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harn_vm/vm/
dispatch.rs

1use std::future::Future;
2use std::rc::Rc;
3
4use crate::value::{ErrorCategory, VmBuiltinFn, VmClosure, VmError, VmValue};
5use crate::BuiltinId;
6
7use super::{
8    CallArgs, ScopeSpan, Vm, VmBuiltinArity, VmBuiltinDispatch, VmBuiltinEntry, VmBuiltinKind,
9    VmBuiltinMetadata,
10};
11
12impl Vm {
13    fn builtin_span_kind(name: &str) -> Option<crate::tracing::SpanKind> {
14        match name {
15            "llm_call" | "llm_stream" | "llm_stream_call" | "agent_loop" | "agent_turn" => {
16                Some(crate::tracing::SpanKind::LlmCall)
17            }
18            "mcp_call" => Some(crate::tracing::SpanKind::ToolCall),
19            _ => None,
20        }
21    }
22
23    fn is_runtime_context_builtin(name: &str) -> bool {
24        matches!(
25            name,
26            "runtime_context"
27                | "task_current"
28                | "runtime_context_values"
29                | "runtime_context_get"
30                | "runtime_context_set"
31                | "runtime_context_clear"
32        )
33    }
34
35    fn resolve_sync_builtin_id_or_name(
36        &self,
37        direct_id: Option<BuiltinId>,
38        name: &str,
39    ) -> Option<Result<VmBuiltinFn, VmError>> {
40        if crate::autonomy::needs_async_side_effect_enforcement(name)
41            || Self::is_runtime_context_builtin(name)
42        {
43            return None;
44        }
45
46        let dispatch = if let Some(id) = direct_id {
47            self.builtins_by_id
48                .get(&id)
49                .filter(|entry| entry.name.as_ref() == name)
50                .map(|entry| entry.dispatch.clone())
51        } else {
52            None
53        }
54        .or_else(|| {
55            self.builtins
56                .get(name)
57                .cloned()
58                .map(VmBuiltinDispatch::Sync)
59        });
60
61        let Some(dispatch) = dispatch else {
62            if self.async_builtins.contains_key(name) || self.bridge.is_some() {
63                return None;
64            }
65            let all_builtins = self
66                .builtins
67                .keys()
68                .chain(self.async_builtins.keys())
69                .map(|s| s.as_str());
70            return Some(
71                if let Some(suggestion) = crate::value::closest_match(name, all_builtins) {
72                    Err(VmError::Runtime(format!(
73                        "Undefined builtin: {name} (did you mean `{suggestion}`?)"
74                    )))
75                } else {
76                    Err(VmError::UndefinedBuiltin(name.to_string()))
77                },
78            );
79        };
80
81        match dispatch {
82            VmBuiltinDispatch::Sync(builtin) => Some(Ok(builtin)),
83            VmBuiltinDispatch::Async(_) => None,
84        }
85    }
86
87    fn validate_sync_builtin_args(&self, name: &str, args: &[VmValue]) -> Result<(), VmError> {
88        if self.denied_builtins.contains(name) {
89            return Err(VmError::CategorizedError {
90                message: format!("Tool '{name}' is not permitted."),
91                category: ErrorCategory::ToolRejected,
92            });
93        }
94        crate::orchestration::enforce_current_policy_for_builtin(name, args)?;
95        crate::typecheck::validate_builtin_call(name, args, None)
96    }
97
98    fn index_builtin_id(&mut self, name: &str, dispatch: VmBuiltinDispatch) {
99        let id = BuiltinId::from_name(name);
100        if self.builtin_id_collisions.contains(&id) {
101            return;
102        }
103        if let Some(existing) = self.builtins_by_id.get(&id) {
104            if existing.name.as_ref() != name {
105                Rc::make_mut(&mut self.builtins_by_id).remove(&id);
106                Rc::make_mut(&mut self.builtin_id_collisions).insert(id);
107                return;
108            }
109        }
110        Rc::make_mut(&mut self.builtins_by_id).insert(
111            id,
112            VmBuiltinEntry {
113                name: Rc::from(name),
114                dispatch,
115            },
116        );
117    }
118
119    fn refresh_builtin_id(&mut self, name: &str) {
120        if let Some(builtin) = self.builtins.get(name).cloned() {
121            self.index_builtin_id(name, VmBuiltinDispatch::Sync(builtin));
122        } else if let Some(async_builtin) = self.async_builtins.get(name).cloned() {
123            self.index_builtin_id(name, VmBuiltinDispatch::Async(async_builtin));
124        } else {
125            let id = BuiltinId::from_name(name);
126            if self
127                .builtins_by_id
128                .get(&id)
129                .is_some_and(|entry| entry.name.as_ref() == name)
130            {
131                Rc::make_mut(&mut self.builtins_by_id).remove(&id);
132            }
133        }
134    }
135
136    /// Register a sync builtin function.
137    pub fn register_builtin<F>(&mut self, name: &str, f: F)
138    where
139        F: Fn(&[VmValue], &mut String) -> Result<VmValue, VmError> + 'static,
140    {
141        Rc::make_mut(&mut self.builtins).insert(name.to_string(), Rc::new(f));
142        Rc::make_mut(&mut self.builtin_metadata)
143            .insert(name.to_string(), VmBuiltinMetadata::sync(name.to_string()));
144        self.refresh_builtin_id(name);
145    }
146
147    /// Register a sync builtin function with discoverable metadata.
148    pub fn register_builtin_with_metadata<F>(&mut self, metadata: VmBuiltinMetadata, f: F)
149    where
150        F: Fn(&[VmValue], &mut String) -> Result<VmValue, VmError> + 'static,
151    {
152        let name = metadata.name().to_string();
153        Rc::make_mut(&mut self.builtins).insert(name.clone(), Rc::new(f));
154        Rc::make_mut(&mut self.builtin_metadata)
155            .insert(name.clone(), metadata.with_kind(VmBuiltinKind::Sync));
156        self.refresh_builtin_id(&name);
157    }
158
159    /// Register a `VmBuiltinDef` (the shape emitted by `#[harn_builtin]`).
160    /// Registers the primary name plus each declared alias, sharing the
161    /// same handler. `runtime_only` defs skip the parser-side publish (the
162    /// vm-side registration still happens). `parser_only` defs skip the
163    /// vm-side registration entirely (handler is `None`).
164    pub fn register_builtin_def(&mut self, def: &'static crate::stdlib::macros::VmBuiltinDef) {
165        use crate::stdlib::macros::VmBuiltinHandler;
166        if def.parser_only {
167            return;
168        }
169        // Derive arity from the parsed `BuiltinSignature` so the discoverable
170        // metadata layer (harn explain, alignment-test metadata check) keeps
171        // parity with the pre-macro DSL builder.
172        let arity = arity_from_sig(&def.sig);
173        let names = std::iter::once(def.sig.name).chain(def.aliases.iter().copied());
174        for name in names {
175            match def.handler {
176                VmBuiltinHandler::Sync(f) => {
177                    let meta = builtin_def_metadata(def, name, arity, VmBuiltinKind::Sync);
178                    self.register_builtin_with_metadata(meta, f);
179                }
180                VmBuiltinHandler::Async(f) => {
181                    let meta = builtin_def_metadata(def, name, arity, VmBuiltinKind::Async);
182                    // Wrap the function pointer that already returns an
183                    // AsyncBuiltinFuture so register_async_builtin_with_metadata's
184                    // generic bound `F: Fn(Vec<VmValue>) -> Fut + 'static` is met.
185                    self.register_async_builtin_with_metadata(meta, f);
186                }
187                VmBuiltinHandler::None => {
188                    // Parser-only, but reached here despite parser_only=false.
189                    // This is a configuration bug.
190                    panic!(
191                        "VmBuiltinHandler::None for {name:?} without parser_only=true \
192                         on its BuiltinDef"
193                    );
194                }
195            }
196        }
197    }
198
199    /// Remove a sync builtin (so an async version can take precedence).
200    pub fn unregister_builtin(&mut self, name: &str) {
201        Rc::make_mut(&mut self.builtins).remove(name);
202        if self.async_builtins.contains_key(name) {
203            Rc::make_mut(&mut self.builtin_metadata).insert(
204                name.to_string(),
205                VmBuiltinMetadata::async_builtin(name.to_string()),
206            );
207        } else {
208            Rc::make_mut(&mut self.builtin_metadata).remove(name);
209        }
210        self.refresh_builtin_id(name);
211    }
212
213    /// Register an async builtin function.
214    pub fn register_async_builtin<F, Fut>(&mut self, name: &str, f: F)
215    where
216        F: Fn(Vec<VmValue>) -> Fut + 'static,
217        Fut: Future<Output = Result<VmValue, VmError>> + 'static,
218    {
219        Rc::make_mut(&mut self.async_builtins)
220            .insert(name.to_string(), Rc::new(move |args| Box::pin(f(args))));
221        Rc::make_mut(&mut self.builtin_metadata).insert(
222            name.to_string(),
223            VmBuiltinMetadata::async_builtin(name.to_string()),
224        );
225        self.refresh_builtin_id(name);
226    }
227
228    /// Register an async builtin function with discoverable metadata.
229    pub fn register_async_builtin_with_metadata<F, Fut>(
230        &mut self,
231        metadata: VmBuiltinMetadata,
232        f: F,
233    ) where
234        F: Fn(Vec<VmValue>) -> Fut + 'static,
235        Fut: Future<Output = Result<VmValue, VmError>> + 'static,
236    {
237        let name = metadata.name().to_string();
238        Rc::make_mut(&mut self.async_builtins)
239            .insert(name.clone(), Rc::new(move |args| Box::pin(f(args))));
240        Rc::make_mut(&mut self.builtin_metadata)
241            .insert(name.clone(), metadata.with_kind(VmBuiltinKind::Async));
242        self.refresh_builtin_id(&name);
243    }
244
245    pub(crate) fn registered_builtin_id(&self, name: &str) -> Option<BuiltinId> {
246        let id = BuiltinId::from_name(name);
247        if self
248            .builtins_by_id
249            .get(&id)
250            .is_some_and(|entry| entry.name.as_ref() == name)
251        {
252            Some(id)
253        } else {
254            None
255        }
256    }
257
258    /// Invoke a closure inline against the existing VM frame stack.
259    ///
260    /// Dispatch path for every callback-taking method on lists/dicts/sets
261    /// (`.map`, `.filter`, `.reduce`, `.each`, `.sort_by`, …) via
262    /// [`call_callable_value`]. The closure's frame is pushed onto
263    /// `self.frames` using the same machinery as `Op::Call`, and the
264    /// shared dispatch loop ([`Vm::drive_until_frame_depth`]) drains the
265    /// sub-execution back to the caller's depth.
266    ///
267    /// This avoids the per-invocation `Pin<Box<dyn Future>>` heap
268    /// allocation a recursive `async fn` would require — the recursion
269    /// cycle (closure → `.map` → callback → closure) is broken instead at
270    /// [`Vm::call_method`], which keeps a single boxed future per
271    /// method-call site rather than per callback element.
272    ///
273    /// Exception handlers are saved and cleared before the sub-execution
274    /// so an unhandled throw inside the body propagates as a Rust
275    /// `Result::Err` to the caller's dispatch loop. Iterators, deadlines,
276    /// and frames are scoped by `CallFrame::saved_iterator_depth` and the
277    /// per-frame deadline tags.
278    pub(crate) async fn call_closure(
279        &mut self,
280        closure: &VmClosure,
281        args: &[VmValue],
282    ) -> Result<VmValue, VmError> {
283        self.call_closure_args(closure, CallArgs::Slice(args)).await
284    }
285
286    pub(crate) async fn call_closure_args(
287        &mut self,
288        closure: &VmClosure,
289        args: CallArgs<'_>,
290    ) -> Result<VmValue, VmError> {
291        let saved_handlers = std::mem::take(&mut self.exception_handlers);
292        let active_context = (!crate::step_runtime::is_tracked_function(&closure.func.name))
293            .then(crate::step_runtime::take_active_context);
294
295        let target_frame_depth = self.frames.len();
296        let frame_result = self.push_closure_frame_args(closure, &args);
297        drop(args);
298        let result = match frame_result {
299            Ok(()) => self.drive_until_frame_depth(target_frame_depth).await,
300            Err(e) => Err(e),
301        };
302
303        self.exception_handlers = saved_handlers;
304        if let Some(ctx) = active_context {
305            crate::step_runtime::restore_active_context(ctx);
306        }
307
308        result
309    }
310
311    /// Invoke a value as a callable. Supports `VmValue::Closure` and
312    /// `VmValue::BuiltinRef`, so builtin names passed by reference (e.g.
313    /// `dict.rekey(snake_to_camel)`) dispatch through the same code path as
314    /// user-defined closures.
315    pub(crate) async fn call_callable_value(
316        &mut self,
317        callable: &VmValue,
318        args: &[VmValue],
319    ) -> Result<VmValue, VmError> {
320        self.call_callable_args(callable, CallArgs::Slice(args))
321            .await
322    }
323
324    pub(crate) async fn call_callable_owned(
325        &mut self,
326        callable: &VmValue,
327        args: Vec<VmValue>,
328    ) -> Result<VmValue, VmError> {
329        self.call_callable_args(callable, CallArgs::Owned(args))
330            .await
331    }
332
333    pub(crate) async fn call_callable_zero(
334        &mut self,
335        callable: &VmValue,
336    ) -> Result<VmValue, VmError> {
337        self.call_callable_args(callable, CallArgs::Empty).await
338    }
339
340    pub(crate) async fn call_callable_one(
341        &mut self,
342        callable: &VmValue,
343        arg: &VmValue,
344    ) -> Result<VmValue, VmError> {
345        self.call_callable_args(callable, CallArgs::One(arg)).await
346    }
347
348    pub(crate) async fn call_callable_two(
349        &mut self,
350        callable: &VmValue,
351        first: &VmValue,
352        second: &VmValue,
353    ) -> Result<VmValue, VmError> {
354        self.call_callable_args(callable, CallArgs::Two(first, second))
355            .await
356    }
357
358    pub(crate) async fn call_callable_args(
359        &mut self,
360        callable: &VmValue,
361        args: CallArgs<'_>,
362    ) -> Result<VmValue, VmError> {
363        match callable {
364            VmValue::Closure(closure) => self.call_closure_args(closure, args).await,
365            VmValue::BuiltinRef(name) => {
366                if !crate::autonomy::needs_async_side_effect_enforcement(name) {
367                    if let Some(result) = self.call_sync_builtin_by_ref_args(name, &args) {
368                        return result;
369                    }
370                }
371                self.call_named_builtin(name, args.into_vec()).await
372            }
373            VmValue::BuiltinRefId { id, name } => {
374                if let Some(result) =
375                    self.try_call_sync_builtin_id_or_name_args(Some(*id), name, &args)
376                {
377                    return result;
378                }
379                self.call_builtin_id_or_name(*id, name, args.into_vec())
380                    .await
381            }
382            other => Err(VmError::TypeError(format!(
383                "expected callable, got {}",
384                other.type_name()
385            ))),
386        }
387    }
388
389    fn call_sync_builtin_by_ref_args(
390        &mut self,
391        name: &str,
392        args: &CallArgs<'_>,
393    ) -> Option<Result<VmValue, VmError>> {
394        self.try_call_sync_builtin_id_or_name_args(None, name, args)
395    }
396
397    /// Returns true if `v` is callable via `call_callable_value`.
398    pub(crate) fn is_callable_value(v: &VmValue) -> bool {
399        matches!(
400            v,
401            VmValue::Closure(_) | VmValue::BuiltinRef(_) | VmValue::BuiltinRefId { .. }
402        )
403    }
404
405    /// Public wrapper for `call_closure`, used by the MCP server to invoke
406    /// tool handler closures from outside the VM execution loop.
407    pub async fn call_closure_pub(
408        &mut self,
409        closure: &VmClosure,
410        args: &[VmValue],
411    ) -> Result<VmValue, VmError> {
412        self.cancel_grace_instructions_remaining = None;
413        self.call_closure(closure, args).await
414    }
415
416    /// Resolve a named builtin: sync builtins → async builtins → bridge → error.
417    /// Used by Call, TailCall, and Pipe handlers to avoid duplicating this lookup.
418    pub(crate) async fn call_named_builtin(
419        &mut self,
420        name: &str,
421        args: Vec<VmValue>,
422    ) -> Result<VmValue, VmError> {
423        self.call_builtin_impl(name, args, None).await
424    }
425
426    pub(crate) async fn call_builtin_id_or_name(
427        &mut self,
428        id: BuiltinId,
429        name: &str,
430        args: Vec<VmValue>,
431    ) -> Result<VmValue, VmError> {
432        self.call_builtin_impl(name, args, Some(id)).await
433    }
434
435    pub(crate) fn try_call_sync_builtin_id_or_name_args(
436        &mut self,
437        direct_id: Option<BuiltinId>,
438        name: &str,
439        args: &CallArgs<'_>,
440    ) -> Option<Result<VmValue, VmError>> {
441        if self.denied_builtins.contains(name) {
442            return Some(Err(VmError::CategorizedError {
443                message: format!("Tool '{name}' is not permitted."),
444                category: ErrorCategory::ToolRejected,
445            }));
446        }
447        let builtin = match self.resolve_sync_builtin_id_or_name(direct_id, name)? {
448            Ok(builtin) => builtin,
449            Err(error) => return Some(Err(error)),
450        };
451        let _span =
452            Self::builtin_span_kind(name).map(|kind| ScopeSpan::new(kind, name.to_string()));
453        if let Err(error) = args.with_slice(|slice| self.validate_sync_builtin_args(name, slice)) {
454            return Some(Err(error));
455        }
456
457        Some(args.with_slice(|slice| builtin(slice, &mut self.output)))
458    }
459
460    pub(crate) fn try_call_sync_builtin_id_or_name_from_stack_args(
461        &mut self,
462        direct_id: Option<BuiltinId>,
463        name: &str,
464        args_start: usize,
465    ) -> Option<Result<VmValue, VmError>> {
466        if self.denied_builtins.contains(name) {
467            return Some(Err(VmError::CategorizedError {
468                message: format!("Tool '{name}' is not permitted."),
469                category: ErrorCategory::ToolRejected,
470            }));
471        }
472        let builtin = match self.resolve_sync_builtin_id_or_name(direct_id, name)? {
473            Ok(builtin) => builtin,
474            Err(error) => return Some(Err(error)),
475        };
476        if args_start > self.stack.len() {
477            return Some(Err(VmError::Runtime(
478                "call argument stack underflow".to_string(),
479            )));
480        }
481
482        let _span =
483            Self::builtin_span_kind(name).map(|kind| ScopeSpan::new(kind, name.to_string()));
484        let args = &self.stack[args_start..];
485        if let Err(error) = self.validate_sync_builtin_args(name, args) {
486            return Some(Err(error));
487        }
488
489        Some(builtin(args, &mut self.output))
490    }
491
492    async fn call_builtin_impl(
493        &mut self,
494        name: &str,
495        args: Vec<VmValue>,
496        direct_id: Option<BuiltinId>,
497    ) -> Result<VmValue, VmError> {
498        // Auto-trace LLM calls and tool calls.
499        let _span =
500            Self::builtin_span_kind(name).map(|kind| ScopeSpan::new(kind, name.to_string()));
501
502        // Sandbox check: deny builtins blocked by --deny/--allow flags.
503        if self.denied_builtins.contains(name) {
504            return Err(VmError::CategorizedError {
505                message: format!("Tool '{name}' is not permitted."),
506                category: ErrorCategory::ToolRejected,
507            });
508        }
509        let autonomy = if crate::autonomy::needs_async_side_effect_enforcement(name) {
510            crate::autonomy::enforce_builtin_side_effect_boxed(name, &args).await?
511        } else {
512            None
513        };
514        if let Some(crate::autonomy::AutonomyDecision::Skip(value)) = autonomy {
515            return Ok(value);
516        }
517        if !matches!(
518            autonomy,
519            Some(crate::autonomy::AutonomyDecision::AllowApproved)
520        ) {
521            crate::orchestration::enforce_current_policy_for_builtin(name, &args)?;
522        }
523        crate::typecheck::validate_builtin_call(name, &args, None)?;
524
525        if let Some(result) =
526            crate::runtime_context::dispatch_runtime_context_builtin(self, name, &args)
527        {
528            return result;
529        }
530
531        if let Some(id) = direct_id {
532            if let Some(entry) = self.builtins_by_id.get(&id).cloned() {
533                if entry.name.as_ref() == name {
534                    return self.call_builtin_entry(entry.dispatch, args).await;
535                }
536            }
537        }
538
539        if let Some(builtin) = self.builtins.get(name).cloned() {
540            self.call_builtin_entry(VmBuiltinDispatch::Sync(builtin), args)
541                .await
542        } else if let Some(async_builtin) = self.async_builtins.get(name).cloned() {
543            self.call_builtin_entry(VmBuiltinDispatch::Async(async_builtin), args)
544                .await
545        } else if let Some(bridge) = &self.bridge {
546            crate::orchestration::enforce_current_policy_for_bridge_builtin(name)?;
547            let args_json: Vec<serde_json::Value> =
548                args.iter().map(crate::llm::vm_value_to_json).collect();
549            let result = bridge
550                .call(
551                    "builtin_call",
552                    serde_json::json!({"name": name, "args": args_json}),
553                )
554                .await?;
555            Ok(crate::bridge::json_result_to_vm_value(&result))
556        } else {
557            let all_builtins = self
558                .builtins
559                .keys()
560                .chain(self.async_builtins.keys())
561                .map(|s| s.as_str());
562            if let Some(suggestion) = crate::value::closest_match(name, all_builtins) {
563                return Err(VmError::Runtime(format!(
564                    "Undefined builtin: {name} (did you mean `{suggestion}`?)"
565                )));
566            }
567            Err(VmError::UndefinedBuiltin(name.to_string()))
568        }
569    }
570
571    async fn call_builtin_entry(
572        &mut self,
573        dispatch: VmBuiltinDispatch,
574        args: Vec<VmValue>,
575    ) -> Result<VmValue, VmError> {
576        match dispatch {
577            VmBuiltinDispatch::Sync(builtin) => builtin(&args, &mut self.output),
578            VmBuiltinDispatch::Async(async_builtin) => {
579                // Bind a fresh child VM as the async-builtin context for the
580                // duration of this future (cancel-safe task-local scope), then
581                // drain any output VM-side closures forwarded into it back to
582                // the parent. See `vm::async_builtin`.
583                let (result, captured) =
584                    crate::vm::run_async_builtin_with(self.child_vm(), async_builtin(args)).await;
585                if !captured.is_empty() {
586                    self.output.push_str(&captured);
587                }
588                result
589            }
590        }
591    }
592}
593
594/// Build the discoverable [`VmBuiltinMetadata`] for one entry of a
595/// `#[harn_builtin]`-emitted `VmBuiltinDef`, threading the optional
596/// category / doc / signature_text fields without duplicating the chain
597/// across the Sync / Async dispatch arms in `register_builtin_def`.
598fn builtin_def_metadata(
599    def: &'static crate::stdlib::macros::VmBuiltinDef,
600    name: &'static str,
601    arity: VmBuiltinArity,
602    kind: VmBuiltinKind,
603) -> VmBuiltinMetadata {
604    let mut meta = match kind {
605        VmBuiltinKind::Sync => VmBuiltinMetadata::sync_static(name),
606        VmBuiltinKind::Async => VmBuiltinMetadata::async_static(name),
607    }
608    .arity(arity);
609    if let Some(category) = def.category {
610        meta = meta.category_static(category);
611    }
612    if let Some(doc) = def.doc {
613        meta = meta.doc_static(doc);
614    }
615    if let Some(sig_text) = def.signature_text {
616        meta = meta.signature_static(sig_text);
617    } else {
618        // Builtins declared via `sig_expr = …` (a canonical
619        // `harn_builtin_meta::signatures` const) carry no human-typed `sig`
620        // string, so render the parsed signature back through its `Display`
621        // impl. `Display` round-trips through the macro sig grammar (enforced
622        // by the signature-text drift test), so `harn explain` / LSP hover
623        // still surface an accurate, canonical signature.
624        meta = meta.signature_owned(format!("{}", def.sig));
625    }
626    meta
627}
628
629/// Derive a [`VmBuiltinArity`] from a parsed [`BuiltinSignature`]. Required
630/// params count toward the floor; optional params and `has_rest` widen the
631/// ceiling. Returns `Variadic` for `(...args: any)`-shaped sigs that have
632/// no required params, matching how the DSL builder previously declared
633/// `Variadic` explicitly.
634fn arity_from_sig(sig: &harn_builtin_meta::BuiltinSignature) -> VmBuiltinArity {
635    let required = sig.params.iter().filter(|p| !p.optional).count();
636    let total = sig.params.len();
637    if sig.has_rest {
638        if required == 0 {
639            VmBuiltinArity::Variadic
640        } else {
641            VmBuiltinArity::Min(required)
642        }
643    } else if required == total {
644        VmBuiltinArity::Exact(total)
645    } else {
646        VmBuiltinArity::Range {
647            min: required,
648            max: total,
649        }
650    }
651}