Refactor VM evaluation to use macro
The `eval` and `eval_observed` methods in the `VM` struct were very similar, with the primary difference being the call to the `VMObserver` trait. This commit refactors these methods into a single macro, `dispatch_eval!`, which reduces code duplication and improves maintainability. The `Value::TailCallRequest` variant was also updated to use `Box` for its contents, which helps keep the `Value` enum size consistent. Finally, the benchmarks in the `examples` directory have been updated to reflect minor performance changes resulting from these code modifications.
This commit is contained in:
@@ -1,5 +1,5 @@
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;; Closure Scope Test
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;; Benchmark: 9.0us
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;; Benchmark: 9.4us
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;; Output: 15
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(do
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(def make-adder (fn [x]
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+1
-1
@@ -1,5 +1,5 @@
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;; Complex Data Structure Test
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;; Benchmark: 72.7us
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;; Benchmark: 64.4us
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;; Output: {:input 10, :name "Fibonacci", :output 55}
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(do
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(def fib (fn [n]
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@@ -1,3 +1,4 @@
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;; Benchmark: 25.9us
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;; Output: 36
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(do
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;; Excessive capture test
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+1
-1
@@ -1,5 +1,5 @@
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;; Fibonacci Recursive
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;; Benchmark: 68.3us
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;; Benchmark: 60.3us
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;; Output: 55
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(do
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(def fib (fn [n]
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+1
-1
@@ -1,5 +1,5 @@
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;; Higher-Order Function Example
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;; Benchmark: 8.4us
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;; Benchmark: 8.9us
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;; Output: 25
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(do
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(def apply (fn [f x] (f x)))
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+3
-3
@@ -70,7 +70,7 @@ pub enum Value {
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Function(Rc<dyn Fn(Vec<Value>) -> Value>),
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Object(Rc<dyn Object>), // For compiled Closures and other opaque types
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Cell(Rc<RefCell<Value>>), // Boxed value for captures
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TailCallRequest(Rc<dyn Object>, Vec<Value>), // Internal: For TCO
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TailCallRequest(Box<(Rc<dyn Object>, Vec<Value>)>), // Internal: For TCO (Boxed to keep Value small)
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}
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#[derive(Debug, Clone, PartialEq, Eq, Hash)]
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@@ -146,7 +146,7 @@ impl Value {
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Value::Function { .. } => StaticType::Any, // Dynamic function
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Value::Object(o) => StaticType::Object(o.type_name()),
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Value::Cell(c) => c.borrow().static_type(),
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Value::TailCallRequest(_, _) => panic!("Internal VM state leaked: TailCallRequest"),
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Value::TailCallRequest(_) => panic!("Internal VM state leaked: TailCallRequest"),
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}
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}
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}
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@@ -181,7 +181,7 @@ impl fmt::Display for Value {
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Value::Function(_) => write!(f, "<native fn>"),
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Value::Object(o) => write!(f, "<{}>", o.type_name()),
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Value::Cell(c) => write!(f, "{}", c.borrow()),
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Value::TailCallRequest(_, _) => panic!("Internal VM state leaked: TailCallRequest"),
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Value::TailCallRequest(_) => panic!("Internal VM state leaked: TailCallRequest"),
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}
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}
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}
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+103
-90
@@ -30,8 +30,8 @@ struct CallFrame {
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/// Hook for observing VM execution (zero-cost when O::ACTIVE is false)
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pub trait VMObserver {
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const ACTIVE: bool = false;
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fn before_eval(&mut self, _vm: &VM, _node: &Node<BoundKind, StaticType>, _indent: usize) {}
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fn after_eval(&mut self, _vm: &VM, _node: &Node<BoundKind, StaticType>, _res: &Result<Value, String>, _indent: usize) {}
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fn before_eval(&mut self, _vm: &VM, _node: &Node<BoundKind, StaticType>) {}
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fn after_eval(&mut self, _vm: &VM, _node: &Node<BoundKind, StaticType>, _res: &Result<Value, String>) {}
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}
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/// Default observer that does nothing and should be optimized away
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@@ -41,15 +41,16 @@ impl VMObserver for NoOpObserver {}
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/// Observer that logs the execution tree and scope state
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pub struct TracingObserver {
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pub logs: Vec<String>,
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indent: usize,
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}
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impl TracingObserver {
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pub fn new() -> Self {
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Self { logs: Vec::new() }
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Self { logs: Vec::new(), indent: 0 }
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}
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fn pad(&self, indent: usize) -> String {
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"| ".repeat(indent)
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fn pad(&self) -> String {
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"| ".repeat(self.indent)
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}
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}
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@@ -62,18 +63,20 @@ impl Default for TracingObserver {
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impl VMObserver for TracingObserver {
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const ACTIVE: bool = true;
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fn before_eval(&mut self, _vm: &VM, node: &Node<BoundKind, StaticType>, indent: usize) {
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let pad = self.pad(indent);
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fn before_eval(&mut self, _vm: &VM, node: &Node<BoundKind, StaticType>) {
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let pad = self.pad();
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self.logs.push(format!("{}{} [{}]: {{", pad, node.kind.display_name(), node.ty));
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self.indent += 1;
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}
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fn after_eval(&mut self, vm: &VM, node: &Node<BoundKind, StaticType>, res: &Result<Value, String>, indent: usize) {
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let pad = self.pad(indent);
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fn after_eval(&mut self, vm: &VM, node: &Node<BoundKind, StaticType>, res: &Result<Value, String>) {
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self.indent = self.indent.saturating_sub(1);
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let pad = self.pad();
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// Show scope state on certain nodes (like Delphi ShowScope)
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match &node.kind {
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BoundKind::DefLocal { .. } | BoundKind::Set { .. } | BoundKind::DefGlobal { .. } => {
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let s_pad = self.pad(indent + 1);
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let s_pad = format!("{}| ", pad);
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self.logs.push(format!("{}--- Scope Status ---", s_pad));
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self.logs.push(format!("{}Stack (top 5): {:?}", s_pad, vm.stack.iter().rev().take(5).collect::<Vec<_>>()));
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},
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@@ -94,58 +97,16 @@ pub struct VM {
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frames: Vec<CallFrame>,
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}
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impl VM {
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pub fn new(globals: Rc<RefCell<Vec<Value>>>) -> Self {
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Self {
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stack: Vec::new(),
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globals,
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frames: Vec::new(),
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}
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}
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pub fn run(&mut self, root: &Node<BoundKind, StaticType>) -> Result<Value, String> {
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self.run_with_observer(&mut NoOpObserver, root)
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}
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pub fn run_with_observer<O: VMObserver>(&mut self, observer: &mut O, root: &Node<BoundKind, StaticType>) -> Result<Value, String> {
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self.stack.clear();
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self.frames.clear();
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// Push global script frame
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self.frames.push(CallFrame {
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stack_base: 0,
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closure: None,
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});
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let result = self.eval(observer, 0, root);
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self.frames.pop();
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result
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}
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fn eval<O: VMObserver>(&mut self, observer: &mut O, indent: usize, node: &Node<BoundKind, StaticType>) -> Result<Value, String> {
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if O::ACTIVE {
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observer.before_eval(self, node, indent);
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}
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let result = self.eval_internal(observer, indent, node);
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if O::ACTIVE {
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observer.after_eval(self, node, &result, indent);
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}
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result
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}
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fn eval_internal<O: VMObserver>(&mut self, observer: &mut O, indent: usize, node: &Node<BoundKind, StaticType>) -> Result<Value, String> {
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match &node.kind {
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macro_rules! dispatch_eval {
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($self:ident, $node:ident, $eval_method:ident $(, $observer:ident)?) => {
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match &$node.kind {
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BoundKind::Nop => Ok(Value::Void),
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BoundKind::Constant(v) => Ok(v.clone()),
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BoundKind::DefGlobal { global_index, value } => {
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let val = self.eval(observer, indent + 1, value)?;
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let val = $self.$eval_method($($observer,)? value)?;
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let idx = *global_index as usize;
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let mut globals = self.globals.borrow_mut();
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let mut globals = $self.globals.borrow_mut();
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if idx >= globals.len() {
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globals.resize(idx + 1, Value::Void);
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}
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@@ -153,30 +114,29 @@ impl VM {
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Ok(val)
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},
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BoundKind::Get(addr) => self.get_value(*addr),
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BoundKind::Get(addr) => $self.get_value(*addr),
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BoundKind::Set { addr, value } => {
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let val = self.eval(observer, indent + 1, value)?;
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self.set_value(*addr, val.clone())?;
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let val = $self.$eval_method($($observer,)? value)?;
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$self.set_value(*addr, val.clone())?;
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Ok(val)
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},
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BoundKind::DefLocal { slot, value, captured_by } => {
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let val = self.eval(observer, indent + 1, value)?;
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let val = $self.$eval_method($($observer,)? value)?;
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let final_val = if !captured_by.is_empty() {
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Value::Cell(Rc::new(RefCell::new(val)))
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} else {
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val
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};
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let frame = self.frames.last().ok_or("No call frame")?;
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let frame = $self.frames.last().ok_or("No call frame")?;
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let abs_index = frame.stack_base + (*slot as usize);
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// If it's the exact top of stack, push it. Otherwise, set it.
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if abs_index == self.stack.len() {
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self.stack.push(final_val.clone());
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} else if abs_index < self.stack.len() {
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self.stack[abs_index] = final_val.clone();
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if abs_index == $self.stack.len() {
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$self.stack.push(final_val.clone());
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} else if abs_index < $self.stack.len() {
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$self.stack[abs_index] = final_val.clone();
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} else {
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return Err(format!("Stack gap at local {}", slot));
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}
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@@ -184,11 +144,11 @@ impl VM {
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},
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BoundKind::If { cond, then_br, else_br } => {
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let c = self.eval(observer, indent + 1, cond)?;
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let c = $self.$eval_method($($observer,)? cond)?;
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if c.is_truthy() {
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self.eval(observer, indent + 1, then_br)
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$self.$eval_method($($observer,)? then_br)
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} else if let Some(e) = else_br {
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self.eval(observer, indent + 1, e)
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$self.$eval_method($($observer,)? e)
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} else {
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Ok(Value::Void)
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}
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@@ -197,7 +157,7 @@ impl VM {
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BoundKind::Block { exprs } => {
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let mut last = Value::Void;
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for e in exprs {
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last = self.eval(observer, indent + 1, e)?;
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last = $self.$eval_method($($observer,)? e)?;
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}
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Ok(last)
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},
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@@ -205,7 +165,7 @@ impl VM {
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BoundKind::Lambda { param_count: _, upvalues, body } => {
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let mut captured = Vec::with_capacity(upvalues.len());
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for addr in upvalues {
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captured.push(self.capture_upvalue(*addr)?);
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captured.push($self.capture_upvalue(*addr)?);
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}
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let closure = Closure {
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@@ -217,52 +177,50 @@ impl VM {
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},
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BoundKind::TailCall { callee, args } => {
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let func_val = self.eval(observer, indent + 1, callee)?;
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let func_val = $self.$eval_method($($observer,)? callee)?;
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let mut arg_vals = Vec::with_capacity(args.len());
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for arg in args {
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arg_vals.push(self.eval(observer, indent + 1, arg)?);
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arg_vals.push($self.$eval_method($($observer,)? arg)?);
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}
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match func_val {
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Value::Object(obj) => Ok(Value::TailCallRequest(obj, arg_vals)),
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// Native functions can't be TCO'd this way (they return value directly),
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// so we just execute them and return Value.
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Value::Object(obj) => Ok(Value::TailCallRequest(Box::new((obj, arg_vals)))),
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Value::Function(f) => Ok(f(arg_vals)),
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_ => Err(format!("Tail call target is not a function: {}", func_val)),
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}
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},
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BoundKind::Call { callee, args } => {
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let mut func_val = self.eval(observer, indent + 1, callee)?;
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let mut func_val = $self.$eval_method($($observer,)? callee)?;
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let mut arg_vals = Vec::with_capacity(args.len());
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for arg in args {
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arg_vals.push(self.eval(observer, indent + 1, arg)?);
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arg_vals.push($self.$eval_method($($observer,)? arg)?);
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}
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// Trampoline Loop
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loop {
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match func_val {
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Value::Function(f) => return Ok(f(arg_vals)),
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Value::Object(obj) => {
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if let Some(closure) = obj.as_any().downcast_ref::<Closure>() {
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let old_stack_top = self.stack.len();
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let old_stack_top = $self.stack.len();
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let closure_rc = Rc::new(closure.clone());
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self.stack.extend(arg_vals); // Moves arg_vals into stack
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$self.stack.extend(arg_vals);
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self.frames.push(CallFrame {
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$self.frames.push(CallFrame {
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stack_base: old_stack_top,
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closure: Some(closure_rc.clone()),
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});
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let result = self.eval(observer, indent + 1, &closure.function_node);
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let result = $self.$eval_method($($observer,)? &closure.function_node);
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self.frames.pop();
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self.stack.truncate(old_stack_top);
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$self.frames.pop();
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$self.stack.truncate(old_stack_top);
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match result {
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Ok(Value::TailCallRequest(next_obj, next_args)) => {
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Ok(Value::TailCallRequest(payload)) => {
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let (next_obj, next_args) = *payload;
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func_val = Value::Object(next_obj);
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arg_vals = next_args;
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continue;
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@@ -282,7 +240,7 @@ impl VM {
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BoundKind::Tuple { elements } => {
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let mut vals = Vec::with_capacity(elements.len());
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for e in elements {
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vals.push(self.eval(observer, indent + 1, e)?);
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vals.push($self.$eval_method($($observer,)? e)?);
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}
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Ok(Value::List(Rc::new(vals)))
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},
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@@ -290,8 +248,8 @@ impl VM {
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BoundKind::Map { entries } => {
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let mut map = HashMap::new();
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for (k, v) in entries {
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let key = self.eval(observer, indent + 1, k)?;
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let val = self.eval(observer, indent + 1, v)?;
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let key = $self.$eval_method($($observer,)? k)?;
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let val = $self.$eval_method($($observer,)? v)?;
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if let Value::Keyword(kw) = key {
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map.insert(kw, val);
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@@ -302,8 +260,63 @@ impl VM {
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Ok(Value::Record(Rc::new(map)))
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}
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}
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};
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}
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impl VM {
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pub fn new(globals: Rc<RefCell<Vec<Value>>>) -> Self {
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Self {
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stack: Vec::new(),
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globals,
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frames: Vec::new(),
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}
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}
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pub fn run(&mut self, root: &Node<BoundKind, StaticType>) -> Result<Value, String> {
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self.stack.clear();
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self.frames.clear();
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self.frames.push(CallFrame {
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stack_base: 0,
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closure: None,
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});
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let result = self.eval(root);
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self.frames.pop();
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result
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}
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pub fn run_with_observer<O: VMObserver>(&mut self, observer: &mut O, root: &Node<BoundKind, StaticType>) -> Result<Value, String> {
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self.stack.clear();
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self.frames.clear();
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self.frames.push(CallFrame {
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stack_base: 0,
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closure: None,
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});
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let result = self.eval_observed(observer, root);
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self.frames.pop();
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result
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}
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/// The pure, original, zero-cost hot path.
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#[inline(always)]
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fn eval(&mut self, node: &Node<BoundKind, StaticType>) -> Result<Value, String> {
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dispatch_eval!(self, node, eval)
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}
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/// The observed path for debugging.
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fn eval_observed<O: VMObserver>(&mut self, observer: &mut O, node: &Node<BoundKind, StaticType>) -> Result<Value, String> {
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observer.before_eval(self, node);
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let result = dispatch_eval!(self, node, eval_observed, observer);
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observer.after_eval(self, node, &result);
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result
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}
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fn capture_upvalue(&mut self, addr: Address) -> Result<Rc<RefCell<Value>>, String> {
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match addr {
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Address::Local(idx) => {
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