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173 lines
6.6 KiB
Rust
173 lines
6.6 KiB
Rust
use rustc_data_structures::fx::{FxHashMap, FxHashSet, FxIndexSet};
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use rustc_data_structures::stack::ensure_sufficient_stack;
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use rustc_hir::def_id::{DefId, LocalDefId};
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use rustc_middle::mir::TerminatorKind;
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use rustc_middle::ty::TypeVisitableExt;
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use rustc_middle::ty::{self, subst::SubstsRef, InstanceDef, TyCtxt};
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use rustc_session::Limit;
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// FIXME: check whether it is cheaper to precompute the entire call graph instead of invoking
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// this query ridiculously often.
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#[instrument(level = "debug", skip(tcx, root, target))]
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pub(crate) fn mir_callgraph_reachable<'tcx>(
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tcx: TyCtxt<'tcx>,
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(root, target): (ty::Instance<'tcx>, LocalDefId),
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) -> bool {
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trace!(%root, target = %tcx.def_path_str(target.to_def_id()));
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let param_env = tcx.param_env_reveal_all_normalized(target);
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assert_ne!(
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root.def_id().expect_local(),
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target,
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"you should not call `mir_callgraph_reachable` on immediate self recursion"
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);
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assert!(
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matches!(root.def, InstanceDef::Item(_)),
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"you should not call `mir_callgraph_reachable` on shims"
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);
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assert!(
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!tcx.is_constructor(root.def_id()),
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"you should not call `mir_callgraph_reachable` on enum/struct constructor functions"
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);
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#[instrument(
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level = "debug",
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skip(tcx, param_env, target, stack, seen, recursion_limiter, caller, recursion_limit)
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)]
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fn process<'tcx>(
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tcx: TyCtxt<'tcx>,
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param_env: ty::ParamEnv<'tcx>,
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caller: ty::Instance<'tcx>,
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target: LocalDefId,
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stack: &mut Vec<ty::Instance<'tcx>>,
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seen: &mut FxHashSet<ty::Instance<'tcx>>,
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recursion_limiter: &mut FxHashMap<DefId, usize>,
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recursion_limit: Limit,
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) -> bool {
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trace!(%caller);
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for &(callee, substs) in tcx.mir_inliner_callees(caller.def) {
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let Ok(substs) = caller.try_subst_mir_and_normalize_erasing_regions(tcx, param_env, substs) else {
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trace!(?caller, ?param_env, ?substs, "cannot normalize, skipping");
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continue;
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};
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let Ok(Some(callee)) = ty::Instance::resolve(tcx, param_env, callee, substs) else {
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trace!(?callee, "cannot resolve, skipping");
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continue;
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};
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// Found a path.
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if callee.def_id() == target.to_def_id() {
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return true;
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}
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if tcx.is_constructor(callee.def_id()) {
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trace!("constructors always have MIR");
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// Constructor functions cannot cause a query cycle.
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continue;
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}
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match callee.def {
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InstanceDef::Item(_) => {
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// If there is no MIR available (either because it was not in metadata or
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// because it has no MIR because it's an extern function), then the inliner
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// won't cause cycles on this.
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if !tcx.is_mir_available(callee.def_id()) {
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trace!(?callee, "no mir available, skipping");
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continue;
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}
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}
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// These have no own callable MIR.
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InstanceDef::Intrinsic(_) | InstanceDef::Virtual(..) => continue,
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// These have MIR and if that MIR is inlined, substituted and then inlining is run
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// again, a function item can end up getting inlined. Thus we'll be able to cause
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// a cycle that way
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InstanceDef::VTableShim(_)
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| InstanceDef::ReifyShim(_)
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| InstanceDef::FnPtrShim(..)
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| InstanceDef::ClosureOnceShim { .. }
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| InstanceDef::ThreadLocalShim { .. }
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| InstanceDef::CloneShim(..) => {}
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// This shim does not call any other functions, thus there can be no recursion.
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InstanceDef::FnPtrAddrShim(..) => continue,
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InstanceDef::DropGlue(..) => {
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// FIXME: A not fully substituted drop shim can cause ICEs if one attempts to
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// have its MIR built. Likely oli-obk just screwed up the `ParamEnv`s, so this
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// needs some more analysis.
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if callee.needs_subst() {
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continue;
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}
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}
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}
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if seen.insert(callee) {
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let recursion = recursion_limiter.entry(callee.def_id()).or_default();
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trace!(?callee, recursion = *recursion);
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if recursion_limit.value_within_limit(*recursion) {
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*recursion += 1;
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stack.push(callee);
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let found_recursion = ensure_sufficient_stack(|| {
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process(
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tcx,
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param_env,
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callee,
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target,
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stack,
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seen,
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recursion_limiter,
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recursion_limit,
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)
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});
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if found_recursion {
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return true;
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}
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stack.pop();
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} else {
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// Pessimistically assume that there could be recursion.
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return true;
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}
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}
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}
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false
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}
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process(
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tcx,
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param_env,
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root,
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target,
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&mut Vec::new(),
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&mut FxHashSet::default(),
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&mut FxHashMap::default(),
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tcx.recursion_limit(),
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)
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}
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pub(crate) fn mir_inliner_callees<'tcx>(
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tcx: TyCtxt<'tcx>,
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instance: ty::InstanceDef<'tcx>,
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) -> &'tcx [(DefId, SubstsRef<'tcx>)] {
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let steal;
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let guard;
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let body = match (instance, instance.def_id().as_local()) {
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(InstanceDef::Item(_), Some(def_id)) => {
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let def = ty::WithOptConstParam::unknown(def_id);
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steal = tcx.mir_promoted(def).0;
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guard = steal.borrow();
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&*guard
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}
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// Functions from other crates and MIR shims
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_ => tcx.instance_mir(instance),
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};
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let mut calls = FxIndexSet::default();
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for bb_data in body.basic_blocks.iter() {
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let terminator = bb_data.terminator();
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if let TerminatorKind::Call { func, .. } = &terminator.kind {
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let ty = func.ty(&body.local_decls, tcx);
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let call = match ty.kind() {
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ty::FnDef(def_id, substs) => (*def_id, *substs),
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_ => continue,
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};
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calls.insert(call);
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}
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}
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tcx.arena.alloc_from_iter(calls.iter().copied())
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}
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