10b57cec5SDimitry Andric //===- PlaceSafepoints.cpp - Place GC Safepoints --------------------------===//
20b57cec5SDimitry Andric //
30b57cec5SDimitry Andric // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
40b57cec5SDimitry Andric // See https://llvm.org/LICENSE.txt for license information.
50b57cec5SDimitry Andric // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
60b57cec5SDimitry Andric //
70b57cec5SDimitry Andric //===----------------------------------------------------------------------===//
80b57cec5SDimitry Andric //
90b57cec5SDimitry Andric // Place garbage collection safepoints at appropriate locations in the IR. This
100b57cec5SDimitry Andric // does not make relocation semantics or variable liveness explicit. That's
110b57cec5SDimitry Andric // done by RewriteStatepointsForGC.
120b57cec5SDimitry Andric //
130b57cec5SDimitry Andric // Terminology:
140b57cec5SDimitry Andric // - A call is said to be "parseable" if there is a stack map generated for the
150b57cec5SDimitry Andric // return PC of the call. A runtime can determine where values listed in the
160b57cec5SDimitry Andric // deopt arguments and (after RewriteStatepointsForGC) gc arguments are located
170b57cec5SDimitry Andric // on the stack when the code is suspended inside such a call. Every parse
180b57cec5SDimitry Andric // point is represented by a call wrapped in an gc.statepoint intrinsic.
190b57cec5SDimitry Andric // - A "poll" is an explicit check in the generated code to determine if the
200b57cec5SDimitry Andric // runtime needs the generated code to cooperate by calling a helper routine
210b57cec5SDimitry Andric // and thus suspending its execution at a known state. The call to the helper
220b57cec5SDimitry Andric // routine will be parseable. The (gc & runtime specific) logic of a poll is
230b57cec5SDimitry Andric // assumed to be provided in a function of the name "gc.safepoint_poll".
240b57cec5SDimitry Andric //
250b57cec5SDimitry Andric // We aim to insert polls such that running code can quickly be brought to a
260b57cec5SDimitry Andric // well defined state for inspection by the collector. In the current
270b57cec5SDimitry Andric // implementation, this is done via the insertion of poll sites at method entry
280b57cec5SDimitry Andric // and the backedge of most loops. We try to avoid inserting more polls than
290b57cec5SDimitry Andric // are necessary to ensure a finite period between poll sites. This is not
300b57cec5SDimitry Andric // because the poll itself is expensive in the generated code; it's not. Polls
310b57cec5SDimitry Andric // do tend to impact the optimizer itself in negative ways; we'd like to avoid
320b57cec5SDimitry Andric // perturbing the optimization of the method as much as we can.
330b57cec5SDimitry Andric //
340b57cec5SDimitry Andric // We also need to make most call sites parseable. The callee might execute a
350b57cec5SDimitry Andric // poll (or otherwise be inspected by the GC). If so, the entire stack
360b57cec5SDimitry Andric // (including the suspended frame of the current method) must be parseable.
370b57cec5SDimitry Andric //
380b57cec5SDimitry Andric // This pass will insert:
390b57cec5SDimitry Andric // - Call parse points ("call safepoints") for any call which may need to
400b57cec5SDimitry Andric // reach a safepoint during the execution of the callee function.
410b57cec5SDimitry Andric // - Backedge safepoint polls and entry safepoint polls to ensure that
420b57cec5SDimitry Andric // executing code reaches a safepoint poll in a finite amount of time.
430b57cec5SDimitry Andric //
440b57cec5SDimitry Andric // We do not currently support return statepoints, but adding them would not
450b57cec5SDimitry Andric // be hard. They are not required for correctness - entry safepoints are an
460b57cec5SDimitry Andric // alternative - but some GCs may prefer them. Patches welcome.
470b57cec5SDimitry Andric //
480b57cec5SDimitry Andric //===----------------------------------------------------------------------===//
490b57cec5SDimitry Andric
5006c3fb27SDimitry Andric #include "llvm/Transforms/Scalar/PlaceSafepoints.h"
51480093f4SDimitry Andric #include "llvm/InitializePasses.h"
520b57cec5SDimitry Andric #include "llvm/Pass.h"
530b57cec5SDimitry Andric
540b57cec5SDimitry Andric #include "llvm/ADT/SetVector.h"
550b57cec5SDimitry Andric #include "llvm/ADT/Statistic.h"
560b57cec5SDimitry Andric #include "llvm/Analysis/CFG.h"
5781ad6265SDimitry Andric #include "llvm/Analysis/LoopInfo.h"
580b57cec5SDimitry Andric #include "llvm/Analysis/ScalarEvolution.h"
590b57cec5SDimitry Andric #include "llvm/Analysis/TargetLibraryInfo.h"
600b57cec5SDimitry Andric #include "llvm/IR/Dominators.h"
610b57cec5SDimitry Andric #include "llvm/IR/IntrinsicInst.h"
620b57cec5SDimitry Andric #include "llvm/IR/LegacyPassManager.h"
63*0fca6ea1SDimitry Andric #include "llvm/IR/Module.h"
640b57cec5SDimitry Andric #include "llvm/IR/Statepoint.h"
650b57cec5SDimitry Andric #include "llvm/Support/CommandLine.h"
660b57cec5SDimitry Andric #include "llvm/Support/Debug.h"
670b57cec5SDimitry Andric #include "llvm/Transforms/Scalar.h"
680b57cec5SDimitry Andric #include "llvm/Transforms/Utils/BasicBlockUtils.h"
690b57cec5SDimitry Andric #include "llvm/Transforms/Utils/Cloning.h"
7081ad6265SDimitry Andric #include "llvm/Transforms/Utils/Local.h"
710b57cec5SDimitry Andric
7206c3fb27SDimitry Andric using namespace llvm;
7306c3fb27SDimitry Andric
7406c3fb27SDimitry Andric #define DEBUG_TYPE "place-safepoints"
750b57cec5SDimitry Andric
760b57cec5SDimitry Andric STATISTIC(NumEntrySafepoints, "Number of entry safepoints inserted");
770b57cec5SDimitry Andric STATISTIC(NumBackedgeSafepoints, "Number of backedge safepoints inserted");
780b57cec5SDimitry Andric
790b57cec5SDimitry Andric STATISTIC(CallInLoop,
800b57cec5SDimitry Andric "Number of loops without safepoints due to calls in loop");
810b57cec5SDimitry Andric STATISTIC(FiniteExecution,
820b57cec5SDimitry Andric "Number of loops without safepoints finite execution");
830b57cec5SDimitry Andric
840b57cec5SDimitry Andric // Ignore opportunities to avoid placing safepoints on backedges, useful for
850b57cec5SDimitry Andric // validation
860b57cec5SDimitry Andric static cl::opt<bool> AllBackedges("spp-all-backedges", cl::Hidden,
870b57cec5SDimitry Andric cl::init(false));
880b57cec5SDimitry Andric
890b57cec5SDimitry Andric /// How narrow does the trip count of a loop have to be to have to be considered
900b57cec5SDimitry Andric /// "counted"? Counted loops do not get safepoints at backedges.
910b57cec5SDimitry Andric static cl::opt<int> CountedLoopTripWidth("spp-counted-loop-trip-width",
920b57cec5SDimitry Andric cl::Hidden, cl::init(32));
930b57cec5SDimitry Andric
940b57cec5SDimitry Andric // If true, split the backedge of a loop when placing the safepoint, otherwise
950b57cec5SDimitry Andric // split the latch block itself. Both are useful to support for
960b57cec5SDimitry Andric // experimentation, but in practice, it looks like splitting the backedge
970b57cec5SDimitry Andric // optimizes better.
980b57cec5SDimitry Andric static cl::opt<bool> SplitBackedge("spp-split-backedge", cl::Hidden,
990b57cec5SDimitry Andric cl::init(false));
1000b57cec5SDimitry Andric
1010b57cec5SDimitry Andric namespace {
1020b57cec5SDimitry Andric /// An analysis pass whose purpose is to identify each of the backedges in
1030b57cec5SDimitry Andric /// the function which require a safepoint poll to be inserted.
10406c3fb27SDimitry Andric class PlaceBackedgeSafepointsLegacyPass : public FunctionPass {
10506c3fb27SDimitry Andric public:
1060b57cec5SDimitry Andric static char ID;
1070b57cec5SDimitry Andric
1080b57cec5SDimitry Andric /// The output of the pass - gives a list of each backedge (described by
1090b57cec5SDimitry Andric /// pointing at the branch) which need a poll inserted.
1100b57cec5SDimitry Andric std::vector<Instruction *> PollLocations;
1110b57cec5SDimitry Andric
1120b57cec5SDimitry Andric /// True unless we're running spp-no-calls in which case we need to disable
1130b57cec5SDimitry Andric /// the call-dependent placement opts.
1140b57cec5SDimitry Andric bool CallSafepointsEnabled;
1150b57cec5SDimitry Andric
PlaceBackedgeSafepointsLegacyPass(bool CallSafepoints=false)11606c3fb27SDimitry Andric PlaceBackedgeSafepointsLegacyPass(bool CallSafepoints = false)
1170b57cec5SDimitry Andric : FunctionPass(ID), CallSafepointsEnabled(CallSafepoints) {
11806c3fb27SDimitry Andric initializePlaceBackedgeSafepointsLegacyPassPass(
11906c3fb27SDimitry Andric *PassRegistry::getPassRegistry());
1200b57cec5SDimitry Andric }
1210b57cec5SDimitry Andric
1220b57cec5SDimitry Andric bool runOnLoop(Loop *);
12306c3fb27SDimitry Andric
runOnLoopAndSubLoops(Loop * L)1240b57cec5SDimitry Andric void runOnLoopAndSubLoops(Loop *L) {
1250b57cec5SDimitry Andric // Visit all the subloops
1260b57cec5SDimitry Andric for (Loop *I : *L)
1270b57cec5SDimitry Andric runOnLoopAndSubLoops(I);
1280b57cec5SDimitry Andric runOnLoop(L);
1290b57cec5SDimitry Andric }
1300b57cec5SDimitry Andric
runOnFunction(Function & F)1310b57cec5SDimitry Andric bool runOnFunction(Function &F) override {
1320b57cec5SDimitry Andric SE = &getAnalysis<ScalarEvolutionWrapperPass>().getSE();
1330b57cec5SDimitry Andric DT = &getAnalysis<DominatorTreeWrapperPass>().getDomTree();
1340b57cec5SDimitry Andric LI = &getAnalysis<LoopInfoWrapperPass>().getLoopInfo();
1358bcb0991SDimitry Andric TLI = &getAnalysis<TargetLibraryInfoWrapperPass>().getTLI(F);
1360b57cec5SDimitry Andric for (Loop *I : *LI) {
1370b57cec5SDimitry Andric runOnLoopAndSubLoops(I);
1380b57cec5SDimitry Andric }
1390b57cec5SDimitry Andric return false;
1400b57cec5SDimitry Andric }
1410b57cec5SDimitry Andric
getAnalysisUsage(AnalysisUsage & AU) const1420b57cec5SDimitry Andric void getAnalysisUsage(AnalysisUsage &AU) const override {
1430b57cec5SDimitry Andric AU.addRequired<DominatorTreeWrapperPass>();
1440b57cec5SDimitry Andric AU.addRequired<ScalarEvolutionWrapperPass>();
1450b57cec5SDimitry Andric AU.addRequired<LoopInfoWrapperPass>();
1460b57cec5SDimitry Andric AU.addRequired<TargetLibraryInfoWrapperPass>();
1470b57cec5SDimitry Andric // We no longer modify the IR at all in this pass. Thus all
1480b57cec5SDimitry Andric // analysis are preserved.
1490b57cec5SDimitry Andric AU.setPreservesAll();
1500b57cec5SDimitry Andric }
15106c3fb27SDimitry Andric
15206c3fb27SDimitry Andric private:
15306c3fb27SDimitry Andric ScalarEvolution *SE = nullptr;
15406c3fb27SDimitry Andric DominatorTree *DT = nullptr;
15506c3fb27SDimitry Andric LoopInfo *LI = nullptr;
15606c3fb27SDimitry Andric TargetLibraryInfo *TLI = nullptr;
1570b57cec5SDimitry Andric };
15806c3fb27SDimitry Andric } // namespace
1590b57cec5SDimitry Andric
1600b57cec5SDimitry Andric static cl::opt<bool> NoEntry("spp-no-entry", cl::Hidden, cl::init(false));
1610b57cec5SDimitry Andric static cl::opt<bool> NoCall("spp-no-call", cl::Hidden, cl::init(false));
1620b57cec5SDimitry Andric static cl::opt<bool> NoBackedge("spp-no-backedge", cl::Hidden, cl::init(false));
1630b57cec5SDimitry Andric
16406c3fb27SDimitry Andric char PlaceBackedgeSafepointsLegacyPass::ID = 0;
1650b57cec5SDimitry Andric
16606c3fb27SDimitry Andric INITIALIZE_PASS_BEGIN(PlaceBackedgeSafepointsLegacyPass,
16706c3fb27SDimitry Andric "place-backedge-safepoints-impl",
16806c3fb27SDimitry Andric "Place Backedge Safepoints", false, false)
16906c3fb27SDimitry Andric INITIALIZE_PASS_DEPENDENCY(ScalarEvolutionWrapperPass)
17006c3fb27SDimitry Andric INITIALIZE_PASS_DEPENDENCY(DominatorTreeWrapperPass)
17106c3fb27SDimitry Andric INITIALIZE_PASS_DEPENDENCY(LoopInfoWrapperPass)
17206c3fb27SDimitry Andric INITIALIZE_PASS_END(PlaceBackedgeSafepointsLegacyPass,
17306c3fb27SDimitry Andric "place-backedge-safepoints-impl",
17406c3fb27SDimitry Andric "Place Backedge Safepoints", false, false)
1750b57cec5SDimitry Andric
17606c3fb27SDimitry Andric static bool containsUnconditionalCallSafepoint(Loop *L, BasicBlock *Header,
17706c3fb27SDimitry Andric BasicBlock *Pred,
17806c3fb27SDimitry Andric DominatorTree &DT,
17906c3fb27SDimitry Andric const TargetLibraryInfo &TLI);
1800b57cec5SDimitry Andric
18106c3fb27SDimitry Andric static bool mustBeFiniteCountedLoop(Loop *L, ScalarEvolution *SE,
18206c3fb27SDimitry Andric BasicBlock *Pred);
18306c3fb27SDimitry Andric
18406c3fb27SDimitry Andric static Instruction *findLocationForEntrySafepoint(Function &F,
18506c3fb27SDimitry Andric DominatorTree &DT);
18606c3fb27SDimitry Andric
18706c3fb27SDimitry Andric static bool isGCSafepointPoll(Function &F);
18806c3fb27SDimitry Andric static bool shouldRewriteFunction(Function &F);
18906c3fb27SDimitry Andric static bool enableEntrySafepoints(Function &F);
19006c3fb27SDimitry Andric static bool enableBackedgeSafepoints(Function &F);
19106c3fb27SDimitry Andric static bool enableCallSafepoints(Function &F);
19206c3fb27SDimitry Andric
1930b57cec5SDimitry Andric static void
194*0fca6ea1SDimitry Andric InsertSafepointPoll(BasicBlock::iterator InsertBefore,
1950b57cec5SDimitry Andric std::vector<CallBase *> &ParsePointsNeeded /*rval*/,
1960b57cec5SDimitry Andric const TargetLibraryInfo &TLI);
1970b57cec5SDimitry Andric
runOnLoop(Loop * L)19806c3fb27SDimitry Andric bool PlaceBackedgeSafepointsLegacyPass::runOnLoop(Loop *L) {
19906c3fb27SDimitry Andric // Loop through all loop latches (branches controlling backedges). We need
20006c3fb27SDimitry Andric // to place a safepoint on every backedge (potentially).
20106c3fb27SDimitry Andric // Note: In common usage, there will be only one edge due to LoopSimplify
20206c3fb27SDimitry Andric // having run sometime earlier in the pipeline, but this code must be correct
20306c3fb27SDimitry Andric // w.r.t. loops with multiple backedges.
20406c3fb27SDimitry Andric BasicBlock *Header = L->getHeader();
20506c3fb27SDimitry Andric SmallVector<BasicBlock *, 16> LoopLatches;
20606c3fb27SDimitry Andric L->getLoopLatches(LoopLatches);
20706c3fb27SDimitry Andric for (BasicBlock *Pred : LoopLatches) {
20806c3fb27SDimitry Andric assert(L->contains(Pred));
20906c3fb27SDimitry Andric
21006c3fb27SDimitry Andric // Make a policy decision about whether this loop needs a safepoint or
21106c3fb27SDimitry Andric // not. Note that this is about unburdening the optimizer in loops, not
21206c3fb27SDimitry Andric // avoiding the runtime cost of the actual safepoint.
21306c3fb27SDimitry Andric if (!AllBackedges) {
21406c3fb27SDimitry Andric if (mustBeFiniteCountedLoop(L, SE, Pred)) {
21506c3fb27SDimitry Andric LLVM_DEBUG(dbgs() << "skipping safepoint placement in finite loop\n");
21606c3fb27SDimitry Andric FiniteExecution++;
21706c3fb27SDimitry Andric continue;
21806c3fb27SDimitry Andric }
21906c3fb27SDimitry Andric if (CallSafepointsEnabled &&
22006c3fb27SDimitry Andric containsUnconditionalCallSafepoint(L, Header, Pred, *DT, *TLI)) {
22106c3fb27SDimitry Andric // Note: This is only semantically legal since we won't do any further
22206c3fb27SDimitry Andric // IPO or inlining before the actual call insertion.. If we hadn't, we
22306c3fb27SDimitry Andric // might latter loose this call safepoint.
22406c3fb27SDimitry Andric LLVM_DEBUG(
22506c3fb27SDimitry Andric dbgs()
22606c3fb27SDimitry Andric << "skipping safepoint placement due to unconditional call\n");
22706c3fb27SDimitry Andric CallInLoop++;
22806c3fb27SDimitry Andric continue;
22906c3fb27SDimitry Andric }
23006c3fb27SDimitry Andric }
23106c3fb27SDimitry Andric
23206c3fb27SDimitry Andric // TODO: We can create an inner loop which runs a finite number of
23306c3fb27SDimitry Andric // iterations with an outer loop which contains a safepoint. This would
23406c3fb27SDimitry Andric // not help runtime performance that much, but it might help our ability to
23506c3fb27SDimitry Andric // optimize the inner loop.
23606c3fb27SDimitry Andric
23706c3fb27SDimitry Andric // Safepoint insertion would involve creating a new basic block (as the
23806c3fb27SDimitry Andric // target of the current backedge) which does the safepoint (of all live
23906c3fb27SDimitry Andric // variables) and branches to the true header
24006c3fb27SDimitry Andric Instruction *Term = Pred->getTerminator();
24106c3fb27SDimitry Andric
24206c3fb27SDimitry Andric LLVM_DEBUG(dbgs() << "[LSP] terminator instruction: " << *Term);
24306c3fb27SDimitry Andric
24406c3fb27SDimitry Andric PollLocations.push_back(Term);
24506c3fb27SDimitry Andric }
24606c3fb27SDimitry Andric
24706c3fb27SDimitry Andric return false;
24806c3fb27SDimitry Andric }
24906c3fb27SDimitry Andric
runImpl(Function & F,const TargetLibraryInfo & TLI)25006c3fb27SDimitry Andric bool PlaceSafepointsPass::runImpl(Function &F, const TargetLibraryInfo &TLI) {
25106c3fb27SDimitry Andric if (F.isDeclaration() || F.empty()) {
25206c3fb27SDimitry Andric // This is a declaration, nothing to do. Must exit early to avoid crash in
25306c3fb27SDimitry Andric // dom tree calculation
25406c3fb27SDimitry Andric return false;
25506c3fb27SDimitry Andric }
25606c3fb27SDimitry Andric
25706c3fb27SDimitry Andric if (isGCSafepointPoll(F)) {
25806c3fb27SDimitry Andric // Given we're inlining this inside of safepoint poll insertion, this
25906c3fb27SDimitry Andric // doesn't make any sense. Note that we do make any contained calls
26006c3fb27SDimitry Andric // parseable after we inline a poll.
26106c3fb27SDimitry Andric return false;
26206c3fb27SDimitry Andric }
26306c3fb27SDimitry Andric
26406c3fb27SDimitry Andric if (!shouldRewriteFunction(F))
26506c3fb27SDimitry Andric return false;
26606c3fb27SDimitry Andric
26706c3fb27SDimitry Andric bool Modified = false;
26806c3fb27SDimitry Andric
26906c3fb27SDimitry Andric // In various bits below, we rely on the fact that uses are reachable from
27006c3fb27SDimitry Andric // defs. When there are basic blocks unreachable from the entry, dominance
27106c3fb27SDimitry Andric // and reachablity queries return non-sensical results. Thus, we preprocess
27206c3fb27SDimitry Andric // the function to ensure these properties hold.
27306c3fb27SDimitry Andric Modified |= removeUnreachableBlocks(F);
27406c3fb27SDimitry Andric
27506c3fb27SDimitry Andric // STEP 1 - Insert the safepoint polling locations. We do not need to
27606c3fb27SDimitry Andric // actually insert parse points yet. That will be done for all polls and
27706c3fb27SDimitry Andric // calls in a single pass.
27806c3fb27SDimitry Andric
27906c3fb27SDimitry Andric DominatorTree DT;
28006c3fb27SDimitry Andric DT.recalculate(F);
28106c3fb27SDimitry Andric
28206c3fb27SDimitry Andric SmallVector<Instruction *, 16> PollsNeeded;
28306c3fb27SDimitry Andric std::vector<CallBase *> ParsePointNeeded;
28406c3fb27SDimitry Andric
28506c3fb27SDimitry Andric if (enableBackedgeSafepoints(F)) {
28606c3fb27SDimitry Andric // Construct a pass manager to run the LoopPass backedge logic. We
28706c3fb27SDimitry Andric // need the pass manager to handle scheduling all the loop passes
28806c3fb27SDimitry Andric // appropriately. Doing this by hand is painful and just not worth messing
28906c3fb27SDimitry Andric // with for the moment.
29006c3fb27SDimitry Andric legacy::FunctionPassManager FPM(F.getParent());
29106c3fb27SDimitry Andric bool CanAssumeCallSafepoints = enableCallSafepoints(F);
292*0fca6ea1SDimitry Andric
293*0fca6ea1SDimitry Andric FPM.add(new TargetLibraryInfoWrapperPass(TLI));
29406c3fb27SDimitry Andric auto *PBS = new PlaceBackedgeSafepointsLegacyPass(CanAssumeCallSafepoints);
29506c3fb27SDimitry Andric FPM.add(PBS);
29606c3fb27SDimitry Andric FPM.run(F);
29706c3fb27SDimitry Andric
29806c3fb27SDimitry Andric // We preserve dominance information when inserting the poll, otherwise
29906c3fb27SDimitry Andric // we'd have to recalculate this on every insert
30006c3fb27SDimitry Andric DT.recalculate(F);
30106c3fb27SDimitry Andric
30206c3fb27SDimitry Andric auto &PollLocations = PBS->PollLocations;
30306c3fb27SDimitry Andric
30406c3fb27SDimitry Andric auto OrderByBBName = [](Instruction *a, Instruction *b) {
30506c3fb27SDimitry Andric return a->getParent()->getName() < b->getParent()->getName();
30606c3fb27SDimitry Andric };
30706c3fb27SDimitry Andric // We need the order of list to be stable so that naming ends up stable
30806c3fb27SDimitry Andric // when we split edges. This makes test cases much easier to write.
30906c3fb27SDimitry Andric llvm::sort(PollLocations, OrderByBBName);
31006c3fb27SDimitry Andric
31106c3fb27SDimitry Andric // We can sometimes end up with duplicate poll locations. This happens if
31206c3fb27SDimitry Andric // a single loop is visited more than once. The fact this happens seems
31306c3fb27SDimitry Andric // wrong, but it does happen for the split-backedge.ll test case.
314*0fca6ea1SDimitry Andric PollLocations.erase(llvm::unique(PollLocations), PollLocations.end());
31506c3fb27SDimitry Andric
31606c3fb27SDimitry Andric // Insert a poll at each point the analysis pass identified
31706c3fb27SDimitry Andric // The poll location must be the terminator of a loop latch block.
31806c3fb27SDimitry Andric for (Instruction *Term : PollLocations) {
31906c3fb27SDimitry Andric // We are inserting a poll, the function is modified
32006c3fb27SDimitry Andric Modified = true;
32106c3fb27SDimitry Andric
32206c3fb27SDimitry Andric if (SplitBackedge) {
32306c3fb27SDimitry Andric // Split the backedge of the loop and insert the poll within that new
32406c3fb27SDimitry Andric // basic block. This creates a loop with two latches per original
32506c3fb27SDimitry Andric // latch (which is non-ideal), but this appears to be easier to
32606c3fb27SDimitry Andric // optimize in practice than inserting the poll immediately before the
32706c3fb27SDimitry Andric // latch test.
32806c3fb27SDimitry Andric
32906c3fb27SDimitry Andric // Since this is a latch, at least one of the successors must dominate
33006c3fb27SDimitry Andric // it. Its possible that we have a) duplicate edges to the same header
33106c3fb27SDimitry Andric // and b) edges to distinct loop headers. We need to insert pools on
33206c3fb27SDimitry Andric // each.
33306c3fb27SDimitry Andric SetVector<BasicBlock *> Headers;
33406c3fb27SDimitry Andric for (unsigned i = 0; i < Term->getNumSuccessors(); i++) {
33506c3fb27SDimitry Andric BasicBlock *Succ = Term->getSuccessor(i);
33606c3fb27SDimitry Andric if (DT.dominates(Succ, Term->getParent())) {
33706c3fb27SDimitry Andric Headers.insert(Succ);
33806c3fb27SDimitry Andric }
33906c3fb27SDimitry Andric }
34006c3fb27SDimitry Andric assert(!Headers.empty() && "poll location is not a loop latch?");
34106c3fb27SDimitry Andric
34206c3fb27SDimitry Andric // The split loop structure here is so that we only need to recalculate
34306c3fb27SDimitry Andric // the dominator tree once. Alternatively, we could just keep it up to
34406c3fb27SDimitry Andric // date and use a more natural merged loop.
34506c3fb27SDimitry Andric SetVector<BasicBlock *> SplitBackedges;
34606c3fb27SDimitry Andric for (BasicBlock *Header : Headers) {
34706c3fb27SDimitry Andric BasicBlock *NewBB = SplitEdge(Term->getParent(), Header, &DT);
34806c3fb27SDimitry Andric PollsNeeded.push_back(NewBB->getTerminator());
34906c3fb27SDimitry Andric NumBackedgeSafepoints++;
35006c3fb27SDimitry Andric }
35106c3fb27SDimitry Andric } else {
35206c3fb27SDimitry Andric // Split the latch block itself, right before the terminator.
35306c3fb27SDimitry Andric PollsNeeded.push_back(Term);
35406c3fb27SDimitry Andric NumBackedgeSafepoints++;
35506c3fb27SDimitry Andric }
35606c3fb27SDimitry Andric }
35706c3fb27SDimitry Andric }
35806c3fb27SDimitry Andric
35906c3fb27SDimitry Andric if (enableEntrySafepoints(F)) {
36006c3fb27SDimitry Andric if (Instruction *Location = findLocationForEntrySafepoint(F, DT)) {
36106c3fb27SDimitry Andric PollsNeeded.push_back(Location);
36206c3fb27SDimitry Andric Modified = true;
36306c3fb27SDimitry Andric NumEntrySafepoints++;
36406c3fb27SDimitry Andric }
36506c3fb27SDimitry Andric // TODO: else we should assert that there was, in fact, a policy choice to
36606c3fb27SDimitry Andric // not insert a entry safepoint poll.
36706c3fb27SDimitry Andric }
36806c3fb27SDimitry Andric
36906c3fb27SDimitry Andric // Now that we've identified all the needed safepoint poll locations, insert
37006c3fb27SDimitry Andric // safepoint polls themselves.
37106c3fb27SDimitry Andric for (Instruction *PollLocation : PollsNeeded) {
37206c3fb27SDimitry Andric std::vector<CallBase *> RuntimeCalls;
373*0fca6ea1SDimitry Andric InsertSafepointPoll(PollLocation->getIterator(), RuntimeCalls, TLI);
37406c3fb27SDimitry Andric llvm::append_range(ParsePointNeeded, RuntimeCalls);
37506c3fb27SDimitry Andric }
37606c3fb27SDimitry Andric
37706c3fb27SDimitry Andric return Modified;
37806c3fb27SDimitry Andric }
37906c3fb27SDimitry Andric
run(Function & F,FunctionAnalysisManager & AM)38006c3fb27SDimitry Andric PreservedAnalyses PlaceSafepointsPass::run(Function &F,
38106c3fb27SDimitry Andric FunctionAnalysisManager &AM) {
38206c3fb27SDimitry Andric auto &TLI = AM.getResult<TargetLibraryAnalysis>(F);
38306c3fb27SDimitry Andric
38406c3fb27SDimitry Andric if (!runImpl(F, TLI))
38506c3fb27SDimitry Andric return PreservedAnalyses::all();
38606c3fb27SDimitry Andric
38706c3fb27SDimitry Andric // TODO: can we preserve more?
38806c3fb27SDimitry Andric return PreservedAnalyses::none();
38906c3fb27SDimitry Andric }
39006c3fb27SDimitry Andric
needsStatepoint(CallBase * Call,const TargetLibraryInfo & TLI)3910b57cec5SDimitry Andric static bool needsStatepoint(CallBase *Call, const TargetLibraryInfo &TLI) {
3920b57cec5SDimitry Andric if (callsGCLeafFunction(Call, TLI))
3930b57cec5SDimitry Andric return false;
3940b57cec5SDimitry Andric if (auto *CI = dyn_cast<CallInst>(Call)) {
3950b57cec5SDimitry Andric if (CI->isInlineAsm())
3960b57cec5SDimitry Andric return false;
3970b57cec5SDimitry Andric }
3980b57cec5SDimitry Andric
3995ffd83dbSDimitry Andric return !(isa<GCStatepointInst>(Call) || isa<GCRelocateInst>(Call) ||
4005ffd83dbSDimitry Andric isa<GCResultInst>(Call));
4010b57cec5SDimitry Andric }
4020b57cec5SDimitry Andric
4030b57cec5SDimitry Andric /// Returns true if this loop is known to contain a call safepoint which
4040b57cec5SDimitry Andric /// must unconditionally execute on any iteration of the loop which returns
4050b57cec5SDimitry Andric /// to the loop header via an edge from Pred. Returns a conservative correct
4060b57cec5SDimitry Andric /// answer; i.e. false is always valid.
containsUnconditionalCallSafepoint(Loop * L,BasicBlock * Header,BasicBlock * Pred,DominatorTree & DT,const TargetLibraryInfo & TLI)4070b57cec5SDimitry Andric static bool containsUnconditionalCallSafepoint(Loop *L, BasicBlock *Header,
4080b57cec5SDimitry Andric BasicBlock *Pred,
4090b57cec5SDimitry Andric DominatorTree &DT,
4100b57cec5SDimitry Andric const TargetLibraryInfo &TLI) {
4110b57cec5SDimitry Andric // In general, we're looking for any cut of the graph which ensures
4120b57cec5SDimitry Andric // there's a call safepoint along every edge between Header and Pred.
4130b57cec5SDimitry Andric // For the moment, we look only for the 'cuts' that consist of a single call
4140b57cec5SDimitry Andric // instruction in a block which is dominated by the Header and dominates the
4150b57cec5SDimitry Andric // loop latch (Pred) block. Somewhat surprisingly, walking the entire chain
4160b57cec5SDimitry Andric // of such dominating blocks gets substantially more occurrences than just
4170b57cec5SDimitry Andric // checking the Pred and Header blocks themselves. This may be due to the
4180b57cec5SDimitry Andric // density of loop exit conditions caused by range and null checks.
4190b57cec5SDimitry Andric // TODO: structure this as an analysis pass, cache the result for subloops,
4200b57cec5SDimitry Andric // avoid dom tree recalculations
4210b57cec5SDimitry Andric assert(DT.dominates(Header, Pred) && "loop latch not dominated by header?");
4220b57cec5SDimitry Andric
4230b57cec5SDimitry Andric BasicBlock *Current = Pred;
4240b57cec5SDimitry Andric while (true) {
4250b57cec5SDimitry Andric for (Instruction &I : *Current) {
4260b57cec5SDimitry Andric if (auto *Call = dyn_cast<CallBase>(&I))
4270b57cec5SDimitry Andric // Note: Technically, needing a safepoint isn't quite the right
4280b57cec5SDimitry Andric // condition here. We should instead be checking if the target method
4290b57cec5SDimitry Andric // has an
4300b57cec5SDimitry Andric // unconditional poll. In practice, this is only a theoretical concern
4310b57cec5SDimitry Andric // since we don't have any methods with conditional-only safepoint
4320b57cec5SDimitry Andric // polls.
4330b57cec5SDimitry Andric if (needsStatepoint(Call, TLI))
4340b57cec5SDimitry Andric return true;
4350b57cec5SDimitry Andric }
4360b57cec5SDimitry Andric
4370b57cec5SDimitry Andric if (Current == Header)
4380b57cec5SDimitry Andric break;
4390b57cec5SDimitry Andric Current = DT.getNode(Current)->getIDom()->getBlock();
4400b57cec5SDimitry Andric }
4410b57cec5SDimitry Andric
4420b57cec5SDimitry Andric return false;
4430b57cec5SDimitry Andric }
4440b57cec5SDimitry Andric
4450b57cec5SDimitry Andric /// Returns true if this loop is known to terminate in a finite number of
4460b57cec5SDimitry Andric /// iterations. Note that this function may return false for a loop which
4470b57cec5SDimitry Andric /// does actual terminate in a finite constant number of iterations due to
4480b57cec5SDimitry Andric /// conservatism in the analysis.
mustBeFiniteCountedLoop(Loop * L,ScalarEvolution * SE,BasicBlock * Pred)4490b57cec5SDimitry Andric static bool mustBeFiniteCountedLoop(Loop *L, ScalarEvolution *SE,
4500b57cec5SDimitry Andric BasicBlock *Pred) {
4510b57cec5SDimitry Andric // A conservative bound on the loop as a whole.
4528bcb0991SDimitry Andric const SCEV *MaxTrips = SE->getConstantMaxBackedgeTakenCount(L);
453e8d8bef9SDimitry Andric if (!isa<SCEVCouldNotCompute>(MaxTrips) &&
4540b57cec5SDimitry Andric SE->getUnsignedRange(MaxTrips).getUnsignedMax().isIntN(
4550b57cec5SDimitry Andric CountedLoopTripWidth))
4560b57cec5SDimitry Andric return true;
4570b57cec5SDimitry Andric
4580b57cec5SDimitry Andric // If this is a conditional branch to the header with the alternate path
4590b57cec5SDimitry Andric // being outside the loop, we can ask questions about the execution frequency
4600b57cec5SDimitry Andric // of the exit block.
4610b57cec5SDimitry Andric if (L->isLoopExiting(Pred)) {
4620b57cec5SDimitry Andric // This returns an exact expression only. TODO: We really only need an
4630b57cec5SDimitry Andric // upper bound here, but SE doesn't expose that.
4640b57cec5SDimitry Andric const SCEV *MaxExec = SE->getExitCount(L, Pred);
465e8d8bef9SDimitry Andric if (!isa<SCEVCouldNotCompute>(MaxExec) &&
4660b57cec5SDimitry Andric SE->getUnsignedRange(MaxExec).getUnsignedMax().isIntN(
4670b57cec5SDimitry Andric CountedLoopTripWidth))
4680b57cec5SDimitry Andric return true;
4690b57cec5SDimitry Andric }
4700b57cec5SDimitry Andric
4710b57cec5SDimitry Andric return /* not finite */ false;
4720b57cec5SDimitry Andric }
4730b57cec5SDimitry Andric
scanOneBB(Instruction * Start,Instruction * End,std::vector<CallInst * > & Calls,DenseSet<BasicBlock * > & Seen,std::vector<BasicBlock * > & Worklist)4740b57cec5SDimitry Andric static void scanOneBB(Instruction *Start, Instruction *End,
4750b57cec5SDimitry Andric std::vector<CallInst *> &Calls,
4760b57cec5SDimitry Andric DenseSet<BasicBlock *> &Seen,
4770b57cec5SDimitry Andric std::vector<BasicBlock *> &Worklist) {
4780b57cec5SDimitry Andric for (BasicBlock::iterator BBI(Start), BBE0 = Start->getParent()->end(),
4790b57cec5SDimitry Andric BBE1 = BasicBlock::iterator(End);
4800b57cec5SDimitry Andric BBI != BBE0 && BBI != BBE1; BBI++) {
4810b57cec5SDimitry Andric if (CallInst *CI = dyn_cast<CallInst>(&*BBI))
4820b57cec5SDimitry Andric Calls.push_back(CI);
4830b57cec5SDimitry Andric
4840b57cec5SDimitry Andric // FIXME: This code does not handle invokes
4850b57cec5SDimitry Andric assert(!isa<InvokeInst>(&*BBI) &&
4860b57cec5SDimitry Andric "support for invokes in poll code needed");
4870b57cec5SDimitry Andric
4880b57cec5SDimitry Andric // Only add the successor blocks if we reach the terminator instruction
4890b57cec5SDimitry Andric // without encountering end first
4900b57cec5SDimitry Andric if (BBI->isTerminator()) {
4910b57cec5SDimitry Andric BasicBlock *BB = BBI->getParent();
4920b57cec5SDimitry Andric for (BasicBlock *Succ : successors(BB)) {
4930b57cec5SDimitry Andric if (Seen.insert(Succ).second) {
4940b57cec5SDimitry Andric Worklist.push_back(Succ);
4950b57cec5SDimitry Andric }
4960b57cec5SDimitry Andric }
4970b57cec5SDimitry Andric }
4980b57cec5SDimitry Andric }
4990b57cec5SDimitry Andric }
5000b57cec5SDimitry Andric
scanInlinedCode(Instruction * Start,Instruction * End,std::vector<CallInst * > & Calls,DenseSet<BasicBlock * > & Seen)5010b57cec5SDimitry Andric static void scanInlinedCode(Instruction *Start, Instruction *End,
5020b57cec5SDimitry Andric std::vector<CallInst *> &Calls,
5030b57cec5SDimitry Andric DenseSet<BasicBlock *> &Seen) {
5040b57cec5SDimitry Andric Calls.clear();
5050b57cec5SDimitry Andric std::vector<BasicBlock *> Worklist;
5060b57cec5SDimitry Andric Seen.insert(Start->getParent());
5070b57cec5SDimitry Andric scanOneBB(Start, End, Calls, Seen, Worklist);
5080b57cec5SDimitry Andric while (!Worklist.empty()) {
5090b57cec5SDimitry Andric BasicBlock *BB = Worklist.back();
5100b57cec5SDimitry Andric Worklist.pop_back();
5110b57cec5SDimitry Andric scanOneBB(&*BB->begin(), End, Calls, Seen, Worklist);
5120b57cec5SDimitry Andric }
5130b57cec5SDimitry Andric }
5140b57cec5SDimitry Andric
5150b57cec5SDimitry Andric /// Returns true if an entry safepoint is not required before this callsite in
5160b57cec5SDimitry Andric /// the caller function.
doesNotRequireEntrySafepointBefore(CallBase * Call)5170b57cec5SDimitry Andric static bool doesNotRequireEntrySafepointBefore(CallBase *Call) {
5180b57cec5SDimitry Andric if (IntrinsicInst *II = dyn_cast<IntrinsicInst>(Call)) {
5190b57cec5SDimitry Andric switch (II->getIntrinsicID()) {
5200b57cec5SDimitry Andric case Intrinsic::experimental_gc_statepoint:
5210b57cec5SDimitry Andric case Intrinsic::experimental_patchpoint_void:
522*0fca6ea1SDimitry Andric case Intrinsic::experimental_patchpoint:
5230b57cec5SDimitry Andric // The can wrap an actual call which may grow the stack by an unbounded
5240b57cec5SDimitry Andric // amount or run forever.
5250b57cec5SDimitry Andric return false;
5260b57cec5SDimitry Andric default:
5270b57cec5SDimitry Andric // Most LLVM intrinsics are things which do not expand to actual calls, or
5280b57cec5SDimitry Andric // at least if they do, are leaf functions that cause only finite stack
5290b57cec5SDimitry Andric // growth. In particular, the optimizer likes to form things like memsets
5300b57cec5SDimitry Andric // out of stores in the original IR. Another important example is
5310b57cec5SDimitry Andric // llvm.localescape which must occur in the entry block. Inserting a
5320b57cec5SDimitry Andric // safepoint before it is not legal since it could push the localescape
5330b57cec5SDimitry Andric // out of the entry block.
5340b57cec5SDimitry Andric return true;
5350b57cec5SDimitry Andric }
5360b57cec5SDimitry Andric }
5370b57cec5SDimitry Andric return false;
5380b57cec5SDimitry Andric }
5390b57cec5SDimitry Andric
findLocationForEntrySafepoint(Function & F,DominatorTree & DT)5400b57cec5SDimitry Andric static Instruction *findLocationForEntrySafepoint(Function &F,
5410b57cec5SDimitry Andric DominatorTree &DT) {
5420b57cec5SDimitry Andric
5430b57cec5SDimitry Andric // Conceptually, this poll needs to be on method entry, but in
5440b57cec5SDimitry Andric // practice, we place it as late in the entry block as possible. We
5450b57cec5SDimitry Andric // can place it as late as we want as long as it dominates all calls
5460b57cec5SDimitry Andric // that can grow the stack. This, combined with backedge polls,
5470b57cec5SDimitry Andric // give us all the progress guarantees we need.
5480b57cec5SDimitry Andric
5490b57cec5SDimitry Andric // hasNextInstruction and nextInstruction are used to iterate
5500b57cec5SDimitry Andric // through a "straight line" execution sequence.
5510b57cec5SDimitry Andric
5520b57cec5SDimitry Andric auto HasNextInstruction = [](Instruction *I) {
5530b57cec5SDimitry Andric if (!I->isTerminator())
5540b57cec5SDimitry Andric return true;
5550b57cec5SDimitry Andric
5560b57cec5SDimitry Andric BasicBlock *nextBB = I->getParent()->getUniqueSuccessor();
5570b57cec5SDimitry Andric return nextBB && (nextBB->getUniquePredecessor() != nullptr);
5580b57cec5SDimitry Andric };
5590b57cec5SDimitry Andric
5600b57cec5SDimitry Andric auto NextInstruction = [&](Instruction *I) {
5610b57cec5SDimitry Andric assert(HasNextInstruction(I) &&
5620b57cec5SDimitry Andric "first check if there is a next instruction!");
5630b57cec5SDimitry Andric
5640b57cec5SDimitry Andric if (I->isTerminator())
5650b57cec5SDimitry Andric return &I->getParent()->getUniqueSuccessor()->front();
5660b57cec5SDimitry Andric return &*++I->getIterator();
5670b57cec5SDimitry Andric };
5680b57cec5SDimitry Andric
5690b57cec5SDimitry Andric Instruction *Cursor = nullptr;
5700b57cec5SDimitry Andric for (Cursor = &F.getEntryBlock().front(); HasNextInstruction(Cursor);
5710b57cec5SDimitry Andric Cursor = NextInstruction(Cursor)) {
5720b57cec5SDimitry Andric
5730b57cec5SDimitry Andric // We need to ensure a safepoint poll occurs before any 'real' call. The
5740b57cec5SDimitry Andric // easiest way to ensure finite execution between safepoints in the face of
5750b57cec5SDimitry Andric // recursive and mutually recursive functions is to enforce that each take
5760b57cec5SDimitry Andric // a safepoint. Additionally, we need to ensure a poll before any call
5770b57cec5SDimitry Andric // which can grow the stack by an unbounded amount. This isn't required
5780b57cec5SDimitry Andric // for GC semantics per se, but is a common requirement for languages
5790b57cec5SDimitry Andric // which detect stack overflow via guard pages and then throw exceptions.
5800b57cec5SDimitry Andric if (auto *Call = dyn_cast<CallBase>(Cursor)) {
5810b57cec5SDimitry Andric if (doesNotRequireEntrySafepointBefore(Call))
5820b57cec5SDimitry Andric continue;
5830b57cec5SDimitry Andric break;
5840b57cec5SDimitry Andric }
5850b57cec5SDimitry Andric }
5860b57cec5SDimitry Andric
5870b57cec5SDimitry Andric assert((HasNextInstruction(Cursor) || Cursor->isTerminator()) &&
5880b57cec5SDimitry Andric "either we stopped because of a call, or because of terminator");
5890b57cec5SDimitry Andric
5900b57cec5SDimitry Andric return Cursor;
5910b57cec5SDimitry Andric }
5920b57cec5SDimitry Andric
593e8d8bef9SDimitry Andric const char GCSafepointPollName[] = "gc.safepoint_poll";
5940b57cec5SDimitry Andric
isGCSafepointPoll(Function & F)5950b57cec5SDimitry Andric static bool isGCSafepointPoll(Function &F) {
596*0fca6ea1SDimitry Andric return F.getName() == GCSafepointPollName;
5970b57cec5SDimitry Andric }
5980b57cec5SDimitry Andric
5990b57cec5SDimitry Andric /// Returns true if this function should be rewritten to include safepoint
6000b57cec5SDimitry Andric /// polls and parseable call sites. The main point of this function is to be
6010b57cec5SDimitry Andric /// an extension point for custom logic.
shouldRewriteFunction(Function & F)6020b57cec5SDimitry Andric static bool shouldRewriteFunction(Function &F) {
6030b57cec5SDimitry Andric // TODO: This should check the GCStrategy
6040b57cec5SDimitry Andric if (F.hasGC()) {
6050b57cec5SDimitry Andric const auto &FunctionGCName = F.getGC();
6060b57cec5SDimitry Andric const StringRef StatepointExampleName("statepoint-example");
6070b57cec5SDimitry Andric const StringRef CoreCLRName("coreclr");
6080b57cec5SDimitry Andric return (StatepointExampleName == FunctionGCName) ||
6090b57cec5SDimitry Andric (CoreCLRName == FunctionGCName);
6100b57cec5SDimitry Andric } else
6110b57cec5SDimitry Andric return false;
6120b57cec5SDimitry Andric }
6130b57cec5SDimitry Andric
6140b57cec5SDimitry Andric // TODO: These should become properties of the GCStrategy, possibly with
6150b57cec5SDimitry Andric // command line overrides.
enableEntrySafepoints(Function & F)6160b57cec5SDimitry Andric static bool enableEntrySafepoints(Function &F) { return !NoEntry; }
enableBackedgeSafepoints(Function & F)6170b57cec5SDimitry Andric static bool enableBackedgeSafepoints(Function &F) { return !NoBackedge; }
enableCallSafepoints(Function & F)6180b57cec5SDimitry Andric static bool enableCallSafepoints(Function &F) { return !NoCall; }
6190b57cec5SDimitry Andric
62006c3fb27SDimitry Andric // Insert a safepoint poll immediately before the given instruction. Does
62106c3fb27SDimitry Andric // not handle the parsability of state at the runtime call, that's the
62206c3fb27SDimitry Andric // callers job.
6230b57cec5SDimitry Andric static void
InsertSafepointPoll(BasicBlock::iterator InsertBefore,std::vector<CallBase * > & ParsePointsNeeded,const TargetLibraryInfo & TLI)624*0fca6ea1SDimitry Andric InsertSafepointPoll(BasicBlock::iterator InsertBefore,
6250b57cec5SDimitry Andric std::vector<CallBase *> &ParsePointsNeeded /*rval*/,
6260b57cec5SDimitry Andric const TargetLibraryInfo &TLI) {
6270b57cec5SDimitry Andric BasicBlock *OrigBB = InsertBefore->getParent();
6280b57cec5SDimitry Andric Module *M = InsertBefore->getModule();
6290b57cec5SDimitry Andric assert(M && "must be part of a module");
6300b57cec5SDimitry Andric
6310b57cec5SDimitry Andric // Inline the safepoint poll implementation - this will get all the branch,
6320b57cec5SDimitry Andric // control flow, etc.. Most importantly, it will introduce the actual slow
6330b57cec5SDimitry Andric // path call - where we need to insert a safepoint (parsepoint).
6340b57cec5SDimitry Andric
6350b57cec5SDimitry Andric auto *F = M->getFunction(GCSafepointPollName);
6360b57cec5SDimitry Andric assert(F && "gc.safepoint_poll function is missing");
6370b57cec5SDimitry Andric assert(F->getValueType() ==
6380b57cec5SDimitry Andric FunctionType::get(Type::getVoidTy(M->getContext()), false) &&
6390b57cec5SDimitry Andric "gc.safepoint_poll declared with wrong type");
6400b57cec5SDimitry Andric assert(!F->empty() && "gc.safepoint_poll must be a non-empty function");
6410b57cec5SDimitry Andric CallInst *PollCall = CallInst::Create(F, "", InsertBefore);
6420b57cec5SDimitry Andric
6430b57cec5SDimitry Andric // Record some information about the call site we're replacing
6440b57cec5SDimitry Andric BasicBlock::iterator Before(PollCall), After(PollCall);
6450b57cec5SDimitry Andric bool IsBegin = false;
6460b57cec5SDimitry Andric if (Before == OrigBB->begin())
6470b57cec5SDimitry Andric IsBegin = true;
6480b57cec5SDimitry Andric else
6490b57cec5SDimitry Andric Before--;
6500b57cec5SDimitry Andric
6510b57cec5SDimitry Andric After++;
6520b57cec5SDimitry Andric assert(After != OrigBB->end() && "must have successor");
6530b57cec5SDimitry Andric
6540b57cec5SDimitry Andric // Do the actual inlining
6550b57cec5SDimitry Andric InlineFunctionInfo IFI;
6565ffd83dbSDimitry Andric bool InlineStatus = InlineFunction(*PollCall, IFI).isSuccess();
6570b57cec5SDimitry Andric assert(InlineStatus && "inline must succeed");
6580b57cec5SDimitry Andric (void)InlineStatus; // suppress warning in release-asserts
6590b57cec5SDimitry Andric
6600b57cec5SDimitry Andric // Check post-conditions
6610b57cec5SDimitry Andric assert(IFI.StaticAllocas.empty() && "can't have allocs");
6620b57cec5SDimitry Andric
6630b57cec5SDimitry Andric std::vector<CallInst *> Calls; // new calls
6640b57cec5SDimitry Andric DenseSet<BasicBlock *> BBs; // new BBs + insertee
6650b57cec5SDimitry Andric
6660b57cec5SDimitry Andric // Include only the newly inserted instructions, Note: begin may not be valid
6670b57cec5SDimitry Andric // if we inserted to the beginning of the basic block
6680b57cec5SDimitry Andric BasicBlock::iterator Start = IsBegin ? OrigBB->begin() : std::next(Before);
6690b57cec5SDimitry Andric
6700b57cec5SDimitry Andric // If your poll function includes an unreachable at the end, that's not
6710b57cec5SDimitry Andric // valid. Bugpoint likes to create this, so check for it.
6720b57cec5SDimitry Andric assert(isPotentiallyReachable(&*Start, &*After) &&
6730b57cec5SDimitry Andric "malformed poll function");
6740b57cec5SDimitry Andric
6750b57cec5SDimitry Andric scanInlinedCode(&*Start, &*After, Calls, BBs);
6760b57cec5SDimitry Andric assert(!Calls.empty() && "slow path not found for safepoint poll");
6770b57cec5SDimitry Andric
6780b57cec5SDimitry Andric // Record the fact we need a parsable state at the runtime call contained in
6790b57cec5SDimitry Andric // the poll function. This is required so that the runtime knows how to
6800b57cec5SDimitry Andric // parse the last frame when we actually take the safepoint (i.e. execute
6810b57cec5SDimitry Andric // the slow path)
6820b57cec5SDimitry Andric assert(ParsePointsNeeded.empty());
6830b57cec5SDimitry Andric for (auto *CI : Calls) {
6840b57cec5SDimitry Andric // No safepoint needed or wanted
6850b57cec5SDimitry Andric if (!needsStatepoint(CI, TLI))
6860b57cec5SDimitry Andric continue;
6870b57cec5SDimitry Andric
6880b57cec5SDimitry Andric // These are likely runtime calls. Should we assert that via calling
6890b57cec5SDimitry Andric // convention or something?
6900b57cec5SDimitry Andric ParsePointsNeeded.push_back(CI);
6910b57cec5SDimitry Andric }
6920b57cec5SDimitry Andric assert(ParsePointsNeeded.size() <= Calls.size());
6930b57cec5SDimitry Andric }
694