Use block_insts_and_edits in the checker
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@@ -77,8 +77,8 @@
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#![allow(dead_code)]
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#![allow(dead_code)]
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use crate::{
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use crate::{
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Allocation, AllocationKind, Block, Edit, Function, Inst, InstPosition, Operand,
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Allocation, AllocationKind, Block, Edit, Function, Inst, InstOrEdit, InstPosition, Operand,
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OperandConstraint, OperandKind, OperandPos, Output, PReg, ProgPoint, RegClass, VReg,
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OperandConstraint, OperandKind, OperandPos, Output, PReg, RegClass, VReg,
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};
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};
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use std::collections::{HashMap, HashSet, VecDeque};
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use std::collections::{HashMap, HashSet, VecDeque};
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@@ -544,18 +544,30 @@ impl<'a, F: Function> Checker<'a, F> {
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.push(slot);
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.push(slot);
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}
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}
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// For each original instruction, create an `Op`.
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let mut last_inst = None;
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let mut last_inst = None;
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let mut insert_idx = 0;
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for block in 0..self.f.num_blocks() {
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for block in 0..self.f.num_blocks() {
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let block = Block::new(block);
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let block = Block::new(block);
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for inst in self.f.block_insns(block).iter() {
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for inst_or_edit in out.block_insts_and_edits(self.f, block) {
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match inst_or_edit {
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InstOrEdit::Inst(inst) => {
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assert!(last_inst.is_none() || inst > last_inst.unwrap());
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assert!(last_inst.is_none() || inst > last_inst.unwrap());
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last_inst = Some(inst);
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last_inst = Some(inst);
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self.handle_inst(block, inst, &mut safepoint_slots, out);
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}
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InstOrEdit::Edit(edit) => self.handle_edit(block, edit),
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}
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}
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}
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}
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// Any inserted edits before instruction.
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/// For each original instruction, create an `Op`.
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self.handle_edits(block, out, &mut insert_idx, ProgPoint::before(inst));
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fn handle_inst(
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&mut self,
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block: Block,
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inst: Inst,
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safepoint_slots: &mut HashMap<Inst, Vec<Allocation>>,
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out: &Output,
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) {
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// If this is a safepoint, then check the spillslots at this point.
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// If this is a safepoint, then check the spillslots at this point.
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if self.f.requires_refs_on_stack(inst) {
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if self.f.requires_refs_on_stack(inst) {
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let allocs = safepoint_slots.remove(&inst).unwrap_or_else(|| vec![]);
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let allocs = safepoint_slots.remove(&inst).unwrap_or_else(|| vec![]);
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@@ -582,21 +594,10 @@ impl<'a, F: Function> Checker<'a, F> {
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log::trace!("checker: adding inst {:?}", checkinst);
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log::trace!("checker: adding inst {:?}", checkinst);
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self.bb_insts.get_mut(&block).unwrap().push(checkinst);
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self.bb_insts.get_mut(&block).unwrap().push(checkinst);
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}
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}
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// Any inserted edits after instruction.
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self.handle_edits(block, out, &mut insert_idx, ProgPoint::after(inst));
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}
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}
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}
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}
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fn handle_edits(&mut self, block: Block, out: &Output, idx: &mut usize, pos: ProgPoint) {
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fn handle_edit(&mut self, block: Block, edit: &Edit) {
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while *idx < out.edits.len() && out.edits[*idx].0 <= pos {
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log::trace!("checker: adding edit {:?}", edit);
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let &(edit_pos, ref edit) = &out.edits[*idx];
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*idx += 1;
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if edit_pos < pos {
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continue;
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}
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log::trace!("checker: adding edit {:?} at pos {:?}", edit, pos);
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match edit {
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match edit {
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&Edit::Move { from, to, to_vreg } => {
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&Edit::Move { from, to, to_vreg } => {
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self.bb_insts
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self.bb_insts
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@@ -618,7 +619,6 @@ impl<'a, F: Function> Checker<'a, F> {
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}
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}
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}
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}
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}
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}
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}
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/// Perform the dataflow analysis to compute checker state at each BB entry.
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/// Perform the dataflow analysis to compute checker state at each BB entry.
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fn analyze(&mut self) {
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fn analyze(&mut self) {
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