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harn_vm/
chunk.rs

1use std::fmt;
2
3/// Bytecode opcodes for the Harn VM.
4#[derive(Debug, Clone, Copy, PartialEq, Eq)]
5#[repr(u8)]
6pub enum Op {
7    /// Push a constant from the constant pool onto the stack.
8    Constant, // arg: u16 constant index
9    /// Push nil onto the stack.
10    Nil,
11    /// Push true onto the stack.
12    True,
13    /// Push false onto the stack.
14    False,
15
16    // --- Variable operations ---
17    /// Get a variable by name (from constant pool).
18    GetVar, // arg: u16 constant index (name)
19    /// Define a new immutable variable. Pops value from stack.
20    DefLet, // arg: u16 constant index (name)
21    /// Define a new mutable variable. Pops value from stack.
22    DefVar, // arg: u16 constant index (name)
23    /// Assign to an existing mutable variable. Pops value from stack.
24    SetVar, // arg: u16 constant index (name)
25    /// Push a new lexical scope onto the environment stack.
26    PushScope,
27    /// Pop the current lexical scope from the environment stack.
28    PopScope,
29
30    // --- Arithmetic ---
31    Add,
32    Sub,
33    Mul,
34    Div,
35    Mod,
36    Negate,
37
38    // --- Comparison ---
39    Equal,
40    NotEqual,
41    Less,
42    Greater,
43    LessEqual,
44    GreaterEqual,
45
46    // --- Logical ---
47    Not,
48
49    // --- Control flow ---
50    /// Jump unconditionally. arg: u16 offset.
51    Jump,
52    /// Jump if top of stack is falsy. Does not pop. arg: u16 offset.
53    JumpIfFalse,
54    /// Jump if top of stack is truthy. Does not pop. arg: u16 offset.
55    JumpIfTrue,
56    /// Pop top of stack (discard).
57    Pop,
58
59    // --- Functions ---
60    /// Call a function/builtin. arg: u8 = arg count. Name is on stack below args.
61    Call,
62    /// Tail call: like Call, but replaces the current frame instead of pushing
63    /// a new one. Used for `return f(x)` to enable tail call optimization.
64    /// For builtins, behaves like a regular Call (no frame to replace).
65    TailCall,
66    /// Return from current function. Pops return value.
67    Return,
68    /// Create a closure. arg: u16 = chunk index in function table.
69    Closure,
70
71    // --- Collections ---
72    /// Build a list. arg: u16 = element count. Elements are on stack.
73    BuildList,
74    /// Build a dict. arg: u16 = entry count. Key-value pairs on stack.
75    BuildDict,
76    /// Subscript access: stack has [object, index]. Pushes result.
77    Subscript,
78    /// Slice access: stack has [object, start_or_nil, end_or_nil]. Pushes sublist/substring.
79    Slice,
80
81    // --- Object operations ---
82    /// Property access. arg: u16 = constant index (property name).
83    GetProperty,
84    /// Optional property access (?.). Like GetProperty but returns nil
85    /// instead of erroring when the object is nil. arg: u16 = constant index.
86    GetPropertyOpt,
87    /// Property assignment. arg: u16 = constant index (property name).
88    /// Stack: [value] → assigns to the named variable's property.
89    SetProperty,
90    /// Subscript assignment. arg: u16 = constant index (variable name).
91    /// Stack: [index, value] → assigns to variable[index] = value.
92    SetSubscript,
93    /// Method call. arg1: u16 = constant index (method name), arg2: u8 = arg count.
94    MethodCall,
95    /// Optional method call (?.). Like MethodCall but returns nil if the
96    /// receiver is nil instead of dispatching. arg1: u16, arg2: u8.
97    MethodCallOpt,
98
99    // --- String ---
100    /// String concatenation of N parts. arg: u16 = part count.
101    Concat,
102
103    // --- Iteration ---
104    /// Set up a for-in loop. Expects iterable on stack. Pushes iterator state.
105    IterInit,
106    /// Advance iterator. If exhausted, jumps. arg: u16 = jump offset.
107    /// Pushes next value and the variable name is set via DefVar before the loop.
108    IterNext,
109
110    // --- Pipe ---
111    /// Pipe: pops [value, callable], invokes callable(value).
112    Pipe,
113
114    // --- Error handling ---
115    /// Pop value, raise as error.
116    Throw,
117    /// Push exception handler. arg: u16 = offset to catch handler.
118    TryCatchSetup,
119    /// Remove top exception handler (end of try body).
120    PopHandler,
121
122    // --- Concurrency ---
123    /// Execute closure N times sequentially, push results as list.
124    /// Stack: count, closure → result_list
125    Parallel,
126    /// Execute closure for each item in list, push results as list.
127    /// Stack: list, closure → result_list
128    ParallelMap,
129    /// Like ParallelMap but wraps each result in Result.Ok/Err, never fails.
130    /// Stack: list, closure → {results: [Result], succeeded: int, failed: int}
131    ParallelSettle,
132    /// Store closure for deferred execution, push TaskHandle.
133    /// Stack: closure → TaskHandle
134    Spawn,
135
136    // --- Imports ---
137    /// Import a file. arg: u16 = constant index (path string).
138    Import,
139    /// Selective import. arg1: u16 = path string, arg2: u16 = names list constant.
140    SelectiveImport,
141
142    // --- Deadline ---
143    /// Pop duration value, push deadline onto internal deadline stack.
144    DeadlineSetup,
145    /// Pop deadline from internal deadline stack.
146    DeadlineEnd,
147
148    // --- Enum ---
149    /// Build an enum variant value.
150    /// arg1: u16 = constant index (enum name), arg2: u16 = constant index (variant name),
151    /// arg3: u16 = field count. Fields are on stack.
152    BuildEnum,
153
154    // --- Match ---
155    /// Match an enum pattern. Checks enum_name + variant on the top of stack (dup'd match value).
156    /// arg1: u16 = constant index (enum name), arg2: u16 = constant index (variant name).
157    /// If match succeeds, pushes true; else pushes false.
158    MatchEnum,
159
160    // --- Loop control ---
161    /// Pop the top iterator from the iterator stack (cleanup on break from for-in).
162    PopIterator,
163
164    // --- Defaults ---
165    /// Push the number of arguments passed to the current function call.
166    GetArgc,
167
168    // --- Type checking ---
169    /// Runtime type check on a variable.
170    /// arg1: u16 = constant index (variable name),
171    /// arg2: u16 = constant index (expected type name).
172    /// Throws a TypeError if the variable's type doesn't match.
173    CheckType,
174
175    // --- Result try operator ---
176    /// Try-unwrap: if top is Result.Ok(v), replace with v. If Result.Err(e), return it.
177    TryUnwrap,
178
179    // --- Spread call ---
180    /// Call with spread arguments. Stack: [callee, args_list] -> result.
181    CallSpread,
182    /// Method call with spread arguments. Stack: [object, args_list] -> result.
183    /// Followed by 2 bytes for method name constant index.
184    MethodCallSpread,
185
186    // --- Misc ---
187    /// Duplicate top of stack.
188    Dup,
189    /// Swap top two stack values.
190    Swap,
191    /// Membership test: stack has [item, collection]. Pushes bool.
192    /// Works for lists (item in list), dicts (key in dict), strings (substr in string), and sets.
193    Contains,
194
195    /// Yield a value from a generator. Pops value, sends through channel, suspends.
196    Yield,
197}
198
199/// A constant value in the constant pool.
200#[derive(Debug, Clone, PartialEq)]
201pub enum Constant {
202    Int(i64),
203    Float(f64),
204    String(String),
205    Bool(bool),
206    Nil,
207    Duration(u64),
208}
209
210impl fmt::Display for Constant {
211    fn fmt(&self, f: &mut fmt::Formatter<'_>) -> fmt::Result {
212        match self {
213            Constant::Int(n) => write!(f, "{n}"),
214            Constant::Float(n) => write!(f, "{n}"),
215            Constant::String(s) => write!(f, "\"{s}\""),
216            Constant::Bool(b) => write!(f, "{b}"),
217            Constant::Nil => write!(f, "nil"),
218            Constant::Duration(ms) => write!(f, "{ms}ms"),
219        }
220    }
221}
222
223/// A compiled chunk of bytecode.
224#[derive(Debug, Clone)]
225pub struct Chunk {
226    /// The bytecode instructions.
227    pub code: Vec<u8>,
228    /// Constant pool.
229    pub constants: Vec<Constant>,
230    /// Source line numbers for each instruction (for error reporting).
231    pub lines: Vec<u32>,
232    /// Source column numbers for each instruction (for error reporting).
233    /// Parallel to `lines`; 0 means no column info available.
234    pub columns: Vec<u32>,
235    /// Source file that this chunk was compiled from, when known. Set for
236    /// chunks compiled from imported modules so runtime errors can report
237    /// the correct file path for each frame instead of always pointing at
238    /// the entry-point pipeline.
239    pub source_file: Option<String>,
240    /// Current column to use when emitting instructions (set by compiler).
241    current_col: u32,
242    /// Compiled function bodies (for closures).
243    pub functions: Vec<CompiledFunction>,
244}
245
246/// A compiled function (closure body).
247#[derive(Debug, Clone)]
248pub struct CompiledFunction {
249    pub name: String,
250    pub params: Vec<String>,
251    /// Index of the first parameter with a default value, or None if all required.
252    pub default_start: Option<usize>,
253    pub chunk: Chunk,
254    /// True if the function body contains `yield` expressions (generator function).
255    pub is_generator: bool,
256    /// True if the last parameter is a rest parameter (`...name`).
257    pub has_rest_param: bool,
258}
259
260impl Chunk {
261    pub fn new() -> Self {
262        Self {
263            code: Vec::new(),
264            constants: Vec::new(),
265            lines: Vec::new(),
266            columns: Vec::new(),
267            source_file: None,
268            current_col: 0,
269            functions: Vec::new(),
270        }
271    }
272
273    /// Set the current column for subsequent emit calls.
274    pub fn set_column(&mut self, col: u32) {
275        self.current_col = col;
276    }
277
278    /// Add a constant and return its index.
279    pub fn add_constant(&mut self, constant: Constant) -> u16 {
280        // Reuse existing constant if possible
281        for (i, c) in self.constants.iter().enumerate() {
282            if c == &constant {
283                return i as u16;
284            }
285        }
286        let idx = self.constants.len();
287        self.constants.push(constant);
288        idx as u16
289    }
290
291    /// Emit a single-byte instruction.
292    pub fn emit(&mut self, op: Op, line: u32) {
293        let col = self.current_col;
294        self.code.push(op as u8);
295        self.lines.push(line);
296        self.columns.push(col);
297    }
298
299    /// Emit an instruction with a u16 argument.
300    pub fn emit_u16(&mut self, op: Op, arg: u16, line: u32) {
301        let col = self.current_col;
302        self.code.push(op as u8);
303        self.code.push((arg >> 8) as u8);
304        self.code.push((arg & 0xFF) as u8);
305        self.lines.push(line);
306        self.lines.push(line);
307        self.lines.push(line);
308        self.columns.push(col);
309        self.columns.push(col);
310        self.columns.push(col);
311    }
312
313    /// Emit an instruction with a u8 argument.
314    pub fn emit_u8(&mut self, op: Op, arg: u8, line: u32) {
315        let col = self.current_col;
316        self.code.push(op as u8);
317        self.code.push(arg);
318        self.lines.push(line);
319        self.lines.push(line);
320        self.columns.push(col);
321        self.columns.push(col);
322    }
323
324    /// Emit a method call: op + u16 (method name) + u8 (arg count).
325    pub fn emit_method_call(&mut self, name_idx: u16, arg_count: u8, line: u32) {
326        self.emit_method_call_inner(Op::MethodCall, name_idx, arg_count, line);
327    }
328
329    /// Emit an optional method call (?.) — returns nil if receiver is nil.
330    pub fn emit_method_call_opt(&mut self, name_idx: u16, arg_count: u8, line: u32) {
331        self.emit_method_call_inner(Op::MethodCallOpt, name_idx, arg_count, line);
332    }
333
334    fn emit_method_call_inner(&mut self, op: Op, name_idx: u16, arg_count: u8, line: u32) {
335        let col = self.current_col;
336        self.code.push(op as u8);
337        self.code.push((name_idx >> 8) as u8);
338        self.code.push((name_idx & 0xFF) as u8);
339        self.code.push(arg_count);
340        self.lines.push(line);
341        self.lines.push(line);
342        self.lines.push(line);
343        self.lines.push(line);
344        self.columns.push(col);
345        self.columns.push(col);
346        self.columns.push(col);
347        self.columns.push(col);
348    }
349
350    /// Current code offset (for jump patching).
351    pub fn current_offset(&self) -> usize {
352        self.code.len()
353    }
354
355    /// Emit a jump instruction with a placeholder offset. Returns the position to patch.
356    pub fn emit_jump(&mut self, op: Op, line: u32) -> usize {
357        let col = self.current_col;
358        self.code.push(op as u8);
359        let patch_pos = self.code.len();
360        self.code.push(0xFF);
361        self.code.push(0xFF);
362        self.lines.push(line);
363        self.lines.push(line);
364        self.lines.push(line);
365        self.columns.push(col);
366        self.columns.push(col);
367        self.columns.push(col);
368        patch_pos
369    }
370
371    /// Patch a jump instruction at the given position to jump to the current offset.
372    pub fn patch_jump(&mut self, patch_pos: usize) {
373        let target = self.code.len() as u16;
374        self.code[patch_pos] = (target >> 8) as u8;
375        self.code[patch_pos + 1] = (target & 0xFF) as u8;
376    }
377
378    /// Patch a jump to a specific target position.
379    pub fn patch_jump_to(&mut self, patch_pos: usize, target: usize) {
380        let target = target as u16;
381        self.code[patch_pos] = (target >> 8) as u8;
382        self.code[patch_pos + 1] = (target & 0xFF) as u8;
383    }
384
385    /// Read a u16 argument at the given position.
386    pub fn read_u16(&self, pos: usize) -> u16 {
387        ((self.code[pos] as u16) << 8) | (self.code[pos + 1] as u16)
388    }
389
390    /// Disassemble for debugging.
391    pub fn disassemble(&self, name: &str) -> String {
392        let mut out = format!("== {name} ==\n");
393        let mut ip = 0;
394        while ip < self.code.len() {
395            let op = self.code[ip];
396            let line = self.lines.get(ip).copied().unwrap_or(0);
397            out.push_str(&format!("{:04} [{:>4}] ", ip, line));
398            ip += 1;
399
400            match op {
401                x if x == Op::Constant as u8 => {
402                    let idx = self.read_u16(ip);
403                    ip += 2;
404                    let val = &self.constants[idx as usize];
405                    out.push_str(&format!("CONSTANT {:>4} ({})\n", idx, val));
406                }
407                x if x == Op::Nil as u8 => out.push_str("NIL\n"),
408                x if x == Op::True as u8 => out.push_str("TRUE\n"),
409                x if x == Op::False as u8 => out.push_str("FALSE\n"),
410                x if x == Op::GetVar as u8 => {
411                    let idx = self.read_u16(ip);
412                    ip += 2;
413                    out.push_str(&format!(
414                        "GET_VAR {:>4} ({})\n",
415                        idx, self.constants[idx as usize]
416                    ));
417                }
418                x if x == Op::DefLet as u8 => {
419                    let idx = self.read_u16(ip);
420                    ip += 2;
421                    out.push_str(&format!(
422                        "DEF_LET {:>4} ({})\n",
423                        idx, self.constants[idx as usize]
424                    ));
425                }
426                x if x == Op::DefVar as u8 => {
427                    let idx = self.read_u16(ip);
428                    ip += 2;
429                    out.push_str(&format!(
430                        "DEF_VAR {:>4} ({})\n",
431                        idx, self.constants[idx as usize]
432                    ));
433                }
434                x if x == Op::SetVar as u8 => {
435                    let idx = self.read_u16(ip);
436                    ip += 2;
437                    out.push_str(&format!(
438                        "SET_VAR {:>4} ({})\n",
439                        idx, self.constants[idx as usize]
440                    ));
441                }
442                x if x == Op::PushScope as u8 => out.push_str("PUSH_SCOPE\n"),
443                x if x == Op::PopScope as u8 => out.push_str("POP_SCOPE\n"),
444                x if x == Op::Add as u8 => out.push_str("ADD\n"),
445                x if x == Op::Sub as u8 => out.push_str("SUB\n"),
446                x if x == Op::Mul as u8 => out.push_str("MUL\n"),
447                x if x == Op::Div as u8 => out.push_str("DIV\n"),
448                x if x == Op::Mod as u8 => out.push_str("MOD\n"),
449                x if x == Op::Negate as u8 => out.push_str("NEGATE\n"),
450                x if x == Op::Equal as u8 => out.push_str("EQUAL\n"),
451                x if x == Op::NotEqual as u8 => out.push_str("NOT_EQUAL\n"),
452                x if x == Op::Less as u8 => out.push_str("LESS\n"),
453                x if x == Op::Greater as u8 => out.push_str("GREATER\n"),
454                x if x == Op::LessEqual as u8 => out.push_str("LESS_EQUAL\n"),
455                x if x == Op::GreaterEqual as u8 => out.push_str("GREATER_EQUAL\n"),
456                x if x == Op::Contains as u8 => out.push_str("CONTAINS\n"),
457                x if x == Op::Not as u8 => out.push_str("NOT\n"),
458                x if x == Op::Jump as u8 => {
459                    let target = self.read_u16(ip);
460                    ip += 2;
461                    out.push_str(&format!("JUMP {:>4}\n", target));
462                }
463                x if x == Op::JumpIfFalse as u8 => {
464                    let target = self.read_u16(ip);
465                    ip += 2;
466                    out.push_str(&format!("JUMP_IF_FALSE {:>4}\n", target));
467                }
468                x if x == Op::JumpIfTrue as u8 => {
469                    let target = self.read_u16(ip);
470                    ip += 2;
471                    out.push_str(&format!("JUMP_IF_TRUE {:>4}\n", target));
472                }
473                x if x == Op::Pop as u8 => out.push_str("POP\n"),
474                x if x == Op::Call as u8 => {
475                    let argc = self.code[ip];
476                    ip += 1;
477                    out.push_str(&format!("CALL {:>4}\n", argc));
478                }
479                x if x == Op::TailCall as u8 => {
480                    let argc = self.code[ip];
481                    ip += 1;
482                    out.push_str(&format!("TAIL_CALL {:>4}\n", argc));
483                }
484                x if x == Op::Return as u8 => out.push_str("RETURN\n"),
485                x if x == Op::Closure as u8 => {
486                    let idx = self.read_u16(ip);
487                    ip += 2;
488                    out.push_str(&format!("CLOSURE {:>4}\n", idx));
489                }
490                x if x == Op::BuildList as u8 => {
491                    let count = self.read_u16(ip);
492                    ip += 2;
493                    out.push_str(&format!("BUILD_LIST {:>4}\n", count));
494                }
495                x if x == Op::BuildDict as u8 => {
496                    let count = self.read_u16(ip);
497                    ip += 2;
498                    out.push_str(&format!("BUILD_DICT {:>4}\n", count));
499                }
500                x if x == Op::Subscript as u8 => out.push_str("SUBSCRIPT\n"),
501                x if x == Op::Slice as u8 => out.push_str("SLICE\n"),
502                x if x == Op::GetProperty as u8 => {
503                    let idx = self.read_u16(ip);
504                    ip += 2;
505                    out.push_str(&format!(
506                        "GET_PROPERTY {:>4} ({})\n",
507                        idx, self.constants[idx as usize]
508                    ));
509                }
510                x if x == Op::GetPropertyOpt as u8 => {
511                    let idx = self.read_u16(ip);
512                    ip += 2;
513                    out.push_str(&format!(
514                        "GET_PROPERTY_OPT {:>4} ({})\n",
515                        idx, self.constants[idx as usize]
516                    ));
517                }
518                x if x == Op::SetProperty as u8 => {
519                    let idx = self.read_u16(ip);
520                    ip += 2;
521                    out.push_str(&format!(
522                        "SET_PROPERTY {:>4} ({})\n",
523                        idx, self.constants[idx as usize]
524                    ));
525                }
526                x if x == Op::SetSubscript as u8 => {
527                    let idx = self.read_u16(ip);
528                    ip += 2;
529                    out.push_str(&format!(
530                        "SET_SUBSCRIPT {:>4} ({})\n",
531                        idx, self.constants[idx as usize]
532                    ));
533                }
534                x if x == Op::MethodCall as u8 => {
535                    let idx = self.read_u16(ip);
536                    ip += 2;
537                    let argc = self.code[ip];
538                    ip += 1;
539                    out.push_str(&format!(
540                        "METHOD_CALL {:>4} ({}) argc={}\n",
541                        idx, self.constants[idx as usize], argc
542                    ));
543                }
544                x if x == Op::MethodCallOpt as u8 => {
545                    let idx = self.read_u16(ip);
546                    ip += 2;
547                    let argc = self.code[ip];
548                    ip += 1;
549                    out.push_str(&format!(
550                        "METHOD_CALL_OPT {:>4} ({}) argc={}\n",
551                        idx, self.constants[idx as usize], argc
552                    ));
553                }
554                x if x == Op::Concat as u8 => {
555                    let count = self.read_u16(ip);
556                    ip += 2;
557                    out.push_str(&format!("CONCAT {:>4}\n", count));
558                }
559                x if x == Op::IterInit as u8 => out.push_str("ITER_INIT\n"),
560                x if x == Op::IterNext as u8 => {
561                    let target = self.read_u16(ip);
562                    ip += 2;
563                    out.push_str(&format!("ITER_NEXT {:>4}\n", target));
564                }
565                x if x == Op::Throw as u8 => out.push_str("THROW\n"),
566                x if x == Op::TryCatchSetup as u8 => {
567                    let target = self.read_u16(ip);
568                    ip += 2;
569                    out.push_str(&format!("TRY_CATCH_SETUP {:>4}\n", target));
570                }
571                x if x == Op::PopHandler as u8 => out.push_str("POP_HANDLER\n"),
572                x if x == Op::Pipe as u8 => out.push_str("PIPE\n"),
573                x if x == Op::Parallel as u8 => out.push_str("PARALLEL\n"),
574                x if x == Op::ParallelMap as u8 => out.push_str("PARALLEL_MAP\n"),
575                x if x == Op::ParallelSettle as u8 => out.push_str("PARALLEL_SETTLE\n"),
576                x if x == Op::Spawn as u8 => out.push_str("SPAWN\n"),
577                x if x == Op::Import as u8 => {
578                    let idx = self.read_u16(ip);
579                    ip += 2;
580                    out.push_str(&format!(
581                        "IMPORT {:>4} ({})\n",
582                        idx, self.constants[idx as usize]
583                    ));
584                }
585                x if x == Op::SelectiveImport as u8 => {
586                    let path_idx = self.read_u16(ip);
587                    ip += 2;
588                    let names_idx = self.read_u16(ip);
589                    ip += 2;
590                    out.push_str(&format!(
591                        "SELECTIVE_IMPORT {:>4} ({}) names: {:>4} ({})\n",
592                        path_idx,
593                        self.constants[path_idx as usize],
594                        names_idx,
595                        self.constants[names_idx as usize]
596                    ));
597                }
598                x if x == Op::DeadlineSetup as u8 => out.push_str("DEADLINE_SETUP\n"),
599                x if x == Op::DeadlineEnd as u8 => out.push_str("DEADLINE_END\n"),
600                x if x == Op::BuildEnum as u8 => {
601                    let enum_idx = self.read_u16(ip);
602                    ip += 2;
603                    let variant_idx = self.read_u16(ip);
604                    ip += 2;
605                    let field_count = self.read_u16(ip);
606                    ip += 2;
607                    out.push_str(&format!(
608                        "BUILD_ENUM {:>4} ({}) {:>4} ({}) fields={}\n",
609                        enum_idx,
610                        self.constants[enum_idx as usize],
611                        variant_idx,
612                        self.constants[variant_idx as usize],
613                        field_count
614                    ));
615                }
616                x if x == Op::MatchEnum as u8 => {
617                    let enum_idx = self.read_u16(ip);
618                    ip += 2;
619                    let variant_idx = self.read_u16(ip);
620                    ip += 2;
621                    out.push_str(&format!(
622                        "MATCH_ENUM {:>4} ({}) {:>4} ({})\n",
623                        enum_idx,
624                        self.constants[enum_idx as usize],
625                        variant_idx,
626                        self.constants[variant_idx as usize]
627                    ));
628                }
629                x if x == Op::PopIterator as u8 => out.push_str("POP_ITERATOR\n"),
630                x if x == Op::TryUnwrap as u8 => out.push_str("TRY_UNWRAP\n"),
631                x if x == Op::CallSpread as u8 => out.push_str("CALL_SPREAD\n"),
632                x if x == Op::MethodCallSpread as u8 => {
633                    let idx = self.read_u16(ip + 1);
634                    ip += 2;
635                    out.push_str(&format!("METHOD_CALL_SPREAD {idx}\n"));
636                }
637                x if x == Op::Dup as u8 => out.push_str("DUP\n"),
638                x if x == Op::Swap as u8 => out.push_str("SWAP\n"),
639                x if x == Op::Yield as u8 => out.push_str("YIELD\n"),
640                _ => {
641                    out.push_str(&format!("UNKNOWN(0x{:02x})\n", op));
642                }
643            }
644        }
645        out
646    }
647}
648
649impl Default for Chunk {
650    fn default() -> Self {
651        Self::new()
652    }
653}