafe {
617 self.0.force_reset();
618 }
619 }
620 }
621
622 let mut ectx = BorrowedExecContext::new();
623
624 if calldata.len() > MAX_CALLDATA_SIZE {
625 return Err(RuntimeError::InvalidArgument("calldata too large"));
626 }
627 ectx.ctx.copy_stack[SHADOW_STACK_SIZE - calldata.len()..].copy_from_slice(calldata);
628 let calldata_len = calldata.len();
629
630 let program_ret: u64 = {
631 let shadow_stack_top = self.unbound.cage.stack_top();
632 let shadow_stack_bottom = self.unbound.cage.stack_bottom();
633 let shadow_stack_ptr = AssumeSend(
634 self
635 .unbound
636 .cage
637 .safe_deref_for_write(self.unbound.cage.stack_bottom(), SHADOW_STACK_SIZE)
638 .unwrap(),
639 );
640 let ctx = &mut *ectx.ctx;
641
642 let mut co = AssumeSend(CoDropper(Coroutine::with_stack(
643 &mut ctx.native_stack,
644 move |yielder, _input| unsafe {
645 ACTIVE_JIT_CODE_ZONE.with(|x| {
646 x.yielder.set(NonNull::new(yielder as *const _ as *mut _));
647 });
648 let calldata_start = shadow_stack_top - calldata_len;
649 let stack_top = calldata_start & !0x7;
650 let stack_len = stack_top - shadow_stack_bottom;
651 entry(
652 calldata_start,
653 calldata_start,
654 shadow_stack_bottom,
655 stack_len,
656 )
657 },
658 )));
659
660 let mut last_yield_time = Instant::now();
661 let mut last_throttle_time = Instant::now();
662 let mut yielder: Option<AssumeSend<NonNull<Yielder<u64, Dispatch>>>> = None;
663 let mut resume_input: u64 = 0;
664 let mut did_throttle = false;
665 let mut shadow_stack_saved = true;
666 let mut rust_tid_sigusr1_counter = (RUST_TID.with(|x| *x), SIGUSR1_COUNTER.with(|x| x.get()));
667 let mut prev_async_task_output: Option<(&'static str, AsyncTaskOutput)> = None;
668 let mut invoke_scope = InvokeScope {
669 data: HashMap::new(),
670 };
671
672 loop {
673 ACTIVE_JIT_CODE_ZONE.with(|x| {
674 x.code_range.set((
675 entrypoint.code_ptr,
676 entrypoint.code_ptr + entrypoint.code_len,
677 ));
678 x.yielder.set(yielder.map(|x| x.0));
679 x.pointer_cage_protected_range
680 .set(self.unbound.cage.protected_range_without_margins());
681 compiler_fence(Ordering::Release);
682 x.valid.store(true, Ordering::Relaxed);
683 });
684
685 if shadow_stack_saved {
686 shadow_stack_saved = false;
687
688 unsafe {
690 std::ptr::copy_nonoverlapping(
691 ctx.copy_stack.as_ptr() as *const u8,
692 shadow_stack_ptr.0.as_ptr() as *mut u8,
693 SHADOW_STACK_SIZE,
694 );
695 }
696
697 self.unbound.event_listener.did_restore_shadow_stack();
698 }
699
700 if let Some((helper_name, prev_async_task_output)) = prev_async_task_output.take() {
702 resume_input = prev_async_task_output(&HelperScope {
703 program: self,
704 invoke: RefCell::new(&mut invoke_scope),
705 resources: RefCell::new(resources),
706 mutable_dereferenced_regions: unsafe { std::mem::zeroed() },
707 immutable_dereferenced_regions: unsafe { std::mem::zeroed() },
708 can_post_task: false,
709 })
710 .map_err(|_| RuntimeError::AsyncHelperError(helper_name))?;
711 }
712
713 let ret = co.0 .0.resume(resume_input);
714 ACTIVE_JIT_CODE_ZONE.with(|x| {
715 x.valid.store(false, Ordering::Relaxed);
716 compiler_fence(Ordering::Release);
717 yielder = x.yielder.get().map(AssumeSend);
718 });
719
720 let dispatch: Dispatch = match ret {
721 CoroutineResult::Return(x) => break x,
722 CoroutineResult::Yield(x) => x,
723 };
724
725 if dispatch.memory_access_error.is_some() || dispatch.async_preemption {
727 unsafe {
728 let unblock = get_blocked_sigset();
729 libc::sigprocmask(libc::SIG_UNBLOCK, &unblock, std::ptr::null_mut());
730 }
731 }
732
733 if let Some(si_addr) = dispatch.memory_access_error {
734 let vaddr = si_addr - self.unbound.cage.offset();
735 return Err(RuntimeError::MemoryFault(vaddr));
736 }
737
738 PENDING_ASYNC_TASK.with(|x| x.borrow_mut().take());
740 let mut helper_name: &'static str = "";
741
742 let mut helper_scope = HelperScope {
743 program: self,
744 invoke: RefCell::new(&mut invoke_scope),
745 resources: RefCell::new(resources),
746 mutable_dereferenced_regions: unsafe { std::mem::zeroed() },
747 immutable_dereferenced_regions: unsafe { std::mem::zeroed() },
748 can_post_task: false,
749 };
750
751 if dispatch.async_preemption {
752 self
753 .unbound
754 .event_listener
755 .did_async_preempt(&mut helper_scope);
756 } else {
757 let Some((_, got_helper_name, helper)) = self
759 .unbound
760 .helpers
761 .get(
762 ((dispatch.index & 0xffff) as u16 ^ self.unbound.helper_id_xor).wrapping_sub(1)
763 as usize,
764 )
765 .copied()
766 else {
767 panic!("unknown helper index: {}", dispatch.index);
768 };
769 helper_name = got_helper_name;
770
771 helper_scope.can_post_task = true;
772 resume_input = helper(
773 &mut helper_scope,
774 dispatch.arg1,
775 dispatch.arg2,
776 dispatch.arg3,
777 dispatch.arg4,
778 dispatch.arg5,
779 )
780 .map_err(|()| RuntimeError::HelperError(helper_name))?;
781 helper_scope.can_post_task = false;
782 }
783
784 let pending_async_task = PENDING_ASYNC_TASK.with(|x| x.borrow_mut().take());
785
786 let new_rust_tid_sigusr1_counter =
788 (RUST_TID.with(|x| *x), SIGUSR1_COUNTER.with(|x| x.get()));
789 if new_rust_tid_sigusr1_counter == rust_tid_sigusr1_counter && pending_async_task.is_none()
790 {
791 continue;
792 }
793
794 rust_tid_sigusr1_counter = new_rust_tid_sigusr1_counter;
795
796 let now = Instant::now();
797 let should_throttle = now > last_throttle_time
798 && now.duration_since(last_throttle_time) >= timeslice.max_run_time_before_throttle;
799 let should_yield = now > last_yield_time
800 && now.duration_since(last_yield_time) >= timeslice.max_run_time_before_yield;
801 if should_throttle || should_yield || pending_async_task.is_some() {
802 shadow_stack_saved = true;
804 unsafe {
805 std::ptr::copy_nonoverlapping(
806 shadow_stack_ptr.0.as_ptr() as *const u8,
807 ctx.copy_stack.as_mut_ptr() as *mut u8,
808 SHADOW_STACK_SIZE,
809 );
810 }
811 self.unbound.event_listener.did_save_shadow_stack();
812
813 if should_throttle {
816 if !did_throttle {
817 did_throttle = true;
818 tracing::warn!("throttling program");
819 }
820 timeslicer.sleep(timeslice.throttle_duration).await;
821 let now = Instant::now();
822 last_throttle_time = now;
823 last_yield_time = now;
824 let task = self.unbound.event_listener.did_throttle(&mut helper_scope);
825 if let Some(task) = task {
826 task.await;
827 }
828 } else if should_yield {
829 timeslicer.yield_now().await;
830 let now = Instant::now();
831 last_yield_time = now;
832 self.unbound.event_listener.did_yield();
833 }
834
835 if let Some(pending_async_task) = pending_async_task {
837 let async_start = Instant::now();
838 prev_async_task_output = Some((helper_name, pending_async_task.await));
839 let async_dur = async_start.elapsed();
840 last_throttle_time += async_dur;
841 last_yield_time += async_dur;
842 }
843 }
844 }
845 };
846
847 Ok(program_ret as i64)
848 }
849}
850
851struct Vm(NonNull<crate::ubpf::ubpf_vm>);
852
853impl Vm {
854 fn new(cage: &PointerCage) -> Self {
855 let vm = NonNull::new(unsafe { crate::ubpf::ubpf_create() }).expect("failed to create ubpf_vm");
856 unsafe {
857 crate::ubpf::ubpf_toggle_bounds_check(vm.as_ptr(), false);
858 crate::ubpf::ubpf_set_jit_pointer_mask_and_offset(vm.as_ptr(), cage.mask(), cage.offset());
859 }
860 Self(vm)
861 }
862}
863
864impl Drop for Vm {
865 fn drop(&mut self) {
866 unsafe {
867 crate::ubpf::ubpf_destroy(self.0.as_ptr());
868 }
869 }
870}
871
872struct LoaderValidationScope {
873 previous: *const ProgramLoader,
874}
875
876impl LoaderValidationScope {
877 fn new(loader: &ProgramLoader) -> Self {
878 let previous = LOADING_PROGRAM_LOADER.with(|x| {
879 let previous = x.get();
880 x.set(loader as *const _);
881 previous
882 });
883 Self { previous }
884 }
885}
886
887impl Drop for LoaderValidationScope {
888 fn drop(&mut self) {
889 LOADING_PROGRAM_LOADER.with(|x| x.set(self.previous));
890 }
891}
892
893impl ProgramLoader {
894 pub fn new(
896 rng: &mut impl rand::Rng,
897 event_listener: Arc<dyn ProgramEventListener>,
898 raw_helpers: &[&[(&'static str, Helper)]],
899 ) -> Self {
900 let helper_id_xor = rng.gen::<u16>();
901 let mut helpers_inverse: HashMap<&'static str, i32> = HashMap::new();
902 let mut shuffled_helpers = raw_helpers
904 .iter()
905 .flat_map(|x| x.iter().copied())
906 .collect::<HashMap<_, _>>()
907 .into_iter()
908 .collect::<Vec<_>>();
909 shuffled_helpers.shuffle(rng);
910 let mut helpers: Vec<(u16, &'static str, Helper)> = Vec::with_capacity(shuffled_helpers.len());
911
912 assert!(shuffled_helpers.len() <= 65535);
913
914 for (i, (name, helper)) in shuffled_helpers.into_iter().enumerate() {
915 let entropy = rng.gen::<u16>() & 0x7fff;
916 helpers.push((entropy, name, helper));
917 helpers_inverse.insert(
918 name,
919 (((entropy as usize) << 16) | ((i + 1) ^ (helper_id_xor as usize))) as i32,
920 );
921 }
922
923 tracing::info!(?helpers_inverse, "generated helper table");
924 Self {
925 helper_id_xor,
926 helpers: Arc::new(helpers),
927 helpers_inverse,
928 event_listener,
929 }
930 }
931
932 pub fn load(&self, rng: &mut impl rand::Rng, elf: &[u8]) -> Result<UnboundProgram, Error> {
934 self._load(rng, elf).map_err(Error)
935 }
936
937 fn _load(&self, rng: &mut impl rand::Rng, elf: &[u8]) -> Result<UnboundProgram, RuntimeError> {
938 let start_time = Instant::now();
939 let cage = PointerCage::new(rng, SHADOW_STACK_SIZE, elf.len())?;
940 let vm = Vm::new(&cage);
941
942 let code_sections = {
944 let mut data = cage
948 .safe_deref_for_read(cage.data_bottom(), elf.len())
949 .unwrap();
950 let data = unsafe { data.as_mut() };
951 data.copy_from_slice(elf);
952
953 link_elf(data, cage.data_bottom(), &self.helpers_inverse).map_err(RuntimeError::Linker)?
954 };
955 cage.freeze_data();
956
957 let page_size = unsafe { libc::sysconf(libc::_SC_PAGESIZE) };
958 if page_size < 0 {
959 return Err(RuntimeError::PlatformError("failed to get page size"));
960 }
961 let page_size = page_size as usize;
962
963 let guard_size_before = rng.gen_range(16..128) * page_size;
965 let mut guard_size_after = rng.gen_range(16..128) * page_size;
966
967 let code_len_allocated: usize = 65536;
968 let code_mem = MmapRaw::from(
969 MmapOptions::new()
970 .len(code_len_allocated + guard_size_before + guard_size_after)
971 .map_anon()
972 .map_err(|_| RuntimeError::PlatformError("failed to allocate code memory"))?,
973 );
974
975 unsafe {
976 if crate::ubpf::ubpf_register_external_dispatcher(
977 vm.0.as_ptr(),
978 Some(tls_dispatcher),
979 Some(std_validator),
980 ) != 0
981 {
982 return Err(RuntimeError::PlatformError(
983 "ubpf: failed to register external dispatcher",
984 ));
985 }
986 if libc::mprotect(
987 code_mem.as_mut_ptr() as *mut _,
988 guard_size_before,
989 libc::PROT_NONE,
990 ) != 0
991 || libc::mprotect(
992 code_mem
993 .as_mut_ptr()
994 .offset((guard_size_before + code_len_allocated) as isize) as *mut _,
995 guard_size_after,
996 libc::PROT_NONE,
997 ) != 0
998 {
999 return Err(RuntimeError::PlatformError("failed to protect guard pages"));
1000 }
1001 }
1002
1003 let mut entrypoints: HashMap<String, Entrypoint> = HashMap::new();
1004
1005 unsafe {
1006 let mut code_slice = std::slice::from_raw_parts_mut(
1008 code_mem.as_mut_ptr().offset(guard_size_before as isize),
1009 code_len_allocated,
1010 );
1011 for (section_name, code_vaddr_size) in code_sections {
1012 if code_slice.is_empty() {
1013 return Err(RuntimeError::InvalidArgument(
1014 "no space left for jit compilation",
1015 ));
1016 }
1017
1018 crate::ubpf::ubpf_unload_code(vm.0.as_ptr());
1019
1020 let mut errmsg_ptr = std::ptr::null_mut();
1021 let code = cage
1022 .safe_deref_for_read(code_vaddr_size.0, code_vaddr_size.1)
1023 .unwrap();
1024 let ret = {
1025 let validation_scope = LoaderValidationScope::new(self);
1026 let ret = crate::ubpf::ubpf_load(
1027 vm.0.as_ptr(),
1028 code.as_ptr() as *const _,
1029 code.len() as u32,
1030 &mut errmsg_ptr,
1031 );
1032 drop(validation_scope);
1033 ret
1034 };
1035 if ret != 0 {
1036 let errmsg = if errmsg_ptr.is_null() {
1037 "".to_string()
1038 } else {
1039 CStr::from_ptr(errmsg_ptr).to_string_lossy().into_owned()
1040 };
1041 if !errmsg_ptr.is_null() {
1042 libc::free(errmsg_ptr as _);
1043 }
1044 tracing::error!(section_name, error = errmsg, "failed to load code");
1045 return Err(RuntimeError::PlatformError("ubpf: code load failed"));
1046 }
1047
1048 let mut written_len = code_slice.len();
1049 let ret = crate::ubpf::ubpf_translate_ex(
1050 vm.0.as_ptr(),
1051 code_slice.as_mut_ptr(),
1052 &mut written_len,
1053 &mut errmsg_ptr,
1054 crate::ubpf::JitMode_ExtendedJitMode,
1055 );
1056 if ret != 0 {
1057 let errmsg = if errmsg_ptr.is_null() {
1058 "".to_string()
1059 } else {
1060 CStr::from_ptr(errmsg_ptr).to_string_lossy().into_owned()
1061 };
1062 if !errmsg_ptr.is_null() {
1063 libc::free(errmsg_ptr as _);
1064 }
1065 tracing::error!(section_name, error = errmsg, "failed to translate code");
1066 return Err(RuntimeError::PlatformError("ubpf: code translation failed"));
1067 }
1068
1069 assert!(written_len <= code_slice.len());
1070 entrypoints.insert(
1071 section_name,
1072 Entrypoint {
1073 code_ptr: code_mem.as_ptr() as usize + guard_size_before + code_len_allocated
1074 - code_slice.len(),
1075 code_len: written_len,
1076 },
1077 );
1078 code_slice = &mut code_slice[written_len..];
1079 }
1080
1081 let unpadded_code_len = code_len_allocated - code_slice.len();
1083 if std::env::var("JIT_DUMP").is_ok() {
1084 eprintln!(
1085 "[JITSIZE] elf={} native_unpadded={} buffer={}",
1086 elf.len(),
1087 unpadded_code_len,
1088 code_len_allocated
1089 );
1090 let native = std::slice::from_raw_parts(
1091 code_mem.as_ptr().offset(guard_size_before as isize),
1092 unpadded_code_len,
1093 );
1094 let mut hex = String::with_capacity(native.len() * 2);
1095 for b in native {
1096 hex.push_str(&format!("{b:02x}"));
1097 }
1098 eprintln!("[JITHEX] {hex}");
1099 }
1100 let code_len = (unpadded_code_len + page_size - 1) & !(page_size - 1);
1101 assert!(code_len <= code_len_allocated);
1102
1103 if libc::mprotect(
1106 code_mem.as_mut_ptr().offset(guard_size_before as isize) as *mut _,
1107 code_len,
1108 libc::PROT_READ | libc::PROT_EXEC,
1109 ) != 0
1110 || (code_len < code_len_allocated
1111 && libc::mprotect(
1112 code_mem
1113 .as_mut_ptr()
1114 .offset((guard_size_before + code_len) as isize) as *mut _,
1115 code_len_allocated - code_len,
1116 libc::PROT_NONE,
1117 ) != 0)
1118 {
1119 return Err(RuntimeError::PlatformError("failed to protect code memory"));
1120 }
1121
1122 guard_size_after += code_len_allocated - code_len;
1123
1124 tracing::info!(
1125 elf_size = elf.len(),
1126 native_code_addr = ?code_mem.as_ptr(),
1127 native_code_size = code_len,
1128 native_code_size_unpadded = unpadded_code_len,
1129 guard_size_before,
1130 guard_size_after,
1131 duration = ?start_time.elapsed(),
1132 cage_ptr = ?cage.region().as_ptr(),
1133 cage_mapped_size = cage.region().len(),
1134 "jit compiled program"
1135 );
1136
1137 Ok(UnboundProgram {
1138 id: NEXT_PROGRAM_ID.fetch_add(1, Ordering::Relaxed),
1139 _code_mem: code_mem,
1140 cage,
1141 helper_id_xor: self.helper_id_xor,
1142 helpers: self.helpers.clone(),
1143 event_listener: self.event_listener.clone(),
1144 entrypoints,
1145 })
1146 }
1147 }
1148}
1149
1150#[derive(Default)]
1151struct Dispatch {
1152 async_preemption: bool,
1153 memory_access_error: Option<usize>,
1154
1155 index: u32,
1156 arg1: u64,
1157 arg2: u64,
1158 arg3: u64,
1159 arg4: u64,
1160 arg5: u64,
1161}
1162
1163unsafe extern "C" fn tls_dispatcher(
1164 arg1: u64,
1165 arg2: u64,
1166 arg3: u64,
1167 arg4: u64,
1168 arg5: u64,
1169 index: std::os::raw::c_uint,
1170 _cookie: *mut std::os::raw::c_void,
1171) -> u64 {
1172 let yielder = ACTIVE_JIT_CODE_ZONE
1173 .with(|x| x.yielder.get())
1174 .expect("no yielder");
1175 let yielder = yielder.as_ref();
1176 let ret = yielder.suspend(Dispatch {
1177 async_preemption: false,
1178 memory_access_error: None,
1179 index,
1180 arg1,
1181 arg2,
1182 arg3,
1183 arg4,
1184 arg5,
1185 });
1186 ret
1187}
1188
1189unsafe extern "C" fn std_validator(
1190 index: std::os::raw::c_uint,
1191 _vm: *const crate::ubpf::ubpf_vm,
1192) -> bool {
1193 let loader = LOADING_PROGRAM_LOADER.with(|x| x.get());
1194 if loader.is_null() {
1195 return false;
1196 }
1197 let loader = &*loader;
1198 let entropy = (index >> 16) & 0xffff;
1199 let index = (((index & 0xffff) as u16) ^ loader.helper_id_xor).wrapping_sub(1);
1200 loader.helpers.get(index as usize).map(|x| x.0) == Some(entropy as u16)
1201}
1202
1203#[cfg(all(target_arch = "x86_64", target_os = "linux"))]
1204unsafe fn program_counter(uctx: *mut libc::ucontext_t) -> usize {
1205 (*uctx).uc_mcontext.gregs[libc::REG_RIP as usize] as usize
1206}
1207
1208#[cfg(all(target_arch = "aarch64", target_os = "linux"))]
1209unsafe fn program_counter(uctx: *mut libc::ucontext_t) -> usize {
1210 (*uctx).uc_mcontext.pc as usize
1211}
1212
1213unsafe extern "C" fn sigsegv_handler(
1214 _sig: i32,
1215 siginfo: *mut libc::siginfo_t,
1216 uctx: *mut libc::ucontext_t,
1217) {
1218 let fail = || restore_default_signal_handler(libc::SIGSEGV);
1219
1220 let Some((jit_code_zone, pointer_cage, yielder)) = ACTIVE_JIT_CODE_ZONE.with(|x| {
1221 if x.valid.load(Ordering::Relaxed) {
1222 compiler_fence(Ordering::Acquire);
1223 Some((
1224 x.code_range.get(),
1225 x.pointer_cage_protected_range.get(),
1226 x.yielder.get(),
1227 ))
1228 } else {
1229 None
1230 }
1231 }) else {
1232 return fail();
1233 };
1234
1235 let pc = program_counter(uctx);
1236
1237 if pc < jit_code_zone.0 || pc >= jit_code_zone.1 {
1238 return fail();
1239 }
1240
1241 if (*siginfo).si_code != 2 {
1243 return fail();
1244 }
1245
1246 let si_addr = (*siginfo).si_addr() as usize;
1247 if si_addr < pointer_cage.0 || si_addr >= pointer_cage.1 {
1248 return fail();
1249 }
1250
1251 let yielder = yielder.expect("no yielder").as_ref();
1252 yielder.suspend(Dispatch {
1253 memory_access_error: Some(si_addr),
1254 ..Default::default()
1255 });
1256}
1257
1258unsafe extern "C" fn sigusr1_handler(
1259 _sig: i32,
1260 _siginfo: *mut libc::siginfo_t,
1261 uctx: *mut libc::ucontext_t,
1262) {
1263 SIGUSR1_COUNTER.with(|x| x.set(x.get() + 1));
1264
1265 let Some((jit_code_zone, yielder)) = ACTIVE_JIT_CODE_ZONE.with(|x| {
1266 if x.valid.load(Ordering::Relaxed) {
1267 compiler_fence(Ordering::Acquire);
1268 Some((x.code_range.get(), x.yielder.get()))
1269 } else {
1270 None
1271 }
1272 }) else {
1273 return;
1274 };
1275 let pc = program_counter(uctx);
1276 if pc < jit_code_zone.0 || pc >= jit_code_zone.1 {
1277 return;
1278 }
1279
1280 let yielder = yielder.expect("no yielder").as_ref();
1281 yielder.suspend(Dispatch {
1282 async_preemption: true,
1283 ..Default::default()
1284 });
1285}
1286
1287unsafe fn restore_default_signal_handler(signum: i32) {
1288 let act = libc::sigaction {
1289 sa_sigaction: libc::SIG_DFL,
1290 sa_flags: libc::SA_SIGINFO,
1291 sa_mask: std::mem::zeroed(),
1292 sa_restorer: None,
1293 };
1294 if libc::sigaction(signum, &act, std::ptr::null_mut()) != 0 {
1295 libc::abort();
1296 }
1297}
1298
1299fn get_blocked_sigset() -> libc::sigset_t {
1300 unsafe {
1301 let mut s: libc::sigset_t = std::mem::zeroed();
1302 libc::sigaddset(&mut s, libc::SIGUSR1);
1303 libc::sigaddset(&mut s, libc::SIGSEGV);
1304 s
1305 }
1306}