Remove custom signal handler restrictions (#1843)
* remove custom signal handler origin restriction * add a test for handling signals from a hostcall * cargo fmt
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@@ -589,11 +589,6 @@ impl<'a> CallThreadState<'a> {
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return ptr::null();
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}
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// If this fault wasn't in wasm code, then it's not our problem
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if !(self.is_wasm_code)(pc as usize) {
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return ptr::null();
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}
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// First up see if any instance registered has a custom trap handler,
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// in which case run them all. If anything handles the trap then we
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// return that the trap was handled.
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@@ -603,6 +598,11 @@ impl<'a> CallThreadState<'a> {
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}
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}
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// If this fault wasn't in wasm code, then it's not our problem
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if !(self.is_wasm_code)(pc as usize) {
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return ptr::null();
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}
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// TODO: stack overflow can happen at any random time (i.e. in malloc()
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// in memory.grow) and it's really hard to determine if the cause was
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// stack overflow and if it happened in WebAssembly module.
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@@ -8,6 +8,7 @@ mod tests {
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const WAT1: &str = r#"
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(module
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(func $hostcall_read (import "" "hostcall_read") (result i32))
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(func $read (export "read") (result i32)
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(i32.load (i32.const 0))
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)
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@@ -21,6 +22,9 @@ mod tests {
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)
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)
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)
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(func (export "hostcall_read") (result i32)
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call $hostcall_read
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)
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(func $start
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(i32.store (i32.const 0) (i32.const 123))
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)
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@@ -86,12 +90,53 @@ mod tests {
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}
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}
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fn make_externs(store: &Store, module: &Module) -> Vec<Extern> {
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module
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.imports()
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.map(|import| {
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assert_eq!("hostcall_read", import.name());
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let func = Func::wrap(&store, {
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move |caller: Caller<'_>| {
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let mem = caller.get_export("memory").unwrap().into_memory().unwrap();
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let memory = unsafe { mem.data_unchecked_mut() };
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use std::convert::TryInto;
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i32::from_le_bytes(memory[0..4].try_into().unwrap())
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}
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});
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wasmtime::Extern::Func(func)
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})
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.collect::<Vec<_>>()
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}
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// This test will only succeed if the SIGSEGV signal originating from the
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// hostcall can be handled.
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#[test]
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fn test_custom_signal_handler_single_instance_hostcall() -> Result<()> {
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let engine = Engine::new(&Config::default());
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let store = Store::new(&engine);
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let module = Module::new(&engine, WAT1)?;
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let instance = Instance::new(&store, &module, &make_externs(&store, &module))?;
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let (base, length) = set_up_memory(&instance);
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unsafe {
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store.set_signal_handler(move |signum, siginfo, _| {
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handle_sigsegv(base, length, signum, siginfo)
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});
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}
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println!("calling hostcall_read...");
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let result = invoke_export(&instance, "hostcall_read").unwrap();
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assert_eq!(123, result[0].unwrap_i32());
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Ok(())
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}
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#[test]
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fn test_custom_signal_handler_single_instance() -> Result<()> {
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let engine = Engine::new(&Config::default());
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let store = Store::new(&engine);
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let module = Module::new(&engine, WAT1)?;
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let instance = Instance::new(&store, &module, &[])?;
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let instance = Instance::new(&store, &module, &make_externs(&store, &module))?;
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let (base, length) = set_up_memory(&instance);
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unsafe {
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@@ -154,7 +199,7 @@ mod tests {
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// Set up multiple instances
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let instance1 = Instance::new(&store, &module, &[])?;
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let instance1 = Instance::new(&store, &module, &make_externs(&store, &module))?;
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let instance1_handler_triggered = Rc::new(AtomicBool::new(false));
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unsafe {
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@@ -196,7 +241,8 @@ mod tests {
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);
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}
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let instance2 = Instance::new(&store, &module, &[]).expect("failed to instantiate module");
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let instance2 = Instance::new(&store, &module, &make_externs(&store, &module))
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.expect("failed to instantiate module");
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let instance2_handler_triggered = Rc::new(AtomicBool::new(false));
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unsafe {
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@@ -245,7 +291,7 @@ mod tests {
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// instance1 which defines 'read'
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let module1 = Module::new(&engine, WAT1)?;
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let instance1 = Instance::new(&store, &module1, &[])?;
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let instance1 = Instance::new(&store, &module1, &make_externs(&store, &module1))?;
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let (base1, length1) = set_up_memory(&instance1);
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unsafe {
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store.set_signal_handler(move |signum, siginfo, _| {
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