1use std::ops::{Index, IndexMut};
30
31use rucc_base::{Idx, Symbol};
32use rucc_diag::Span;
33use rucc_target::Slot;
34
35use crate::inst::{
36 Abi, AbiList, AsmInfo, Block, BlockCall, BlockCallList, BlockData, CallInfo, Def, Extra, Imm,
37 ImmList, Inst, InstData, InstLayout, MemInfo, Sig, Signature, SlotList, SwitchInfo, VaInfo,
38 Value, ValueData, ValueList,
39};
40use crate::module::{Linkage, Visibility};
41use crate::{Attrs, Facts, Flags, FloatPred, IntPred, MemOrder, Opcode, Type};
42
43#[derive(Debug)]
45pub struct Func {
46 pub name: Symbol,
48 pub linkage: Linkage,
50 pub visibility: Visibility,
52 pub section: Option<Symbol>,
55 pub align: Option<u32>,
62 pub attrs: Attrs,
65
66 values: Vec<ValueData>,
67 insts: Vec<InstData>,
68 inst_layout: Vec<InstLayout>,
69 inst_spans: Vec<Span>,
70 blocks: Vec<BlockData>,
71
72 value_pool: Vec<Value>,
73 block_calls: Vec<BlockCall>,
74 imms: Vec<Imm>,
75 mem: Vec<MemInfo>,
76 calls: Vec<CallInfo>,
77 abis: Vec<Abi>,
78 switches: Vec<SwitchInfo>,
79 asms: Vec<AsmInfo>,
80 slots: Vec<Slot>,
81 va_objects: Vec<VaInfo>,
82 signatures: Vec<Signature>,
83 facts: Vec<(Value, Facts)>,
84
85 first_block: Option<Block>,
86 last_block: Option<Block>,
87}
88
89impl Func {
90 #[must_use]
97 pub fn new(name: Symbol, signature: Signature) -> Self {
98 Self {
99 name,
100 linkage: Linkage::External,
101 visibility: Visibility::Default,
102 section: None,
103 align: None,
104 attrs: Attrs::NONE,
105 values: Vec::new(),
106 insts: Vec::new(),
107 inst_layout: Vec::new(),
108 inst_spans: Vec::new(),
109 blocks: Vec::new(),
110 value_pool: Vec::new(),
111 block_calls: Vec::new(),
112 imms: Vec::new(),
113 mem: Vec::new(),
114 calls: Vec::new(),
115 abis: Vec::new(),
116 switches: Vec::new(),
117 asms: Vec::new(),
118 slots: Vec::new(),
119 va_objects: Vec::new(),
120 signatures: vec![signature],
121 facts: Vec::new(),
122 first_block: None,
123 last_block: None,
124 }
125 }
126
127 #[must_use]
129 pub fn signature(&self) -> &Signature {
130 &self.signatures[0]
131 }
132
133 pub fn signatures(&self) -> impl Iterator<Item = &Signature> {
135 self.signatures.iter()
136 }
137
138 pub fn add_signature(&mut self, signature: Signature) -> Sig {
140 self.signatures.push(signature);
141 Idx::from_usize(self.signatures.len() - 1)
142 }
143
144 #[must_use]
149 pub fn entry(&self) -> Option<Block> {
150 self.first_block
151 }
152
153 #[must_use]
160 pub fn is_declaration(&self) -> bool {
161 self.first_block.is_none()
162 }
163
164 pub fn create_block(&mut self) -> Block {
168 let block = Idx::from_usize(self.blocks.len());
169 self.blocks.push(BlockData { prev: self.last_block, ..BlockData::default() });
170 match self.last_block {
171 Some(last) => self.blocks[last.index()].next = Some(block),
172 None => self.first_block = Some(block),
173 }
174 self.last_block = Some(block);
175 block
176 }
177
178 pub fn remove_block(&mut self, block: Block) {
191 assert!(self.first_block != Some(block), "the entry block is not removable");
192 let (prev, next) = (self.blocks[block.index()].prev, self.blocks[block.index()].next);
193 match prev {
194 Some(prev) => self.blocks[prev.index()].next = next,
195 None => self.first_block = next,
196 }
197 match next {
198 Some(next) => self.blocks[next.index()].prev = prev,
199 None => self.last_block = prev,
200 }
201 let insts: Vec<Inst> = self.insts(block).collect();
205 for inst in insts {
206 self.inst_layout[inst.index()] = InstLayout::default();
207 }
208 self.blocks[block.index()] = BlockData::default();
209 }
210
211 pub fn append_param(&mut self, block: Block, ty: Type) -> Value {
220 let index = u32::try_from(self.blocks[block.index()].params.len())
221 .expect("a block with four billion parameters");
222 let value = self.add_value(ValueData { ty, def: Def::Param { block, index } });
223 self.blocks[block.index()].params.push(value);
224 value
225 }
226
227 pub fn retain_params(&mut self, block: Block, mut keep: impl FnMut(Value) -> bool) {
239 let mut params = std::mem::take(&mut self.blocks[block.index()].params);
240 params.retain(|&value| keep(value));
241 for (index, &value) in params.iter().enumerate() {
242 let index = u32::try_from(index).expect("a block with four billion parameters");
243 self.values[value.index()].def = Def::Param { block, index };
244 }
245 self.blocks[block.index()].params = params;
246 }
247
248 pub fn retype(&mut self, value: Value, ty: Type) {
260 self.values[value.index()].ty = ty;
261 }
262
263 pub fn values(&self) -> impl Iterator<Item = Value> + use<'_> {
268 (0..self.values.len()).map(Idx::from_usize)
269 }
270
271 pub fn blocks(&self) -> impl Iterator<Item = Block> + use<'_> {
273 std::iter::successors(self.first_block, move |&block| self.blocks[block.index()].next)
274 }
275
276 pub fn insts(&self, block: Block) -> impl Iterator<Item = Inst> + use<'_> {
278 std::iter::successors(self.blocks[block.index()].first, move |&inst| {
279 self.inst_layout[inst.index()].next
280 })
281 }
282
283 pub fn insts_backwards(&self, block: Block) -> impl Iterator<Item = Inst> + use<'_> {
289 std::iter::successors(self.blocks[block.index()].last, move |&inst| {
290 self.inst_layout[inst.index()].prev
291 })
292 }
293
294 #[must_use]
296 pub fn terminator(&self, block: Block) -> Option<Inst> {
297 self.blocks[block.index()].last.filter(|&inst| self.is_terminator(inst))
298 }
299
300 #[must_use]
306 pub fn is_terminator(&self, inst: Inst) -> bool {
307 let data = &self[inst];
308 match data.extra {
309 Extra::Asm(info) => {
310 data.opcode.is_terminator() || !self.asms[info.index()].targets.is_empty()
311 }
312 _ => data.opcode.is_terminator(),
313 }
314 }
315
316 pub fn create_inst(&mut self, mut data: InstData, results: &[Type], span: Span) -> Inst {
327 let inst = Idx::from_usize(self.insts.len());
328 data.results = u8::try_from(results.len()).expect("an instruction with too many results");
329 data.first_result = results.first().map(|_| Idx::from_usize(self.values.len()));
330 for (index, &ty) in results.iter().enumerate() {
331 let index = u8::try_from(index).expect("checked just above");
332 self.add_value(ValueData { ty, def: Def::Result { inst, index } });
333 }
334 self.insts.push(data);
335 self.inst_layout.push(InstLayout::default());
336 self.inst_spans.push(span);
337 inst
338 }
339
340 pub fn append_inst(&mut self, block: Block, inst: Inst) {
347 assert!(self.inst_layout[inst.index()].block.is_none(), "the instruction is in a block");
348 let last = self.blocks[block.index()].last;
349 self.inst_layout[inst.index()] = InstLayout { block: Some(block), prev: last, next: None };
350 match last {
351 Some(last) => self.inst_layout[last.index()].next = Some(inst),
352 None => self.blocks[block.index()].first = Some(inst),
353 }
354 self.blocks[block.index()].last = Some(inst);
355 }
356
357 pub fn insert_before(&mut self, inst: Inst, before: Inst) {
363 assert!(self.inst_layout[inst.index()].block.is_none(), "the instruction is in a block");
364 let at = self.inst_layout[before.index()];
365 let block = at.block.expect("the instruction to insert before is not in a block");
366 self.inst_layout[inst.index()] =
367 InstLayout { block: Some(block), prev: at.prev, next: Some(before) };
368 self.inst_layout[before.index()].prev = Some(inst);
369 match at.prev {
370 Some(prev) => self.inst_layout[prev.index()].next = Some(inst),
371 None => self.blocks[block.index()].first = Some(inst),
372 }
373 }
374
375 pub fn insert_after(&mut self, inst: Inst, after: Inst) {
387 assert!(self.inst_layout[inst.index()].block.is_none(), "the instruction is in a block");
388 let at = self.inst_layout[after.index()];
389 let block = at.block.expect("the instruction to insert after is not in a block");
390 assert!(at.next.is_some(), "nothing goes after a terminator");
391 self.inst_layout[inst.index()] =
392 InstLayout { block: Some(block), prev: Some(after), next: at.next };
393 self.inst_layout[after.index()].next = Some(inst);
394 if let Some(next) = at.next {
395 self.inst_layout[next.index()].prev = Some(inst);
396 }
397 }
398
399 pub fn remove_inst(&mut self, inst: Inst) {
409 let at = self.inst_layout[inst.index()];
410 let block = at.block.expect("the instruction is not in a block");
411 match at.prev {
412 Some(prev) => self.inst_layout[prev.index()].next = at.next,
413 None => self.blocks[block.index()].first = at.next,
414 }
415 match at.next {
416 Some(next) => self.inst_layout[next.index()].prev = at.prev,
417 None => self.blocks[block.index()].last = at.prev,
418 }
419 self.inst_layout[inst.index()] = InstLayout::default();
420 }
421
422 #[must_use]
424 pub fn block_of(&self, inst: Inst) -> Option<Block> {
425 self.inst_layout[inst.index()].block
426 }
427
428 #[must_use]
440 pub fn mem_in(&self, inst: Inst) -> Option<Value> {
441 let args = &self[self[inst].args];
442 args.last().copied().filter(|&arg| self[arg].ty.is_mem())
443 }
444
445 #[must_use]
455 pub fn mem_out(&self, inst: Inst) -> Option<Value> {
456 self[inst].results().last().filter(|&result| self[result].ty.is_mem())
457 }
458
459 #[must_use]
461 pub fn carries_mem(&self, inst: Inst) -> bool {
462 self.mem_in(inst).is_some() || self.mem_out(inst).is_some()
463 }
464
465 pub fn with_mem(&mut self, inst: Inst, incoming: Value) -> Inst {
481 assert!(self[incoming].ty.is_mem(), "the incoming version of memory is not memory");
482 assert!(self[inst].opcode.touches_memory(), "this does not touch memory");
483 assert!(self.mem_in(inst).is_none(), "this is already on the memory chain");
484 let data = self[inst];
485 let mut args = self[data.args].to_vec();
486 args.push(incoming);
487 let mut results: Vec<Type> = data.results().map(|result| self[result].ty).collect();
488 if data.opcode.writes_memory() {
489 results.push(Type::MEM);
490 }
491 let span = self.span(inst);
492 let args = self.push_values(&args);
493 self.create_inst(InstData { args, ..data }, &results, span)
494 }
495
496 #[must_use]
498 pub fn span(&self, inst: Inst) -> Span {
499 self.inst_spans[inst.index()]
500 }
501
502 pub fn successors(&self, inst: Inst) -> impl Iterator<Item = BlockCall> + use<'_> {
507 self.block_calls[self.target_list(inst).as_usize_range()].iter().copied()
508 }
509
510 #[must_use]
517 pub fn target_list(&self, inst: Inst) -> BlockCallList {
518 match self[inst].extra {
519 Extra::Targets(targets) => targets,
520 Extra::Switch(info) => self.switches[info.index()].targets,
521 Extra::Asm(info) => self.asms[info.index()].targets,
522 _ => BlockCallList::EMPTY,
523 }
524 }
525
526 pub fn push_values(&mut self, values: &[Value]) -> ValueList {
530 let start = Idx::from_usize(self.value_pool.len());
531 self.value_pool.extend_from_slice(values);
532 ValueList::new(start, Idx::from_usize(self.value_pool.len()))
533 }
534
535 pub fn append_arg(&mut self, list: ValueList, value: Value) -> ValueList {
542 let range = list.as_usize_range();
543 if range.end == self.value_pool.len() {
544 self.value_pool.push(value);
545 return ValueList::new(Idx::from_usize(range.start), Idx::from_usize(range.end + 1));
546 }
547 let start = self.value_pool.len();
548 self.value_pool.extend_from_within(range);
549 self.value_pool.push(value);
550 ValueList::new(Idx::from_usize(start), Idx::from_usize(self.value_pool.len()))
551 }
552
553 pub fn rewrite(&mut self, list: ValueList, mut with: impl FnMut(Value) -> Value) {
558 for value in &mut self.value_pool[list.as_usize_range()] {
559 *value = with(*value);
560 }
561 }
562
563 pub fn push_block_calls(&mut self, calls: &[BlockCall]) -> BlockCallList {
565 let start = Idx::from_usize(self.block_calls.len());
566 self.block_calls.extend_from_slice(calls);
567 BlockCallList::new(start, Idx::from_usize(self.block_calls.len()))
568 }
569
570 pub fn set_block_call(&mut self, at: Idx<BlockCall>, call: BlockCall) {
572 self.block_calls[at.index()] = call;
573 }
574
575 pub fn push_imms(&mut self, imms: &[Imm]) -> ImmList {
577 let start = Idx::from_usize(self.imms.len());
578 self.imms.extend_from_slice(imms);
579 ImmList::new(start, Idx::from_usize(self.imms.len()))
580 }
581
582 pub fn add_imm(&mut self, imm: Imm) -> Idx<Imm> {
584 self.imms.push(imm);
585 Idx::from_usize(self.imms.len() - 1)
586 }
587
588 pub fn push_slots(&mut self, slots: &[Slot]) -> SlotList {
590 let start = Idx::from_usize(self.slots.len());
591 self.slots.extend_from_slice(slots);
592 SlotList::new(start, Idx::from_usize(self.slots.len()))
593 }
594
595 pub fn add_va_object(&mut self, info: VaInfo) -> Idx<VaInfo> {
597 self.va_objects.push(info);
598 Idx::from_usize(self.va_objects.len() - 1)
599 }
600
601 pub fn add_mem(&mut self, info: MemInfo) -> Idx<MemInfo> {
603 self.mem.push(info);
604 Idx::from_usize(self.mem.len() - 1)
605 }
606
607 pub fn push_abis(&mut self, abis: &[Abi]) -> AbiList {
609 let start = Idx::from_usize(self.abis.len());
610 self.abis.extend_from_slice(abis);
611 AbiList::new(start, Idx::from_usize(self.abis.len()))
612 }
613
614 pub fn add_call(&mut self, info: CallInfo) -> Idx<CallInfo> {
616 self.calls.push(info);
617 Idx::from_usize(self.calls.len() - 1)
618 }
619
620 pub fn add_switch(&mut self, info: SwitchInfo) -> Idx<SwitchInfo> {
622 self.switches.push(info);
623 Idx::from_usize(self.switches.len() - 1)
624 }
625
626 pub fn add_asm(&mut self, info: AsmInfo) -> Idx<AsmInfo> {
628 self.asms.push(info);
629 Idx::from_usize(self.asms.len() - 1)
630 }
631
632 #[must_use]
635 pub fn counts(&self) -> Counts {
636 Counts { values: self.values.len(), insts: self.insts.len(), blocks: self.blocks.len() }
637 }
638
639 #[must_use]
645 pub fn facts(&self, value: Value) -> Facts {
646 match self.facts.binary_search_by_key(&value.raw(), |&(at, _)| at.raw()) {
647 Ok(at) => self.facts[at].1,
648 Err(_) => Facts::NONE,
649 }
650 }
651
652 pub fn set_facts(&mut self, value: Value, facts: Facts) {
657 let found = self.facts.binary_search_by_key(&value.raw(), |&(at, _)| at.raw());
658 match (found, facts.is_empty()) {
659 (Ok(at), true) => drop(self.facts.remove(at)),
660 (Ok(at), false) => self.facts[at].1 = facts,
661 (Err(_), true) => {}
662 (Err(at), false) => self.facts.insert(at, (value, facts)),
663 }
664 }
665
666 pub fn known(&self) -> impl Iterator<Item = (Value, Facts)> + '_ {
668 self.facts.iter().copied()
669 }
670
671 fn add_value(&mut self, data: ValueData) -> Value {
672 self.values.push(data);
673 Idx::from_usize(self.values.len() - 1)
674 }
675}
676
677#[derive(Clone, Copy, Debug, PartialEq, Eq)]
679pub struct Counts {
680 pub values: usize,
682 pub insts: usize,
684 pub blocks: usize,
686}
687
688impl Index<Value> for Func {
691 type Output = ValueData;
692
693 fn index(&self, value: Value) -> &ValueData {
694 &self.values[value.index()]
695 }
696}
697
698impl Index<Inst> for Func {
699 type Output = InstData;
700
701 fn index(&self, inst: Inst) -> &InstData {
702 &self.insts[inst.index()]
703 }
704}
705
706impl IndexMut<Inst> for Func {
707 fn index_mut(&mut self, inst: Inst) -> &mut InstData {
708 &mut self.insts[inst.index()]
709 }
710}
711
712impl Index<Block> for Func {
713 type Output = BlockData;
714
715 fn index(&self, block: Block) -> &BlockData {
716 &self.blocks[block.index()]
717 }
718}
719
720impl Index<Sig> for Func {
721 type Output = Signature;
722
723 fn index(&self, sig: Sig) -> &Signature {
724 &self.signatures[sig.index()]
725 }
726}
727
728impl Index<ValueList> for Func {
729 type Output = [Value];
730
731 fn index(&self, list: ValueList) -> &[Value] {
732 &self.value_pool[list.as_usize_range()]
733 }
734}
735
736impl Index<BlockCallList> for Func {
737 type Output = [BlockCall];
738
739 fn index(&self, list: BlockCallList) -> &[BlockCall] {
740 &self.block_calls[list.as_usize_range()]
741 }
742}
743
744impl Index<Idx<BlockCall>> for Func {
745 type Output = BlockCall;
746
747 fn index(&self, at: Idx<BlockCall>) -> &BlockCall {
748 &self.block_calls[at.index()]
749 }
750}
751
752impl Index<ImmList> for Func {
753 type Output = [Imm];
754
755 fn index(&self, list: ImmList) -> &[Imm] {
756 &self.imms[list.as_usize_range()]
757 }
758}
759
760impl Index<Idx<Imm>> for Func {
761 type Output = Imm;
762
763 fn index(&self, at: Idx<Imm>) -> &Imm {
764 &self.imms[at.index()]
765 }
766}
767
768impl Index<Idx<MemInfo>> for Func {
769 type Output = MemInfo;
770
771 fn index(&self, at: Idx<MemInfo>) -> &MemInfo {
772 &self.mem[at.index()]
773 }
774}
775
776impl Index<AbiList> for Func {
777 type Output = [Abi];
778
779 fn index(&self, list: AbiList) -> &[Abi] {
780 &self.abis[list.as_usize_range()]
781 }
782}
783
784impl Index<SlotList> for Func {
785 type Output = [Slot];
786
787 fn index(&self, list: SlotList) -> &[Slot] {
788 &self.slots[list.as_usize_range()]
789 }
790}
791
792impl Index<Idx<VaInfo>> for Func {
793 type Output = VaInfo;
794
795 fn index(&self, at: Idx<VaInfo>) -> &VaInfo {
796 &self.va_objects[at.index()]
797 }
798}
799
800impl Index<Idx<CallInfo>> for Func {
801 type Output = CallInfo;
802
803 fn index(&self, at: Idx<CallInfo>) -> &CallInfo {
804 &self.calls[at.index()]
805 }
806}
807
808impl Index<Idx<SwitchInfo>> for Func {
809 type Output = SwitchInfo;
810
811 fn index(&self, at: Idx<SwitchInfo>) -> &SwitchInfo {
812 &self.switches[at.index()]
813 }
814}
815
816impl Index<Idx<AsmInfo>> for Func {
817 type Output = AsmInfo;
818
819 fn index(&self, at: Idx<AsmInfo>) -> &AsmInfo {
820 &self.asms[at.index()]
821 }
822}
823
824#[derive(Debug)]
831pub struct Builder<'a> {
832 func: &'a mut Func,
833 block: Block,
834 span: Span,
835}
836
837impl<'a> Builder<'a> {
838 pub fn new(func: &'a mut Func, block: Block) -> Self {
840 Self { func, block, span: Span::DUMMY }
841 }
842
843 #[must_use]
845 pub fn at(mut self, span: Span) -> Self {
846 self.span = span;
847 self
848 }
849
850 pub fn set_span(&mut self, span: Span) {
852 self.span = span;
853 }
854
855 pub fn func(&mut self) -> &mut Func {
857 self.func
858 }
859
860 #[must_use]
862 pub fn block(&self) -> Block {
863 self.block
864 }
865
866 pub fn inst(&mut self, data: InstData, results: &[Type]) -> Inst {
868 let inst = self.func.create_inst(data, results, self.span);
869 self.func.append_inst(self.block, inst);
870 inst
871 }
872
873 pub fn value(&mut self, data: InstData, ty: Type) -> Value {
879 let inst = self.inst(data, &[ty]);
880 self.func[inst].first_result.expect("one result was asked for")
881 }
882
883 pub fn iconst(&mut self, ty: Type, value: i128) -> Value {
889 let imm = self.func.add_imm(Imm::int(value, ty.lane()));
890 self.value(InstData { extra: Extra::Imm(imm), ..InstData::new(Opcode::IConst) }, ty)
891 }
892
893 pub fn fconst(&mut self, ty: Type, bits: u128) -> Value {
895 let imm = self.func.add_imm(Imm::from_bits(bits));
896 self.value(InstData { extra: Extra::Imm(imm), ..InstData::new(Opcode::FConst) }, ty)
897 }
898
899 pub fn binary(&mut self, opcode: Opcode, lhs: Value, rhs: Value, flags: Flags) -> Value {
901 let ty = self.func[lhs].ty;
902 let args = self.func.push_values(&[lhs, rhs]);
903 self.value(InstData { args, flags, ..InstData::new(opcode) }, ty)
904 }
905
906 pub fn checked(&mut self, opcode: Opcode, lhs: Value, rhs: Value) -> (Value, Value) {
919 let ty = self.func[lhs].ty;
920 let args = self.func.push_values(&[lhs, rhs]);
921 let results = [ty, ty.with_lane(Type::I1)];
922 let inst = self.inst(InstData { args, ..InstData::new(opcode) }, &results);
923 let mut answers = self.func[inst].results();
924 let value = answers.next().expect("two results were asked for");
925 let wrapped = answers.next().expect("two results were asked for");
926 (value, wrapped)
927 }
928
929 pub fn unary(&mut self, opcode: Opcode, arg: Value, ty: Type) -> Value {
931 let args = self.func.push_values(&[arg]);
932 self.value(InstData { args, ..InstData::new(opcode) }, ty)
933 }
934
935 pub fn icmp(&mut self, pred: IntPred, lhs: Value, rhs: Value) -> Value {
937 let ty = self.func[lhs].ty.with_lane(Type::I1);
938 let args = self.func.push_values(&[lhs, rhs]);
939 self.value(
940 InstData { args, extra: Extra::IntPred(pred), ..InstData::new(Opcode::ICmp) },
941 ty,
942 )
943 }
944
945 pub fn fcmp(&mut self, pred: FloatPred, lhs: Value, rhs: Value, flags: Flags) -> Value {
947 let ty = self.func[lhs].ty.with_lane(Type::I1);
948 let args = self.func.push_values(&[lhs, rhs]);
949 self.value(
950 InstData { args, flags, extra: Extra::FloatPred(pred), ..InstData::new(Opcode::FCmp) },
951 ty,
952 )
953 }
954
955 pub fn mem_entry(&mut self) -> Value {
959 self.value(InstData::new(Opcode::MemEntry), Type::MEM)
960 }
961
962 pub fn load(&mut self, ty: Type, addr: Value, info: MemInfo, flags: Flags) -> Value {
964 let mem = self.func.add_mem(info);
965 let args = self.func.push_values(&[addr]);
966 self.value(
967 InstData { args, flags, extra: Extra::Mem(mem), ..InstData::new(Opcode::Load) },
968 ty,
969 )
970 }
971
972 pub fn store(&mut self, value: Value, addr: Value, info: MemInfo, flags: Flags) -> Inst {
974 let mem = self.func.add_mem(info);
975 let args = self.func.push_values(&[value, addr]);
976 self.inst(
977 InstData { args, flags, extra: Extra::Mem(mem), ..InstData::new(Opcode::Store) },
978 &[],
979 )
980 }
981
982 pub fn atomic_load(&mut self, ty: Type, addr: Value, info: MemInfo, flags: Flags) -> Value {
990 let mem = self.func.add_mem(info);
991 let args = self.func.push_values(&[addr]);
992 self.value(
993 InstData { args, flags, extra: Extra::Mem(mem), ..InstData::new(Opcode::AtomicLoad) },
994 ty,
995 )
996 }
997
998 pub fn atomic_store(&mut self, value: Value, addr: Value, info: MemInfo, flags: Flags) -> Inst {
1000 let mem = self.func.add_mem(info);
1001 let args = self.func.push_values(&[value, addr]);
1002 self.inst(
1003 InstData { args, flags, extra: Extra::Mem(mem), ..InstData::new(Opcode::AtomicStore) },
1004 &[],
1005 )
1006 }
1007
1008 pub fn fence(&mut self, order: MemOrder) -> Inst {
1010 self.inst(InstData { extra: Extra::Order(order), ..InstData::new(Opcode::Fence) }, &[])
1011 }
1012
1013 pub fn jump(&mut self, target: Block, args: &[Value]) -> Inst {
1015 let call = self.block_call(target, args);
1016 let targets = self.func.push_block_calls(&[call]);
1017 self.inst(InstData { extra: Extra::Targets(targets), ..InstData::new(Opcode::Jump) }, &[])
1018 }
1019
1020 pub fn block_addr(&mut self, target: Block) -> Value {
1026 let call = self.block_call(target, &[]);
1027 let targets = self.func.push_block_calls(&[call]);
1028 self.value(
1029 InstData { extra: Extra::Targets(targets), ..InstData::new(Opcode::BlockAddr) },
1030 Type::PTR,
1031 )
1032 }
1033
1034 pub fn indirect_br(&mut self, addr: Value, targets: &[Block]) -> Inst {
1040 let calls: Vec<BlockCall> =
1041 targets.iter().map(|&target| self.block_call(target, &[])).collect();
1042 let targets = self.func.push_block_calls(&calls);
1043 let args = self.func.push_values(&[addr]);
1044 self.inst(
1045 InstData { args, extra: Extra::Targets(targets), ..InstData::new(Opcode::IndirectBr) },
1046 &[],
1047 )
1048 }
1049
1050 pub fn br_if(
1052 &mut self,
1053 cond: Value,
1054 then_block: Block,
1055 then_args: &[Value],
1056 else_block: Block,
1057 else_args: &[Value],
1058 ) -> Inst {
1059 let then_call = self.block_call(then_block, then_args);
1060 let else_call = self.block_call(else_block, else_args);
1061 let targets = self.func.push_block_calls(&[then_call, else_call]);
1062 let args = self.func.push_values(&[cond]);
1063 self.inst(
1064 InstData { args, extra: Extra::Targets(targets), ..InstData::new(Opcode::BrIf) },
1065 &[],
1066 )
1067 }
1068
1069 pub fn switch(&mut self, value: Value, default: Block, cases: &[(i128, Block)]) -> Inst {
1076 let ty = self.func[value].ty.lane();
1077 let mut calls = vec![self.block_call(default, &[])];
1078 let mut values = Vec::with_capacity(cases.len());
1079 for &(value, block) in cases {
1080 calls.push(self.block_call(block, &[]));
1081 values.push(Imm::int(value, ty));
1082 }
1083 let targets = self.func.push_block_calls(&calls);
1084 let cases = self.func.push_imms(&values);
1085 let info = self.func.add_switch(SwitchInfo { targets, cases });
1086 let args = self.func.push_values(&[value]);
1087 self.inst(
1088 InstData { args, extra: Extra::Switch(info), ..InstData::new(Opcode::Switch) },
1089 &[],
1090 )
1091 }
1092
1093 pub fn ret(&mut self, values: &[Value]) -> Inst {
1095 let args = self.func.push_values(values);
1096 self.inst(InstData { args, ..InstData::new(Opcode::Return) }, &[])
1097 }
1098
1099 pub fn unreachable(&mut self) -> Inst {
1101 self.inst(InstData::new(Opcode::Unreachable), &[])
1102 }
1103
1104 pub fn call(&mut self, callee: Symbol, signature: Sig, args: &[Value]) -> Inst {
1106 self.call_varargs(callee, signature, args, &[])
1107 }
1108
1109 pub fn call_varargs(
1115 &mut self,
1116 callee: Symbol,
1117 signature: Sig,
1118 args: &[Value],
1119 varargs: &[Abi],
1120 ) -> Inst {
1121 let varargs = self.func.push_abis(varargs);
1122 let info = self.func.add_call(CallInfo { callee: Some(callee), signature, varargs });
1123 let returns: Vec<Type> = self.func[signature].return_types().collect();
1124 let args = self.func.push_values(args);
1125 self.inst(
1126 InstData { args, extra: Extra::Call(info), ..InstData::new(Opcode::Call) },
1127 &returns,
1128 )
1129 }
1130
1131 pub fn inline_asm(
1137 &mut self,
1138 info: AsmInfo,
1139 args: &[Value],
1140 results: &[Type],
1141 flags: Flags,
1142 ) -> Inst {
1143 let info = self.func.add_asm(info);
1144 let args = self.func.push_values(args);
1145 self.inst(
1146 InstData { args, flags, extra: Extra::Asm(info), ..InstData::new(Opcode::InlineAsm) },
1147 results,
1148 )
1149 }
1150
1151 fn block_call(&mut self, block: Block, args: &[Value]) -> BlockCall {
1152 BlockCall { block, args: self.func.push_values(args) }
1153 }
1154}
1155
1156#[cfg(test)]
1157mod tests {
1158 use rucc_base::Interner;
1159
1160 use super::*;
1161 use crate::inst::BlockCallList;
1162 use crate::{MemOrder, Restrict};
1163
1164 fn sum() -> (Func, Block, Block, Block) {
1166 let mut names = Interner::new();
1167 let i32_ = Type::int(32);
1168 let mut func = Func::new(
1169 names.intern("sum"),
1170 Signature::new().with_params(&[i32_]).with_returns(&[i32_]),
1171 );
1172
1173 let entry = func.create_block();
1174 let n = func.append_param(entry, i32_);
1175 let header = func.create_block();
1176 let acc = func.append_param(header, i32_);
1177 let i = func.append_param(header, i32_);
1178 let exit = func.create_block();
1179 let result = func.append_param(exit, i32_);
1180
1181 let mut b = Builder::new(&mut func, entry);
1182 let zero = b.iconst(i32_, 0);
1183 let cmp = b.icmp(IntPred::Sle, n, zero);
1184 b.br_if(cmp, exit, &[zero], header, &[zero, zero]);
1185
1186 let mut b = Builder::new(&mut func, header);
1187 let one = b.iconst(i32_, 1);
1188 let next = b.binary(Opcode::Add, i, one, Flags::NSW);
1189 let total = b.binary(Opcode::Add, acc, next, Flags::NSW);
1190 let done = b.icmp(IntPred::Sge, next, n);
1191 b.br_if(done, exit, &[total], header, &[total, next]);
1192
1193 let mut b = Builder::new(&mut func, exit);
1194 b.ret(&[result]);
1195
1196 (func, entry, header, exit)
1197 }
1198
1199 #[test]
1200 fn the_blocks_come_back_in_the_order_they_were_made() {
1201 let (func, entry, header, exit) = sum();
1202 assert_eq!(func.blocks().collect::<Vec<_>>(), [entry, header, exit]);
1203 assert_eq!(func.entry(), Some(entry));
1204 }
1205
1206 #[test]
1207 fn a_removed_block_is_gone_from_the_layout_and_so_is_what_was_in_it() {
1208 let (mut func, entry, header, exit) = sum();
1209 let inside: Vec<Inst> = func.insts(header).collect();
1210 func.remove_block(header);
1211 assert_eq!(func.blocks().collect::<Vec<_>>(), [entry, exit]);
1212 assert_eq!(func.entry(), Some(entry));
1213 assert_eq!(func[entry].next, Some(exit));
1214 assert_eq!(func[exit].prev, Some(entry));
1215 assert!(inside.iter().all(|&inst| func.block_of(inst).is_none()));
1217 assert!(func.insts(header).next().is_none());
1218 }
1219
1220 #[test]
1221 fn each_block_holds_what_was_appended_to_it() {
1222 let (func, entry, header, exit) = sum();
1223 let opcodes =
1224 |block| func.insts(block).map(|inst| func[inst].opcode.name()).collect::<Vec<_>>();
1225 assert_eq!(opcodes(entry), ["iconst", "icmp", "br_if"]);
1226 assert_eq!(opcodes(header), ["iconst", "add", "add", "icmp", "br_if"]);
1227 assert_eq!(opcodes(exit), ["return"]);
1228 }
1229
1230 #[test]
1231 fn asm_ends_a_block_when_it_has_labels_and_not_otherwise() {
1232 let mut func = Func::new(Symbol::from_raw(0), Signature::new());
1235 let block = func.create_block();
1236 let plain = func.add_asm(AsmInfo {
1237 template: Symbol::from_raw(0),
1238 constraints: Symbol::from_raw(0),
1239 clobbers: Symbol::from_raw(0),
1240 targets: BlockCallList::EMPTY,
1241 });
1242 let call = BlockCall { block, args: ValueList::EMPTY };
1243 let targets = func.push_block_calls(&[call]);
1244 let labelled = func.add_asm(AsmInfo {
1245 template: Symbol::from_raw(0),
1246 constraints: Symbol::from_raw(0),
1247 clobbers: Symbol::from_raw(0),
1248 targets,
1249 });
1250
1251 let mut make = |extra| {
1252 let data = InstData { extra, ..InstData::new(Opcode::InlineAsm) };
1253 func.create_inst(data, &[], Span::DUMMY)
1254 };
1255 let plain = make(Extra::Asm(plain));
1256 let labelled = make(Extra::Asm(labelled));
1257 assert!(!func.is_terminator(plain));
1258 assert!(func.is_terminator(labelled));
1259 }
1260
1261 #[test]
1262 fn every_block_ends_in_its_terminator() {
1263 let (func, entry, header, exit) = sum();
1264 for block in [entry, header, exit] {
1265 let last = func.terminator(block).expect("a terminator");
1266 assert_eq!(Some(last), func.insts(block).last());
1267 }
1268 }
1269
1270 #[test]
1271 fn a_branch_carries_the_arguments_the_block_takes() {
1272 let (func, entry, header, _) = sum();
1273 let br = func.terminator(entry).expect("a terminator");
1274 let calls: Vec<BlockCall> = func.successors(br).collect();
1275 assert_eq!(calls.len(), 2);
1276 assert_eq!(calls[1].block, header);
1278 assert_eq!(func[calls[1].args].len(), 2);
1279 assert_eq!(func[header].params.len(), 2);
1280 assert_eq!(func[calls[0].args].len(), 1);
1281 }
1282
1283 #[test]
1284 fn a_value_knows_what_defined_it() {
1285 let (func, entry, _, _) = sum();
1286 let first = func.insts(entry).next().expect("an instruction");
1287 let value = func[first].first_result.expect("a result");
1288 assert_eq!(func[value].def, Def::Result { inst: first, index: 0 });
1289 assert_eq!(func[value].ty, Type::int(32));
1290
1291 let param = func[entry].params[0];
1292 assert_eq!(func[param].def, Def::Param { block: entry, index: 0 });
1293 }
1294
1295 #[test]
1296 fn a_comparison_produces_one_bit() {
1297 let (func, entry, _, _) = sum();
1298 let cmp = func.insts(entry).nth(1).expect("the comparison");
1299 let value = func[cmp].first_result.expect("a result");
1300 assert_eq!(func[value].ty, Type::I1);
1301 assert_eq!(func[cmp].extra, Extra::IntPred(IntPred::Sle));
1302 }
1303
1304 #[test]
1305 fn flags_ride_along_on_the_instruction_that_was_given_them() {
1306 let (func, _, header, _) = sum();
1307 let add = func.insts(header).nth(1).expect("the addition");
1308 assert_eq!(func[add].flags, Flags::NSW);
1309 let cmp = func.insts(header).nth(3).expect("the comparison");
1310 assert_eq!(func[cmp].flags, Flags::NONE);
1311 }
1312
1313 #[test]
1314 fn removing_an_instruction_takes_it_out_of_the_middle() {
1315 let (mut func, _, header, _) = sum();
1316 let add = func.insts(header).nth(1).expect("the addition");
1317 func.remove_inst(add);
1318 let opcodes: Vec<&str> = func.insts(header).map(|inst| func[inst].opcode.name()).collect();
1319 assert_eq!(opcodes, ["iconst", "add", "icmp", "br_if"]);
1320 assert_eq!(func.block_of(add), None);
1321 }
1322
1323 #[test]
1324 fn removing_the_first_and_the_last_keeps_the_ends_right() {
1325 let (mut func, entry, _, _) = sum();
1326 let first = func.insts(entry).next().expect("an instruction");
1327 let last = func.terminator(entry).expect("a terminator");
1328 func.remove_inst(first);
1329 func.remove_inst(last);
1330 let opcodes: Vec<&str> = func.insts(entry).map(|inst| func[inst].opcode.name()).collect();
1331 assert_eq!(opcodes, ["icmp"]);
1332 assert_eq!(func[entry].first, func[entry].last);
1333 }
1334
1335 #[test]
1336 fn removing_the_only_instruction_empties_the_block() {
1337 let (mut func, _, _, exit) = sum();
1338 let only = func.insts(exit).next().expect("an instruction");
1339 func.remove_inst(only);
1340 assert_eq!(func.insts(exit).count(), 0);
1341 assert_eq!(func[exit].first, None);
1342 assert_eq!(func[exit].last, None);
1343 }
1344
1345 #[test]
1346 fn inserting_before_puts_it_in_the_right_place() {
1347 let (mut func, entry, _, _) = sum();
1348 let cmp = func.insts(entry).nth(1).expect("the comparison");
1349 let made = func.create_inst(InstData::new(Opcode::Unreachable), &[], Span::DUMMY);
1350 func.insert_before(made, cmp);
1351 let opcodes: Vec<&str> = func.insts(entry).map(|inst| func[inst].opcode.name()).collect();
1352 assert_eq!(opcodes, ["iconst", "unreachable", "icmp", "br_if"]);
1353 }
1354
1355 #[test]
1356 fn inserting_before_the_first_makes_it_the_first() {
1357 let (mut func, entry, _, _) = sum();
1358 let first = func.insts(entry).next().expect("an instruction");
1359 let made = func.create_inst(InstData::new(Opcode::Unreachable), &[], Span::DUMMY);
1360 func.insert_before(made, first);
1361 assert_eq!(func.insts(entry).next(), Some(made));
1362 assert_eq!(func[entry].first, Some(made));
1363 }
1364
1365 #[test]
1366 fn inserting_after_puts_it_in_the_right_place() {
1367 let (mut func, entry, _, _) = sum();
1368 let first = func.insts(entry).next().expect("an instruction");
1369 let made = func.create_inst(InstData::new(Opcode::Unreachable), &[], Span::DUMMY);
1370 func.insert_after(made, first);
1371 let opcodes: Vec<&str> = func.insts(entry).map(|inst| func[inst].opcode.name()).collect();
1372 assert_eq!(opcodes, ["iconst", "unreachable", "icmp", "br_if"]);
1373 assert_eq!(func[entry].first, Some(first));
1374 }
1375
1376 #[test]
1377 #[should_panic(expected = "nothing goes after a terminator")]
1378 fn inserting_after_the_terminator_is_refused() {
1379 let (mut func, entry, _, _) = sum();
1382 let last = func.insts(entry).last().expect("a terminator");
1383 let made = func.create_inst(InstData::new(Opcode::Unreachable), &[], Span::DUMMY);
1384 func.insert_after(made, last);
1385 }
1386
1387 #[test]
1388 fn a_list_grows_in_place_while_it_is_the_last_thing_in_the_pool() {
1389 let mut func = Func::new(Symbol::from_raw(0), Signature::new());
1390 let block = func.create_block();
1391 let a = func.append_param(block, Type::int(32));
1392 let b = func.append_param(block, Type::int(32));
1393 let list = func.push_values(&[a]);
1394 let grown = func.append_arg(list, b);
1395 assert_eq!(func[grown], [a, b]);
1396 assert_eq!(grown.as_usize_range().start, list.as_usize_range().start);
1397 }
1398
1399 #[test]
1400 fn a_list_is_copied_when_something_is_behind_it() {
1401 let mut func = Func::new(Symbol::from_raw(0), Signature::new());
1402 let block = func.create_block();
1403 let a = func.append_param(block, Type::int(32));
1404 let b = func.append_param(block, Type::int(32));
1405 let list = func.push_values(&[a, a]);
1406 let behind = func.push_values(&[b]);
1407 let grown = func.append_arg(list, b);
1408 assert_eq!(func[grown], [a, a, b]);
1409 assert_eq!(func[list], [a, a], "the old run is still readable");
1410 assert_eq!(func[behind], [b], "and so is what was behind it");
1411 assert_ne!(grown.as_usize_range().start, list.as_usize_range().start);
1412 }
1413
1414 #[test]
1415 fn a_parameter_added_late_is_the_next_one_along() {
1416 let (mut func, entry, header, _) = sum();
1420 let extra = func.append_param(header, Type::int(32));
1421 assert_eq!(func[header].params.len(), 3);
1422 assert_eq!(func[extra].def, Def::Param { block: header, index: 2 });
1423
1424 let br = func.terminator(entry).expect("a terminator");
1425 let call = func.successors(br).nth(1).expect("the branch to the header");
1426 let grown = func.append_arg(call.args, extra);
1427 assert_eq!(func[grown].len(), 3);
1428 }
1429
1430 #[test]
1431 fn a_span_rides_along_with_the_instruction() {
1432 let mut func = Func::new(Symbol::from_raw(0), Signature::new());
1433 let block = func.create_block();
1434 let span = Span::new(10, 20);
1435 let mut b = Builder::new(&mut func, block).at(span);
1436 let value = b.iconst(Type::int(32), 7);
1437 let inst = match func[value].def {
1438 Def::Result { inst, .. } => inst,
1439 Def::Param { .. } => unreachable!("a constant is not a parameter"),
1440 };
1441 assert_eq!(func.span(inst), span);
1442 }
1443
1444 #[test]
1445 fn a_store_produces_nothing_and_a_load_produces_one_value() {
1446 let mut func = Func::new(Symbol::from_raw(0), Signature::new());
1447 let block = func.create_block();
1448 let addr = func.append_param(block, Type::PTR);
1449 let info = MemInfo {
1450 size: 4,
1451 align: 4,
1452 order: MemOrder::NotAtomic,
1453 tbaa: None,
1454 restrict: Restrict::NONE,
1455 };
1456 let mut b = Builder::new(&mut func, block);
1457 let value = b.load(Type::int(32), addr, info, Flags::NONE);
1458 let store = b.store(value, addr, info, Flags::VOLATILE);
1459 assert_eq!(func[store].results, 0);
1460 assert_eq!(func[store].flags, Flags::VOLATILE);
1461 assert_eq!(func[value].ty, Type::int(32));
1462 }
1463
1464 #[test]
1465 fn a_call_produces_what_its_signature_returns() {
1466 let mut names = Interner::new();
1467 let mut func = Func::new(names.intern("caller"), Signature::new());
1468 let sig = func.add_signature(
1469 Signature::new().with_params(&[Type::int(32)]).with_returns(&[Type::int(64)]),
1470 );
1471 let block = func.create_block();
1472 let arg = func.append_param(block, Type::int(32));
1473 let callee = names.intern("callee");
1474 let mut b = Builder::new(&mut func, block);
1475 let call = b.call(callee, sig, &[arg]);
1476 assert_eq!(func[call].results, 1);
1477 let value = func[call].first_result.expect("a result");
1478 assert_eq!(func[value].ty, Type::int(64));
1479 assert_eq!(func[call].extra, Extra::Call(Idx::new(0)));
1480 }
1481
1482 #[test]
1483 fn the_counts_are_what_was_made() {
1484 let (func, _, _, _) = sum();
1485 let counts = func.counts();
1486 assert_eq!(counts.blocks, 3);
1487 assert_eq!(counts.insts, 9);
1488 assert_eq!(counts.values, 4 + 6);
1491 }
1492
1493 #[test]
1494 #[should_panic(expected = "the instruction is in a block")]
1495 fn appending_an_instruction_twice_is_refused() {
1496 let (mut func, entry, _, _) = sum();
1497 let first = func.insts(entry).next().expect("an instruction");
1498 func.append_inst(entry, first);
1499 }
1500
1501 #[test]
1502 #[should_panic(expected = "the instruction is not in a block")]
1503 fn removing_an_instruction_twice_is_refused() {
1504 let (mut func, entry, _, _) = sum();
1505 let first = func.insts(entry).next().expect("an instruction");
1506 func.remove_inst(first);
1507 func.remove_inst(first);
1508 }
1509
1510 fn threaded() -> (Func, Inst, Inst) {
1512 let mut names = Interner::new();
1513 let i32_ = Type::int(32);
1514 let mut func = Func::new(
1515 names.intern("thread"),
1516 Signature::new().with_params(&[Type::PTR]).with_returns(&[i32_]),
1517 );
1518 let entry = func.create_block();
1519 let addr = func.append_param(entry, Type::PTR);
1520 let info = MemInfo {
1521 size: 4,
1522 align: 4,
1523 order: MemOrder::NotAtomic,
1524 tbaa: None,
1525 restrict: Restrict::NONE,
1526 };
1527
1528 let mut b = Builder::new(&mut func, entry);
1529 let start = b.mem_entry();
1530 let seven = b.iconst(i32_, 7);
1531 let store = b.store(seven, addr, info, Flags::NONE);
1532 let value = b.load(i32_, addr, info, Flags::NONE);
1533 let Def::Result { inst: load, .. } = func[value].def else {
1534 panic!("the load produced it");
1535 };
1536
1537 let store = func.with_mem(store, start);
1538 let after = func.mem_out(store).expect("a store makes a new version");
1539 let load = func.with_mem(load, after);
1540 (func, store, load)
1541 }
1542
1543 #[test]
1544 fn threading_memory_puts_it_last_and_leaves_everything_else_where_it_was() {
1545 let (func, store, load) = threaded();
1546 assert_eq!(func.mem_in(store), func.mem_out(store).map(|_| func[func[store].args][2]));
1547 assert_eq!(func[func[store].args].len(), 3);
1548 assert!(func.carries_mem(store));
1549 assert!(func.carries_mem(load));
1550
1551 assert_eq!(func[func[load].args][0], func[func.entry().expect("an entry")].params[0]);
1554 assert_eq!(func.mem_in(load), func.mem_out(store));
1555 assert_eq!(func.mem_out(load), None);
1556 }
1557
1558 #[test]
1559 #[should_panic(expected = "this is already on the memory chain")]
1560 fn threading_memory_through_the_same_instruction_twice_is_refused() {
1561 let (mut func, store, _) = threaded();
1562 let start = func.mem_in(store).expect("it was threaded");
1563 func.with_mem(store, start);
1564 }
1565}