vm-bytecode #1
@@ -23,7 +23,11 @@ pub struct FunctionProto {
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pub arity: u8,
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pub code: Vec<u8>,
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pub constants: Vec<Value>,
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/// Nested function protos (for closures and function declarations)
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pub protos: Vec<Rc<FunctionProto>>,
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pub upvalue_count: u8,
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/// Upvalue descriptors for this function (for Closure opcode emission)
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pub upvalues: Vec<(bool, u8)>, // (is_local, index)
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pub lines: Vec<(usize, usize)>, // (bytecode_offset, source_line)
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}
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@@ -34,7 +38,9 @@ impl FunctionProto {
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arity: 0,
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code: Vec::new(),
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constants: Vec::new(),
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protos: Vec::new(),
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upvalue_count: 0,
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upvalues: Vec::new(),
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lines: Vec::new(),
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}
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}
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@@ -66,6 +72,7 @@ fn values_eq(a: &Value, b: &Value) -> bool {
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// Compiler
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// ============================================================================
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#[derive(Clone)]
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struct Local {
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name: String,
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depth: u8, // scope depth where declared; 0 = uninitialized
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@@ -73,6 +80,7 @@ struct Local {
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is_const: bool,
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}
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#[derive(Clone)]
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struct Upvalue {
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index: u8,
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is_local: bool, // true = captured from enclosing fn's local; false = from upvalue
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@@ -89,10 +97,12 @@ pub struct Compiler {
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function: FunctionProto,
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locals: Vec<Local>,
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upvalues: Vec<Upvalue>,
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/// Snapshot of enclosing compiler's locals (for upvalue resolution)
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enclosing_locals: Option<Vec<Local>>,
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/// Snapshot of enclosing compiler's upvalues (for transitive upvalues)
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enclosing_upvalues: Option<Vec<Upvalue>>,
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scope_depth: u8,
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loop_stack: Vec<LoopContext>,
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/// Index into an outer compiler array for upvalue resolution
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enclosing_idx: Option<usize>,
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}
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impl Compiler {
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@@ -101,9 +111,10 @@ impl Compiler {
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function: FunctionProto::new(name),
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locals: Vec::new(),
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upvalues: Vec::new(),
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enclosing_locals: None,
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enclosing_upvalues: None,
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scope_depth: 0,
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loop_stack: Vec::new(),
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enclosing_idx: None,
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}
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}
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@@ -159,6 +170,8 @@ impl Compiler {
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}
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Stmt::Function { name, params, body } => {
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self.compile_function_decl(name, params, body)?;
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// DefineGlobal pushes the value back; pop it as this is a statement
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self.emit_op(OpCode::Pop);
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}
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Stmt::Return(expr) => {
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if let Some(e) = expr {
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@@ -181,11 +194,11 @@ impl Compiler {
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fn compile_let(&mut self, name: &str, initializer: &Expr, mutable: bool) -> Result<(), RuntimeError> {
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self.compile_expr(initializer)?;
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if self.scope_depth == 0 {
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// Global variable
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let name_idx = self.add_string_constant(name);
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emit_u16(&mut self.function.code, OpCode::DefineGlobal, name_idx);
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// DefineGlobal pushes value back; pop it for statement-level let
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self.emit_op(OpCode::Pop);
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} else {
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// Local variable
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let slot = self.locals.len() as u8;
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self.locals.push(Local {
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name: name.to_string(),
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@@ -193,6 +206,7 @@ impl Compiler {
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is_captured: false,
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is_const: !mutable,
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});
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// StoreLocal PEEKS the value — it stays on stack as the local
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emit_u8(&mut self.function.code, OpCode::StoreLocal, slot);
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}
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Ok(())
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@@ -304,6 +318,8 @@ impl Compiler {
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is_const: false,
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});
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emit_u8(&mut self.function.code, OpCode::StoreLocal, loop_var_slot);
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// Pop the ForInNext value from stack top (it's stored in the local)
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self.emit_op(OpCode::Pop);
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let start_ip = self.function.code.len();
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@@ -324,7 +340,7 @@ impl Compiler {
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}
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// Jump back to ForInNext
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self.emit_loop_jump(start_ip - 3); // jump back to the ForInNext instruction
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self.emit_loop_jump(exit_jump);
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let exit_ip = self.function.code.len();
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self.patch_jump_to(exit_jump, exit_ip);
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@@ -344,20 +360,9 @@ impl Compiler {
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fn compile_function_decl(&mut self, name: &str, params: &[String], body: &[Stmt]) -> Result<(), RuntimeError> {
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let proto = self.compile_nested_function(Some(name.to_string()), params, body)?;
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let const_idx = self.function.add_constant(Value::Function(Rc::new(
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crate::interpreter::Function {
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params: params.to_vec(),
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body: body.to_vec(),
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env: Rc::new(RefCell::new(crate::interpreter::Env::new(None))),
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name: Some(name.to_string()),
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}
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)));
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// For now, we also need to store the proto for the VM to use.
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// We'll store it as a special constant.
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let upvalues = proto.upvalues.clone();
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let proto_idx = self.add_function_proto_constant(proto);
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// Emit Closure opcode with upvalues
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self.emit_closure(proto_idx);
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self.emit_closure(proto_idx, &upvalues);
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// Bind to name
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if self.scope_depth == 0 {
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@@ -447,17 +452,8 @@ impl Compiler {
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}
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// Try to resolve as upvalue
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if let Some(upvalue_idx) = self.resolve_upvalue(name) {
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// Upvalue access: LoadUpvalue is LoadLocal with slot = upvalue-local-marker
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// For simplicity, we use a convention: upvalues are locals with special marking.
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// Actually, we need a dedicated LoadUpvalue opcode. Let's add it...
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// For now, store upvalues at "local slots" offset by 256.
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emit_u16(&mut self.function.code, OpCode::LoadConst, 0xFFFF); // placeholder
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// We'll handle upvalues properly when we have LoadUpvalue
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// TODO: Add LoadUpvalue opcode
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return Err(RuntimeError::RuntimeError {
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message: format!("Upvalue '{}' not yet supported", name),
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token: None,
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});
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emit_u8(&mut self.function.code, OpCode::LoadUpvalue, upvalue_idx);
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return Ok(());
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}
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// Fall back to global
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let name_idx = self.add_string_constant(name);
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@@ -471,6 +467,8 @@ impl Compiler {
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self.compile_expr(value)?;
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if let Some(slot) = self.resolve_local(name) {
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emit_u8(&mut self.function.code, OpCode::StoreLocal, slot);
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} else if let Some(uv_idx) = self.resolve_upvalue(name) {
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emit_u8(&mut self.function.code, OpCode::StoreUpvalue, uv_idx);
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} else {
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let name_idx = self.add_string_constant(name);
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emit_u16(&mut self.function.code, OpCode::StoreGlobal, name_idx);
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@@ -489,6 +487,14 @@ impl Compiler {
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if let Some(slot) = self.resolve_local(name) {
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emit_u8(&mut self.function.code, OpCode::CompoundAssignLocal, slot);
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self.function.code.push(compound_op as u8);
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} else if self.resolve_upvalue(name).is_some() {
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// Compound assign on upvalue: load upvalue, compound op, store
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// For simplicity, use a workaround: re-emit this as a separate step
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// TODO: add CompoundAssignUpvalue opcode
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return Err(RuntimeError::RuntimeError {
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message: "Compound assignment on upvalue not yet supported".into(),
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token: None,
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});
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} else {
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let name_idx = self.add_string_constant(name);
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emit_u16(&mut self.function.code, OpCode::CompoundAssignProp, name_idx);
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@@ -643,27 +649,27 @@ impl Compiler {
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fn compile_lambda(&mut self, params: &[String], body: &[Stmt]) -> Result<(), RuntimeError> {
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let proto = self.compile_nested_function(None, params, body)?;
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let upvalues = proto.upvalues.clone();
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let proto_idx = self.add_function_proto_constant(proto);
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self.emit_closure(proto_idx);
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self.emit_closure(proto_idx, &upvalues);
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Ok(())
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}
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/// Compile a nested function (lambda or function declaration) and return its proto.
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fn compile_nested_function(&mut self, name: Option<String>, params: &[String], body: &[Stmt]) -> Result<FunctionProto, RuntimeError> {
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let mut child = Compiler::new(name);
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child.enclosing_idx = Some(0); // placeholder — we handle upvalues differently
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// Pass enclosing state for upvalue resolution
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child.enclosing_locals = Some(self.locals.clone());
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child.enclosing_upvalues = Some(self.upvalues.clone());
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// Add params as locals
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// Add params as locals without StoreLocal — they're already on stack from Call
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for param in params {
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let slot = child.locals.len() as u8;
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child.locals.push(Local {
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name: param.clone(),
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depth: 1, // params are at scope depth 1 (function body)
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is_captured: false,
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is_const: false,
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});
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// Params are already on stack from Call; StoreLocal just peeks
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emit_u8(&mut child.function.code, OpCode::StoreLocal, slot);
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}
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child.function.arity = params.len() as u8;
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@@ -676,11 +682,17 @@ impl Compiler {
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child.emit_op(OpCode::LoadNil);
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child.emit_op(OpCode::Return);
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// Resolve upvalues: for each variable reference in the child that wasn't
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// resolved locally, check if it exists in the parent's locals/upvalues.
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// (We handle this lazily in compile_variable for now — if not local, try upvalue.)
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// Mark captured locals in the parent compiler
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for uv in &child.upvalues {
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if uv.is_local {
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if let Some(local) = self.locals.get_mut(uv.index as usize) {
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local.is_captured = true;
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}
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}
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}
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child.function.upvalue_count = child.upvalues.len() as u8;
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child.function.upvalues = child.upvalues.iter().map(|uv| (uv.is_local, uv.index)).collect();
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Ok(child.function)
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}
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@@ -694,16 +706,18 @@ impl Compiler {
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fn end_scope(&mut self) {
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self.scope_depth -= 1;
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// Pop locals that are going out of scope
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// Pop locals that are going out of scope (except captured ones)
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let mut pop_count = 0u8;
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while let Some(local) = self.locals.last() {
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if local.depth > self.scope_depth {
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if local.is_captured {
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// Close upvalue instead of pop
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// (For now, just pop — upvalue closing handled in VM)
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}
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// Don't pop — the upvalue still needs it on the stack
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// The VM will close the upvalue when the function returns
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self.locals.pop();
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} else {
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self.locals.pop();
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pop_count += 1;
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}
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} else {
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break;
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}
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@@ -728,9 +742,24 @@ impl Compiler {
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}
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/// Try to resolve a variable as an upvalue from enclosing functions.
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/// Returns the upvalue index in this function's upvalues list.
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fn resolve_upvalue(&mut self, name: &str) -> Option<u8> {
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// For now, we don't have enclosing compiler access.
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// Upvalues will be fully implemented in a follow-up.
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if let Some(ref enclosing_locals) = self.enclosing_locals {
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for (i, local) in enclosing_locals.iter().enumerate().rev() {
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if local.name == name && local.depth > 0 {
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// Check if we already captured this upvalue
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for (j, uv) in self.upvalues.iter().enumerate() {
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if uv.is_local && uv.index == i as u8 {
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return Some(j as u8);
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}
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}
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let idx = self.upvalues.len() as u8;
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self.upvalues.push(Upvalue { index: i as u8, is_local: true });
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return Some(idx);
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}
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}
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}
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// Transitive upvalues (from enclosing's upvalues) not yet implemented
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None
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}
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@@ -759,13 +788,17 @@ impl Compiler {
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emit_i16(&mut self.function.code, OpCode::Jump, offset as i16);
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}
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fn emit_closure(&mut self, proto_idx: u16) {
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fn emit_closure(&mut self, proto_idx: u16, upvalues: &[(bool, u8)]) {
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let code = &mut self.function.code;
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code.push(OpCode::Closure as u8);
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code.push((proto_idx & 0xFF) as u8);
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code.push(((proto_idx >> 8) & 0xFF) as u8);
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// No upvalues yet
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code.push(0u8); // upvalue count = 0 for now
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let upvalue_count = upvalues.len() as u8;
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code.push(upvalue_count);
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for &(is_local, index) in upvalues {
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code.push(if is_local { 1u8 } else { 0u8 });
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code.push(index);
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}
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}
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fn patch_jump(&mut self, jump_loc: usize) {
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@@ -791,20 +824,10 @@ impl Compiler {
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}
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fn add_function_proto_constant(&mut self, proto: FunctionProto) -> u16 {
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// Store compiled proto as a special marker.
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// We use Value::Nil as placeholder since FunctionProto isn't a Value.
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// The VM will look up the proto from a separate table.
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// For now, store the proto's index in a side table.
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// Actually, let's store it as a string tag that the VM can recognize.
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// We'll use a dedicated proto storage: just append to a Vec.
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// But FunctionProto isn't a Value... let's store it inline.
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// HACK: store proto in constants with a special Object wrapping
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let idx = self.function.constants.len() as u16;
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// Use a Value::Object with a special marker
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// The VM will need to handle this
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let mut map = std::collections::HashMap::new();
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map.insert("__proto__".to_string(), Value::String(format!("proto_{}", idx)));
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self.function.constants.push(Value::Object(Rc::new(RefCell::new(map))));
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let idx = self.function.protos.len() as u16;
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self.function.protos.push(Rc::new(proto));
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// Store proto index as a sentinel value in constants
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self.function.constants.push(Value::Number(f64::from_bits(idx as u64 | 0x_F000_0000_0000_0000)));
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idx
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}
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}
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@@ -20,6 +20,8 @@ pub enum OpCode {
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// --- Local variables (operand: u8 slot index) ---
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LoadLocal = 6,
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StoreLocal = 7,
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LoadUpvalue = 42, // operand: u8 upvalue index
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StoreUpvalue = 43, // operand: u8 upvalue index
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// --- Global variables (operand: u16 index into constant pool for name) ---
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LoadGlobal = 8,
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@@ -80,16 +82,16 @@ pub enum OpCode {
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impl OpCode {
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pub fn from_u8(byte: u8) -> Option<Self> {
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if byte <= 41 {
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// SAFETY: OpCode is #[repr(u8)] with contiguous values 0..=41
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Some(unsafe { std::mem::transmute::<u8, OpCode>(byte) })
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} else {
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None
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match byte {
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0..=41 => Some(unsafe { std::mem::transmute::<u8, OpCode>(byte) }),
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42 => Some(OpCode::LoadUpvalue),
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43 => Some(OpCode::StoreUpvalue),
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_ => None,
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}
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}
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/// Total number of distinct opcodes
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pub const COUNT: usize = 42;
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pub const COUNT: usize = 44;
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}
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/// Compound assignment operator tags (used as operand byte after
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+99
-47
@@ -63,8 +63,8 @@ pub struct Vm {
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/// Open upvalues (tracked so closures share the same upvalue object)
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pub open_upvalues: Vec<Rc<RefCell<UpvalueObj>>>,
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/// Allocated function protos (indexed by the compiler's constant pool index)
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protos: Vec<Rc<FunctionProto>>,
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/// VM-compiled closures: maps Function Rc pointer → Closure data
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closures: RefCell<HashMap<*const crate::interpreter::Function, Rc<Closure>>>,
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}
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impl Vm {
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@@ -85,7 +85,7 @@ impl Vm {
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.map(|p| p.to_string_lossy().to_string())
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.unwrap_or_else(|_| ".".to_string()),
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open_upvalues: Vec::new(),
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protos: Vec::new(),
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closures: RefCell::new(HashMap::new()),
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}
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}
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@@ -133,12 +133,13 @@ impl Vm {
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if ip >= code_len {
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// End of function — implicit return nil
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self.frames.pop();
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let frame = self.frames.pop().unwrap();
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self.close_upvalues(frame.stack_base);
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if self.frames.is_empty() {
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return Ok(());
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}
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let base = self.frames.last().unwrap().stack_base;
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self.stack.truncate(base);
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// Remove callee + args + function locals, push nil result
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self.stack.truncate(frame.stack_base.saturating_sub(1));
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self.stack.push(Value::Nil);
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continue;
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}
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@@ -193,15 +194,51 @@ impl Vm {
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// --- Locals ---
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OpCode::LoadLocal => {
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let slot = read_u8(code, ip) as usize;
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let val = self.stack[self.frame().stack_base + slot].clone();
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let idx = self.frames.last().unwrap().stack_base + slot;
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if idx >= self.stack.len() {
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return Err(RuntimeError::RuntimeError {
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message: format!("LoadLocal: slot {} uninitialized", slot),
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token: None,
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});
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}
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let val = self.stack[idx].clone();
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self.stack.push(val);
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self.advance_ip(SIZE_U8);
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}
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OpCode::StoreLocal => {
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let slot = read_u8(code, ip) as usize;
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let val = self.stack.last().unwrap().clone();
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let val = self.stack.last().unwrap().clone(); // peek
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let base = self.frames.last().unwrap().stack_base;
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self.stack[base + slot] = val;
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let idx = base + slot;
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if idx >= self.stack.len() {
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self.stack.resize(idx + 1, Value::Nil);
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}
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self.stack[idx] = val;
|
||||
self.advance_ip(SIZE_U8);
|
||||
}
|
||||
OpCode::LoadUpvalue => {
|
||||
let idx = read_u8(code, ip) as usize;
|
||||
let uv = Rc::clone(&self.frames.last().unwrap().closure.upvalues[idx]);
|
||||
let uv_ref = uv.borrow();
|
||||
let val = if let Some(ref closed) = uv_ref.closed {
|
||||
closed.clone()
|
||||
} else {
|
||||
self.stack[uv_ref.location].clone()
|
||||
};
|
||||
drop(uv_ref);
|
||||
self.stack.push(val);
|
||||
self.advance_ip(SIZE_U8);
|
||||
}
|
||||
OpCode::StoreUpvalue => {
|
||||
let idx = read_u8(code, ip) as usize;
|
||||
let val = self.stack.last().unwrap().clone(); // peek
|
||||
let uv = Rc::clone(&self.frames.last().unwrap().closure.upvalues[idx]);
|
||||
let mut uv_ref = uv.borrow_mut();
|
||||
if let Some(ref mut closed) = uv_ref.closed {
|
||||
*closed = val;
|
||||
} else {
|
||||
self.stack[uv_ref.location] = val;
|
||||
}
|
||||
self.advance_ip(SIZE_U8);
|
||||
}
|
||||
|
||||
@@ -402,31 +439,34 @@ impl Vm {
|
||||
let result = self.stack.pop().unwrap();
|
||||
let frame = self.frames.pop().unwrap();
|
||||
self.close_upvalues(frame.stack_base);
|
||||
self.stack.truncate(frame.stack_base);
|
||||
// Remove callee + args + function locals, push return value
|
||||
self.stack.truncate(frame.stack_base.saturating_sub(1));
|
||||
self.stack.push(result);
|
||||
if self.frames.is_empty() {
|
||||
return Ok(());
|
||||
}
|
||||
// IP of caller is unchanged (already at next instruction)
|
||||
}
|
||||
OpCode::Closure => {
|
||||
let proto_idx = read_u16(code, ip) as usize;
|
||||
let upvalue_count = code[ip + 3] as usize;
|
||||
let proto = Rc::clone(&self.protos[proto_idx]);
|
||||
let proto = proto.protos.get(proto_idx).ok_or_else(|| RuntimeError::RuntimeError {
|
||||
message: format!("Closure proto index {} out of bounds", proto_idx),
|
||||
token: None,
|
||||
})?.clone();
|
||||
|
||||
// Collect upvalue capture info from bytecode first
|
||||
// Collect upvalue capture info
|
||||
struct UpCapture { is_local: bool, index: usize }
|
||||
let mut captures: Vec<UpCapture> = Vec::new();
|
||||
let mut offset = ip + 4;
|
||||
let mut off = ip + 4;
|
||||
for _ in 0..upvalue_count {
|
||||
let is_local = code[offset] != 0;
|
||||
offset += 1;
|
||||
let index = code[offset] as usize;
|
||||
offset += 1;
|
||||
let is_local = code[off] != 0;
|
||||
off += 1;
|
||||
let index = code[off] as usize;
|
||||
off += 1;
|
||||
captures.push(UpCapture { is_local, index });
|
||||
}
|
||||
|
||||
// Now do the actual captures (no conflicting borrows)
|
||||
// Do the actual captures
|
||||
let base = self.frames.last().unwrap().stack_base;
|
||||
let parent_upvalues = self.frames.last().unwrap().closure.upvalues.clone();
|
||||
let mut upvalues = Vec::new();
|
||||
@@ -439,17 +479,17 @@ impl Vm {
|
||||
}
|
||||
}
|
||||
|
||||
// Store closure (stub for now)
|
||||
let _closure = Rc::new(Closure { proto, upvalues });
|
||||
self.stack.push(Value::Function(Rc::new(
|
||||
crate::interpreter::Function {
|
||||
let closure = Rc::new(Closure { proto, upvalues });
|
||||
let func = Rc::new(crate::interpreter::Function {
|
||||
params: Vec::new(),
|
||||
body: Vec::new(),
|
||||
env: Rc::new(RefCell::new(crate::interpreter::Env::new(None))),
|
||||
name: None,
|
||||
}
|
||||
)));
|
||||
self.advance_ip_to(offset);
|
||||
});
|
||||
let key = Rc::as_ptr(&func) as *const crate::interpreter::Function;
|
||||
self.closures.borrow_mut().insert(key, closure);
|
||||
self.stack.push(Value::Function(func));
|
||||
self.advance_ip_to(off);
|
||||
}
|
||||
|
||||
// --- Object/Array ---
|
||||
@@ -507,9 +547,16 @@ impl Vm {
|
||||
let compound_op = CompoundOp::from_u8(op_tag).unwrap();
|
||||
let rhs = self.stack.pop().unwrap();
|
||||
let base = self.frames.last().unwrap().stack_base;
|
||||
let lhs = self.stack[base + slot].clone();
|
||||
let idx = base + slot;
|
||||
if idx >= self.stack.len() {
|
||||
return Err(RuntimeError::RuntimeError {
|
||||
message: format!("CompoundAssignLocal to uninitialized local {}", slot),
|
||||
token: None,
|
||||
});
|
||||
}
|
||||
let lhs = self.stack[idx].clone();
|
||||
let result = self.apply_compound_op(lhs, rhs, compound_op)?;
|
||||
self.stack[base + slot] = result.clone();
|
||||
self.stack[idx] = result.clone();
|
||||
self.stack.push(result);
|
||||
self.advance_ip(SIZE_U8 + 1);
|
||||
}
|
||||
@@ -570,8 +617,13 @@ impl Vm {
|
||||
let callee_idx = self.stack.len() - 1 - arg_count;
|
||||
let callee = self.stack[callee_idx].clone();
|
||||
|
||||
match callee {
|
||||
Value::NativeFunction(native_fn) => {
|
||||
match &callee {
|
||||
Value::NativeFunction(_) => {
|
||||
// Get the native function
|
||||
let native_fn = match self.stack[callee_idx].clone() {
|
||||
Value::NativeFunction(f) => f,
|
||||
_ => unreachable!(),
|
||||
};
|
||||
// Pop arguments from stack
|
||||
let mut args = Vec::new();
|
||||
for _ in 0..arg_count {
|
||||
@@ -583,27 +635,27 @@ impl Vm {
|
||||
self.stack.push(result);
|
||||
self.advance_ip(SIZE_U8);
|
||||
}
|
||||
Value::Function(f) => {
|
||||
// User-defined function: create new call frame
|
||||
let base = callee_idx; // where the new frame's locals start
|
||||
let new_closure = Rc::new(Closure {
|
||||
proto: Rc::new(FunctionProto::new(f.name.clone())),
|
||||
upvalues: Vec::new(),
|
||||
});
|
||||
Value::Function(_) => {
|
||||
// Look up the VM-compiled closure
|
||||
let func_ptr = match &self.stack[callee_idx] {
|
||||
Value::Function(f) => Rc::as_ptr(f) as *const crate::interpreter::Function,
|
||||
_ => unreachable!(),
|
||||
};
|
||||
let closure = self.closures.borrow().get(&func_ptr).cloned().ok_or_else(|| RuntimeError::RuntimeError {
|
||||
message: "VM: call to non-VM function (tree-walker function not supported in VM)".into(),
|
||||
token: None,
|
||||
})?;
|
||||
|
||||
// Advance caller's IP past the Call instruction before pushing new frame
|
||||
self.frame_mut().ip += SIZE_U8;
|
||||
|
||||
// Callee is at callee_idx, args start at callee_idx+1
|
||||
let base = callee_idx + 1; // first param is here
|
||||
self.frames.push(CallFrame {
|
||||
closure: new_closure,
|
||||
closure,
|
||||
ip: 0,
|
||||
stack_base: base,
|
||||
});
|
||||
// Arguments are already on the stack at the right position
|
||||
// (they become locals 0..arg_count in the new frame)
|
||||
// The callee itself becomes slot 0 (TODO: handle properly)
|
||||
// For now, this is a stub — full function support needs
|
||||
// proper closure/proto integration
|
||||
return Err(RuntimeError::RuntimeError {
|
||||
message: "VM user-defined function calls not yet fully implemented".into(),
|
||||
token: None,
|
||||
});
|
||||
}
|
||||
_ => {
|
||||
return Err(RuntimeError::RuntimeError {
|
||||
|
||||
Reference in New Issue
Block a user