1use std::collections::HashMap;
2
3use super::chunk::{Chunk, FunctionDef};
4use super::instruction::Instruction;
5use super::opcode::Opcode;
6use super::value::Value;
7
8#[derive(Clone, Copy, Debug, PartialEq, Eq, Hash)]
11pub struct Label(u32);
12
13pub(crate) struct ChunkBuilder {
18 name: String,
19 constants: Vec<Value>,
20 code: Vec<Instruction>,
21 functions: Vec<FunctionDef>,
22 next_label: u32,
23 label_targets: HashMap<Label, u32>,
24 pending_jumps: Vec<(usize, Label)>,
26 fn_starts: HashMap<String, u32>,
27}
28
29impl ChunkBuilder {
30 pub fn new(name: impl Into<String>) -> Self {
31 ChunkBuilder {
32 name: name.into(),
33 constants: Vec::new(),
34 code: Vec::new(),
35 functions: Vec::new(),
36 next_label: 0,
37 label_targets: HashMap::new(),
38 pending_jumps: Vec::new(),
39 fn_starts: HashMap::new(),
40 }
41 }
42
43 pub fn const_(&mut self, v: Value) -> u32 {
44 if let Some(pos) = self.constants.iter().position(|c| c == &v) {
47 return pos as u32;
48 }
49 self.constants.push(v);
50 (self.constants.len() - 1) as u32
51 }
52
53 pub fn new_label(&mut self) -> Label {
54 let l = Label(self.next_label);
55 self.next_label += 1;
56 l
57 }
58
59 pub fn bind_label(&mut self, label: Label) {
61 self.label_targets.insert(label, self.code.len() as u32);
62 }
63
64 fn emit(&mut self, instr: Instruction) -> usize {
65 self.code.push(instr);
66 self.code.len() - 1
67 }
68
69 pub fn emit_halt(&mut self) {
70 self.emit(Instruction::nullary(Opcode::Halt));
71 }
72
73 pub fn emit_load_const(&mut self, dst: u8, konst: u32) {
74 self.emit(Instruction::new(Opcode::LoadConst, dst, 0, 0, konst as i32));
75 }
76
77 pub fn emit_load_imm(&mut self, dst: u8, imm: i32) {
78 self.emit(Instruction::a_imm(Opcode::LoadImm, dst, imm));
79 }
80
81 pub fn emit_move(&mut self, dst: u8, src: u8) {
82 self.emit(Instruction::abc(Opcode::Move, dst, src, 0));
83 }
84
85 pub fn emit_binop(&mut self, op: Opcode, dst: u8, lhs: u8, rhs: u8) {
86 debug_assert!(matches!(
87 op,
88 Opcode::Add | Opcode::Sub | Opcode::Mul | Opcode::Div | Opcode::Mod
89 | Opcode::Eq | Opcode::Lt | Opcode::Le
90 ));
91 self.emit(Instruction::abc(op, dst, lhs, rhs));
92 }
93
94 pub fn emit_neg(&mut self, dst: u8, src: u8) {
95 self.emit(Instruction::abc(Opcode::Neg, dst, src, 0));
96 }
97
98 pub fn emit_jump(&mut self, target: Label) {
99 let idx = self.emit(Instruction::only_imm(Opcode::Jump, 0));
100 self.pending_jumps.push((idx, target));
101 }
102
103 pub fn emit_branch(&mut self, cond: u8, target: Label) {
104 let idx = self.emit(Instruction::a_imm(Opcode::Branch, cond, 0));
105 self.pending_jumps.push((idx, target));
106 }
107
108 pub fn emit_spawn(&mut self, dst: u8, function: u32, argc: u8) {
109 self.emit_spawn_with_rights(dst, function, argc, crate::bytecode::CapRights::FLOW);
110 }
111
112 pub fn emit_spawn_with_rights(
115 &mut self,
116 dst: u8,
117 function: u32,
118 argc: u8,
119 rights: crate::bytecode::CapRights,
120 ) {
121 self.emit(Instruction::new(
122 Opcode::Spawn,
123 dst,
124 argc,
125 rights.bits_u8(),
126 function as i32,
127 ));
128 }
129
130 pub fn emit_delegate(&mut self, dst: u8, src_cap: u8, rights: crate::bytecode::CapRights) {
131 self.emit(Instruction::new(
132 Opcode::Delegate,
133 dst,
134 src_cap,
135 255,
136 rights.bits() as i32,
137 ));
138 }
139
140 pub fn emit_yield(&mut self) {
141 self.emit(Instruction::nullary(Opcode::Yield));
142 }
143
144 pub fn emit_sleep(&mut self, millis_reg: u8) {
145 self.emit(Instruction::abc(Opcode::Sleep, millis_reg, 0, 0));
146 }
147
148 pub fn emit_exit(&mut self, reg: u8) {
149 self.emit(Instruction::abc(Opcode::Exit, reg, 0, 0));
150 }
151
152 pub fn emit_self_pid(&mut self, dst: u8) {
154 self.emit(Instruction::abc(Opcode::SelfPid, dst, 0, 0));
155 }
156
157 pub fn emit_send(&mut self, target_cap_reg: u8, msg_reg: u8) {
159 self.emit(Instruction::abc(Opcode::Send, target_cap_reg, msg_reg, 0));
160 }
161
162 pub fn emit_receive(&mut self, dst: u8) {
163 self.emit(Instruction::abc(Opcode::Receive, dst, 0, 0));
164 }
165
166 pub fn emit_receive_timeout(&mut self, dst: u8, millis_reg: u8) {
167 self.emit(Instruction::abc(Opcode::ReceiveTimeout, dst, millis_reg, 0));
168 }
169
170 pub fn emit_receive_match(&mut self, dst: u8, tag_reg: u8) {
172 self.emit(Instruction::abc(Opcode::ReceiveMatch, dst, tag_reg, 0));
173 }
174
175 pub fn emit_receive_match_imm(&mut self, dst: u8, tag: u16) {
177 self.emit(Instruction::a_imm(Opcode::ReceiveMatchImm, dst, i32::from(tag)));
178 }
179
180 pub fn emit_ask(&mut self, dest: u8, target_cap_reg: u8, msg_reg: u8) {
188 self.emit(Instruction::abc(Opcode::Ask, dest, target_cap_reg, msg_reg));
189 }
190
191 pub fn emit_ask_timeout(
193 &mut self,
194 dest: u8,
195 target_cap_reg: u8,
196 msg_reg: u8,
197 millis_reg: u8,
198 ) {
199 self.emit(Instruction::new(
200 Opcode::AskTimeout,
201 dest,
202 target_cap_reg,
203 msg_reg,
204 i32::from(millis_reg),
205 ));
206 }
207
208 pub fn emit_monitor(&mut self, dest: u8, target_cap_reg: u8) {
209 self.emit(Instruction::abc(Opcode::Monitor, dest, target_cap_reg, 0));
210 }
211
212 pub fn emit_demonitor(&mut self, monitor_reg: u8) {
213 self.emit(Instruction::abc(Opcode::Demonitor, monitor_reg, 0, 0));
214 }
215
216 pub fn emit_link(&mut self, dest: u8, target_cap_reg: u8) {
217 self.emit(Instruction::abc(Opcode::Link, dest, target_cap_reg, 0));
218 }
219
220 pub fn emit_unlink(&mut self, link_reg: u8) {
221 self.emit(Instruction::abc(Opcode::Unlink, link_reg, 0, 0));
222 }
223
224 pub fn emit_trap(&mut self, code: i32) {
225 self.emit(Instruction::only_imm(Opcode::Trap, code));
226 }
227
228 pub fn emit_call(&mut self, dst: u8, function: u32, argc: u8) {
229 self.emit(Instruction::new(Opcode::Call, dst, argc, 0, function as i32));
230 }
231
232 pub fn emit_call_native(&mut self, dst: u8, native_index: u32, argc: u8) {
239 self.emit(Instruction::new(
240 Opcode::CallNative,
241 dst,
242 argc,
243 0,
244 native_index as i32,
245 ));
246 }
247
248 pub fn emit_native1_from(&mut self, dst: u8, src: u8, native_index: u32) {
270 self.emit_move(dst, src);
271 self.emit_call_native(dst, native_index, 1);
272 }
273
274 pub fn emit_native_n(&mut self, base: u8, native_index: u32, argc: u8) {
280 self.emit_call_native(base, native_index, argc);
281 }
282
283 pub fn emit_return(&mut self, reg: u8) {
284 self.emit(Instruction::abc(Opcode::Return, reg, 0, 0));
285 }
286
287 pub fn begin_function(&mut self, name: impl Into<String>, arity: u8, num_registers: u8) -> u32 {
293 let name = name.into();
294 let entry = self.code.len() as u32;
295 let idx = self.functions.len() as u32;
296 self.functions.push(FunctionDef {
297 name: name.clone(),
298 entry,
299 arity,
300 num_registers,
301 });
302 self.fn_starts.insert(name, idx);
303 idx
304 }
305
306 pub fn function_index(&self, name: &str) -> Option<u32> {
307 self.fn_starts.get(name).copied()
308 }
309
310 pub fn set_num_registers(&mut self, function_index: u32, num_registers: u8) {
315 if let Some(def) = self.functions.get_mut(function_index as usize) {
316 def.num_registers = num_registers;
317 }
318 }
319
320 pub fn finish(mut self) -> Chunk {
328 for (idx, label) in self.pending_jumps.drain(..) {
329 match self.label_targets.get(&label) {
330 Some(target) => {
331 let offset = *target as i64 - (idx as i64 + 1);
333 self.code[idx].imm = offset as i32;
334 }
335 None => {
336 self.code[idx].imm = 0;
338 }
339 }
340 }
341 Chunk {
342 name: self.name,
343 constants: self.constants,
344 code: self.code,
345 functions: self.functions,
346 }
347 }
348}
349#[cfg(test)]
350mod tests {
351 use super::*;
352
353 #[test]
354 fn emit_native1_from_never_clobbers_source_register() {
355 let mut b = ChunkBuilder::new("clobber-test");
356 b.begin_function("main", 0, 8);
357 b.emit_native1_from(1, 0, 10);
358 b.emit_native1_from(2, 0, 11);
359 b.emit_native1_from(3, 0, 12);
360 let chunk = b.finish();
361
362 assert_eq!(chunk.code.len(), 6);
363 for (move_idx, call_idx, expected_native) in
364 [(0usize, 1usize, 10i32), (2, 3, 11), (4, 5, 12)]
365 {
366 assert_eq!(chunk.code[move_idx].op, Opcode::Move);
367 assert_eq!(chunk.code[move_idx].b, 0);
368 assert_eq!(chunk.code[call_idx].op, Opcode::CallNative);
369 assert_ne!(chunk.code[call_idx].a, 0);
370 assert_eq!(chunk.code[call_idx].imm, expected_native);
371 }
372 }
373
374 #[test]
375 fn emit_native_n_is_a_plain_call_native_with_no_extra_instructions() {
376 let mut b = ChunkBuilder::new("native-n-test");
377 b.begin_function("main", 0, 8);
378 b.emit_load_imm(1, 7);
379 b.emit_load_imm(2, 1);
380 b.emit_native_n(1, 99, 2);
381 let chunk = b.finish();
382
383 assert_eq!(chunk.code.len(), 3);
384 assert_eq!(chunk.code[2].op, Opcode::CallNative);
385 assert_eq!(chunk.code[2].a, 1);
386 assert_eq!(chunk.code[2].b, 2);
387 assert_eq!(chunk.code[2].imm, 99);
388 }
389
390 #[test]
391 fn macro_forms_produce_identical_bytecode_to_the_methods() {
392 let mut via_method = ChunkBuilder::new("via-method");
393 via_method.begin_function("main", 0, 8);
394 via_method.emit_native1_from(1, 0, 10);
395 via_method.emit_native_n(1, 99, 2);
396
397 let mut via_macro = ChunkBuilder::new("via-macro");
398 via_macro.begin_function("main", 0, 8);
399 crate::emit_native1_from!(via_macro, 1, 0, 10);
400 crate::emit_native_n!(via_macro, 1, 99, 2);
401
402 assert_eq!(via_method.finish().code, via_macro.finish().code);
403 }
404}