1mod format;
2mod imports;
3mod methods;
4mod ops;
5
6use std::cell::RefCell;
7use std::collections::{BTreeMap, HashSet};
8use std::future::Future;
9use std::pin::Pin;
10use std::rc::Rc;
11use std::time::Instant;
12
13use crate::chunk::{Chunk, CompiledFunction, Constant};
14use crate::value::{
15 ErrorCategory, ModuleFunctionRegistry, VmAsyncBuiltinFn, VmBuiltinFn, VmClosure, VmEnv,
16 VmError, VmTaskHandle, VmValue,
17};
18
19thread_local! {
20 static CURRENT_ASYNC_BUILTIN_CHILD_VM: RefCell<Vec<Vm>> = const { RefCell::new(Vec::new()) };
21}
22
23struct ScopeSpan(u64);
25
26impl ScopeSpan {
27 fn new(kind: crate::tracing::SpanKind, name: String) -> Self {
28 Self(crate::tracing::span_start(kind, name))
29 }
30}
31
32impl Drop for ScopeSpan {
33 fn drop(&mut self) {
34 crate::tracing::span_end(self.0);
35 }
36}
37
38pub(crate) struct CallFrame {
40 pub(crate) chunk: Chunk,
41 pub(crate) ip: usize,
42 pub(crate) stack_base: usize,
43 pub(crate) saved_env: VmEnv,
44 pub(crate) saved_iterator_depth: usize,
46 pub(crate) fn_name: String,
48 pub(crate) argc: usize,
50 pub(crate) saved_source_dir: Option<std::path::PathBuf>,
53 pub(crate) module_functions: Option<ModuleFunctionRegistry>,
55 pub(crate) module_state: Option<crate::value::ModuleState>,
61}
62
63pub(crate) struct ExceptionHandler {
65 pub(crate) catch_ip: usize,
66 pub(crate) stack_depth: usize,
67 pub(crate) frame_depth: usize,
68 pub(crate) env_scope_depth: usize,
69 pub(crate) error_type: String,
71}
72
73#[derive(Debug, Clone, PartialEq)]
75pub enum DebugAction {
76 Continue,
78 Stop,
80}
81
82#[derive(Debug, Clone)]
84pub struct DebugState {
85 pub line: usize,
86 pub variables: BTreeMap<String, VmValue>,
87 pub frame_name: String,
88 pub frame_depth: usize,
89}
90
91pub(crate) enum IterState {
93 Vec {
94 items: Vec<VmValue>,
95 idx: usize,
96 },
97 Channel {
98 receiver: std::sync::Arc<tokio::sync::Mutex<tokio::sync::mpsc::Receiver<VmValue>>>,
99 closed: std::sync::Arc<std::sync::atomic::AtomicBool>,
100 },
101 Generator {
102 gen: crate::value::VmGenerator,
103 },
104}
105
106#[derive(Clone)]
107pub(crate) struct LoadedModule {
108 pub(crate) functions: BTreeMap<String, Rc<VmClosure>>,
109 pub(crate) public_names: HashSet<String>,
110}
111
112pub struct Vm {
114 pub(crate) stack: Vec<VmValue>,
115 pub(crate) env: VmEnv,
116 pub(crate) output: String,
117 pub(crate) builtins: BTreeMap<String, VmBuiltinFn>,
118 pub(crate) async_builtins: BTreeMap<String, VmAsyncBuiltinFn>,
119 pub(crate) iterators: Vec<IterState>,
121 pub(crate) frames: Vec<CallFrame>,
123 pub(crate) exception_handlers: Vec<ExceptionHandler>,
125 pub(crate) spawned_tasks: BTreeMap<String, VmTaskHandle>,
127 pub(crate) task_counter: u64,
129 pub(crate) deadlines: Vec<(Instant, usize)>,
131 pub(crate) breakpoints: Vec<usize>,
133 pub(crate) step_mode: bool,
135 pub(crate) step_frame_depth: usize,
137 pub(crate) stopped: bool,
139 pub(crate) last_line: usize,
141 pub(crate) source_dir: Option<std::path::PathBuf>,
143 pub(crate) imported_paths: Vec<std::path::PathBuf>,
145 pub(crate) module_cache: BTreeMap<std::path::PathBuf, LoadedModule>,
147 pub(crate) source_file: Option<String>,
149 pub(crate) source_text: Option<String>,
151 pub(crate) bridge: Option<Rc<crate::bridge::HostBridge>>,
153 pub(crate) denied_builtins: HashSet<String>,
155 pub(crate) cancel_token: Option<std::sync::Arc<std::sync::atomic::AtomicBool>>,
157 pub(crate) error_stack_trace: Vec<(String, usize, usize, Option<String>)>,
159 pub(crate) yield_sender: Option<tokio::sync::mpsc::Sender<VmValue>>,
162 pub(crate) project_root: Option<std::path::PathBuf>,
165 pub(crate) globals: BTreeMap<String, VmValue>,
168}
169
170impl Vm {
171 pub fn new() -> Self {
172 Self {
173 stack: Vec::with_capacity(256),
174 env: VmEnv::new(),
175 output: String::new(),
176 builtins: BTreeMap::new(),
177 async_builtins: BTreeMap::new(),
178 iterators: Vec::new(),
179 frames: Vec::new(),
180 exception_handlers: Vec::new(),
181 spawned_tasks: BTreeMap::new(),
182 task_counter: 0,
183 deadlines: Vec::new(),
184 breakpoints: Vec::new(),
185 step_mode: false,
186 step_frame_depth: 0,
187 stopped: false,
188 last_line: 0,
189 source_dir: None,
190 imported_paths: Vec::new(),
191 module_cache: BTreeMap::new(),
192 source_file: None,
193 source_text: None,
194 bridge: None,
195 denied_builtins: HashSet::new(),
196 cancel_token: None,
197 error_stack_trace: Vec::new(),
198 yield_sender: None,
199 project_root: None,
200 globals: BTreeMap::new(),
201 }
202 }
203
204 pub fn set_bridge(&mut self, bridge: Rc<crate::bridge::HostBridge>) {
206 self.bridge = Some(bridge);
207 }
208
209 pub fn set_denied_builtins(&mut self, denied: HashSet<String>) {
212 self.denied_builtins = denied;
213 }
214
215 pub fn set_source_info(&mut self, file: &str, text: &str) {
217 self.source_file = Some(file.to_string());
218 self.source_text = Some(text.to_string());
219 }
220
221 pub fn set_breakpoints(&mut self, lines: Vec<usize>) {
223 self.breakpoints = lines;
224 }
225
226 pub fn set_step_mode(&mut self, step: bool) {
228 self.step_mode = step;
229 self.step_frame_depth = self.frames.len();
230 }
231
232 pub fn set_step_over(&mut self) {
234 self.step_mode = true;
235 self.step_frame_depth = self.frames.len();
236 }
237
238 pub fn set_step_out(&mut self) {
240 self.step_mode = true;
241 self.step_frame_depth = self.frames.len().saturating_sub(1);
242 }
243
244 pub fn is_stopped(&self) -> bool {
246 self.stopped
247 }
248
249 pub fn debug_state(&self) -> DebugState {
251 let line = self.current_line();
252 let variables = self.env.all_variables();
253 let frame_name = if self.frames.len() > 1 {
254 format!("frame_{}", self.frames.len() - 1)
255 } else {
256 "pipeline".to_string()
257 };
258 DebugState {
259 line,
260 variables,
261 frame_name,
262 frame_depth: self.frames.len(),
263 }
264 }
265
266 pub fn debug_stack_frames(&self) -> Vec<(String, usize)> {
268 let mut frames = Vec::new();
269 for (i, frame) in self.frames.iter().enumerate() {
270 let line = if frame.ip > 0 && frame.ip - 1 < frame.chunk.lines.len() {
271 frame.chunk.lines[frame.ip - 1] as usize
272 } else {
273 0
274 };
275 let name = if frame.fn_name.is_empty() {
276 if i == 0 {
277 "pipeline".to_string()
278 } else {
279 format!("fn_{}", i)
280 }
281 } else {
282 frame.fn_name.clone()
283 };
284 frames.push((name, line));
285 }
286 frames
287 }
288
289 fn current_line(&self) -> usize {
291 if let Some(frame) = self.frames.last() {
292 let ip = if frame.ip > 0 { frame.ip - 1 } else { 0 };
293 if ip < frame.chunk.lines.len() {
294 return frame.chunk.lines[ip] as usize;
295 }
296 }
297 0
298 }
299
300 pub async fn step_execute(&mut self) -> Result<Option<(VmValue, bool)>, VmError> {
303 let current_line = self.current_line();
305 let line_changed = current_line != self.last_line && current_line > 0;
306
307 if line_changed {
308 self.last_line = current_line;
309
310 if self.breakpoints.contains(¤t_line) {
312 self.stopped = true;
313 return Ok(Some((VmValue::Nil, true))); }
315
316 if self.step_mode && self.frames.len() <= self.step_frame_depth + 1 {
318 self.step_mode = false;
319 self.stopped = true;
320 return Ok(Some((VmValue::Nil, true))); }
322 }
323
324 self.stopped = false;
326 self.execute_one_cycle().await
327 }
328
329 async fn execute_one_cycle(&mut self) -> Result<Option<(VmValue, bool)>, VmError> {
331 if let Some(&(deadline, _)) = self.deadlines.last() {
333 if Instant::now() > deadline {
334 self.deadlines.pop();
335 let err = VmError::Thrown(VmValue::String(Rc::from("Deadline exceeded")));
336 match self.handle_error(err) {
337 Ok(None) => return Ok(None),
338 Ok(Some(val)) => return Ok(Some((val, false))),
339 Err(e) => return Err(e),
340 }
341 }
342 }
343
344 let frame = match self.frames.last_mut() {
346 Some(f) => f,
347 None => {
348 let val = self.stack.pop().unwrap_or(VmValue::Nil);
349 return Ok(Some((val, false)));
350 }
351 };
352
353 if frame.ip >= frame.chunk.code.len() {
355 let val = self.stack.pop().unwrap_or(VmValue::Nil);
356 let popped_frame = self.frames.pop().unwrap();
357 if self.frames.is_empty() {
358 return Ok(Some((val, false)));
359 } else {
360 self.iterators.truncate(popped_frame.saved_iterator_depth);
361 self.env = popped_frame.saved_env;
362 self.stack.truncate(popped_frame.stack_base);
363 self.stack.push(val);
364 return Ok(None);
365 }
366 }
367
368 let op = frame.chunk.code[frame.ip];
369 frame.ip += 1;
370
371 match self.execute_op(op).await {
372 Ok(Some(val)) => Ok(Some((val, false))),
373 Ok(None) => Ok(None),
374 Err(VmError::Return(val)) => {
375 if let Some(popped_frame) = self.frames.pop() {
376 if let Some(ref dir) = popped_frame.saved_source_dir {
377 crate::stdlib::set_thread_source_dir(dir);
378 }
379 let current_depth = self.frames.len();
380 self.exception_handlers
381 .retain(|h| h.frame_depth <= current_depth);
382 if self.frames.is_empty() {
383 return Ok(Some((val, false)));
384 }
385 self.iterators.truncate(popped_frame.saved_iterator_depth);
386 self.env = popped_frame.saved_env;
387 self.stack.truncate(popped_frame.stack_base);
388 self.stack.push(val);
389 Ok(None)
390 } else {
391 Ok(Some((val, false)))
392 }
393 }
394 Err(e) => {
395 if self.error_stack_trace.is_empty() {
396 self.error_stack_trace = self.capture_stack_trace();
397 }
398 match self.handle_error(e) {
399 Ok(None) => {
400 self.error_stack_trace.clear();
401 Ok(None)
402 }
403 Ok(Some(val)) => Ok(Some((val, false))),
404 Err(e) => Err(self.enrich_error_with_line(e)),
405 }
406 }
407 }
408 }
409
410 pub fn start(&mut self, chunk: &Chunk) {
412 self.frames.push(CallFrame {
413 chunk: chunk.clone(),
414 ip: 0,
415 stack_base: self.stack.len(),
416 saved_env: self.env.clone(),
417 saved_iterator_depth: self.iterators.len(),
418 fn_name: String::new(),
419 argc: 0,
420 saved_source_dir: None,
421 module_functions: None,
422 module_state: None,
423 });
424 }
425
426 pub fn register_builtin<F>(&mut self, name: &str, f: F)
428 where
429 F: Fn(&[VmValue], &mut String) -> Result<VmValue, VmError> + 'static,
430 {
431 self.builtins.insert(name.to_string(), Rc::new(f));
432 }
433
434 pub fn unregister_builtin(&mut self, name: &str) {
436 self.builtins.remove(name);
437 }
438
439 pub fn register_async_builtin<F, Fut>(&mut self, name: &str, f: F)
441 where
442 F: Fn(Vec<VmValue>) -> Fut + 'static,
443 Fut: Future<Output = Result<VmValue, VmError>> + 'static,
444 {
445 self.async_builtins
446 .insert(name.to_string(), Rc::new(move |args| Box::pin(f(args))));
447 }
448
449 fn child_vm(&self) -> Vm {
452 Vm {
453 stack: Vec::with_capacity(64),
454 env: self.env.clone(),
455 output: String::new(),
456 builtins: self.builtins.clone(),
457 async_builtins: self.async_builtins.clone(),
458 iterators: Vec::new(),
459 frames: Vec::new(),
460 exception_handlers: Vec::new(),
461 spawned_tasks: BTreeMap::new(),
462 task_counter: 0,
463 deadlines: self.deadlines.clone(),
464 breakpoints: Vec::new(),
465 step_mode: false,
466 step_frame_depth: 0,
467 stopped: false,
468 last_line: 0,
469 source_dir: self.source_dir.clone(),
470 imported_paths: Vec::new(),
471 module_cache: self.module_cache.clone(),
472 source_file: self.source_file.clone(),
473 source_text: self.source_text.clone(),
474 bridge: self.bridge.clone(),
475 denied_builtins: self.denied_builtins.clone(),
476 cancel_token: None,
477 error_stack_trace: Vec::new(),
478 yield_sender: None,
479 project_root: self.project_root.clone(),
480 globals: self.globals.clone(),
481 }
482 }
483
484 pub fn set_source_dir(&mut self, dir: &std::path::Path) {
487 self.source_dir = Some(dir.to_path_buf());
488 crate::stdlib::set_thread_source_dir(dir);
489 if self.project_root.is_none() {
491 self.project_root = crate::stdlib::process::find_project_root(dir);
492 }
493 }
494
495 pub fn set_project_root(&mut self, root: &std::path::Path) {
498 self.project_root = Some(root.to_path_buf());
499 }
500
501 pub fn project_root(&self) -> Option<&std::path::Path> {
503 self.project_root.as_deref().or(self.source_dir.as_deref())
504 }
505
506 pub fn builtin_names(&self) -> Vec<String> {
508 let mut names: Vec<String> = self.builtins.keys().cloned().collect();
509 names.extend(self.async_builtins.keys().cloned());
510 names
511 }
512
513 pub fn set_global(&mut self, name: &str, value: VmValue) {
516 self.globals.insert(name.to_string(), value);
517 }
518
519 pub fn output(&self) -> &str {
521 &self.output
522 }
523
524 pub async fn execute(&mut self, chunk: &Chunk) -> Result<VmValue, VmError> {
526 let span_id = crate::tracing::span_start(crate::tracing::SpanKind::Pipeline, "main".into());
527 let result = self.run_chunk(chunk).await;
528 crate::tracing::span_end(span_id);
529 result
530 }
531
532 fn handle_error(&mut self, error: VmError) -> Result<Option<VmValue>, VmError> {
534 let thrown_value = match &error {
536 VmError::Thrown(v) => v.clone(),
537 other => VmValue::String(Rc::from(other.to_string())),
538 };
539
540 if let Some(handler) = self.exception_handlers.pop() {
541 if !handler.error_type.is_empty() {
543 let matches = match &thrown_value {
544 VmValue::EnumVariant { enum_name, .. } => *enum_name == handler.error_type,
545 _ => false,
546 };
547 if !matches {
548 return self.handle_error(error);
550 }
551 }
552
553 while self.frames.len() > handler.frame_depth {
555 if let Some(frame) = self.frames.pop() {
556 if let Some(ref dir) = frame.saved_source_dir {
557 crate::stdlib::set_thread_source_dir(dir);
558 }
559 self.iterators.truncate(frame.saved_iterator_depth);
560 self.env = frame.saved_env;
561 }
562 }
563
564 while self
566 .deadlines
567 .last()
568 .is_some_and(|d| d.1 > handler.frame_depth)
569 {
570 self.deadlines.pop();
571 }
572
573 self.env.truncate_scopes(handler.env_scope_depth);
574
575 self.stack.truncate(handler.stack_depth);
577
578 self.stack.push(thrown_value);
580
581 if let Some(frame) = self.frames.last_mut() {
583 frame.ip = handler.catch_ip;
584 }
585
586 Ok(None) } else {
588 Err(error) }
590 }
591
592 async fn run_chunk(&mut self, chunk: &Chunk) -> Result<VmValue, VmError> {
593 self.run_chunk_entry(chunk, 0, None, None, None).await
594 }
595
596 async fn run_chunk_entry(
597 &mut self,
598 chunk: &Chunk,
599 argc: usize,
600 saved_source_dir: Option<std::path::PathBuf>,
601 module_functions: Option<ModuleFunctionRegistry>,
602 module_state: Option<crate::value::ModuleState>,
603 ) -> Result<VmValue, VmError> {
604 self.frames.push(CallFrame {
605 chunk: chunk.clone(),
606 ip: 0,
607 stack_base: self.stack.len(),
608 saved_env: self.env.clone(),
609 saved_iterator_depth: self.iterators.len(),
610 fn_name: String::new(),
611 argc,
612 saved_source_dir,
613 module_functions,
614 module_state,
615 });
616
617 loop {
618 if let Some(&(deadline, _)) = self.deadlines.last() {
620 if Instant::now() > deadline {
621 self.deadlines.pop();
622 let err = VmError::Thrown(VmValue::String(Rc::from("Deadline exceeded")));
623 match self.handle_error(err) {
624 Ok(None) => continue,
625 Ok(Some(val)) => return Ok(val),
626 Err(e) => return Err(e),
627 }
628 }
629 }
630
631 let frame = match self.frames.last_mut() {
633 Some(f) => f,
634 None => return Ok(self.stack.pop().unwrap_or(VmValue::Nil)),
635 };
636
637 if frame.ip >= frame.chunk.code.len() {
639 let val = self.stack.pop().unwrap_or(VmValue::Nil);
640 let popped_frame = self.frames.pop().unwrap();
641 if let Some(ref dir) = popped_frame.saved_source_dir {
642 crate::stdlib::set_thread_source_dir(dir);
643 }
644
645 if self.frames.is_empty() {
646 return Ok(val);
648 } else {
649 self.iterators.truncate(popped_frame.saved_iterator_depth);
651 self.env = popped_frame.saved_env;
652 self.stack.truncate(popped_frame.stack_base);
653 self.stack.push(val);
654 continue;
655 }
656 }
657
658 let op = frame.chunk.code[frame.ip];
659 frame.ip += 1;
660
661 match self.execute_op(op).await {
662 Ok(Some(val)) => return Ok(val),
663 Ok(None) => continue,
664 Err(VmError::Return(val)) => {
665 if let Some(popped_frame) = self.frames.pop() {
667 if let Some(ref dir) = popped_frame.saved_source_dir {
668 crate::stdlib::set_thread_source_dir(dir);
669 }
670 let current_depth = self.frames.len();
672 self.exception_handlers
673 .retain(|h| h.frame_depth <= current_depth);
674
675 if self.frames.is_empty() {
676 return Ok(val);
677 }
678 self.iterators.truncate(popped_frame.saved_iterator_depth);
679 self.env = popped_frame.saved_env;
680 self.stack.truncate(popped_frame.stack_base);
681 self.stack.push(val);
682 } else {
683 return Ok(val);
684 }
685 }
686 Err(e) => {
687 if self.error_stack_trace.is_empty() {
689 self.error_stack_trace = self.capture_stack_trace();
690 }
691 match self.handle_error(e) {
692 Ok(None) => {
693 self.error_stack_trace.clear();
694 continue; }
696 Ok(Some(val)) => return Ok(val),
697 Err(e) => return Err(self.enrich_error_with_line(e)),
698 }
699 }
700 }
701 }
702 }
703
704 fn capture_stack_trace(&self) -> Vec<(String, usize, usize, Option<String>)> {
706 self.frames
707 .iter()
708 .map(|f| {
709 let idx = if f.ip > 0 { f.ip - 1 } else { 0 };
710 let line = f.chunk.lines.get(idx).copied().unwrap_or(0) as usize;
711 let col = f.chunk.columns.get(idx).copied().unwrap_or(0) as usize;
712 (f.fn_name.clone(), line, col, f.chunk.source_file.clone())
713 })
714 .collect()
715 }
716
717 fn enrich_error_with_line(&self, error: VmError) -> VmError {
721 let line = self
723 .error_stack_trace
724 .last()
725 .map(|(_, l, _, _)| *l)
726 .unwrap_or_else(|| self.current_line());
727 if line == 0 {
728 return error;
729 }
730 let suffix = format!(" (line {line})");
731 match error {
732 VmError::Runtime(msg) => VmError::Runtime(format!("{msg}{suffix}")),
733 VmError::TypeError(msg) => VmError::TypeError(format!("{msg}{suffix}")),
734 VmError::DivisionByZero => VmError::Runtime(format!("Division by zero{suffix}")),
735 VmError::UndefinedVariable(name) => {
736 VmError::Runtime(format!("Undefined variable: {name}{suffix}"))
737 }
738 VmError::UndefinedBuiltin(name) => {
739 VmError::Runtime(format!("Undefined builtin: {name}{suffix}"))
740 }
741 VmError::ImmutableAssignment(name) => VmError::Runtime(format!(
742 "Cannot assign to immutable binding: {name}{suffix}"
743 )),
744 VmError::StackOverflow => {
745 VmError::Runtime(format!("Stack overflow: too many nested calls{suffix}"))
746 }
747 other => other,
753 }
754 }
755
756 const MAX_FRAMES: usize = 512;
757
758 fn closure_call_env(caller_env: &VmEnv, closure: &VmClosure) -> VmEnv {
786 if closure.module_state.is_some() {
787 return closure.env.clone();
788 }
789 let mut call_env = closure.env.clone();
790 for scope in &caller_env.scopes {
794 for (name, (val, mutable)) in &scope.vars {
795 if matches!(val, VmValue::Closure(_)) && call_env.get(name).is_none() {
796 let _ = call_env.define(name, val.clone(), *mutable);
797 }
798 }
799 }
800 call_env
801 }
802
803 fn resolve_named_closure(&self, name: &str) -> Option<Rc<VmClosure>> {
804 if let Some(VmValue::Closure(closure)) = self.env.get(name) {
805 return Some(closure);
806 }
807 self.frames
808 .last()
809 .and_then(|frame| frame.module_functions.as_ref())
810 .and_then(|registry| registry.borrow().get(name).cloned())
811 }
812
813 fn push_closure_frame(
815 &mut self,
816 closure: &VmClosure,
817 args: &[VmValue],
818 _parent_functions: &[CompiledFunction],
819 ) -> Result<(), VmError> {
820 if self.frames.len() >= Self::MAX_FRAMES {
821 return Err(VmError::StackOverflow);
822 }
823 let saved_env = self.env.clone();
824
825 let saved_source_dir = if let Some(ref dir) = closure.source_dir {
829 let prev = crate::stdlib::process::VM_SOURCE_DIR.with(|sd| sd.borrow().clone());
830 crate::stdlib::set_thread_source_dir(dir);
831 prev
832 } else {
833 None
834 };
835
836 let mut call_env = Self::closure_call_env(&saved_env, closure);
837 call_env.push_scope();
838
839 let default_start = closure
840 .func
841 .default_start
842 .unwrap_or(closure.func.params.len());
843 for (i, param) in closure.func.params.iter().enumerate() {
844 if i < args.len() {
845 let _ = call_env.define(param, args[i].clone(), false);
846 } else if i < default_start {
847 let _ = call_env.define(param, VmValue::Nil, false);
848 }
849 }
850
851 self.env = call_env;
852
853 self.frames.push(CallFrame {
854 chunk: closure.func.chunk.clone(),
855 ip: 0,
856 stack_base: self.stack.len(),
857 saved_env,
858 saved_iterator_depth: self.iterators.len(),
859 fn_name: closure.func.name.clone(),
860 argc: args.len(),
861 saved_source_dir,
862 module_functions: closure.module_functions.clone(),
863 module_state: closure.module_state.clone(),
864 });
865
866 Ok(())
867 }
868
869 pub(crate) fn create_generator(&self, closure: &VmClosure, args: &[VmValue]) -> VmValue {
872 use crate::value::VmGenerator;
873
874 let (tx, rx) = tokio::sync::mpsc::channel::<VmValue>(1);
876
877 let mut child = self.child_vm();
878 child.yield_sender = Some(tx);
879
880 let parent_env = self.env.clone();
886 let mut call_env = Self::closure_call_env(&parent_env, closure);
887 call_env.push_scope();
888
889 let default_start = closure
890 .func
891 .default_start
892 .unwrap_or(closure.func.params.len());
893 for (i, param) in closure.func.params.iter().enumerate() {
894 if i < args.len() {
895 let _ = call_env.define(param, args[i].clone(), false);
896 } else if i < default_start {
897 let _ = call_env.define(param, VmValue::Nil, false);
898 }
899 }
900 child.env = call_env;
901
902 let chunk = closure.func.chunk.clone();
903 let saved_source_dir = if let Some(ref dir) = closure.source_dir {
904 let prev = crate::stdlib::process::VM_SOURCE_DIR.with(|sd| sd.borrow().clone());
905 crate::stdlib::set_thread_source_dir(dir);
906 prev
907 } else {
908 None
909 };
910 let module_functions = closure.module_functions.clone();
911 let module_state = closure.module_state.clone();
912 let argc = args.len();
913 tokio::task::spawn_local(async move {
916 let _ = child
917 .run_chunk_entry(
918 &chunk,
919 argc,
920 saved_source_dir,
921 module_functions,
922 module_state,
923 )
924 .await;
925 });
928
929 VmValue::Generator(VmGenerator {
930 done: Rc::new(std::cell::Cell::new(false)),
931 receiver: Rc::new(tokio::sync::Mutex::new(rx)),
932 })
933 }
934
935 fn pop(&mut self) -> Result<VmValue, VmError> {
936 self.stack.pop().ok_or(VmError::StackUnderflow)
937 }
938
939 fn peek(&self) -> Result<&VmValue, VmError> {
940 self.stack.last().ok_or(VmError::StackUnderflow)
941 }
942
943 fn const_string(c: &Constant) -> Result<String, VmError> {
944 match c {
945 Constant::String(s) => Ok(s.clone()),
946 _ => Err(VmError::TypeError("expected string constant".into())),
947 }
948 }
949
950 fn call_closure<'a>(
953 &'a mut self,
954 closure: &'a VmClosure,
955 args: &'a [VmValue],
956 _parent_functions: &'a [CompiledFunction],
957 ) -> Pin<Box<dyn Future<Output = Result<VmValue, VmError>> + 'a>> {
958 Box::pin(async move {
959 let saved_env = self.env.clone();
960 let saved_frames = std::mem::take(&mut self.frames);
961 let saved_handlers = std::mem::take(&mut self.exception_handlers);
962 let saved_iterators = std::mem::take(&mut self.iterators);
963 let saved_deadlines = std::mem::take(&mut self.deadlines);
964
965 let mut call_env = Self::closure_call_env(&saved_env, closure);
966 call_env.push_scope();
967
968 let default_start = closure
969 .func
970 .default_start
971 .unwrap_or(closure.func.params.len());
972 for (i, param) in closure.func.params.iter().enumerate() {
973 if i < args.len() {
974 let _ = call_env.define(param, args[i].clone(), false);
975 } else if i < default_start {
976 let _ = call_env.define(param, VmValue::Nil, false);
977 }
978 }
979
980 self.env = call_env;
981 let argc = args.len();
982 let saved_source_dir = if let Some(ref dir) = closure.source_dir {
983 let prev = crate::stdlib::process::VM_SOURCE_DIR.with(|sd| sd.borrow().clone());
984 crate::stdlib::set_thread_source_dir(dir);
985 prev
986 } else {
987 None
988 };
989 let result = self
990 .run_chunk_entry(
991 &closure.func.chunk,
992 argc,
993 saved_source_dir,
994 closure.module_functions.clone(),
995 closure.module_state.clone(),
996 )
997 .await;
998
999 self.env = saved_env;
1000 self.frames = saved_frames;
1001 self.exception_handlers = saved_handlers;
1002 self.iterators = saved_iterators;
1003 self.deadlines = saved_deadlines;
1004
1005 result
1006 })
1007 }
1008
1009 #[allow(clippy::manual_async_fn)]
1014 fn call_callable_value<'a>(
1015 &'a mut self,
1016 callable: &'a VmValue,
1017 args: &'a [VmValue],
1018 functions: &'a [CompiledFunction],
1019 ) -> Pin<Box<dyn Future<Output = Result<VmValue, VmError>> + 'a>> {
1020 Box::pin(async move {
1021 match callable {
1022 VmValue::Closure(closure) => self.call_closure(closure, args, functions).await,
1023 VmValue::BuiltinRef(name) => {
1024 let name_owned = name.to_string();
1025 self.call_named_builtin(&name_owned, args.to_vec()).await
1026 }
1027 other => Err(VmError::TypeError(format!(
1028 "expected callable, got {}",
1029 other.type_name()
1030 ))),
1031 }
1032 })
1033 }
1034
1035 fn is_callable_value(v: &VmValue) -> bool {
1037 matches!(v, VmValue::Closure(_) | VmValue::BuiltinRef(_))
1038 }
1039
1040 pub async fn call_closure_pub(
1043 &mut self,
1044 closure: &VmClosure,
1045 args: &[VmValue],
1046 functions: &[CompiledFunction],
1047 ) -> Result<VmValue, VmError> {
1048 self.call_closure(closure, args, functions).await
1049 }
1050
1051 async fn call_named_builtin(
1054 &mut self,
1055 name: &str,
1056 args: Vec<VmValue>,
1057 ) -> Result<VmValue, VmError> {
1058 let span_kind = match name {
1060 "llm_call" | "llm_stream" | "agent_loop" => Some(crate::tracing::SpanKind::LlmCall),
1061 "mcp_call" => Some(crate::tracing::SpanKind::ToolCall),
1062 _ => None,
1063 };
1064 let _span = span_kind.map(|kind| ScopeSpan::new(kind, name.to_string()));
1065
1066 if self.denied_builtins.contains(name) {
1068 return Err(VmError::CategorizedError {
1069 message: format!("Tool '{}' is not permitted.", name),
1070 category: ErrorCategory::ToolRejected,
1071 });
1072 }
1073 crate::orchestration::enforce_current_policy_for_builtin(name, &args)?;
1074 if let Some(builtin) = self.builtins.get(name).cloned() {
1075 builtin(&args, &mut self.output)
1076 } else if let Some(async_builtin) = self.async_builtins.get(name).cloned() {
1077 CURRENT_ASYNC_BUILTIN_CHILD_VM.with(|slot| {
1078 slot.borrow_mut().push(self.child_vm());
1079 });
1080 let result = async_builtin(args).await;
1081 CURRENT_ASYNC_BUILTIN_CHILD_VM.with(|slot| {
1082 slot.borrow_mut().pop();
1083 });
1084 result
1085 } else if let Some(bridge) = &self.bridge {
1086 crate::orchestration::enforce_current_policy_for_bridge_builtin(name)?;
1087 let args_json: Vec<serde_json::Value> =
1088 args.iter().map(crate::llm::vm_value_to_json).collect();
1089 let result = bridge
1090 .call(
1091 "builtin_call",
1092 serde_json::json!({"name": name, "args": args_json}),
1093 )
1094 .await?;
1095 Ok(crate::bridge::json_result_to_vm_value(&result))
1096 } else {
1097 let all_builtins = self
1098 .builtins
1099 .keys()
1100 .chain(self.async_builtins.keys())
1101 .map(|s| s.as_str());
1102 if let Some(suggestion) = crate::value::closest_match(name, all_builtins) {
1103 return Err(VmError::Runtime(format!(
1104 "Undefined builtin: {name} (did you mean `{suggestion}`?)"
1105 )));
1106 }
1107 Err(VmError::UndefinedBuiltin(name.to_string()))
1108 }
1109 }
1110}
1111
1112pub fn clone_async_builtin_child_vm() -> Option<Vm> {
1124 CURRENT_ASYNC_BUILTIN_CHILD_VM.with(|slot| slot.borrow().last().map(|vm| vm.child_vm()))
1125}
1126
1127#[deprecated(
1134 note = "use clone_async_builtin_child_vm() — take/restore serialized concurrent callers"
1135)]
1136pub fn take_async_builtin_child_vm() -> Option<Vm> {
1137 clone_async_builtin_child_vm()
1138}
1139
1140#[deprecated(note = "clone_async_builtin_child_vm does not need a matching restore call")]
1144pub fn restore_async_builtin_child_vm(_vm: Vm) {
1145 CURRENT_ASYNC_BUILTIN_CHILD_VM.with(|slot| {
1148 let _ = slot;
1151 });
1152}
1153
1154impl Default for Vm {
1155 fn default() -> Self {
1156 Self::new()
1157 }
1158}
1159
1160#[cfg(test)]
1161mod tests {
1162 use super::*;
1163 use crate::compiler::Compiler;
1164 use crate::stdlib::register_vm_stdlib;
1165 use harn_lexer::Lexer;
1166 use harn_parser::Parser;
1167
1168 fn run_harn(source: &str) -> (String, VmValue) {
1169 let rt = tokio::runtime::Builder::new_current_thread()
1170 .enable_all()
1171 .build()
1172 .unwrap();
1173 rt.block_on(async {
1174 let local = tokio::task::LocalSet::new();
1175 local
1176 .run_until(async {
1177 let mut lexer = Lexer::new(source);
1178 let tokens = lexer.tokenize().unwrap();
1179 let mut parser = Parser::new(tokens);
1180 let program = parser.parse().unwrap();
1181 let chunk = Compiler::new().compile(&program).unwrap();
1182
1183 let mut vm = Vm::new();
1184 register_vm_stdlib(&mut vm);
1185 let result = vm.execute(&chunk).await.unwrap();
1186 (vm.output().to_string(), result)
1187 })
1188 .await
1189 })
1190 }
1191
1192 fn run_output(source: &str) -> String {
1193 run_harn(source).0.trim_end().to_string()
1194 }
1195
1196 fn run_harn_result(source: &str) -> Result<(String, VmValue), VmError> {
1197 let rt = tokio::runtime::Builder::new_current_thread()
1198 .enable_all()
1199 .build()
1200 .unwrap();
1201 rt.block_on(async {
1202 let local = tokio::task::LocalSet::new();
1203 local
1204 .run_until(async {
1205 let mut lexer = Lexer::new(source);
1206 let tokens = lexer.tokenize().unwrap();
1207 let mut parser = Parser::new(tokens);
1208 let program = parser.parse().unwrap();
1209 let chunk = Compiler::new().compile(&program).unwrap();
1210
1211 let mut vm = Vm::new();
1212 register_vm_stdlib(&mut vm);
1213 let result = vm.execute(&chunk).await?;
1214 Ok((vm.output().to_string(), result))
1215 })
1216 .await
1217 })
1218 }
1219
1220 #[test]
1221 fn test_arithmetic() {
1222 let out =
1223 run_output("pipeline t(task) { log(2 + 3)\nlog(10 - 4)\nlog(3 * 5)\nlog(10 / 3) }");
1224 assert_eq!(out, "[harn] 5\n[harn] 6\n[harn] 15\n[harn] 3");
1225 }
1226
1227 #[test]
1228 fn test_mixed_arithmetic() {
1229 let out = run_output("pipeline t(task) { log(3 + 1.5)\nlog(10 - 2.5) }");
1230 assert_eq!(out, "[harn] 4.5\n[harn] 7.5");
1231 }
1232
1233 #[test]
1234 fn test_comparisons() {
1235 let out =
1236 run_output("pipeline t(task) { log(1 < 2)\nlog(2 > 3)\nlog(1 == 1)\nlog(1 != 2) }");
1237 assert_eq!(out, "[harn] true\n[harn] false\n[harn] true\n[harn] true");
1238 }
1239
1240 #[test]
1241 fn test_let_var() {
1242 let out = run_output("pipeline t(task) { let x = 42\nlog(x)\nvar y = 1\ny = 2\nlog(y) }");
1243 assert_eq!(out, "[harn] 42\n[harn] 2");
1244 }
1245
1246 #[test]
1247 fn test_if_else() {
1248 let out = run_output(
1249 r#"pipeline t(task) { if true { log("yes") } if false { log("wrong") } else { log("no") } }"#,
1250 );
1251 assert_eq!(out, "[harn] yes\n[harn] no");
1252 }
1253
1254 #[test]
1255 fn test_while_loop() {
1256 let out = run_output("pipeline t(task) { var i = 0\n while i < 5 { i = i + 1 }\n log(i) }");
1257 assert_eq!(out, "[harn] 5");
1258 }
1259
1260 #[test]
1261 fn test_for_in() {
1262 let out = run_output("pipeline t(task) { for item in [1, 2, 3] { log(item) } }");
1263 assert_eq!(out, "[harn] 1\n[harn] 2\n[harn] 3");
1264 }
1265
1266 #[test]
1267 fn test_inner_for_return_does_not_leak_iterator_into_caller() {
1268 let out = run_output(
1269 r#"pipeline t(task) {
1270 fn first_match() {
1271 for pattern in ["a", "b"] {
1272 return pattern
1273 }
1274 return ""
1275 }
1276
1277 var seen = []
1278 for path in ["outer"] {
1279 seen = seen + [path + ":" + first_match()]
1280 }
1281 log(join(seen, ","))
1282}"#,
1283 );
1284 assert_eq!(out, "[harn] outer:a");
1285 }
1286
1287 #[test]
1288 fn test_fn_decl_and_call() {
1289 let out = run_output("pipeline t(task) { fn add(a, b) { return a + b }\nlog(add(3, 4)) }");
1290 assert_eq!(out, "[harn] 7");
1291 }
1292
1293 #[test]
1294 fn test_closure() {
1295 let out = run_output("pipeline t(task) { let double = { x -> x * 2 }\nlog(double(5)) }");
1296 assert_eq!(out, "[harn] 10");
1297 }
1298
1299 #[test]
1300 fn test_closure_capture() {
1301 let out = run_output(
1302 "pipeline t(task) { let base = 10\nfn offset(x) { return x + base }\nlog(offset(5)) }",
1303 );
1304 assert_eq!(out, "[harn] 15");
1305 }
1306
1307 #[test]
1308 fn test_string_concat() {
1309 let out = run_output(
1310 r#"pipeline t(task) { let a = "hello" + " " + "world"
1311log(a) }"#,
1312 );
1313 assert_eq!(out, "[harn] hello world");
1314 }
1315
1316 #[test]
1317 fn test_list_map() {
1318 let out = run_output(
1319 "pipeline t(task) { let doubled = [1, 2, 3].map({ x -> x * 2 })\nlog(doubled) }",
1320 );
1321 assert_eq!(out, "[harn] [2, 4, 6]");
1322 }
1323
1324 #[test]
1325 fn test_list_filter() {
1326 let out = run_output(
1327 "pipeline t(task) { let big = [1, 2, 3, 4, 5].filter({ x -> x > 3 })\nlog(big) }",
1328 );
1329 assert_eq!(out, "[harn] [4, 5]");
1330 }
1331
1332 #[test]
1333 fn test_list_reduce() {
1334 let out = run_output(
1335 "pipeline t(task) { let sum = [1, 2, 3, 4].reduce(0, { acc, x -> acc + x })\nlog(sum) }",
1336 );
1337 assert_eq!(out, "[harn] 10");
1338 }
1339
1340 #[test]
1341 fn test_dict_access() {
1342 let out = run_output(
1343 r#"pipeline t(task) { let d = {name: "test", value: 42}
1344log(d.name)
1345log(d.value) }"#,
1346 );
1347 assert_eq!(out, "[harn] test\n[harn] 42");
1348 }
1349
1350 #[test]
1351 fn test_dict_methods() {
1352 let out = run_output(
1353 r#"pipeline t(task) { let d = {a: 1, b: 2}
1354log(d.keys())
1355log(d.values())
1356log(d.has("a"))
1357log(d.has("z")) }"#,
1358 );
1359 assert_eq!(
1360 out,
1361 "[harn] [a, b]\n[harn] [1, 2]\n[harn] true\n[harn] false"
1362 );
1363 }
1364
1365 #[test]
1366 fn test_pipe_operator() {
1367 let out = run_output(
1368 "pipeline t(task) { fn double(x) { return x * 2 }\nlet r = 5 |> double\nlog(r) }",
1369 );
1370 assert_eq!(out, "[harn] 10");
1371 }
1372
1373 #[test]
1374 fn test_pipe_with_closure() {
1375 let out = run_output(
1376 r#"pipeline t(task) { let r = "hello world" |> { s -> s.split(" ") }
1377log(r) }"#,
1378 );
1379 assert_eq!(out, "[harn] [hello, world]");
1380 }
1381
1382 #[test]
1383 fn test_nil_coalescing() {
1384 let out = run_output(
1385 r#"pipeline t(task) { let a = nil ?? "fallback"
1386log(a)
1387let b = "present" ?? "fallback"
1388log(b) }"#,
1389 );
1390 assert_eq!(out, "[harn] fallback\n[harn] present");
1391 }
1392
1393 #[test]
1394 fn test_logical_operators() {
1395 let out =
1396 run_output("pipeline t(task) { log(true && false)\nlog(true || false)\nlog(!true) }");
1397 assert_eq!(out, "[harn] false\n[harn] true\n[harn] false");
1398 }
1399
1400 #[test]
1401 fn test_match() {
1402 let out = run_output(
1403 r#"pipeline t(task) { let x = "b"
1404match x { "a" -> { log("first") } "b" -> { log("second") } "c" -> { log("third") } } }"#,
1405 );
1406 assert_eq!(out, "[harn] second");
1407 }
1408
1409 #[test]
1410 fn test_subscript() {
1411 let out = run_output("pipeline t(task) { let arr = [10, 20, 30]\nlog(arr[1]) }");
1412 assert_eq!(out, "[harn] 20");
1413 }
1414
1415 #[test]
1416 fn test_string_methods() {
1417 let out = run_output(
1418 r#"pipeline t(task) { log("hello world".replace("world", "harn"))
1419log("a,b,c".split(","))
1420log(" hello ".trim())
1421log("hello".starts_with("hel"))
1422log("hello".ends_with("lo"))
1423log("hello".substring(1, 3)) }"#,
1424 );
1425 assert_eq!(
1426 out,
1427 "[harn] hello harn\n[harn] [a, b, c]\n[harn] hello\n[harn] true\n[harn] true\n[harn] el"
1428 );
1429 }
1430
1431 #[test]
1432 fn test_list_properties() {
1433 let out = run_output(
1434 "pipeline t(task) { let list = [1, 2, 3]\nlog(list.count)\nlog(list.empty)\nlog(list.first)\nlog(list.last) }",
1435 );
1436 assert_eq!(out, "[harn] 3\n[harn] false\n[harn] 1\n[harn] 3");
1437 }
1438
1439 #[test]
1440 fn test_recursive_function() {
1441 let out = run_output(
1442 "pipeline t(task) { fn fib(n) { if n <= 1 { return n } return fib(n - 1) + fib(n - 2) }\nlog(fib(10)) }",
1443 );
1444 assert_eq!(out, "[harn] 55");
1445 }
1446
1447 #[test]
1448 fn test_ternary() {
1449 let out = run_output(
1450 r#"pipeline t(task) { let x = 5
1451let r = x > 0 ? "positive" : "non-positive"
1452log(r) }"#,
1453 );
1454 assert_eq!(out, "[harn] positive");
1455 }
1456
1457 #[test]
1458 fn test_for_in_dict() {
1459 let out = run_output(
1460 "pipeline t(task) { let d = {a: 1, b: 2}\nfor entry in d { log(entry.key) } }",
1461 );
1462 assert_eq!(out, "[harn] a\n[harn] b");
1463 }
1464
1465 #[test]
1466 fn test_list_any_all() {
1467 let out = run_output(
1468 "pipeline t(task) { let nums = [2, 4, 6]\nlog(nums.any({ x -> x > 5 }))\nlog(nums.all({ x -> x > 0 }))\nlog(nums.all({ x -> x > 3 })) }",
1469 );
1470 assert_eq!(out, "[harn] true\n[harn] true\n[harn] false");
1471 }
1472
1473 #[test]
1474 fn test_disassembly() {
1475 let mut lexer = Lexer::new("pipeline t(task) { log(2 + 3) }");
1476 let tokens = lexer.tokenize().unwrap();
1477 let mut parser = Parser::new(tokens);
1478 let program = parser.parse().unwrap();
1479 let chunk = Compiler::new().compile(&program).unwrap();
1480 let disasm = chunk.disassemble("test");
1481 assert!(disasm.contains("CONSTANT"));
1482 assert!(disasm.contains("ADD"));
1483 assert!(disasm.contains("CALL"));
1484 }
1485
1486 #[test]
1489 fn test_try_catch_basic() {
1490 let out = run_output(
1491 r#"pipeline t(task) { try { throw "oops" } catch(e) { log("caught: " + e) } }"#,
1492 );
1493 assert_eq!(out, "[harn] caught: oops");
1494 }
1495
1496 #[test]
1497 fn test_try_no_error() {
1498 let out = run_output(
1499 r#"pipeline t(task) {
1500var result = 0
1501try { result = 42 } catch(e) { result = 0 }
1502log(result)
1503}"#,
1504 );
1505 assert_eq!(out, "[harn] 42");
1506 }
1507
1508 #[test]
1509 fn test_throw_uncaught() {
1510 let result = run_harn_result(r#"pipeline t(task) { throw "boom" }"#);
1511 assert!(result.is_err());
1512 }
1513
1514 fn run_vm(source: &str) -> String {
1517 let rt = tokio::runtime::Builder::new_current_thread()
1518 .enable_all()
1519 .build()
1520 .unwrap();
1521 rt.block_on(async {
1522 let local = tokio::task::LocalSet::new();
1523 local
1524 .run_until(async {
1525 let mut lexer = Lexer::new(source);
1526 let tokens = lexer.tokenize().unwrap();
1527 let mut parser = Parser::new(tokens);
1528 let program = parser.parse().unwrap();
1529 let chunk = Compiler::new().compile(&program).unwrap();
1530 let mut vm = Vm::new();
1531 register_vm_stdlib(&mut vm);
1532 vm.execute(&chunk).await.unwrap();
1533 vm.output().to_string()
1534 })
1535 .await
1536 })
1537 }
1538
1539 fn run_vm_err(source: &str) -> String {
1540 let rt = tokio::runtime::Builder::new_current_thread()
1541 .enable_all()
1542 .build()
1543 .unwrap();
1544 rt.block_on(async {
1545 let local = tokio::task::LocalSet::new();
1546 local
1547 .run_until(async {
1548 let mut lexer = Lexer::new(source);
1549 let tokens = lexer.tokenize().unwrap();
1550 let mut parser = Parser::new(tokens);
1551 let program = parser.parse().unwrap();
1552 let chunk = Compiler::new().compile(&program).unwrap();
1553 let mut vm = Vm::new();
1554 register_vm_stdlib(&mut vm);
1555 match vm.execute(&chunk).await {
1556 Err(e) => format!("{}", e),
1557 Ok(_) => panic!("Expected error"),
1558 }
1559 })
1560 .await
1561 })
1562 }
1563
1564 #[test]
1565 fn test_hello_world() {
1566 let out = run_vm(r#"pipeline default(task) { log("hello") }"#);
1567 assert_eq!(out, "[harn] hello\n");
1568 }
1569
1570 #[test]
1571 fn test_arithmetic_new() {
1572 let out = run_vm("pipeline default(task) { log(2 + 3) }");
1573 assert_eq!(out, "[harn] 5\n");
1574 }
1575
1576 #[test]
1577 fn test_string_concat_new() {
1578 let out = run_vm(r#"pipeline default(task) { log("a" + "b") }"#);
1579 assert_eq!(out, "[harn] ab\n");
1580 }
1581
1582 #[test]
1583 fn test_if_else_new() {
1584 let out = run_vm("pipeline default(task) { if true { log(1) } else { log(2) } }");
1585 assert_eq!(out, "[harn] 1\n");
1586 }
1587
1588 #[test]
1589 fn test_for_loop_new() {
1590 let out = run_vm("pipeline default(task) { for i in [1, 2, 3] { log(i) } }");
1591 assert_eq!(out, "[harn] 1\n[harn] 2\n[harn] 3\n");
1592 }
1593
1594 #[test]
1595 fn test_while_loop_new() {
1596 let out = run_vm("pipeline default(task) { var i = 0\nwhile i < 3 { log(i)\ni = i + 1 } }");
1597 assert_eq!(out, "[harn] 0\n[harn] 1\n[harn] 2\n");
1598 }
1599
1600 #[test]
1601 fn test_function_call_new() {
1602 let out =
1603 run_vm("pipeline default(task) { fn add(a, b) { return a + b }\nlog(add(2, 3)) }");
1604 assert_eq!(out, "[harn] 5\n");
1605 }
1606
1607 #[test]
1608 fn test_closure_new() {
1609 let out = run_vm("pipeline default(task) { let f = { x -> x * 2 }\nlog(f(5)) }");
1610 assert_eq!(out, "[harn] 10\n");
1611 }
1612
1613 #[test]
1614 fn test_recursion() {
1615 let out = run_vm("pipeline default(task) { fn fact(n) { if n <= 1 { return 1 }\nreturn n * fact(n - 1) }\nlog(fact(5)) }");
1616 assert_eq!(out, "[harn] 120\n");
1617 }
1618
1619 #[test]
1620 fn test_try_catch_new() {
1621 let out = run_vm(r#"pipeline default(task) { try { throw "err" } catch (e) { log(e) } }"#);
1622 assert_eq!(out, "[harn] err\n");
1623 }
1624
1625 #[test]
1626 fn test_try_no_error_new() {
1627 let out = run_vm("pipeline default(task) { try { log(1) } catch (e) { log(2) } }");
1628 assert_eq!(out, "[harn] 1\n");
1629 }
1630
1631 #[test]
1632 fn test_list_map_new() {
1633 let out =
1634 run_vm("pipeline default(task) { let r = [1, 2, 3].map({ x -> x * 2 })\nlog(r) }");
1635 assert_eq!(out, "[harn] [2, 4, 6]\n");
1636 }
1637
1638 #[test]
1639 fn test_list_filter_new() {
1640 let out = run_vm(
1641 "pipeline default(task) { let r = [1, 2, 3, 4].filter({ x -> x > 2 })\nlog(r) }",
1642 );
1643 assert_eq!(out, "[harn] [3, 4]\n");
1644 }
1645
1646 #[test]
1647 fn test_dict_access_new() {
1648 let out = run_vm("pipeline default(task) { let d = {name: \"Alice\"}\nlog(d.name) }");
1649 assert_eq!(out, "[harn] Alice\n");
1650 }
1651
1652 #[test]
1653 fn test_string_interpolation() {
1654 let out = run_vm("pipeline default(task) { let x = 42\nlog(\"val=${x}\") }");
1655 assert_eq!(out, "[harn] val=42\n");
1656 }
1657
1658 #[test]
1659 fn test_match_new() {
1660 let out = run_vm(
1661 "pipeline default(task) { let x = \"b\"\nmatch x { \"a\" -> { log(1) } \"b\" -> { log(2) } } }",
1662 );
1663 assert_eq!(out, "[harn] 2\n");
1664 }
1665
1666 #[test]
1667 fn test_json_roundtrip() {
1668 let out = run_vm("pipeline default(task) { let s = json_stringify({a: 1})\nlog(s) }");
1669 assert!(out.contains("\"a\""));
1670 assert!(out.contains("1"));
1671 }
1672
1673 #[test]
1674 fn test_type_of() {
1675 let out = run_vm("pipeline default(task) { log(type_of(42))\nlog(type_of(\"hi\")) }");
1676 assert_eq!(out, "[harn] int\n[harn] string\n");
1677 }
1678
1679 #[test]
1680 fn test_stack_overflow() {
1681 let err = run_vm_err("pipeline default(task) { fn f() { f() }\nf() }");
1682 assert!(
1683 err.contains("stack") || err.contains("overflow") || err.contains("recursion"),
1684 "Expected stack overflow error, got: {}",
1685 err
1686 );
1687 }
1688
1689 #[test]
1690 fn test_division_by_zero() {
1691 let err = run_vm_err("pipeline default(task) { log(1 / 0) }");
1692 assert!(
1693 err.contains("Division by zero") || err.contains("division"),
1694 "Expected division by zero error, got: {}",
1695 err
1696 );
1697 }
1698
1699 #[test]
1700 fn test_float_division_by_zero_uses_ieee_values() {
1701 let out = run_vm(
1702 "pipeline default(task) { log(is_nan(0.0 / 0.0))\nlog(is_infinite(1.0 / 0.0))\nlog(is_infinite(-1.0 / 0.0)) }",
1703 );
1704 assert_eq!(out, "[harn] true\n[harn] true\n[harn] true\n");
1705 }
1706
1707 #[test]
1708 fn test_reusing_catch_binding_name_in_same_block() {
1709 let out = run_vm(
1710 r#"pipeline default(task) {
1711try {
1712 throw "a"
1713} catch e {
1714 log(e)
1715}
1716try {
1717 throw "b"
1718} catch e {
1719 log(e)
1720}
1721}"#,
1722 );
1723 assert_eq!(out, "[harn] a\n[harn] b\n");
1724 }
1725
1726 #[test]
1727 fn test_try_catch_nested() {
1728 let out = run_output(
1729 r#"pipeline t(task) {
1730try {
1731 try {
1732 throw "inner"
1733 } catch(e) {
1734 log("inner caught: " + e)
1735 throw "outer"
1736 }
1737} catch(e2) {
1738 log("outer caught: " + e2)
1739}
1740}"#,
1741 );
1742 assert_eq!(
1743 out,
1744 "[harn] inner caught: inner\n[harn] outer caught: outer"
1745 );
1746 }
1747
1748 #[test]
1751 fn test_parallel_basic() {
1752 let out = run_output(
1753 "pipeline t(task) { let results = parallel(3) { i -> i * 10 }\nlog(results) }",
1754 );
1755 assert_eq!(out, "[harn] [0, 10, 20]");
1756 }
1757
1758 #[test]
1759 fn test_parallel_no_variable() {
1760 let out = run_output("pipeline t(task) { let results = parallel(3) { 42 }\nlog(results) }");
1761 assert_eq!(out, "[harn] [42, 42, 42]");
1762 }
1763
1764 #[test]
1765 fn test_parallel_map_basic() {
1766 let out = run_output(
1767 "pipeline t(task) { let results = parallel_map([1, 2, 3]) { x -> x * x }\nlog(results) }",
1768 );
1769 assert_eq!(out, "[harn] [1, 4, 9]");
1770 }
1771
1772 #[test]
1773 fn test_spawn_await() {
1774 let out = run_output(
1775 r#"pipeline t(task) {
1776let handle = spawn { log("spawned") }
1777let result = await(handle)
1778log("done")
1779}"#,
1780 );
1781 assert_eq!(out, "[harn] spawned\n[harn] done");
1782 }
1783
1784 #[test]
1785 fn test_spawn_cancel() {
1786 let out = run_output(
1787 r#"pipeline t(task) {
1788let handle = spawn { log("should be cancelled") }
1789cancel(handle)
1790log("cancelled")
1791}"#,
1792 );
1793 assert_eq!(out, "[harn] cancelled");
1794 }
1795
1796 #[test]
1797 fn test_spawn_returns_value() {
1798 let out = run_output("pipeline t(task) { let h = spawn { 42 }\nlet r = await(h)\nlog(r) }");
1799 assert_eq!(out, "[harn] 42");
1800 }
1801
1802 #[test]
1805 fn test_deadline_success() {
1806 let out = run_output(
1807 r#"pipeline t(task) {
1808let result = deadline 5s { log("within deadline")
180942 }
1810log(result)
1811}"#,
1812 );
1813 assert_eq!(out, "[harn] within deadline\n[harn] 42");
1814 }
1815
1816 #[test]
1817 fn test_deadline_exceeded() {
1818 let result = run_harn_result(
1819 r#"pipeline t(task) {
1820deadline 1ms {
1821 var i = 0
1822 while i < 1000000 { i = i + 1 }
1823}
1824}"#,
1825 );
1826 assert!(result.is_err());
1827 }
1828
1829 #[test]
1830 fn test_deadline_caught_by_try() {
1831 let out = run_output(
1832 r#"pipeline t(task) {
1833try {
1834 deadline 1ms {
1835 var i = 0
1836 while i < 1000000 { i = i + 1 }
1837 }
1838} catch(e) {
1839 log("caught")
1840}
1841}"#,
1842 );
1843 assert_eq!(out, "[harn] caught");
1844 }
1845
1846 fn run_harn_with_denied(
1848 source: &str,
1849 denied: HashSet<String>,
1850 ) -> Result<(String, VmValue), VmError> {
1851 let rt = tokio::runtime::Builder::new_current_thread()
1852 .enable_all()
1853 .build()
1854 .unwrap();
1855 rt.block_on(async {
1856 let local = tokio::task::LocalSet::new();
1857 local
1858 .run_until(async {
1859 let mut lexer = Lexer::new(source);
1860 let tokens = lexer.tokenize().unwrap();
1861 let mut parser = Parser::new(tokens);
1862 let program = parser.parse().unwrap();
1863 let chunk = Compiler::new().compile(&program).unwrap();
1864
1865 let mut vm = Vm::new();
1866 register_vm_stdlib(&mut vm);
1867 vm.set_denied_builtins(denied);
1868 let result = vm.execute(&chunk).await?;
1869 Ok((vm.output().to_string(), result))
1870 })
1871 .await
1872 })
1873 }
1874
1875 #[test]
1876 fn test_sandbox_deny_builtin() {
1877 let denied: HashSet<String> = ["push".to_string()].into_iter().collect();
1878 let result = run_harn_with_denied(
1879 r#"pipeline t(task) {
1880let xs = [1, 2]
1881push(xs, 3)
1882}"#,
1883 denied,
1884 );
1885 let err = result.unwrap_err();
1886 let msg = format!("{err}");
1887 assert!(
1888 msg.contains("not permitted"),
1889 "expected not permitted, got: {msg}"
1890 );
1891 assert!(
1892 msg.contains("push"),
1893 "expected builtin name in error, got: {msg}"
1894 );
1895 }
1896
1897 #[test]
1898 fn test_sandbox_allowed_builtin_works() {
1899 let denied: HashSet<String> = ["push".to_string()].into_iter().collect();
1901 let result = run_harn_with_denied(r#"pipeline t(task) { log("hello") }"#, denied);
1902 let (output, _) = result.unwrap();
1903 assert_eq!(output.trim(), "[harn] hello");
1904 }
1905
1906 #[test]
1907 fn test_sandbox_empty_denied_set() {
1908 let result = run_harn_with_denied(r#"pipeline t(task) { log("ok") }"#, HashSet::new());
1910 let (output, _) = result.unwrap();
1911 assert_eq!(output.trim(), "[harn] ok");
1912 }
1913
1914 #[test]
1915 fn test_sandbox_propagates_to_spawn() {
1916 let denied: HashSet<String> = ["push".to_string()].into_iter().collect();
1918 let result = run_harn_with_denied(
1919 r#"pipeline t(task) {
1920let handle = spawn {
1921 let xs = [1, 2]
1922 push(xs, 3)
1923}
1924await(handle)
1925}"#,
1926 denied,
1927 );
1928 let err = result.unwrap_err();
1929 let msg = format!("{err}");
1930 assert!(
1931 msg.contains("not permitted"),
1932 "expected not permitted in spawned VM, got: {msg}"
1933 );
1934 }
1935
1936 #[test]
1937 fn test_sandbox_propagates_to_parallel() {
1938 let denied: HashSet<String> = ["push".to_string()].into_iter().collect();
1940 let result = run_harn_with_denied(
1941 r#"pipeline t(task) {
1942let results = parallel(2) { i ->
1943 let xs = [1, 2]
1944 push(xs, 3)
1945}
1946}"#,
1947 denied,
1948 );
1949 let err = result.unwrap_err();
1950 let msg = format!("{err}");
1951 assert!(
1952 msg.contains("not permitted"),
1953 "expected not permitted in parallel VM, got: {msg}"
1954 );
1955 }
1956
1957 #[test]
1958 fn test_if_else_has_lexical_block_scope() {
1959 let out = run_output(
1960 r#"pipeline t(task) {
1961let x = "outer"
1962if true {
1963 let x = "inner"
1964 log(x)
1965} else {
1966 let x = "other"
1967 log(x)
1968}
1969log(x)
1970}"#,
1971 );
1972 assert_eq!(out, "[harn] inner\n[harn] outer");
1973 }
1974
1975 #[test]
1976 fn test_loop_and_catch_bindings_are_block_scoped() {
1977 let out = run_output(
1978 r#"pipeline t(task) {
1979let label = "outer"
1980for item in [1, 2] {
1981 let label = "loop " + item
1982 log(label)
1983}
1984try {
1985 throw("boom")
1986} catch (label) {
1987 log(label)
1988}
1989log(label)
1990}"#,
1991 );
1992 assert_eq!(
1993 out,
1994 "[harn] loop 1\n[harn] loop 2\n[harn] boom\n[harn] outer"
1995 );
1996 }
1997}