1use harn_lexer::StringSegment;
2use harn_parser::{BindingPattern, Node, SNode, TypedParam};
3
4use crate::chunk::{Chunk, CompiledFunction, Constant, Op};
5
6#[derive(Debug)]
8pub struct CompileError {
9 pub message: String,
10 pub line: u32,
11}
12
13impl std::fmt::Display for CompileError {
14 fn fmt(&self, f: &mut std::fmt::Formatter<'_>) -> std::fmt::Result {
15 write!(f, "Compile error at line {}: {}", self.line, self.message)
16 }
17}
18
19impl std::error::Error for CompileError {}
20
21struct LoopContext {
23 start_offset: usize,
25 break_patches: Vec<usize>,
27 has_iterator: bool,
29 handler_depth: usize,
31 finally_depth: usize,
33}
34
35pub struct Compiler {
37 chunk: Chunk,
38 line: u32,
39 column: u32,
40 enum_names: std::collections::HashSet<String>,
42 interface_methods: std::collections::HashMap<String, Vec<String>>,
44 loop_stack: Vec<LoopContext>,
46 handler_depth: usize,
48 finally_bodies: Vec<Vec<SNode>>,
50 temp_counter: usize,
52}
53
54impl Compiler {
55 pub fn new() -> Self {
56 Self {
57 chunk: Chunk::new(),
58 line: 1,
59 column: 1,
60 enum_names: std::collections::HashSet::new(),
61 interface_methods: std::collections::HashMap::new(),
62 loop_stack: Vec::new(),
63 handler_depth: 0,
64 finally_bodies: Vec::new(),
65 temp_counter: 0,
66 }
67 }
68
69 pub fn compile(mut self, program: &[SNode]) -> Result<Chunk, CompileError> {
72 Self::collect_enum_names(program, &mut self.enum_names);
75 self.enum_names.insert("Result".to_string());
77 Self::collect_interface_methods(program, &mut self.interface_methods);
78
79 for sn in program {
81 match &sn.node {
82 Node::ImportDecl { .. } | Node::SelectiveImport { .. } => {
83 self.compile_node(sn)?;
84 }
85 _ => {}
86 }
87 }
88
89 let main = program
91 .iter()
92 .find(|sn| matches!(&sn.node, Node::Pipeline { name, .. } if name == "default"))
93 .or_else(|| {
94 program
95 .iter()
96 .find(|sn| matches!(&sn.node, Node::Pipeline { .. }))
97 });
98
99 if let Some(sn) = main {
100 if let Node::Pipeline { body, extends, .. } = &sn.node {
101 if let Some(parent_name) = extends {
103 self.compile_parent_pipeline(program, parent_name)?;
104 }
105 self.compile_block(body)?;
106 }
107 }
108
109 self.chunk.emit(Op::Nil, self.line);
110 self.chunk.emit(Op::Return, self.line);
111 Ok(self.chunk)
112 }
113
114 pub fn compile_named(
116 mut self,
117 program: &[SNode],
118 pipeline_name: &str,
119 ) -> Result<Chunk, CompileError> {
120 Self::collect_enum_names(program, &mut self.enum_names);
121 Self::collect_interface_methods(program, &mut self.interface_methods);
122
123 for sn in program {
124 if matches!(
125 &sn.node,
126 Node::ImportDecl { .. } | Node::SelectiveImport { .. }
127 ) {
128 self.compile_node(sn)?;
129 }
130 }
131
132 let target = program
133 .iter()
134 .find(|sn| matches!(&sn.node, Node::Pipeline { name, .. } if name == pipeline_name));
135
136 if let Some(sn) = target {
137 if let Node::Pipeline { body, extends, .. } = &sn.node {
138 if let Some(parent_name) = extends {
139 self.compile_parent_pipeline(program, parent_name)?;
140 }
141 self.compile_block(body)?;
142 }
143 }
144
145 self.chunk.emit(Op::Nil, self.line);
146 self.chunk.emit(Op::Return, self.line);
147 Ok(self.chunk)
148 }
149
150 fn compile_parent_pipeline(
152 &mut self,
153 program: &[SNode],
154 parent_name: &str,
155 ) -> Result<(), CompileError> {
156 let parent = program
157 .iter()
158 .find(|sn| matches!(&sn.node, Node::Pipeline { name, .. } if name == parent_name));
159 if let Some(sn) = parent {
160 if let Node::Pipeline { body, extends, .. } = &sn.node {
161 if let Some(grandparent) = extends {
163 self.compile_parent_pipeline(program, grandparent)?;
164 }
165 for stmt in body {
167 self.compile_node(stmt)?;
168 if Self::produces_value(&stmt.node) {
169 self.chunk.emit(Op::Pop, self.line);
170 }
171 }
172 }
173 }
174 Ok(())
175 }
176
177 fn emit_default_preamble(&mut self, params: &[TypedParam]) -> Result<(), CompileError> {
182 for (i, param) in params.iter().enumerate() {
183 if let Some(default_expr) = ¶m.default_value {
184 self.chunk.emit(Op::GetArgc, self.line);
185 let threshold_idx = self.chunk.add_constant(Constant::Int((i + 1) as i64));
186 self.chunk.emit_u16(Op::Constant, threshold_idx, self.line);
187 self.chunk.emit(Op::GreaterEqual, self.line);
189 let skip_jump = self.chunk.emit_jump(Op::JumpIfTrue, self.line);
190 self.chunk.emit(Op::Pop, self.line);
192 self.compile_node(default_expr)?;
194 let name_idx = self
195 .chunk
196 .add_constant(Constant::String(param.name.clone()));
197 self.chunk.emit_u16(Op::DefLet, name_idx, self.line);
198 let end_jump = self.chunk.emit_jump(Op::Jump, self.line);
199 self.chunk.patch_jump(skip_jump);
200 self.chunk.emit(Op::Pop, self.line);
202 self.chunk.patch_jump(end_jump);
203 }
204 }
205 Ok(())
206 }
207
208 fn emit_type_checks(&mut self, params: &[TypedParam]) {
212 for param in params {
213 if let Some(type_expr) = ¶m.type_expr {
214 if let harn_parser::TypeExpr::Shape(fields) = type_expr {
216 let spec = Self::shape_to_spec_string(fields);
217 let fn_idx = self
219 .chunk
220 .add_constant(Constant::String("__assert_shape".into()));
221 self.chunk.emit_u16(Op::Constant, fn_idx, self.line);
222 let var_idx = self
223 .chunk
224 .add_constant(Constant::String(param.name.clone()));
225 self.chunk.emit_u16(Op::GetVar, var_idx, self.line);
226 let name_idx = self
227 .chunk
228 .add_constant(Constant::String(param.name.clone()));
229 self.chunk.emit_u16(Op::Constant, name_idx, self.line);
230 let spec_idx = self.chunk.add_constant(Constant::String(spec));
231 self.chunk.emit_u16(Op::Constant, spec_idx, self.line);
232 self.chunk.emit_u8(Op::Call, 3, self.line);
233 self.chunk.emit(Op::Pop, self.line);
234 continue;
235 }
236
237 if let harn_parser::TypeExpr::Named(name) = type_expr {
239 if let Some(methods) = self.interface_methods.get(name) {
240 let fn_idx = self
241 .chunk
242 .add_constant(Constant::String("__assert_interface".into()));
243 self.chunk.emit_u16(Op::Constant, fn_idx, self.line);
244 let var_idx = self
245 .chunk
246 .add_constant(Constant::String(param.name.clone()));
247 self.chunk.emit_u16(Op::GetVar, var_idx, self.line);
248 let name_idx = self
249 .chunk
250 .add_constant(Constant::String(param.name.clone()));
251 self.chunk.emit_u16(Op::Constant, name_idx, self.line);
252 let iface_idx = self.chunk.add_constant(Constant::String(name.clone()));
253 self.chunk.emit_u16(Op::Constant, iface_idx, self.line);
254 let methods_str = methods.join(",");
255 let methods_idx = self.chunk.add_constant(Constant::String(methods_str));
256 self.chunk.emit_u16(Op::Constant, methods_idx, self.line);
257 self.chunk.emit_u8(Op::Call, 4, self.line);
258 self.chunk.emit(Op::Pop, self.line);
259 continue;
260 }
261 }
262
263 let type_name = Self::type_expr_to_runtime_name(type_expr);
264 if let Some(type_name) = type_name {
265 let var_idx = self
266 .chunk
267 .add_constant(Constant::String(param.name.clone()));
268 let type_idx = self.chunk.add_constant(Constant::String(type_name));
269 self.chunk.emit_u16(Op::CheckType, var_idx, self.line);
270 let hi = (type_idx >> 8) as u8;
272 let lo = type_idx as u8;
273 self.chunk.code.push(hi);
274 self.chunk.code.push(lo);
275 }
276 }
277 }
278 }
279
280 fn shape_to_spec_string(fields: &[harn_parser::ShapeField]) -> String {
283 fields
284 .iter()
285 .map(|f| {
286 let opt = if f.optional { "?" } else { "" };
287 let type_str = Self::type_expr_to_spec(&f.type_expr);
288 format!("{}:{}{}", f.name, opt, type_str)
289 })
290 .collect::<Vec<_>>()
291 .join(",")
292 }
293
294 fn type_expr_to_spec(type_expr: &harn_parser::TypeExpr) -> String {
296 match type_expr {
297 harn_parser::TypeExpr::Named(name) => name.clone(),
298 harn_parser::TypeExpr::Shape(fields) => {
299 let inner = Self::shape_to_spec_string(fields);
300 format!("{{{}}}", inner)
301 }
302 harn_parser::TypeExpr::List(_) => "list".to_string(),
303 harn_parser::TypeExpr::DictType(_, _) => "dict".to_string(),
304 harn_parser::TypeExpr::Union(members) => {
305 members
307 .iter()
308 .map(Self::type_expr_to_spec)
309 .collect::<Vec<_>>()
310 .join("|")
311 }
312 harn_parser::TypeExpr::FnType { .. } => "closure".to_string(),
313 }
314 }
315
316 fn type_expr_to_runtime_name(type_expr: &harn_parser::TypeExpr) -> Option<String> {
318 match type_expr {
319 harn_parser::TypeExpr::Named(name) => match name.as_str() {
320 "int" | "float" | "string" | "bool" | "list" | "dict" | "set" | "nil"
321 | "closure" => Some(name.clone()),
322 _ => None, },
324 _ => None, }
326 }
327
328 fn emit_type_name_extra(&mut self, type_name_idx: u16) {
330 let hi = (type_name_idx >> 8) as u8;
331 let lo = type_name_idx as u8;
332 self.chunk.code.push(hi);
333 self.chunk.code.push(lo);
334 self.chunk.lines.push(self.line);
335 self.chunk.columns.push(self.column);
336 self.chunk.lines.push(self.line);
337 self.chunk.columns.push(self.column);
338 }
339
340 fn compile_try_body(&mut self, body: &[SNode]) -> Result<(), CompileError> {
342 if body.is_empty() {
343 self.chunk.emit(Op::Nil, self.line);
344 } else {
345 self.compile_block(body)?;
346 if !Self::produces_value(&body.last().unwrap().node) {
347 self.chunk.emit(Op::Nil, self.line);
348 }
349 }
350 Ok(())
351 }
352
353 fn compile_catch_binding(&mut self, error_var: &Option<String>) -> Result<(), CompileError> {
355 if let Some(var_name) = error_var {
356 let idx = self.chunk.add_constant(Constant::String(var_name.clone()));
357 self.chunk.emit_u16(Op::DefLet, idx, self.line);
358 } else {
359 self.chunk.emit(Op::Pop, self.line);
360 }
361 Ok(())
362 }
363
364 fn compile_finally_inline(&mut self, finally_body: &[SNode]) -> Result<(), CompileError> {
366 if !finally_body.is_empty() {
367 self.compile_block(finally_body)?;
368 if Self::produces_value(&finally_body.last().unwrap().node) {
370 self.chunk.emit(Op::Pop, self.line);
371 }
372 }
373 Ok(())
374 }
375
376 fn compile_rethrow_with_finally(&mut self, finally_body: &[SNode]) -> Result<(), CompileError> {
378 self.temp_counter += 1;
380 let temp_name = format!("__finally_err_{}__", self.temp_counter);
381 let err_idx = self.chunk.add_constant(Constant::String(temp_name.clone()));
382 self.chunk.emit_u16(Op::DefVar, err_idx, self.line);
383 self.compile_finally_inline(finally_body)?;
384 let get_idx = self.chunk.add_constant(Constant::String(temp_name));
385 self.chunk.emit_u16(Op::GetVar, get_idx, self.line);
386 self.chunk.emit(Op::Throw, self.line);
387 Ok(())
388 }
389
390 fn compile_block(&mut self, stmts: &[SNode]) -> Result<(), CompileError> {
391 for (i, snode) in stmts.iter().enumerate() {
392 self.compile_node(snode)?;
393 let is_last = i == stmts.len() - 1;
394 if is_last {
395 if !Self::produces_value(&snode.node) {
398 self.chunk.emit(Op::Nil, self.line);
399 }
400 } else {
401 if Self::produces_value(&snode.node) {
403 self.chunk.emit(Op::Pop, self.line);
404 }
405 }
406 }
407 Ok(())
408 }
409
410 fn compile_node(&mut self, snode: &SNode) -> Result<(), CompileError> {
411 self.line = snode.span.line as u32;
412 self.column = snode.span.column as u32;
413 self.chunk.set_column(self.column);
414 match &snode.node {
415 Node::IntLiteral(n) => {
416 let idx = self.chunk.add_constant(Constant::Int(*n));
417 self.chunk.emit_u16(Op::Constant, idx, self.line);
418 }
419 Node::FloatLiteral(n) => {
420 let idx = self.chunk.add_constant(Constant::Float(*n));
421 self.chunk.emit_u16(Op::Constant, idx, self.line);
422 }
423 Node::StringLiteral(s) => {
424 let idx = self.chunk.add_constant(Constant::String(s.clone()));
425 self.chunk.emit_u16(Op::Constant, idx, self.line);
426 }
427 Node::BoolLiteral(true) => self.chunk.emit(Op::True, self.line),
428 Node::BoolLiteral(false) => self.chunk.emit(Op::False, self.line),
429 Node::NilLiteral => self.chunk.emit(Op::Nil, self.line),
430 Node::DurationLiteral(ms) => {
431 let idx = self.chunk.add_constant(Constant::Duration(*ms));
432 self.chunk.emit_u16(Op::Constant, idx, self.line);
433 }
434
435 Node::Identifier(name) => {
436 let idx = self.chunk.add_constant(Constant::String(name.clone()));
437 self.chunk.emit_u16(Op::GetVar, idx, self.line);
438 }
439
440 Node::LetBinding { pattern, value, .. } => {
441 self.compile_node(value)?;
442 self.compile_destructuring(pattern, false)?;
443 }
444
445 Node::VarBinding { pattern, value, .. } => {
446 self.compile_node(value)?;
447 self.compile_destructuring(pattern, true)?;
448 }
449
450 Node::Assignment {
451 target, value, op, ..
452 } => {
453 if let Node::Identifier(name) = &target.node {
454 let idx = self.chunk.add_constant(Constant::String(name.clone()));
455 if let Some(op) = op {
456 self.chunk.emit_u16(Op::GetVar, idx, self.line);
457 self.compile_node(value)?;
458 self.emit_compound_op(op)?;
459 self.chunk.emit_u16(Op::SetVar, idx, self.line);
460 } else {
461 self.compile_node(value)?;
462 self.chunk.emit_u16(Op::SetVar, idx, self.line);
463 }
464 } else if let Node::PropertyAccess { object, property } = &target.node {
465 if let Some(var_name) = self.root_var_name(object) {
467 let var_idx = self.chunk.add_constant(Constant::String(var_name.clone()));
468 let prop_idx = self.chunk.add_constant(Constant::String(property.clone()));
469 if let Some(op) = op {
470 self.compile_node(target)?; self.compile_node(value)?;
473 self.emit_compound_op(op)?;
474 } else {
475 self.compile_node(value)?;
476 }
477 self.chunk.emit_u16(Op::SetProperty, prop_idx, self.line);
480 let hi = (var_idx >> 8) as u8;
482 let lo = var_idx as u8;
483 self.chunk.code.push(hi);
484 self.chunk.code.push(lo);
485 self.chunk.lines.push(self.line);
486 self.chunk.columns.push(self.column);
487 self.chunk.lines.push(self.line);
488 self.chunk.columns.push(self.column);
489 }
490 } else if let Node::SubscriptAccess { object, index } = &target.node {
491 if let Some(var_name) = self.root_var_name(object) {
493 let var_idx = self.chunk.add_constant(Constant::String(var_name.clone()));
494 if let Some(op) = op {
495 self.compile_node(target)?;
496 self.compile_node(value)?;
497 self.emit_compound_op(op)?;
498 } else {
499 self.compile_node(value)?;
500 }
501 self.compile_node(index)?;
502 self.chunk.emit_u16(Op::SetSubscript, var_idx, self.line);
503 }
504 }
505 }
506
507 Node::BinaryOp { op, left, right } => {
508 match op.as_str() {
510 "&&" => {
511 self.compile_node(left)?;
512 let jump = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
513 self.chunk.emit(Op::Pop, self.line);
514 self.compile_node(right)?;
515 self.chunk.patch_jump(jump);
516 self.chunk.emit(Op::Not, self.line);
518 self.chunk.emit(Op::Not, self.line);
519 return Ok(());
520 }
521 "||" => {
522 self.compile_node(left)?;
523 let jump = self.chunk.emit_jump(Op::JumpIfTrue, self.line);
524 self.chunk.emit(Op::Pop, self.line);
525 self.compile_node(right)?;
526 self.chunk.patch_jump(jump);
527 self.chunk.emit(Op::Not, self.line);
528 self.chunk.emit(Op::Not, self.line);
529 return Ok(());
530 }
531 "??" => {
532 self.compile_node(left)?;
533 self.chunk.emit(Op::Dup, self.line);
534 self.chunk.emit(Op::Nil, self.line);
536 self.chunk.emit(Op::NotEqual, self.line);
537 let jump = self.chunk.emit_jump(Op::JumpIfTrue, self.line);
538 self.chunk.emit(Op::Pop, self.line); self.chunk.emit(Op::Pop, self.line); self.compile_node(right)?;
541 let end = self.chunk.emit_jump(Op::Jump, self.line);
542 self.chunk.patch_jump(jump);
543 self.chunk.emit(Op::Pop, self.line); self.chunk.patch_jump(end);
545 return Ok(());
546 }
547 "|>" => {
548 self.compile_node(left)?;
549 if contains_pipe_placeholder(right) {
552 let replaced = replace_pipe_placeholder(right);
553 let closure_node = SNode::dummy(Node::Closure {
554 params: vec![TypedParam {
555 name: "__pipe".into(),
556 type_expr: None,
557 default_value: None,
558 }],
559 body: vec![replaced],
560 });
561 self.compile_node(&closure_node)?;
562 } else {
563 self.compile_node(right)?;
564 }
565 self.chunk.emit(Op::Pipe, self.line);
566 return Ok(());
567 }
568 _ => {}
569 }
570
571 self.compile_node(left)?;
572 self.compile_node(right)?;
573 match op.as_str() {
574 "+" => self.chunk.emit(Op::Add, self.line),
575 "-" => self.chunk.emit(Op::Sub, self.line),
576 "*" => self.chunk.emit(Op::Mul, self.line),
577 "/" => self.chunk.emit(Op::Div, self.line),
578 "%" => self.chunk.emit(Op::Mod, self.line),
579 "==" => self.chunk.emit(Op::Equal, self.line),
580 "!=" => self.chunk.emit(Op::NotEqual, self.line),
581 "<" => self.chunk.emit(Op::Less, self.line),
582 ">" => self.chunk.emit(Op::Greater, self.line),
583 "<=" => self.chunk.emit(Op::LessEqual, self.line),
584 ">=" => self.chunk.emit(Op::GreaterEqual, self.line),
585 _ => {
586 return Err(CompileError {
587 message: format!("Unknown operator: {op}"),
588 line: self.line,
589 })
590 }
591 }
592 }
593
594 Node::UnaryOp { op, operand } => {
595 self.compile_node(operand)?;
596 match op.as_str() {
597 "-" => self.chunk.emit(Op::Negate, self.line),
598 "!" => self.chunk.emit(Op::Not, self.line),
599 _ => {}
600 }
601 }
602
603 Node::Ternary {
604 condition,
605 true_expr,
606 false_expr,
607 } => {
608 self.compile_node(condition)?;
609 let else_jump = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
610 self.chunk.emit(Op::Pop, self.line);
611 self.compile_node(true_expr)?;
612 let end_jump = self.chunk.emit_jump(Op::Jump, self.line);
613 self.chunk.patch_jump(else_jump);
614 self.chunk.emit(Op::Pop, self.line);
615 self.compile_node(false_expr)?;
616 self.chunk.patch_jump(end_jump);
617 }
618
619 Node::FunctionCall { name, args } => {
620 let has_spread = args.iter().any(|a| matches!(&a.node, Node::Spread(_)));
621 let name_idx = self.chunk.add_constant(Constant::String(name.clone()));
623 self.chunk.emit_u16(Op::Constant, name_idx, self.line);
624
625 if has_spread {
626 self.chunk.emit_u16(Op::BuildList, 0, self.line);
629 let mut pending = 0u16;
630 for arg in args {
631 if let Node::Spread(inner) = &arg.node {
632 if pending > 0 {
633 self.chunk.emit_u16(Op::BuildList, pending, self.line);
634 self.chunk.emit(Op::Add, self.line);
635 pending = 0;
636 }
637 self.compile_node(inner)?;
638 self.chunk.emit(Op::Dup, self.line);
639 let assert_idx = self
640 .chunk
641 .add_constant(Constant::String("__assert_list".into()));
642 self.chunk.emit_u16(Op::Constant, assert_idx, self.line);
643 self.chunk.emit(Op::Swap, self.line);
644 self.chunk.emit_u8(Op::Call, 1, self.line);
645 self.chunk.emit(Op::Pop, self.line);
646 self.chunk.emit(Op::Add, self.line);
647 } else {
648 self.compile_node(arg)?;
649 pending += 1;
650 }
651 }
652 if pending > 0 {
653 self.chunk.emit_u16(Op::BuildList, pending, self.line);
654 self.chunk.emit(Op::Add, self.line);
655 }
656 self.chunk.emit(Op::CallSpread, self.line);
657 } else {
658 for arg in args {
660 self.compile_node(arg)?;
661 }
662 self.chunk.emit_u8(Op::Call, args.len() as u8, self.line);
663 }
664 }
665
666 Node::MethodCall {
667 object,
668 method,
669 args,
670 } => {
671 if let Node::Identifier(name) = &object.node {
673 if self.enum_names.contains(name) {
674 for arg in args {
676 self.compile_node(arg)?;
677 }
678 let enum_idx = self.chunk.add_constant(Constant::String(name.clone()));
679 let var_idx = self.chunk.add_constant(Constant::String(method.clone()));
680 self.chunk.emit_u16(Op::BuildEnum, enum_idx, self.line);
681 let hi = (var_idx >> 8) as u8;
682 let lo = var_idx as u8;
683 self.chunk.code.push(hi);
684 self.chunk.code.push(lo);
685 self.chunk.lines.push(self.line);
686 self.chunk.columns.push(self.column);
687 self.chunk.lines.push(self.line);
688 self.chunk.columns.push(self.column);
689 let fc = args.len() as u16;
690 let fhi = (fc >> 8) as u8;
691 let flo = fc as u8;
692 self.chunk.code.push(fhi);
693 self.chunk.code.push(flo);
694 self.chunk.lines.push(self.line);
695 self.chunk.columns.push(self.column);
696 self.chunk.lines.push(self.line);
697 self.chunk.columns.push(self.column);
698 return Ok(());
699 }
700 }
701 let has_spread = args.iter().any(|a| matches!(&a.node, Node::Spread(_)));
702 self.compile_node(object)?;
703 let name_idx = self.chunk.add_constant(Constant::String(method.clone()));
704 if has_spread {
705 self.chunk.emit_u16(Op::BuildList, 0, self.line);
707 let mut pending = 0u16;
708 for arg in args {
709 if let Node::Spread(inner) = &arg.node {
710 if pending > 0 {
711 self.chunk.emit_u16(Op::BuildList, pending, self.line);
712 self.chunk.emit(Op::Add, self.line);
713 pending = 0;
714 }
715 self.compile_node(inner)?;
716 self.chunk.emit(Op::Dup, self.line);
717 let assert_idx = self
718 .chunk
719 .add_constant(Constant::String("__assert_list".into()));
720 self.chunk.emit_u16(Op::Constant, assert_idx, self.line);
721 self.chunk.emit(Op::Swap, self.line);
722 self.chunk.emit_u8(Op::Call, 1, self.line);
723 self.chunk.emit(Op::Pop, self.line);
724 self.chunk.emit(Op::Add, self.line);
725 } else {
726 self.compile_node(arg)?;
727 pending += 1;
728 }
729 }
730 if pending > 0 {
731 self.chunk.emit_u16(Op::BuildList, pending, self.line);
732 self.chunk.emit(Op::Add, self.line);
733 }
734 self.chunk
735 .emit_u16(Op::MethodCallSpread, name_idx, self.line);
736 } else {
737 for arg in args {
738 self.compile_node(arg)?;
739 }
740 self.chunk
741 .emit_method_call(name_idx, args.len() as u8, self.line);
742 }
743 }
744
745 Node::OptionalMethodCall {
746 object,
747 method,
748 args,
749 } => {
750 self.compile_node(object)?;
751 for arg in args {
752 self.compile_node(arg)?;
753 }
754 let name_idx = self.chunk.add_constant(Constant::String(method.clone()));
755 self.chunk
756 .emit_method_call_opt(name_idx, args.len() as u8, self.line);
757 }
758
759 Node::PropertyAccess { object, property } => {
760 if let Node::Identifier(name) = &object.node {
762 if self.enum_names.contains(name) {
763 let enum_idx = self.chunk.add_constant(Constant::String(name.clone()));
765 let var_idx = self.chunk.add_constant(Constant::String(property.clone()));
766 self.chunk.emit_u16(Op::BuildEnum, enum_idx, self.line);
767 let hi = (var_idx >> 8) as u8;
768 let lo = var_idx as u8;
769 self.chunk.code.push(hi);
770 self.chunk.code.push(lo);
771 self.chunk.lines.push(self.line);
772 self.chunk.columns.push(self.column);
773 self.chunk.lines.push(self.line);
774 self.chunk.columns.push(self.column);
775 self.chunk.code.push(0);
777 self.chunk.code.push(0);
778 self.chunk.lines.push(self.line);
779 self.chunk.columns.push(self.column);
780 self.chunk.lines.push(self.line);
781 self.chunk.columns.push(self.column);
782 return Ok(());
783 }
784 }
785 self.compile_node(object)?;
786 let idx = self.chunk.add_constant(Constant::String(property.clone()));
787 self.chunk.emit_u16(Op::GetProperty, idx, self.line);
788 }
789
790 Node::OptionalPropertyAccess { object, property } => {
791 self.compile_node(object)?;
792 let idx = self.chunk.add_constant(Constant::String(property.clone()));
793 self.chunk.emit_u16(Op::GetPropertyOpt, idx, self.line);
794 }
795
796 Node::SubscriptAccess { object, index } => {
797 self.compile_node(object)?;
798 self.compile_node(index)?;
799 self.chunk.emit(Op::Subscript, self.line);
800 }
801
802 Node::SliceAccess { object, start, end } => {
803 self.compile_node(object)?;
804 if let Some(s) = start {
805 self.compile_node(s)?;
806 } else {
807 self.chunk.emit(Op::Nil, self.line);
808 }
809 if let Some(e) = end {
810 self.compile_node(e)?;
811 } else {
812 self.chunk.emit(Op::Nil, self.line);
813 }
814 self.chunk.emit(Op::Slice, self.line);
815 }
816
817 Node::IfElse {
818 condition,
819 then_body,
820 else_body,
821 } => {
822 self.compile_node(condition)?;
823 let else_jump = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
824 self.chunk.emit(Op::Pop, self.line);
825 self.compile_block(then_body)?;
826 if let Some(else_body) = else_body {
827 let end_jump = self.chunk.emit_jump(Op::Jump, self.line);
828 self.chunk.patch_jump(else_jump);
829 self.chunk.emit(Op::Pop, self.line);
830 self.compile_block(else_body)?;
831 self.chunk.patch_jump(end_jump);
832 } else {
833 self.chunk.patch_jump(else_jump);
834 self.chunk.emit(Op::Pop, self.line);
835 self.chunk.emit(Op::Nil, self.line);
836 }
837 }
838
839 Node::WhileLoop { condition, body } => {
840 let loop_start = self.chunk.current_offset();
841 self.loop_stack.push(LoopContext {
842 start_offset: loop_start,
843 break_patches: Vec::new(),
844 has_iterator: false,
845 handler_depth: self.handler_depth,
846 finally_depth: self.finally_bodies.len(),
847 });
848 self.compile_node(condition)?;
849 let exit_jump = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
850 self.chunk.emit(Op::Pop, self.line); for sn in body {
853 self.compile_node(sn)?;
854 if Self::produces_value(&sn.node) {
855 self.chunk.emit(Op::Pop, self.line);
856 }
857 }
858 self.chunk.emit_u16(Op::Jump, loop_start as u16, self.line);
860 self.chunk.patch_jump(exit_jump);
861 self.chunk.emit(Op::Pop, self.line); let ctx = self.loop_stack.pop().unwrap();
864 for patch_pos in ctx.break_patches {
865 self.chunk.patch_jump(patch_pos);
866 }
867 self.chunk.emit(Op::Nil, self.line);
868 }
869
870 Node::ForIn {
871 pattern,
872 iterable,
873 body,
874 } => {
875 self.compile_node(iterable)?;
877 self.chunk.emit(Op::IterInit, self.line);
879 let loop_start = self.chunk.current_offset();
880 self.loop_stack.push(LoopContext {
881 start_offset: loop_start,
882 break_patches: Vec::new(),
883 has_iterator: true,
884 handler_depth: self.handler_depth,
885 finally_depth: self.finally_bodies.len(),
886 });
887 let exit_jump_pos = self.chunk.emit_jump(Op::IterNext, self.line);
889 self.compile_destructuring(pattern, true)?;
891 for sn in body {
893 self.compile_node(sn)?;
894 if Self::produces_value(&sn.node) {
895 self.chunk.emit(Op::Pop, self.line);
896 }
897 }
898 self.chunk.emit_u16(Op::Jump, loop_start as u16, self.line);
900 self.chunk.patch_jump(exit_jump_pos);
901 let ctx = self.loop_stack.pop().unwrap();
903 for patch_pos in ctx.break_patches {
904 self.chunk.patch_jump(patch_pos);
905 }
906 self.chunk.emit(Op::Nil, self.line);
908 }
909
910 Node::ReturnStmt { value } => {
911 let has_pending_finally = !self.finally_bodies.is_empty();
912
913 if has_pending_finally {
914 if let Some(val) = value {
917 self.compile_node(val)?;
918 } else {
919 self.chunk.emit(Op::Nil, self.line);
920 }
921 self.temp_counter += 1;
922 let temp_name = format!("__return_val_{}__", self.temp_counter);
923 let save_idx = self.chunk.add_constant(Constant::String(temp_name.clone()));
924 self.chunk.emit_u16(Op::DefVar, save_idx, self.line);
925 let finallys: Vec<_> = self.finally_bodies.iter().rev().cloned().collect();
927 for fb in &finallys {
928 self.compile_finally_inline(fb)?;
929 }
930 let restore_idx = self.chunk.add_constant(Constant::String(temp_name));
931 self.chunk.emit_u16(Op::GetVar, restore_idx, self.line);
932 self.chunk.emit(Op::Return, self.line);
933 } else {
934 if let Some(val) = value {
936 if let Node::FunctionCall { name, args } = &val.node {
937 let name_idx = self.chunk.add_constant(Constant::String(name.clone()));
938 self.chunk.emit_u16(Op::Constant, name_idx, self.line);
939 for arg in args {
940 self.compile_node(arg)?;
941 }
942 self.chunk
943 .emit_u8(Op::TailCall, args.len() as u8, self.line);
944 } else if let Node::BinaryOp { op, left, right } = &val.node {
945 if op == "|>" {
946 self.compile_node(left)?;
947 self.compile_node(right)?;
948 self.chunk.emit(Op::Swap, self.line);
949 self.chunk.emit_u8(Op::TailCall, 1, self.line);
950 } else {
951 self.compile_node(val)?;
952 }
953 } else {
954 self.compile_node(val)?;
955 }
956 } else {
957 self.chunk.emit(Op::Nil, self.line);
958 }
959 self.chunk.emit(Op::Return, self.line);
960 }
961 }
962
963 Node::BreakStmt => {
964 if self.loop_stack.is_empty() {
965 return Err(CompileError {
966 message: "break outside of loop".to_string(),
967 line: self.line,
968 });
969 }
970 let ctx = self.loop_stack.last().unwrap();
972 let finally_depth = ctx.finally_depth;
973 let handler_depth = ctx.handler_depth;
974 let has_iterator = ctx.has_iterator;
975 for _ in handler_depth..self.handler_depth {
977 self.chunk.emit(Op::PopHandler, self.line);
978 }
979 if self.finally_bodies.len() > finally_depth {
981 let finallys: Vec<_> = self.finally_bodies[finally_depth..]
982 .iter()
983 .rev()
984 .cloned()
985 .collect();
986 for fb in &finallys {
987 self.compile_finally_inline(fb)?;
988 }
989 }
990 if has_iterator {
991 self.chunk.emit(Op::PopIterator, self.line);
992 }
993 let patch = self.chunk.emit_jump(Op::Jump, self.line);
994 self.loop_stack
995 .last_mut()
996 .unwrap()
997 .break_patches
998 .push(patch);
999 }
1000
1001 Node::ContinueStmt => {
1002 if self.loop_stack.is_empty() {
1003 return Err(CompileError {
1004 message: "continue outside of loop".to_string(),
1005 line: self.line,
1006 });
1007 }
1008 let ctx = self.loop_stack.last().unwrap();
1009 let finally_depth = ctx.finally_depth;
1010 let handler_depth = ctx.handler_depth;
1011 let loop_start = ctx.start_offset;
1012 for _ in handler_depth..self.handler_depth {
1013 self.chunk.emit(Op::PopHandler, self.line);
1014 }
1015 if self.finally_bodies.len() > finally_depth {
1016 let finallys: Vec<_> = self.finally_bodies[finally_depth..]
1017 .iter()
1018 .rev()
1019 .cloned()
1020 .collect();
1021 for fb in &finallys {
1022 self.compile_finally_inline(fb)?;
1023 }
1024 }
1025 self.chunk.emit_u16(Op::Jump, loop_start as u16, self.line);
1026 }
1027
1028 Node::ListLiteral(elements) => {
1029 let has_spread = elements.iter().any(|e| matches!(&e.node, Node::Spread(_)));
1030 if !has_spread {
1031 for el in elements {
1032 self.compile_node(el)?;
1033 }
1034 self.chunk
1035 .emit_u16(Op::BuildList, elements.len() as u16, self.line);
1036 } else {
1037 self.chunk.emit_u16(Op::BuildList, 0, self.line);
1040 let mut pending = 0u16;
1041 for el in elements {
1042 if let Node::Spread(inner) = &el.node {
1043 if pending > 0 {
1045 self.chunk.emit_u16(Op::BuildList, pending, self.line);
1046 self.chunk.emit(Op::Add, self.line);
1048 pending = 0;
1049 }
1050 self.compile_node(inner)?;
1052 self.chunk.emit(Op::Dup, self.line);
1053 let assert_idx = self
1054 .chunk
1055 .add_constant(Constant::String("__assert_list".into()));
1056 self.chunk.emit_u16(Op::Constant, assert_idx, self.line);
1057 self.chunk.emit(Op::Swap, self.line);
1058 self.chunk.emit_u8(Op::Call, 1, self.line);
1059 self.chunk.emit(Op::Pop, self.line);
1060 self.chunk.emit(Op::Add, self.line);
1061 } else {
1062 self.compile_node(el)?;
1063 pending += 1;
1064 }
1065 }
1066 if pending > 0 {
1067 self.chunk.emit_u16(Op::BuildList, pending, self.line);
1068 self.chunk.emit(Op::Add, self.line);
1069 }
1070 }
1071 }
1072
1073 Node::DictLiteral(entries) => {
1074 let has_spread = entries
1075 .iter()
1076 .any(|e| matches!(&e.value.node, Node::Spread(_)));
1077 if !has_spread {
1078 for entry in entries {
1079 self.compile_node(&entry.key)?;
1080 self.compile_node(&entry.value)?;
1081 }
1082 self.chunk
1083 .emit_u16(Op::BuildDict, entries.len() as u16, self.line);
1084 } else {
1085 self.chunk.emit_u16(Op::BuildDict, 0, self.line);
1087 let mut pending = 0u16;
1088 for entry in entries {
1089 if let Node::Spread(inner) = &entry.value.node {
1090 if pending > 0 {
1092 self.chunk.emit_u16(Op::BuildDict, pending, self.line);
1093 self.chunk.emit(Op::Add, self.line);
1094 pending = 0;
1095 }
1096 self.compile_node(inner)?;
1098 self.chunk.emit(Op::Dup, self.line);
1099 let assert_idx = self
1100 .chunk
1101 .add_constant(Constant::String("__assert_dict".into()));
1102 self.chunk.emit_u16(Op::Constant, assert_idx, self.line);
1103 self.chunk.emit(Op::Swap, self.line);
1104 self.chunk.emit_u8(Op::Call, 1, self.line);
1105 self.chunk.emit(Op::Pop, self.line);
1106 self.chunk.emit(Op::Add, self.line);
1107 } else {
1108 self.compile_node(&entry.key)?;
1109 self.compile_node(&entry.value)?;
1110 pending += 1;
1111 }
1112 }
1113 if pending > 0 {
1114 self.chunk.emit_u16(Op::BuildDict, pending, self.line);
1115 self.chunk.emit(Op::Add, self.line);
1116 }
1117 }
1118 }
1119
1120 Node::InterpolatedString(segments) => {
1121 let mut part_count = 0u16;
1122 for seg in segments {
1123 match seg {
1124 StringSegment::Literal(s) => {
1125 let idx = self.chunk.add_constant(Constant::String(s.clone()));
1126 self.chunk.emit_u16(Op::Constant, idx, self.line);
1127 part_count += 1;
1128 }
1129 StringSegment::Expression(expr_str) => {
1130 let mut lexer = harn_lexer::Lexer::new(expr_str);
1132 if let Ok(tokens) = lexer.tokenize() {
1133 let mut parser = harn_parser::Parser::new(tokens);
1134 if let Ok(snode) = parser.parse_single_expression() {
1135 self.compile_node(&snode)?;
1136 let to_str = self
1138 .chunk
1139 .add_constant(Constant::String("to_string".into()));
1140 self.chunk.emit_u16(Op::Constant, to_str, self.line);
1141 self.chunk.emit(Op::Swap, self.line);
1142 self.chunk.emit_u8(Op::Call, 1, self.line);
1143 part_count += 1;
1144 } else {
1145 let idx =
1147 self.chunk.add_constant(Constant::String(expr_str.clone()));
1148 self.chunk.emit_u16(Op::Constant, idx, self.line);
1149 part_count += 1;
1150 }
1151 }
1152 }
1153 }
1154 }
1155 if part_count > 1 {
1156 self.chunk.emit_u16(Op::Concat, part_count, self.line);
1157 }
1158 }
1159
1160 Node::FnDecl {
1161 name, params, body, ..
1162 } => {
1163 let mut fn_compiler = Compiler::new();
1165 fn_compiler.enum_names = self.enum_names.clone();
1166 fn_compiler.emit_default_preamble(params)?;
1167 fn_compiler.emit_type_checks(params);
1168 fn_compiler.compile_block(body)?;
1169 fn_compiler.chunk.emit(Op::Nil, self.line);
1170 fn_compiler.chunk.emit(Op::Return, self.line);
1171
1172 let func = CompiledFunction {
1173 name: name.clone(),
1174 params: TypedParam::names(params),
1175 default_start: TypedParam::default_start(params),
1176 chunk: fn_compiler.chunk,
1177 };
1178 let fn_idx = self.chunk.functions.len();
1179 self.chunk.functions.push(func);
1180
1181 self.chunk.emit_u16(Op::Closure, fn_idx as u16, self.line);
1182 let name_idx = self.chunk.add_constant(Constant::String(name.clone()));
1183 self.chunk.emit_u16(Op::DefLet, name_idx, self.line);
1184 }
1185
1186 Node::Closure { params, body } => {
1187 let mut fn_compiler = Compiler::new();
1188 fn_compiler.enum_names = self.enum_names.clone();
1189 fn_compiler.emit_default_preamble(params)?;
1190 fn_compiler.emit_type_checks(params);
1191 fn_compiler.compile_block(body)?;
1192 fn_compiler.chunk.emit(Op::Return, self.line);
1194
1195 let func = CompiledFunction {
1196 name: "<closure>".to_string(),
1197 params: TypedParam::names(params),
1198 default_start: TypedParam::default_start(params),
1199 chunk: fn_compiler.chunk,
1200 };
1201 let fn_idx = self.chunk.functions.len();
1202 self.chunk.functions.push(func);
1203
1204 self.chunk.emit_u16(Op::Closure, fn_idx as u16, self.line);
1205 }
1206
1207 Node::ThrowStmt { value } => {
1208 self.compile_node(value)?;
1209 self.chunk.emit(Op::Throw, self.line);
1210 }
1211
1212 Node::MatchExpr { value, arms } => {
1213 self.compile_node(value)?;
1214 let mut end_jumps = Vec::new();
1215 for arm in arms {
1216 match &arm.pattern.node {
1217 Node::Identifier(name) if name == "_" => {
1219 self.chunk.emit(Op::Pop, self.line); self.compile_match_body(&arm.body)?;
1221 end_jumps.push(self.chunk.emit_jump(Op::Jump, self.line));
1222 }
1223 Node::EnumConstruct {
1225 enum_name,
1226 variant,
1227 args: pat_args,
1228 } => {
1229 self.chunk.emit(Op::Dup, self.line);
1231 let en_idx =
1232 self.chunk.add_constant(Constant::String(enum_name.clone()));
1233 let vn_idx = self.chunk.add_constant(Constant::String(variant.clone()));
1234 self.chunk.emit_u16(Op::MatchEnum, en_idx, self.line);
1235 let hi = (vn_idx >> 8) as u8;
1236 let lo = vn_idx as u8;
1237 self.chunk.code.push(hi);
1238 self.chunk.code.push(lo);
1239 self.chunk.lines.push(self.line);
1240 self.chunk.columns.push(self.column);
1241 self.chunk.lines.push(self.line);
1242 self.chunk.columns.push(self.column);
1243 let skip = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
1245 self.chunk.emit(Op::Pop, self.line); for (i, pat_arg) in pat_args.iter().enumerate() {
1250 if let Node::Identifier(binding_name) = &pat_arg.node {
1251 self.chunk.emit(Op::Dup, self.line);
1253 let fields_idx = self
1254 .chunk
1255 .add_constant(Constant::String("fields".to_string()));
1256 self.chunk.emit_u16(Op::GetProperty, fields_idx, self.line);
1257 let idx_const =
1258 self.chunk.add_constant(Constant::Int(i as i64));
1259 self.chunk.emit_u16(Op::Constant, idx_const, self.line);
1260 self.chunk.emit(Op::Subscript, self.line);
1261 let name_idx = self
1262 .chunk
1263 .add_constant(Constant::String(binding_name.clone()));
1264 self.chunk.emit_u16(Op::DefLet, name_idx, self.line);
1265 }
1266 }
1267
1268 self.chunk.emit(Op::Pop, self.line); self.compile_match_body(&arm.body)?;
1270 end_jumps.push(self.chunk.emit_jump(Op::Jump, self.line));
1271 self.chunk.patch_jump(skip);
1272 self.chunk.emit(Op::Pop, self.line); }
1274 Node::PropertyAccess { object, property } if matches!(&object.node, Node::Identifier(n) if self.enum_names.contains(n)) =>
1276 {
1277 let enum_name = if let Node::Identifier(n) = &object.node {
1278 n.clone()
1279 } else {
1280 unreachable!()
1281 };
1282 self.chunk.emit(Op::Dup, self.line);
1283 let en_idx = self.chunk.add_constant(Constant::String(enum_name));
1284 let vn_idx =
1285 self.chunk.add_constant(Constant::String(property.clone()));
1286 self.chunk.emit_u16(Op::MatchEnum, en_idx, self.line);
1287 let hi = (vn_idx >> 8) as u8;
1288 let lo = vn_idx as u8;
1289 self.chunk.code.push(hi);
1290 self.chunk.code.push(lo);
1291 self.chunk.lines.push(self.line);
1292 self.chunk.columns.push(self.column);
1293 self.chunk.lines.push(self.line);
1294 self.chunk.columns.push(self.column);
1295 let skip = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
1296 self.chunk.emit(Op::Pop, self.line); self.chunk.emit(Op::Pop, self.line); self.compile_match_body(&arm.body)?;
1299 end_jumps.push(self.chunk.emit_jump(Op::Jump, self.line));
1300 self.chunk.patch_jump(skip);
1301 self.chunk.emit(Op::Pop, self.line); }
1303 Node::MethodCall {
1306 object,
1307 method,
1308 args: pat_args,
1309 } if matches!(&object.node, Node::Identifier(n) if self.enum_names.contains(n)) =>
1310 {
1311 let enum_name = if let Node::Identifier(n) = &object.node {
1312 n.clone()
1313 } else {
1314 unreachable!()
1315 };
1316 self.chunk.emit(Op::Dup, self.line);
1318 let en_idx = self.chunk.add_constant(Constant::String(enum_name));
1319 let vn_idx = self.chunk.add_constant(Constant::String(method.clone()));
1320 self.chunk.emit_u16(Op::MatchEnum, en_idx, self.line);
1321 let hi = (vn_idx >> 8) as u8;
1322 let lo = vn_idx as u8;
1323 self.chunk.code.push(hi);
1324 self.chunk.code.push(lo);
1325 self.chunk.lines.push(self.line);
1326 self.chunk.columns.push(self.column);
1327 self.chunk.lines.push(self.line);
1328 self.chunk.columns.push(self.column);
1329 let skip = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
1330 self.chunk.emit(Op::Pop, self.line); for (i, pat_arg) in pat_args.iter().enumerate() {
1334 if let Node::Identifier(binding_name) = &pat_arg.node {
1335 self.chunk.emit(Op::Dup, self.line);
1336 let fields_idx = self
1337 .chunk
1338 .add_constant(Constant::String("fields".to_string()));
1339 self.chunk.emit_u16(Op::GetProperty, fields_idx, self.line);
1340 let idx_const =
1341 self.chunk.add_constant(Constant::Int(i as i64));
1342 self.chunk.emit_u16(Op::Constant, idx_const, self.line);
1343 self.chunk.emit(Op::Subscript, self.line);
1344 let name_idx = self
1345 .chunk
1346 .add_constant(Constant::String(binding_name.clone()));
1347 self.chunk.emit_u16(Op::DefLet, name_idx, self.line);
1348 }
1349 }
1350
1351 self.chunk.emit(Op::Pop, self.line); self.compile_match_body(&arm.body)?;
1353 end_jumps.push(self.chunk.emit_jump(Op::Jump, self.line));
1354 self.chunk.patch_jump(skip);
1355 self.chunk.emit(Op::Pop, self.line); }
1357 Node::Identifier(name) => {
1359 self.chunk.emit(Op::Dup, self.line); let name_idx = self.chunk.add_constant(Constant::String(name.clone()));
1362 self.chunk.emit_u16(Op::DefLet, name_idx, self.line);
1363 self.chunk.emit(Op::Pop, self.line); self.compile_match_body(&arm.body)?;
1365 end_jumps.push(self.chunk.emit_jump(Op::Jump, self.line));
1366 }
1367 Node::DictLiteral(entries)
1369 if entries
1370 .iter()
1371 .all(|e| matches!(&e.key.node, Node::StringLiteral(_))) =>
1372 {
1373 self.chunk.emit(Op::Dup, self.line);
1375 let typeof_idx =
1376 self.chunk.add_constant(Constant::String("type_of".into()));
1377 self.chunk.emit_u16(Op::Constant, typeof_idx, self.line);
1378 self.chunk.emit(Op::Swap, self.line);
1379 self.chunk.emit_u8(Op::Call, 1, self.line);
1380 let dict_str = self.chunk.add_constant(Constant::String("dict".into()));
1381 self.chunk.emit_u16(Op::Constant, dict_str, self.line);
1382 self.chunk.emit(Op::Equal, self.line);
1383 let skip_type = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
1384 self.chunk.emit(Op::Pop, self.line); let mut constraint_skips = Vec::new();
1388 let mut bindings = Vec::new();
1389 for entry in entries {
1390 if let Node::StringLiteral(key) = &entry.key.node {
1391 match &entry.value.node {
1392 Node::StringLiteral(_)
1394 | Node::IntLiteral(_)
1395 | Node::FloatLiteral(_)
1396 | Node::BoolLiteral(_)
1397 | Node::NilLiteral => {
1398 self.chunk.emit(Op::Dup, self.line);
1399 let key_idx = self
1400 .chunk
1401 .add_constant(Constant::String(key.clone()));
1402 self.chunk.emit_u16(Op::Constant, key_idx, self.line);
1403 self.chunk.emit(Op::Subscript, self.line);
1404 self.compile_node(&entry.value)?;
1405 self.chunk.emit(Op::Equal, self.line);
1406 let skip =
1407 self.chunk.emit_jump(Op::JumpIfFalse, self.line);
1408 self.chunk.emit(Op::Pop, self.line); constraint_skips.push(skip);
1410 }
1411 Node::Identifier(binding) => {
1413 bindings.push((key.clone(), binding.clone()));
1414 }
1415 _ => {
1416 self.chunk.emit(Op::Dup, self.line);
1418 let key_idx = self
1419 .chunk
1420 .add_constant(Constant::String(key.clone()));
1421 self.chunk.emit_u16(Op::Constant, key_idx, self.line);
1422 self.chunk.emit(Op::Subscript, self.line);
1423 self.compile_node(&entry.value)?;
1424 self.chunk.emit(Op::Equal, self.line);
1425 let skip =
1426 self.chunk.emit_jump(Op::JumpIfFalse, self.line);
1427 self.chunk.emit(Op::Pop, self.line);
1428 constraint_skips.push(skip);
1429 }
1430 }
1431 }
1432 }
1433
1434 for (key, binding) in &bindings {
1436 self.chunk.emit(Op::Dup, self.line);
1437 let key_idx =
1438 self.chunk.add_constant(Constant::String(key.clone()));
1439 self.chunk.emit_u16(Op::Constant, key_idx, self.line);
1440 self.chunk.emit(Op::Subscript, self.line);
1441 let name_idx =
1442 self.chunk.add_constant(Constant::String(binding.clone()));
1443 self.chunk.emit_u16(Op::DefLet, name_idx, self.line);
1444 }
1445
1446 self.chunk.emit(Op::Pop, self.line); self.compile_match_body(&arm.body)?;
1448 end_jumps.push(self.chunk.emit_jump(Op::Jump, self.line));
1449
1450 let fail_target = self.chunk.code.len();
1452 self.chunk.emit(Op::Pop, self.line); for skip in constraint_skips {
1455 self.chunk.patch_jump_to(skip, fail_target);
1456 }
1457 self.chunk.patch_jump_to(skip_type, fail_target);
1458 }
1459 Node::ListLiteral(elements) => {
1461 self.chunk.emit(Op::Dup, self.line);
1463 let typeof_idx =
1464 self.chunk.add_constant(Constant::String("type_of".into()));
1465 self.chunk.emit_u16(Op::Constant, typeof_idx, self.line);
1466 self.chunk.emit(Op::Swap, self.line);
1467 self.chunk.emit_u8(Op::Call, 1, self.line);
1468 let list_str = self.chunk.add_constant(Constant::String("list".into()));
1469 self.chunk.emit_u16(Op::Constant, list_str, self.line);
1470 self.chunk.emit(Op::Equal, self.line);
1471 let skip_type = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
1472 self.chunk.emit(Op::Pop, self.line); self.chunk.emit(Op::Dup, self.line);
1476 let len_idx = self.chunk.add_constant(Constant::String("len".into()));
1477 self.chunk.emit_u16(Op::Constant, len_idx, self.line);
1478 self.chunk.emit(Op::Swap, self.line);
1479 self.chunk.emit_u8(Op::Call, 1, self.line);
1480 let count = self
1481 .chunk
1482 .add_constant(Constant::Int(elements.len() as i64));
1483 self.chunk.emit_u16(Op::Constant, count, self.line);
1484 self.chunk.emit(Op::GreaterEqual, self.line);
1485 let skip_len = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
1486 self.chunk.emit(Op::Pop, self.line); let mut constraint_skips = Vec::new();
1490 let mut bindings = Vec::new();
1491 for (i, elem) in elements.iter().enumerate() {
1492 match &elem.node {
1493 Node::Identifier(name) if name != "_" => {
1494 bindings.push((i, name.clone()));
1495 }
1496 Node::Identifier(_) => {} _ => {
1499 self.chunk.emit(Op::Dup, self.line);
1500 let idx_const =
1501 self.chunk.add_constant(Constant::Int(i as i64));
1502 self.chunk.emit_u16(Op::Constant, idx_const, self.line);
1503 self.chunk.emit(Op::Subscript, self.line);
1504 self.compile_node(elem)?;
1505 self.chunk.emit(Op::Equal, self.line);
1506 let skip = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
1507 self.chunk.emit(Op::Pop, self.line);
1508 constraint_skips.push(skip);
1509 }
1510 }
1511 }
1512
1513 for (i, name) in &bindings {
1515 self.chunk.emit(Op::Dup, self.line);
1516 let idx_const = self.chunk.add_constant(Constant::Int(*i as i64));
1517 self.chunk.emit_u16(Op::Constant, idx_const, self.line);
1518 self.chunk.emit(Op::Subscript, self.line);
1519 let name_idx =
1520 self.chunk.add_constant(Constant::String(name.clone()));
1521 self.chunk.emit_u16(Op::DefLet, name_idx, self.line);
1522 }
1523
1524 self.chunk.emit(Op::Pop, self.line); self.compile_match_body(&arm.body)?;
1526 end_jumps.push(self.chunk.emit_jump(Op::Jump, self.line));
1527
1528 let fail_target = self.chunk.code.len();
1530 self.chunk.emit(Op::Pop, self.line); for skip in constraint_skips {
1532 self.chunk.patch_jump_to(skip, fail_target);
1533 }
1534 self.chunk.patch_jump_to(skip_len, fail_target);
1535 self.chunk.patch_jump_to(skip_type, fail_target);
1536 }
1537 _ => {
1539 self.chunk.emit(Op::Dup, self.line);
1540 self.compile_node(&arm.pattern)?;
1541 self.chunk.emit(Op::Equal, self.line);
1542 let skip = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
1543 self.chunk.emit(Op::Pop, self.line); self.chunk.emit(Op::Pop, self.line); self.compile_match_body(&arm.body)?;
1546 end_jumps.push(self.chunk.emit_jump(Op::Jump, self.line));
1547 self.chunk.patch_jump(skip);
1548 self.chunk.emit(Op::Pop, self.line); }
1550 }
1551 }
1552 self.chunk.emit(Op::Pop, self.line);
1554 self.chunk.emit(Op::Nil, self.line);
1555 for j in end_jumps {
1556 self.chunk.patch_jump(j);
1557 }
1558 }
1559
1560 Node::RangeExpr {
1561 start,
1562 end,
1563 inclusive,
1564 } => {
1565 let name_idx = self
1567 .chunk
1568 .add_constant(Constant::String("__range__".to_string()));
1569 self.chunk.emit_u16(Op::Constant, name_idx, self.line);
1570 self.compile_node(start)?;
1571 self.compile_node(end)?;
1572 if *inclusive {
1573 self.chunk.emit(Op::True, self.line);
1574 } else {
1575 self.chunk.emit(Op::False, self.line);
1576 }
1577 self.chunk.emit_u8(Op::Call, 3, self.line);
1578 }
1579
1580 Node::GuardStmt {
1581 condition,
1582 else_body,
1583 } => {
1584 self.compile_node(condition)?;
1587 let skip_jump = self.chunk.emit_jump(Op::JumpIfTrue, self.line);
1588 self.chunk.emit(Op::Pop, self.line); self.compile_block(else_body)?;
1591 if !else_body.is_empty() && Self::produces_value(&else_body.last().unwrap().node) {
1593 self.chunk.emit(Op::Pop, self.line);
1594 }
1595 let end_jump = self.chunk.emit_jump(Op::Jump, self.line);
1596 self.chunk.patch_jump(skip_jump);
1597 self.chunk.emit(Op::Pop, self.line); self.chunk.patch_jump(end_jump);
1599 self.chunk.emit(Op::Nil, self.line);
1600 }
1601
1602 Node::Block(stmts) => {
1603 if stmts.is_empty() {
1604 self.chunk.emit(Op::Nil, self.line);
1605 } else {
1606 self.compile_block(stmts)?;
1607 }
1608 }
1609
1610 Node::DeadlineBlock { duration, body } => {
1611 self.compile_node(duration)?;
1612 self.chunk.emit(Op::DeadlineSetup, self.line);
1613 if body.is_empty() {
1614 self.chunk.emit(Op::Nil, self.line);
1615 } else {
1616 self.compile_block(body)?;
1617 }
1618 self.chunk.emit(Op::DeadlineEnd, self.line);
1619 }
1620
1621 Node::MutexBlock { body } => {
1622 if body.is_empty() {
1624 self.chunk.emit(Op::Nil, self.line);
1625 } else {
1626 for sn in body {
1629 self.compile_node(sn)?;
1630 if Self::produces_value(&sn.node) {
1631 self.chunk.emit(Op::Pop, self.line);
1632 }
1633 }
1634 self.chunk.emit(Op::Nil, self.line);
1635 }
1636 }
1637
1638 Node::YieldExpr { .. } => {
1639 self.chunk.emit(Op::Nil, self.line);
1641 }
1642
1643 Node::AskExpr { fields } => {
1644 for entry in fields {
1647 self.compile_node(&entry.key)?;
1648 self.compile_node(&entry.value)?;
1649 }
1650 self.chunk
1651 .emit_u16(Op::BuildDict, fields.len() as u16, self.line);
1652 }
1653
1654 Node::EnumConstruct {
1655 enum_name,
1656 variant,
1657 args,
1658 } => {
1659 for arg in args {
1661 self.compile_node(arg)?;
1662 }
1663 let enum_idx = self.chunk.add_constant(Constant::String(enum_name.clone()));
1664 let var_idx = self.chunk.add_constant(Constant::String(variant.clone()));
1665 self.chunk.emit_u16(Op::BuildEnum, enum_idx, self.line);
1667 let hi = (var_idx >> 8) as u8;
1668 let lo = var_idx as u8;
1669 self.chunk.code.push(hi);
1670 self.chunk.code.push(lo);
1671 self.chunk.lines.push(self.line);
1672 self.chunk.columns.push(self.column);
1673 self.chunk.lines.push(self.line);
1674 self.chunk.columns.push(self.column);
1675 let fc = args.len() as u16;
1676 let fhi = (fc >> 8) as u8;
1677 let flo = fc as u8;
1678 self.chunk.code.push(fhi);
1679 self.chunk.code.push(flo);
1680 self.chunk.lines.push(self.line);
1681 self.chunk.columns.push(self.column);
1682 self.chunk.lines.push(self.line);
1683 self.chunk.columns.push(self.column);
1684 }
1685
1686 Node::StructConstruct {
1687 struct_name,
1688 fields,
1689 } => {
1690 let struct_key = self
1692 .chunk
1693 .add_constant(Constant::String("__struct__".to_string()));
1694 let struct_val = self
1695 .chunk
1696 .add_constant(Constant::String(struct_name.clone()));
1697 self.chunk.emit_u16(Op::Constant, struct_key, self.line);
1698 self.chunk.emit_u16(Op::Constant, struct_val, self.line);
1699
1700 for entry in fields {
1701 self.compile_node(&entry.key)?;
1702 self.compile_node(&entry.value)?;
1703 }
1704 self.chunk
1705 .emit_u16(Op::BuildDict, (fields.len() + 1) as u16, self.line);
1706 }
1707
1708 Node::ImportDecl { path } => {
1709 let idx = self.chunk.add_constant(Constant::String(path.clone()));
1710 self.chunk.emit_u16(Op::Import, idx, self.line);
1711 }
1712
1713 Node::SelectiveImport { names, path } => {
1714 let path_idx = self.chunk.add_constant(Constant::String(path.clone()));
1715 let names_str = names.join(",");
1716 let names_idx = self.chunk.add_constant(Constant::String(names_str));
1717 self.chunk
1718 .emit_u16(Op::SelectiveImport, path_idx, self.line);
1719 let hi = (names_idx >> 8) as u8;
1720 let lo = names_idx as u8;
1721 self.chunk.code.push(hi);
1722 self.chunk.code.push(lo);
1723 self.chunk.lines.push(self.line);
1724 self.chunk.columns.push(self.column);
1725 self.chunk.lines.push(self.line);
1726 self.chunk.columns.push(self.column);
1727 }
1728
1729 Node::TryOperator { operand } => {
1730 self.compile_node(operand)?;
1731 self.chunk.emit(Op::TryUnwrap, self.line);
1732 }
1733
1734 Node::ImplBlock { type_name, methods } => {
1735 for method_sn in methods {
1738 if let Node::FnDecl {
1739 name, params, body, ..
1740 } = &method_sn.node
1741 {
1742 let key_idx = self.chunk.add_constant(Constant::String(name.clone()));
1744 self.chunk.emit_u16(Op::Constant, key_idx, self.line);
1745
1746 let mut fn_compiler = Compiler::new();
1748 fn_compiler.enum_names = self.enum_names.clone();
1749 fn_compiler.emit_default_preamble(params)?;
1750 fn_compiler.emit_type_checks(params);
1751 fn_compiler.compile_block(body)?;
1752 fn_compiler.chunk.emit(Op::Nil, self.line);
1753 fn_compiler.chunk.emit(Op::Return, self.line);
1754
1755 let func = CompiledFunction {
1756 name: format!("{}.{}", type_name, name),
1757 params: TypedParam::names(params),
1758 default_start: TypedParam::default_start(params),
1759 chunk: fn_compiler.chunk,
1760 };
1761 let fn_idx = self.chunk.functions.len();
1762 self.chunk.functions.push(func);
1763 self.chunk.emit_u16(Op::Closure, fn_idx as u16, self.line);
1764 }
1765 }
1766 let method_count = methods
1767 .iter()
1768 .filter(|m| matches!(m.node, Node::FnDecl { .. }))
1769 .count();
1770 self.chunk
1771 .emit_u16(Op::BuildDict, method_count as u16, self.line);
1772 let impl_name = format!("__impl_{}", type_name);
1773 let name_idx = self.chunk.add_constant(Constant::String(impl_name));
1774 self.chunk.emit_u16(Op::DefLet, name_idx, self.line);
1775 }
1776
1777 Node::StructDecl { name, .. } => {
1778 let mut fn_compiler = Compiler::new();
1780 fn_compiler.enum_names = self.enum_names.clone();
1781 let params = vec![TypedParam::untyped("__fields")];
1782 fn_compiler.emit_default_preamble(¶ms)?;
1783
1784 let make_idx = fn_compiler
1786 .chunk
1787 .add_constant(Constant::String("__make_struct".into()));
1788 fn_compiler
1789 .chunk
1790 .emit_u16(Op::Constant, make_idx, self.line);
1791 let sname_idx = fn_compiler
1792 .chunk
1793 .add_constant(Constant::String(name.clone()));
1794 fn_compiler
1795 .chunk
1796 .emit_u16(Op::Constant, sname_idx, self.line);
1797 let fields_idx = fn_compiler
1798 .chunk
1799 .add_constant(Constant::String("__fields".into()));
1800 fn_compiler
1801 .chunk
1802 .emit_u16(Op::GetVar, fields_idx, self.line);
1803 fn_compiler.chunk.emit_u8(Op::Call, 2, self.line);
1804 fn_compiler.chunk.emit(Op::Return, self.line);
1805
1806 let func = CompiledFunction {
1807 name: name.clone(),
1808 params: TypedParam::names(¶ms),
1809 default_start: None,
1810 chunk: fn_compiler.chunk,
1811 };
1812 let fn_idx = self.chunk.functions.len();
1813 self.chunk.functions.push(func);
1814 self.chunk.emit_u16(Op::Closure, fn_idx as u16, self.line);
1815 let name_idx = self.chunk.add_constant(Constant::String(name.clone()));
1816 self.chunk.emit_u16(Op::DefLet, name_idx, self.line);
1817 }
1818
1819 Node::Pipeline { .. }
1821 | Node::OverrideDecl { .. }
1822 | Node::TypeDecl { .. }
1823 | Node::EnumDecl { .. }
1824 | Node::InterfaceDecl { .. } => {
1825 self.chunk.emit(Op::Nil, self.line);
1826 }
1827
1828 Node::TryCatch {
1829 body,
1830 error_var,
1831 error_type,
1832 catch_body,
1833 finally_body,
1834 } => {
1835 let type_name = error_type.as_ref().and_then(|te| {
1837 if let harn_parser::TypeExpr::Named(name) = te {
1838 Some(name.clone())
1839 } else {
1840 None
1841 }
1842 });
1843
1844 let type_name_idx = if let Some(ref tn) = type_name {
1845 self.chunk.add_constant(Constant::String(tn.clone()))
1846 } else {
1847 self.chunk.add_constant(Constant::String(String::new()))
1848 };
1849
1850 let has_catch = !catch_body.is_empty() || error_var.is_some();
1851 let has_finally = finally_body.is_some();
1852
1853 if has_catch && has_finally {
1854 let finally_body = finally_body.as_ref().unwrap();
1856
1857 self.finally_bodies.push(finally_body.clone());
1859
1860 self.handler_depth += 1;
1862 let catch_jump = self.chunk.emit_jump(Op::TryCatchSetup, self.line);
1863 self.emit_type_name_extra(type_name_idx);
1864
1865 self.compile_try_body(body)?;
1867
1868 self.handler_depth -= 1;
1870 self.chunk.emit(Op::PopHandler, self.line);
1871 self.compile_finally_inline(finally_body)?;
1872 let end_jump = self.chunk.emit_jump(Op::Jump, self.line);
1873
1874 self.chunk.patch_jump(catch_jump);
1876 self.compile_catch_binding(error_var)?;
1877
1878 self.handler_depth += 1;
1880 let rethrow_jump = self.chunk.emit_jump(Op::TryCatchSetup, self.line);
1881 let empty_type = self.chunk.add_constant(Constant::String(String::new()));
1882 self.emit_type_name_extra(empty_type);
1883
1884 self.compile_try_body(catch_body)?;
1886
1887 self.handler_depth -= 1;
1889 self.chunk.emit(Op::PopHandler, self.line);
1890 self.compile_finally_inline(finally_body)?;
1891 let end_jump2 = self.chunk.emit_jump(Op::Jump, self.line);
1892
1893 self.chunk.patch_jump(rethrow_jump);
1895 self.compile_rethrow_with_finally(finally_body)?;
1896
1897 self.chunk.patch_jump(end_jump);
1898 self.chunk.patch_jump(end_jump2);
1899
1900 self.finally_bodies.pop();
1901 } else if has_finally {
1902 let finally_body = finally_body.as_ref().unwrap();
1904
1905 self.finally_bodies.push(finally_body.clone());
1906
1907 self.handler_depth += 1;
1909 let error_jump = self.chunk.emit_jump(Op::TryCatchSetup, self.line);
1910 let empty_type = self.chunk.add_constant(Constant::String(String::new()));
1911 self.emit_type_name_extra(empty_type);
1912
1913 self.compile_try_body(body)?;
1915
1916 self.handler_depth -= 1;
1918 self.chunk.emit(Op::PopHandler, self.line);
1919 self.compile_finally_inline(finally_body)?;
1920 let end_jump = self.chunk.emit_jump(Op::Jump, self.line);
1921
1922 self.chunk.patch_jump(error_jump);
1924 self.compile_rethrow_with_finally(finally_body)?;
1925
1926 self.chunk.patch_jump(end_jump);
1927
1928 self.finally_bodies.pop();
1929 } else {
1930 self.handler_depth += 1;
1934 let catch_jump = self.chunk.emit_jump(Op::TryCatchSetup, self.line);
1935 self.emit_type_name_extra(type_name_idx);
1936
1937 self.compile_try_body(body)?;
1939
1940 self.handler_depth -= 1;
1942 self.chunk.emit(Op::PopHandler, self.line);
1943 let end_jump = self.chunk.emit_jump(Op::Jump, self.line);
1944
1945 self.chunk.patch_jump(catch_jump);
1947 self.compile_catch_binding(error_var)?;
1948
1949 self.compile_try_body(catch_body)?;
1951
1952 self.chunk.patch_jump(end_jump);
1954 }
1955 }
1956
1957 Node::TryExpr { body } => {
1958 self.handler_depth += 1;
1962 let catch_jump = self.chunk.emit_jump(Op::TryCatchSetup, self.line);
1963 let empty_type = self.chunk.add_constant(Constant::String(String::new()));
1964 self.emit_type_name_extra(empty_type);
1965
1966 self.compile_try_body(body)?;
1968
1969 self.handler_depth -= 1;
1971 self.chunk.emit(Op::PopHandler, self.line);
1972
1973 let ok_idx = self.chunk.add_constant(Constant::String("Ok".to_string()));
1975 self.chunk.emit_u16(Op::Constant, ok_idx, self.line);
1976 self.chunk.emit(Op::Swap, self.line);
1977 self.chunk.emit_u8(Op::Call, 1, self.line);
1978
1979 let end_jump = self.chunk.emit_jump(Op::Jump, self.line);
1981
1982 self.chunk.patch_jump(catch_jump);
1984
1985 let err_idx = self.chunk.add_constant(Constant::String("Err".to_string()));
1987 self.chunk.emit_u16(Op::Constant, err_idx, self.line);
1988 self.chunk.emit(Op::Swap, self.line);
1989 self.chunk.emit_u8(Op::Call, 1, self.line);
1990
1991 self.chunk.patch_jump(end_jump);
1993 }
1994
1995 Node::Retry { count, body } => {
1996 self.compile_node(count)?;
1998 let counter_name = "__retry_counter__";
1999 let counter_idx = self
2000 .chunk
2001 .add_constant(Constant::String(counter_name.to_string()));
2002 self.chunk.emit_u16(Op::DefVar, counter_idx, self.line);
2003
2004 self.chunk.emit(Op::Nil, self.line);
2006 let err_name = "__retry_last_error__";
2007 let err_idx = self
2008 .chunk
2009 .add_constant(Constant::String(err_name.to_string()));
2010 self.chunk.emit_u16(Op::DefVar, err_idx, self.line);
2011
2012 let loop_start = self.chunk.current_offset();
2014
2015 let catch_jump = self.chunk.emit_jump(Op::TryCatchSetup, self.line);
2017 let empty_type = self.chunk.add_constant(Constant::String(String::new()));
2019 let hi = (empty_type >> 8) as u8;
2020 let lo = empty_type as u8;
2021 self.chunk.code.push(hi);
2022 self.chunk.code.push(lo);
2023 self.chunk.lines.push(self.line);
2024 self.chunk.columns.push(self.column);
2025 self.chunk.lines.push(self.line);
2026 self.chunk.columns.push(self.column);
2027
2028 self.compile_block(body)?;
2030
2031 self.chunk.emit(Op::PopHandler, self.line);
2033 let end_jump = self.chunk.emit_jump(Op::Jump, self.line);
2034
2035 self.chunk.patch_jump(catch_jump);
2037 self.chunk.emit(Op::Dup, self.line);
2039 self.chunk.emit_u16(Op::SetVar, err_idx, self.line);
2040 self.chunk.emit(Op::Pop, self.line);
2042
2043 self.chunk.emit_u16(Op::GetVar, counter_idx, self.line);
2045 let one_idx = self.chunk.add_constant(Constant::Int(1));
2046 self.chunk.emit_u16(Op::Constant, one_idx, self.line);
2047 self.chunk.emit(Op::Sub, self.line);
2048 self.chunk.emit(Op::Dup, self.line);
2049 self.chunk.emit_u16(Op::SetVar, counter_idx, self.line);
2050
2051 let zero_idx = self.chunk.add_constant(Constant::Int(0));
2053 self.chunk.emit_u16(Op::Constant, zero_idx, self.line);
2054 self.chunk.emit(Op::Greater, self.line);
2055 let retry_jump = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
2056 self.chunk.emit(Op::Pop, self.line); self.chunk.emit_u16(Op::Jump, loop_start as u16, self.line);
2058
2059 self.chunk.patch_jump(retry_jump);
2061 self.chunk.emit(Op::Pop, self.line); self.chunk.emit_u16(Op::GetVar, err_idx, self.line);
2063 self.chunk.emit(Op::Throw, self.line);
2064
2065 self.chunk.patch_jump(end_jump);
2066 self.chunk.emit(Op::Nil, self.line);
2068 }
2069
2070 Node::Parallel {
2071 count,
2072 variable,
2073 body,
2074 } => {
2075 self.compile_node(count)?;
2076 let mut fn_compiler = Compiler::new();
2077 fn_compiler.enum_names = self.enum_names.clone();
2078 fn_compiler.compile_block(body)?;
2079 fn_compiler.chunk.emit(Op::Return, self.line);
2080 let params = vec![variable.clone().unwrap_or_else(|| "__i__".to_string())];
2081 let func = CompiledFunction {
2082 name: "<parallel>".to_string(),
2083 params,
2084 default_start: None,
2085 chunk: fn_compiler.chunk,
2086 };
2087 let fn_idx = self.chunk.functions.len();
2088 self.chunk.functions.push(func);
2089 self.chunk.emit_u16(Op::Closure, fn_idx as u16, self.line);
2090 self.chunk.emit(Op::Parallel, self.line);
2091 }
2092
2093 Node::ParallelMap {
2094 list,
2095 variable,
2096 body,
2097 } => {
2098 self.compile_node(list)?;
2099 let mut fn_compiler = Compiler::new();
2100 fn_compiler.enum_names = self.enum_names.clone();
2101 fn_compiler.compile_block(body)?;
2102 fn_compiler.chunk.emit(Op::Return, self.line);
2103 let func = CompiledFunction {
2104 name: "<parallel_map>".to_string(),
2105 params: vec![variable.clone()],
2106 default_start: None,
2107 chunk: fn_compiler.chunk,
2108 };
2109 let fn_idx = self.chunk.functions.len();
2110 self.chunk.functions.push(func);
2111 self.chunk.emit_u16(Op::Closure, fn_idx as u16, self.line);
2112 self.chunk.emit(Op::ParallelMap, self.line);
2113 }
2114
2115 Node::SpawnExpr { body } => {
2116 let mut fn_compiler = Compiler::new();
2117 fn_compiler.enum_names = self.enum_names.clone();
2118 fn_compiler.compile_block(body)?;
2119 fn_compiler.chunk.emit(Op::Return, self.line);
2120 let func = CompiledFunction {
2121 name: "<spawn>".to_string(),
2122 params: vec![],
2123 default_start: None,
2124 chunk: fn_compiler.chunk,
2125 };
2126 let fn_idx = self.chunk.functions.len();
2127 self.chunk.functions.push(func);
2128 self.chunk.emit_u16(Op::Closure, fn_idx as u16, self.line);
2129 self.chunk.emit(Op::Spawn, self.line);
2130 }
2131 Node::SelectExpr {
2132 cases,
2133 timeout,
2134 default_body,
2135 } => {
2136 let builtin_name = if timeout.is_some() {
2143 "__select_timeout"
2144 } else if default_body.is_some() {
2145 "__select_try"
2146 } else {
2147 "__select_list"
2148 };
2149
2150 let name_idx = self
2152 .chunk
2153 .add_constant(Constant::String(builtin_name.into()));
2154 self.chunk.emit_u16(Op::Constant, name_idx, self.line);
2155
2156 for case in cases {
2158 self.compile_node(&case.channel)?;
2159 }
2160 self.chunk
2161 .emit_u16(Op::BuildList, cases.len() as u16, self.line);
2162
2163 if let Some((duration_expr, _)) = timeout {
2165 self.compile_node(duration_expr)?;
2166 self.chunk.emit_u8(Op::Call, 2, self.line);
2167 } else {
2168 self.chunk.emit_u8(Op::Call, 1, self.line);
2169 }
2170
2171 self.temp_counter += 1;
2173 let result_name = format!("__sel_result_{}__", self.temp_counter);
2174 let result_idx = self
2175 .chunk
2176 .add_constant(Constant::String(result_name.clone()));
2177 self.chunk.emit_u16(Op::DefVar, result_idx, self.line);
2178
2179 let mut end_jumps = Vec::new();
2181
2182 for (i, case) in cases.iter().enumerate() {
2183 let get_r = self
2184 .chunk
2185 .add_constant(Constant::String(result_name.clone()));
2186 self.chunk.emit_u16(Op::GetVar, get_r, self.line);
2187 let idx_prop = self.chunk.add_constant(Constant::String("index".into()));
2188 self.chunk.emit_u16(Op::GetProperty, idx_prop, self.line);
2189 let case_i = self.chunk.add_constant(Constant::Int(i as i64));
2190 self.chunk.emit_u16(Op::Constant, case_i, self.line);
2191 self.chunk.emit(Op::Equal, self.line);
2192 let skip = self.chunk.emit_jump(Op::JumpIfFalse, self.line);
2193 self.chunk.emit(Op::Pop, self.line);
2194
2195 let get_r2 = self
2197 .chunk
2198 .add_constant(Constant::String(result_name.clone()));
2199 self.chunk.emit_u16(Op::GetVar, get_r2, self.line);
2200 let val_prop = self.chunk.add_constant(Constant::String("value".into()));
2201 self.chunk.emit_u16(Op::GetProperty, val_prop, self.line);
2202 let var_idx = self
2203 .chunk
2204 .add_constant(Constant::String(case.variable.clone()));
2205 self.chunk.emit_u16(Op::DefLet, var_idx, self.line);
2206
2207 self.compile_try_body(&case.body)?;
2208 end_jumps.push(self.chunk.emit_jump(Op::Jump, self.line));
2209 self.chunk.patch_jump(skip);
2210 self.chunk.emit(Op::Pop, self.line);
2211 }
2212
2213 if let Some((_, ref timeout_body)) = timeout {
2215 self.compile_try_body(timeout_body)?;
2216 } else if let Some(ref def_body) = default_body {
2217 self.compile_try_body(def_body)?;
2218 } else {
2219 self.chunk.emit(Op::Nil, self.line);
2220 }
2221
2222 for ej in end_jumps {
2223 self.chunk.patch_jump(ej);
2224 }
2225 }
2226 Node::Spread(_) => {
2227 return Err(CompileError {
2228 message: "spread (...) can only be used inside list literals, dict literals, or function call arguments".into(),
2229 line: self.line,
2230 });
2231 }
2232 }
2233 Ok(())
2234 }
2235
2236 fn compile_destructuring(
2240 &mut self,
2241 pattern: &BindingPattern,
2242 is_mutable: bool,
2243 ) -> Result<(), CompileError> {
2244 let def_op = if is_mutable { Op::DefVar } else { Op::DefLet };
2245 match pattern {
2246 BindingPattern::Identifier(name) => {
2247 let idx = self.chunk.add_constant(Constant::String(name.clone()));
2249 self.chunk.emit_u16(def_op, idx, self.line);
2250 }
2251 BindingPattern::Dict(fields) => {
2252 self.chunk.emit(Op::Dup, self.line);
2255 let assert_idx = self
2256 .chunk
2257 .add_constant(Constant::String("__assert_dict".into()));
2258 self.chunk.emit_u16(Op::Constant, assert_idx, self.line);
2259 self.chunk.emit(Op::Swap, self.line);
2260 self.chunk.emit_u8(Op::Call, 1, self.line);
2261 self.chunk.emit(Op::Pop, self.line); let non_rest: Vec<_> = fields.iter().filter(|f| !f.is_rest).collect();
2266 let rest_field = fields.iter().find(|f| f.is_rest);
2267
2268 for field in &non_rest {
2269 self.chunk.emit(Op::Dup, self.line);
2270 let key_idx = self.chunk.add_constant(Constant::String(field.key.clone()));
2271 self.chunk.emit_u16(Op::Constant, key_idx, self.line);
2272 self.chunk.emit(Op::Subscript, self.line);
2273 let binding_name = field.alias.as_deref().unwrap_or(&field.key);
2274 let name_idx = self
2275 .chunk
2276 .add_constant(Constant::String(binding_name.to_string()));
2277 self.chunk.emit_u16(def_op, name_idx, self.line);
2278 }
2279
2280 if let Some(rest) = rest_field {
2281 let fn_idx = self
2284 .chunk
2285 .add_constant(Constant::String("__dict_rest".into()));
2286 self.chunk.emit_u16(Op::Constant, fn_idx, self.line);
2287 self.chunk.emit(Op::Swap, self.line);
2289 for field in &non_rest {
2291 let key_idx = self.chunk.add_constant(Constant::String(field.key.clone()));
2292 self.chunk.emit_u16(Op::Constant, key_idx, self.line);
2293 }
2294 self.chunk
2295 .emit_u16(Op::BuildList, non_rest.len() as u16, self.line);
2296 self.chunk.emit_u8(Op::Call, 2, self.line);
2298 let rest_name = &rest.key;
2299 let rest_idx = self.chunk.add_constant(Constant::String(rest_name.clone()));
2300 self.chunk.emit_u16(def_op, rest_idx, self.line);
2301 } else {
2302 self.chunk.emit(Op::Pop, self.line);
2304 }
2305 }
2306 BindingPattern::List(elements) => {
2307 self.chunk.emit(Op::Dup, self.line);
2310 let assert_idx = self
2311 .chunk
2312 .add_constant(Constant::String("__assert_list".into()));
2313 self.chunk.emit_u16(Op::Constant, assert_idx, self.line);
2314 self.chunk.emit(Op::Swap, self.line);
2315 self.chunk.emit_u8(Op::Call, 1, self.line);
2316 self.chunk.emit(Op::Pop, self.line); let non_rest: Vec<_> = elements.iter().filter(|e| !e.is_rest).collect();
2319 let rest_elem = elements.iter().find(|e| e.is_rest);
2320
2321 for (i, elem) in non_rest.iter().enumerate() {
2322 self.chunk.emit(Op::Dup, self.line);
2323 let idx_const = self.chunk.add_constant(Constant::Int(i as i64));
2324 self.chunk.emit_u16(Op::Constant, idx_const, self.line);
2325 self.chunk.emit(Op::Subscript, self.line);
2326 let name_idx = self.chunk.add_constant(Constant::String(elem.name.clone()));
2327 self.chunk.emit_u16(def_op, name_idx, self.line);
2328 }
2329
2330 if let Some(rest) = rest_elem {
2331 let start_idx = self
2335 .chunk
2336 .add_constant(Constant::Int(non_rest.len() as i64));
2337 self.chunk.emit_u16(Op::Constant, start_idx, self.line);
2338 self.chunk.emit(Op::Nil, self.line); self.chunk.emit(Op::Slice, self.line);
2340 let rest_name_idx =
2341 self.chunk.add_constant(Constant::String(rest.name.clone()));
2342 self.chunk.emit_u16(def_op, rest_name_idx, self.line);
2343 } else {
2344 self.chunk.emit(Op::Pop, self.line);
2346 }
2347 }
2348 }
2349 Ok(())
2350 }
2351
2352 fn produces_value(node: &Node) -> bool {
2354 match node {
2355 Node::LetBinding { .. }
2357 | Node::VarBinding { .. }
2358 | Node::Assignment { .. }
2359 | Node::ReturnStmt { .. }
2360 | Node::FnDecl { .. }
2361 | Node::ImplBlock { .. }
2362 | Node::StructDecl { .. }
2363 | Node::ThrowStmt { .. }
2364 | Node::BreakStmt
2365 | Node::ContinueStmt => false,
2366 Node::TryCatch { .. }
2368 | Node::TryExpr { .. }
2369 | Node::Retry { .. }
2370 | Node::GuardStmt { .. }
2371 | Node::DeadlineBlock { .. }
2372 | Node::MutexBlock { .. }
2373 | Node::Spread(_) => true,
2374 _ => true,
2376 }
2377 }
2378}
2379
2380impl Compiler {
2381 pub fn compile_fn_body(
2383 &mut self,
2384 params: &[TypedParam],
2385 body: &[SNode],
2386 ) -> Result<CompiledFunction, CompileError> {
2387 let mut fn_compiler = Compiler::new();
2388 fn_compiler.compile_block(body)?;
2389 fn_compiler.chunk.emit(Op::Nil, 0);
2390 fn_compiler.chunk.emit(Op::Return, 0);
2391 Ok(CompiledFunction {
2392 name: String::new(),
2393 params: TypedParam::names(params),
2394 default_start: TypedParam::default_start(params),
2395 chunk: fn_compiler.chunk,
2396 })
2397 }
2398
2399 fn compile_match_body(&mut self, body: &[SNode]) -> Result<(), CompileError> {
2401 if body.is_empty() {
2402 self.chunk.emit(Op::Nil, self.line);
2403 } else {
2404 self.compile_block(body)?;
2405 if !Self::produces_value(&body.last().unwrap().node) {
2407 self.chunk.emit(Op::Nil, self.line);
2408 }
2409 }
2410 Ok(())
2411 }
2412
2413 fn emit_compound_op(&mut self, op: &str) -> Result<(), CompileError> {
2415 match op {
2416 "+" => self.chunk.emit(Op::Add, self.line),
2417 "-" => self.chunk.emit(Op::Sub, self.line),
2418 "*" => self.chunk.emit(Op::Mul, self.line),
2419 "/" => self.chunk.emit(Op::Div, self.line),
2420 "%" => self.chunk.emit(Op::Mod, self.line),
2421 _ => {
2422 return Err(CompileError {
2423 message: format!("Unknown compound operator: {op}"),
2424 line: self.line,
2425 })
2426 }
2427 }
2428 Ok(())
2429 }
2430
2431 fn root_var_name(&self, node: &SNode) -> Option<String> {
2433 match &node.node {
2434 Node::Identifier(name) => Some(name.clone()),
2435 Node::PropertyAccess { object, .. } | Node::OptionalPropertyAccess { object, .. } => {
2436 self.root_var_name(object)
2437 }
2438 Node::SubscriptAccess { object, .. } => self.root_var_name(object),
2439 _ => None,
2440 }
2441 }
2442}
2443
2444impl Compiler {
2445 fn collect_enum_names(nodes: &[SNode], names: &mut std::collections::HashSet<String>) {
2447 for sn in nodes {
2448 match &sn.node {
2449 Node::EnumDecl { name, .. } => {
2450 names.insert(name.clone());
2451 }
2452 Node::Pipeline { body, .. } => {
2453 Self::collect_enum_names(body, names);
2454 }
2455 Node::FnDecl { body, .. } => {
2456 Self::collect_enum_names(body, names);
2457 }
2458 Node::Block(stmts) => {
2459 Self::collect_enum_names(stmts, names);
2460 }
2461 _ => {}
2462 }
2463 }
2464 }
2465
2466 fn collect_interface_methods(
2467 nodes: &[SNode],
2468 interfaces: &mut std::collections::HashMap<String, Vec<String>>,
2469 ) {
2470 for sn in nodes {
2471 match &sn.node {
2472 Node::InterfaceDecl { name, methods } => {
2473 let method_names: Vec<String> =
2474 methods.iter().map(|m| m.name.clone()).collect();
2475 interfaces.insert(name.clone(), method_names);
2476 }
2477 Node::Pipeline { body, .. } | Node::FnDecl { body, .. } => {
2478 Self::collect_interface_methods(body, interfaces);
2479 }
2480 Node::Block(stmts) => {
2481 Self::collect_interface_methods(stmts, interfaces);
2482 }
2483 _ => {}
2484 }
2485 }
2486 }
2487}
2488
2489impl Default for Compiler {
2490 fn default() -> Self {
2491 Self::new()
2492 }
2493}
2494
2495fn contains_pipe_placeholder(node: &SNode) -> bool {
2497 match &node.node {
2498 Node::Identifier(name) if name == "_" => true,
2499 Node::FunctionCall { args, .. } => args.iter().any(contains_pipe_placeholder),
2500 Node::MethodCall { object, args, .. } => {
2501 contains_pipe_placeholder(object) || args.iter().any(contains_pipe_placeholder)
2502 }
2503 Node::BinaryOp { left, right, .. } => {
2504 contains_pipe_placeholder(left) || contains_pipe_placeholder(right)
2505 }
2506 Node::UnaryOp { operand, .. } => contains_pipe_placeholder(operand),
2507 Node::ListLiteral(items) => items.iter().any(contains_pipe_placeholder),
2508 Node::PropertyAccess { object, .. } => contains_pipe_placeholder(object),
2509 Node::SubscriptAccess { object, index } => {
2510 contains_pipe_placeholder(object) || contains_pipe_placeholder(index)
2511 }
2512 _ => false,
2513 }
2514}
2515
2516fn replace_pipe_placeholder(node: &SNode) -> SNode {
2518 let new_node = match &node.node {
2519 Node::Identifier(name) if name == "_" => Node::Identifier("__pipe".into()),
2520 Node::FunctionCall { name, args } => Node::FunctionCall {
2521 name: name.clone(),
2522 args: args.iter().map(replace_pipe_placeholder).collect(),
2523 },
2524 Node::MethodCall {
2525 object,
2526 method,
2527 args,
2528 } => Node::MethodCall {
2529 object: Box::new(replace_pipe_placeholder(object)),
2530 method: method.clone(),
2531 args: args.iter().map(replace_pipe_placeholder).collect(),
2532 },
2533 Node::BinaryOp { op, left, right } => Node::BinaryOp {
2534 op: op.clone(),
2535 left: Box::new(replace_pipe_placeholder(left)),
2536 right: Box::new(replace_pipe_placeholder(right)),
2537 },
2538 Node::UnaryOp { op, operand } => Node::UnaryOp {
2539 op: op.clone(),
2540 operand: Box::new(replace_pipe_placeholder(operand)),
2541 },
2542 Node::ListLiteral(items) => {
2543 Node::ListLiteral(items.iter().map(replace_pipe_placeholder).collect())
2544 }
2545 Node::PropertyAccess { object, property } => Node::PropertyAccess {
2546 object: Box::new(replace_pipe_placeholder(object)),
2547 property: property.clone(),
2548 },
2549 Node::SubscriptAccess { object, index } => Node::SubscriptAccess {
2550 object: Box::new(replace_pipe_placeholder(object)),
2551 index: Box::new(replace_pipe_placeholder(index)),
2552 },
2553 _ => return node.clone(),
2554 };
2555 SNode::new(new_node, node.span)
2556}
2557
2558#[cfg(test)]
2559mod tests {
2560 use super::*;
2561 use harn_lexer::Lexer;
2562 use harn_parser::Parser;
2563
2564 fn compile_source(source: &str) -> Chunk {
2565 let mut lexer = Lexer::new(source);
2566 let tokens = lexer.tokenize().unwrap();
2567 let mut parser = Parser::new(tokens);
2568 let program = parser.parse().unwrap();
2569 Compiler::new().compile(&program).unwrap()
2570 }
2571
2572 #[test]
2573 fn test_compile_arithmetic() {
2574 let chunk = compile_source("pipeline test(task) { let x = 2 + 3 }");
2575 assert!(!chunk.code.is_empty());
2576 assert!(chunk.constants.contains(&Constant::Int(2)));
2578 assert!(chunk.constants.contains(&Constant::Int(3)));
2579 }
2580
2581 #[test]
2582 fn test_compile_function_call() {
2583 let chunk = compile_source("pipeline test(task) { log(42) }");
2584 let disasm = chunk.disassemble("test");
2585 assert!(disasm.contains("CALL"));
2586 }
2587
2588 #[test]
2589 fn test_compile_if_else() {
2590 let chunk =
2591 compile_source(r#"pipeline test(task) { if true { log("yes") } else { log("no") } }"#);
2592 let disasm = chunk.disassemble("test");
2593 assert!(disasm.contains("JUMP_IF_FALSE"));
2594 assert!(disasm.contains("JUMP"));
2595 }
2596
2597 #[test]
2598 fn test_compile_while() {
2599 let chunk = compile_source("pipeline test(task) { var i = 0\n while i < 5 { i = i + 1 } }");
2600 let disasm = chunk.disassemble("test");
2601 assert!(disasm.contains("JUMP_IF_FALSE"));
2602 assert!(disasm.contains("JUMP"));
2604 }
2605
2606 #[test]
2607 fn test_compile_closure() {
2608 let chunk = compile_source("pipeline test(task) { let f = { x -> x * 2 } }");
2609 assert!(!chunk.functions.is_empty());
2610 assert_eq!(chunk.functions[0].params, vec!["x"]);
2611 }
2612
2613 #[test]
2614 fn test_compile_list() {
2615 let chunk = compile_source("pipeline test(task) { let a = [1, 2, 3] }");
2616 let disasm = chunk.disassemble("test");
2617 assert!(disasm.contains("BUILD_LIST"));
2618 }
2619
2620 #[test]
2621 fn test_compile_dict() {
2622 let chunk = compile_source(r#"pipeline test(task) { let d = {name: "test"} }"#);
2623 let disasm = chunk.disassemble("test");
2624 assert!(disasm.contains("BUILD_DICT"));
2625 }
2626
2627 #[test]
2628 fn test_disassemble() {
2629 let chunk = compile_source("pipeline test(task) { log(2 + 3) }");
2630 let disasm = chunk.disassemble("test");
2631 assert!(disasm.contains("CONSTANT"));
2633 assert!(disasm.contains("ADD"));
2634 assert!(disasm.contains("CALL"));
2635 }
2636}