pub(super) struct CoverageCounters {
    next_counter_id: CounterId,
    bcb_counters: IndexVec<BasicCoverageBlock, Option<BcbCounter>>,
    bcb_edge_counters: FxIndexMap<(BasicCoverageBlock, BasicCoverageBlock), BcbCounter>,
    bcb_has_incoming_edge_counters: BitSet<BasicCoverageBlock>,
    expressions: IndexVec<ExpressionId, Expression>,
}
Expand description

Generates and stores coverage counter and coverage expression information associated with nodes/edges in the BCB graph.

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§next_counter_id: CounterId§bcb_counters: IndexVec<BasicCoverageBlock, Option<BcbCounter>>

Coverage counters/expressions that are associated with individual BCBs.

§bcb_edge_counters: FxIndexMap<(BasicCoverageBlock, BasicCoverageBlock), BcbCounter>

Coverage counters/expressions that are associated with the control-flow edge between two BCBs.

The iteration order of this map can affect the precise contents of MIR, so we use FxIndexMap to avoid query stability hazards.

§bcb_has_incoming_edge_counters: BitSet<BasicCoverageBlock>

Tracks which BCBs have a counter associated with some incoming edge. Only used by assertions, to verify that BCBs with incoming edge counters do not have their own physical counters (expressions are allowed).

§expressions: IndexVec<ExpressionId, Expression>

Table of expression data, associating each expression ID with its corresponding operator (+ or -) and its LHS/RHS operands.

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impl CoverageCounters

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pub(super) fn make_bcb_counters( basic_coverage_blocks: &CoverageGraph, bcb_has_coverage_spans: impl Fn(BasicCoverageBlock) -> bool ) -> Self

Makes BcbCounter Counters and Expressions for the BasicCoverageBlocks directly or indirectly associated with coverage spans, and accumulates additional Expressions representing intermediate values.

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fn make_counter(&mut self) -> BcbCounter

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fn make_expression( &mut self, lhs: BcbCounter, op: Op, rhs: BcbCounter ) -> BcbCounter

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fn make_sum_expression( &mut self, lhs: Option<BcbCounter>, rhs: BcbCounter ) -> BcbCounter

Variant of make_expression that makes lhs optional and assumes Op::Add.

This is useful when using Iterator::fold to build an arbitrary-length sum.

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fn next_counter(&mut self) -> CounterId

Counter IDs start from one and go up.

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pub(super) fn num_counters(&self) -> usize

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fn set_bcb_counter( &mut self, bcb: BasicCoverageBlock, counter_kind: BcbCounter ) -> BcbCounter

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fn set_bcb_edge_counter( &mut self, from_bcb: BasicCoverageBlock, to_bcb: BasicCoverageBlock, counter_kind: BcbCounter ) -> BcbCounter

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pub(super) fn bcb_counter(&self, bcb: BasicCoverageBlock) -> Option<BcbCounter>

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pub(super) fn bcb_node_counters( &self ) -> impl Iterator<Item = (BasicCoverageBlock, &BcbCounter)>

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pub(super) fn bcb_edge_counters( &self ) -> impl Iterator<Item = (BasicCoverageBlock, BasicCoverageBlock, &BcbCounter)>

For each edge in the BCB graph that has an associated counter, yields that edge’s from and to nodes, and its counter.

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pub(super) fn into_expressions(self) -> IndexVec<ExpressionId, Expression>

Auto Trait Implementations§

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fn borrow(&self) -> &T

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fn borrow_mut(&mut self) -> &mut T

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fn from(t: T) -> T

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impl<T, U> Into<U> for T
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type Error = Infallible

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impl<T, U> TryInto<U> for T
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type Error = <U as TryFrom<T>>::Error

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Layout§

Note: Most layout information is completely unstable and may even differ between compilations. The only exception is types with certain repr(...) attributes. Please see the Rust Reference's “Type Layout” chapter for details on type layout guarantees.

Size: 144 bytes