JumpThreading: Bail out on interp errors
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9f35fe47c7
commit
41a5d8ef3d
1 changed files with 91 additions and 67 deletions
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@ -90,7 +90,11 @@ impl<'tcx> crate::MirPass<'tcx> for JumpThreading {
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};
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for bb in body.basic_blocks.indices() {
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finder.start_from_switch(bb);
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let old_len = finder.opportunities.len();
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// If we have any const-eval errors discard any opportunities found
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if finder.start_from_switch(bb).is_none() {
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finder.opportunities.truncate(old_len);
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}
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}
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let opportunities = finder.opportunities;
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@ -172,8 +176,21 @@ impl<'a> ConditionSet<'a> {
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self.iter().filter(move |c| c.matches(value))
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}
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fn map(self, arena: &'a DroplessArena, f: impl Fn(Condition) -> Condition) -> ConditionSet<'a> {
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ConditionSet(arena.alloc_from_iter(self.iter().map(f)))
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fn map(
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self,
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arena: &'a DroplessArena,
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f: impl Fn(Condition) -> Option<Condition>,
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) -> Option<ConditionSet<'a>> {
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let mut all_ok = true;
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let set = arena.alloc_from_iter(self.iter().map_while(|c| {
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if let Some(c) = f(c) {
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Some(c)
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} else {
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all_ok = false;
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None
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}
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}));
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all_ok.then_some(ConditionSet(set))
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}
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}
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@ -184,28 +201,28 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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/// Recursion entry point to find threading opportunities.
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#[instrument(level = "trace", skip(self))]
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fn start_from_switch(&mut self, bb: BasicBlock) {
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fn start_from_switch(&mut self, bb: BasicBlock) -> Option<()> {
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let bbdata = &self.body[bb];
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if bbdata.is_cleanup || self.loop_headers.contains(bb) {
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return;
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return Some(());
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}
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let Some((discr, targets)) = bbdata.terminator().kind.as_switch() else { return };
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let Some(discr) = discr.place() else { return };
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let Some((discr, targets)) = bbdata.terminator().kind.as_switch() else { return Some(()) };
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let Some(discr) = discr.place() else { return Some(()) };
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debug!(?discr, ?bb);
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let discr_ty = discr.ty(self.body, self.tcx).ty;
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let Ok(discr_layout) = self.ecx.layout_of(discr_ty) else {
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return;
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return Some(());
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};
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let Some(discr) = self.map.find(discr.as_ref()) else { return };
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let Some(discr) = self.map.find(discr.as_ref()) else { return Some(()) };
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debug!(?discr);
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let cost = CostChecker::new(self.tcx, self.typing_env, None, self.body);
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let mut state = State::new_reachable();
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let conds = if let Some((value, then, else_)) = targets.as_static_if() {
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let Some(value) = ScalarInt::try_from_uint(value, discr_layout.size) else { return };
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let value = ScalarInt::try_from_uint(value, discr_layout.size)?;
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self.arena.alloc_from_iter([
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Condition { value, polarity: Polarity::Eq, target: then },
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Condition { value, polarity: Polarity::Ne, target: else_ },
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@ -219,7 +236,7 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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let conds = ConditionSet(conds);
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state.insert_value_idx(discr, conds, &self.map);
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self.find_opportunity(bb, state, cost, 0);
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self.find_opportunity(bb, state, cost, 0)
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}
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/// Recursively walk statements backwards from this bb's terminator to find threading
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@ -231,10 +248,10 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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mut state: State<ConditionSet<'a>>,
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mut cost: CostChecker<'_, 'tcx>,
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depth: usize,
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) {
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) -> Option<()> {
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// Do not thread through loop headers.
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if self.loop_headers.contains(bb) {
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return;
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return Some(());
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}
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debug!(cost = ?cost.cost());
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@ -242,16 +259,16 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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self.body.basic_blocks[bb].statements.iter().enumerate().rev()
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{
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if self.is_empty(&state) {
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return;
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return Some(());
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}
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cost.visit_statement(stmt, Location { block: bb, statement_index });
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if cost.cost() > MAX_COST {
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return;
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return Some(());
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}
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// Attempt to turn the `current_condition` on `lhs` into a condition on another place.
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self.process_statement(bb, stmt, &mut state);
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self.process_statement(bb, stmt, &mut state)?;
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// When a statement mutates a place, assignments to that place that happen
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// above the mutation cannot fulfill a condition.
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@ -263,7 +280,7 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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}
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if self.is_empty(&state) || depth >= MAX_BACKTRACK {
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return;
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return Some(());
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}
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let last_non_rec = self.opportunities.len();
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@ -276,9 +293,9 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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match term.kind {
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TerminatorKind::SwitchInt { ref discr, ref targets } => {
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self.process_switch_int(discr, targets, bb, &mut state);
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self.find_opportunity(pred, state, cost, depth + 1);
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self.find_opportunity(pred, state, cost, depth + 1)?;
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}
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_ => self.recurse_through_terminator(pred, || state, &cost, depth),
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_ => self.recurse_through_terminator(pred, || state, &cost, depth)?,
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}
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} else if let &[ref predecessors @ .., last_pred] = &predecessors[..] {
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for &pred in predecessors {
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@ -303,12 +320,13 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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let first = &mut new_tos[0];
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*first = ThreadingOpportunity { chain: vec![bb], target: first.target };
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self.opportunities.truncate(last_non_rec + 1);
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return;
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return Some(());
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}
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for op in self.opportunities[last_non_rec..].iter_mut() {
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op.chain.push(bb);
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}
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Some(())
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}
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/// Extract the mutated place from a statement.
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@ -422,23 +440,23 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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lhs: PlaceIndex,
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rhs: &Operand<'tcx>,
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state: &mut State<ConditionSet<'a>>,
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) {
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) -> Option<()> {
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match rhs {
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// If we expect `lhs ?= A`, we have an opportunity if we assume `constant == A`.
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Operand::Constant(constant) => {
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let Some(constant) =
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self.ecx.eval_mir_constant(&constant.const_, constant.span, None).discard_err()
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else {
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return;
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};
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let constant = self
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.ecx
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.eval_mir_constant(&constant.const_, constant.span, None)
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.discard_err()?;
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self.process_constant(bb, lhs, constant, state);
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}
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// Transfer the conditions on the copied rhs.
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Operand::Move(rhs) | Operand::Copy(rhs) => {
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let Some(rhs) = self.map.find(rhs.as_ref()) else { return };
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let Some(rhs) = self.map.find(rhs.as_ref()) else { return Some(()) };
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state.insert_place_idx(rhs, lhs, &self.map);
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}
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}
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Some(())
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}
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#[instrument(level = "trace", skip(self))]
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@ -448,14 +466,18 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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lhs_place: &Place<'tcx>,
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rhs: &Rvalue<'tcx>,
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state: &mut State<ConditionSet<'a>>,
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) {
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let Some(lhs) = self.map.find(lhs_place.as_ref()) else { return };
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) -> Option<()> {
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let Some(lhs) = self.map.find(lhs_place.as_ref()) else {
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return Some(());
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};
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match rhs {
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Rvalue::Use(operand) => self.process_operand(bb, lhs, operand, state),
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Rvalue::Use(operand) => self.process_operand(bb, lhs, operand, state)?,
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// Transfer the conditions on the copy rhs.
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Rvalue::CopyForDeref(rhs) => self.process_operand(bb, lhs, &Operand::Copy(*rhs), state),
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Rvalue::CopyForDeref(rhs) => {
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self.process_operand(bb, lhs, &Operand::Copy(*rhs), state)?
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}
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Rvalue::Discriminant(rhs) => {
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let Some(rhs) = self.map.find_discr(rhs.as_ref()) else { return };
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let Some(rhs) = self.map.find_discr(rhs.as_ref()) else { return Some(()) };
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state.insert_place_idx(rhs, lhs, &self.map);
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}
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// If we expect `lhs ?= A`, we have an opportunity if we assume `constant == A`.
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@ -463,7 +485,7 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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let agg_ty = lhs_place.ty(self.body, self.tcx).ty;
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let lhs = match kind {
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// Do not support unions.
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AggregateKind::Adt(.., Some(_)) => return,
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AggregateKind::Adt(.., Some(_)) => return Some(()),
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AggregateKind::Adt(_, variant_index, ..) if agg_ty.is_enum() => {
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if let Some(discr_target) = self.map.apply(lhs, TrackElem::Discriminant)
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&& let Some(discr_value) = self
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@ -476,31 +498,31 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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if let Some(idx) = self.map.apply(lhs, TrackElem::Variant(*variant_index)) {
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idx
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} else {
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return;
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return Some(());
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}
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}
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_ => lhs,
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};
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for (field_index, operand) in operands.iter_enumerated() {
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if let Some(field) = self.map.apply(lhs, TrackElem::Field(field_index)) {
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self.process_operand(bb, field, operand, state);
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self.process_operand(bb, field, operand, state)?;
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}
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}
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}
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// Transfer the conditions on the copy rhs, after inverting the value of the condition.
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Rvalue::UnaryOp(UnOp::Not, Operand::Move(place) | Operand::Copy(place)) => {
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let layout = self.ecx.layout_of(place.ty(self.body, self.tcx).ty).unwrap();
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let Some(conditions) = state.try_get_idx(lhs, &self.map) else { return };
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let Some(place) = self.map.find(place.as_ref()) else { return };
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let Some(conditions) = state.try_get_idx(lhs, &self.map) else { return Some(()) };
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let Some(place) = self.map.find(place.as_ref()) else { return Some(()) };
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let conds = conditions.map(self.arena, |mut cond| {
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cond.value = self
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.ecx
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.unary_op(UnOp::Not, &ImmTy::from_scalar_int(cond.value, layout))
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.unwrap()
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.discard_err()?
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.to_scalar_int()
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.unwrap();
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cond
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});
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.discard_err()?;
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Some(cond)
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})?;
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state.insert_value_idx(place, conds, &self.map);
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}
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// We expect `lhs ?= A`. We found `lhs = Eq(rhs, B)`.
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@ -510,34 +532,34 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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box (Operand::Move(place) | Operand::Copy(place), Operand::Constant(value))
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| box (Operand::Constant(value), Operand::Move(place) | Operand::Copy(place)),
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) => {
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let Some(conditions) = state.try_get_idx(lhs, &self.map) else { return };
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let Some(place) = self.map.find(place.as_ref()) else { return };
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let Some(conditions) = state.try_get_idx(lhs, &self.map) else { return Some(()) };
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let Some(place) = self.map.find(place.as_ref()) else { return Some(()) };
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let equals = match op {
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BinOp::Eq => ScalarInt::TRUE,
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BinOp::Ne => ScalarInt::FALSE,
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_ => return,
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_ => return Some(()),
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};
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if value.const_.ty().is_floating_point() {
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// Floating point equality does not follow bit-patterns.
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// -0.0 and NaN both have special rules for equality,
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// and therefore we cannot use integer comparisons for them.
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// Avoid handling them, though this could be extended in the future.
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return;
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return Some(());
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}
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let Some(value) = value.const_.try_eval_scalar_int(self.tcx, self.typing_env)
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else {
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return;
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};
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let conds = conditions.map(self.arena, |c| Condition {
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value,
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polarity: if c.matches(equals) { Polarity::Eq } else { Polarity::Ne },
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..c
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});
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let value = value.const_.try_eval_scalar_int(self.tcx, self.typing_env)?;
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let conds = conditions.map(self.arena, |c| {
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Some(Condition {
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value,
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polarity: if c.matches(equals) { Polarity::Eq } else { Polarity::Ne },
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..c
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})
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})?;
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state.insert_value_idx(place, conds, &self.map);
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}
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_ => {}
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}
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Some(())
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}
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#[instrument(level = "trace", skip(self))]
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@ -546,7 +568,7 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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bb: BasicBlock,
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stmt: &Statement<'tcx>,
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state: &mut State<ConditionSet<'a>>,
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) {
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) -> Option<()> {
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let register_opportunity = |c: Condition| {
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debug!(?bb, ?c.target, "register");
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self.opportunities.push(ThreadingOpportunity { chain: vec![bb], target: c.target })
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@ -559,30 +581,32 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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// If we expect `discriminant(place) ?= A`,
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// we have an opportunity if `variant_index ?= A`.
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StatementKind::SetDiscriminant { box place, variant_index } => {
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let Some(discr_target) = self.map.find_discr(place.as_ref()) else { return };
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let Some(discr_target) = self.map.find_discr(place.as_ref()) else {
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return Some(());
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};
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let enum_ty = place.ty(self.body, self.tcx).ty;
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// `SetDiscriminant` guarantees that the discriminant is now `variant_index`.
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// Even if the discriminant write does nothing due to niches, it is UB to set the
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// discriminant when the data does not encode the desired discriminant.
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let Some(discr) =
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self.ecx.discriminant_for_variant(enum_ty, *variant_index).discard_err()
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else {
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return;
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};
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let discr =
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self.ecx.discriminant_for_variant(enum_ty, *variant_index).discard_err()?;
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self.process_immediate(bb, discr_target, discr, state);
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}
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// If we expect `lhs ?= true`, we have an opportunity if we assume `lhs == true`.
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StatementKind::Intrinsic(box NonDivergingIntrinsic::Assume(
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Operand::Copy(place) | Operand::Move(place),
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)) => {
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let Some(conditions) = state.try_get(place.as_ref(), &self.map) else { return };
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let Some(conditions) = state.try_get(place.as_ref(), &self.map) else {
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return Some(());
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};
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conditions.iter_matches(ScalarInt::TRUE).for_each(register_opportunity);
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}
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StatementKind::Assign(box (lhs_place, rhs)) => {
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self.process_assign(bb, lhs_place, rhs, state);
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self.process_assign(bb, lhs_place, rhs, state)?;
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}
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_ => {}
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}
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Some(())
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}
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#[instrument(level = "trace", skip(self, state, cost))]
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@ -593,7 +617,7 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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state: impl FnOnce() -> State<ConditionSet<'a>>,
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cost: &CostChecker<'_, 'tcx>,
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depth: usize,
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) {
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) -> Option<()> {
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let term = self.body.basic_blocks[bb].terminator();
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let place_to_flood = match term.kind {
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// We come from a target, so those are not possible.
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@ -608,9 +632,9 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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| TerminatorKind::FalseUnwind { .. }
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| TerminatorKind::Yield { .. } => bug!("{term:?} invalid"),
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// Cannot reason about inline asm.
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TerminatorKind::InlineAsm { .. } => return,
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TerminatorKind::InlineAsm { .. } => return Some(()),
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// `SwitchInt` is handled specially.
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TerminatorKind::SwitchInt { .. } => return,
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TerminatorKind::SwitchInt { .. } => return Some(()),
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// We can recurse, no thing particular to do.
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TerminatorKind::Goto { .. } => None,
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// Flood the overwritten place, and progress through.
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@ -625,7 +649,7 @@ impl<'a, 'tcx> TOFinder<'a, 'tcx> {
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if let Some(place_to_flood) = place_to_flood {
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state.flood_with(place_to_flood.as_ref(), &self.map, ConditionSet::BOTTOM);
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}
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self.find_opportunity(bb, state, cost.clone(), depth + 1);
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self.find_opportunity(bb, state, cost.clone(), depth + 1)
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}
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#[instrument(level = "trace", skip(self))]
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