1950a13cfSDan Gohman //===-- WebAssemblyCFGStackify.cpp - CFG Stackification -------------------===//
2950a13cfSDan Gohman //
32946cd70SChandler Carruth // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
42946cd70SChandler Carruth // See https://llvm.org/LICENSE.txt for license information.
52946cd70SChandler Carruth // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6950a13cfSDan Gohman //
7950a13cfSDan Gohman //===----------------------------------------------------------------------===//
8950a13cfSDan Gohman ///
9950a13cfSDan Gohman /// \file
105f8f34e4SAdrian Prantl /// This file implements a CFG stacking pass.
11950a13cfSDan Gohman ///
12e76fa9ecSHeejin Ahn /// This pass inserts BLOCK, LOOP, and TRY markers to mark the start of scopes,
13e76fa9ecSHeejin Ahn /// since scope boundaries serve as the labels for WebAssembly's control
14e76fa9ecSHeejin Ahn /// transfers.
15950a13cfSDan Gohman ///
16950a13cfSDan Gohman /// This is sufficient to convert arbitrary CFGs into a form that works on
17950a13cfSDan Gohman /// WebAssembly, provided that all loops are single-entry.
18950a13cfSDan Gohman ///
19e76fa9ecSHeejin Ahn /// In case we use exceptions, this pass also fixes mismatches in unwind
20e76fa9ecSHeejin Ahn /// destinations created during transforming CFG into wasm structured format.
21e76fa9ecSHeejin Ahn ///
22950a13cfSDan Gohman //===----------------------------------------------------------------------===//
23950a13cfSDan Gohman 
246bda14b3SChandler Carruth #include "WebAssembly.h"
25e76fa9ecSHeejin Ahn #include "WebAssemblyExceptionInfo.h"
26ed0f1138SDan Gohman #include "WebAssemblyMachineFunctionInfo.h"
27950a13cfSDan Gohman #include "WebAssemblySubtarget.h"
284fc4e42dSDan Gohman #include "WebAssemblyUtilities.h"
29c4ac74fbSHeejin Ahn #include "llvm/ADT/Statistic.h"
3032807932SDan Gohman #include "llvm/CodeGen/MachineDominators.h"
31950a13cfSDan Gohman #include "llvm/CodeGen/MachineInstrBuilder.h"
32e76fa9ecSHeejin Ahn #include "llvm/MC/MCAsmInfo.h"
33950a13cfSDan Gohman using namespace llvm;
34950a13cfSDan Gohman 
35950a13cfSDan Gohman #define DEBUG_TYPE "wasm-cfg-stackify"
36950a13cfSDan Gohman 
37c4ac74fbSHeejin Ahn STATISTIC(NumUnwindMismatches, "Number of EH pad unwind mismatches found");
38c4ac74fbSHeejin Ahn 
39950a13cfSDan Gohman namespace {
40950a13cfSDan Gohman class WebAssemblyCFGStackify final : public MachineFunctionPass {
41117296c0SMehdi Amini   StringRef getPassName() const override { return "WebAssembly CFG Stackify"; }
42950a13cfSDan Gohman 
43950a13cfSDan Gohman   void getAnalysisUsage(AnalysisUsage &AU) const override {
4432807932SDan Gohman     AU.addRequired<MachineDominatorTree>();
45950a13cfSDan Gohman     AU.addRequired<MachineLoopInfo>();
46e76fa9ecSHeejin Ahn     AU.addRequired<WebAssemblyExceptionInfo>();
47950a13cfSDan Gohman     MachineFunctionPass::getAnalysisUsage(AU);
48950a13cfSDan Gohman   }
49950a13cfSDan Gohman 
50950a13cfSDan Gohman   bool runOnMachineFunction(MachineFunction &MF) override;
51950a13cfSDan Gohman 
52e76fa9ecSHeejin Ahn   // For each block whose label represents the end of a scope, record the block
53e76fa9ecSHeejin Ahn   // which holds the beginning of the scope. This will allow us to quickly skip
54e76fa9ecSHeejin Ahn   // over scoped regions when walking blocks.
55e76fa9ecSHeejin Ahn   SmallVector<MachineBasicBlock *, 8> ScopeTops;
56e76fa9ecSHeejin Ahn 
57c4ac74fbSHeejin Ahn   // Placing markers.
58e76fa9ecSHeejin Ahn   void placeMarkers(MachineFunction &MF);
59e76fa9ecSHeejin Ahn   void placeBlockMarker(MachineBasicBlock &MBB);
60e76fa9ecSHeejin Ahn   void placeLoopMarker(MachineBasicBlock &MBB);
61e76fa9ecSHeejin Ahn   void placeTryMarker(MachineBasicBlock &MBB);
62cf699b45SHeejin Ahn   void removeUnnecessaryInstrs(MachineFunction &MF);
63c4ac74fbSHeejin Ahn   bool fixUnwindMismatches(MachineFunction &MF);
64e76fa9ecSHeejin Ahn   void rewriteDepthImmediates(MachineFunction &MF);
65e76fa9ecSHeejin Ahn   void fixEndsAtEndOfFunction(MachineFunction &MF);
66e76fa9ecSHeejin Ahn 
67e76fa9ecSHeejin Ahn   // For each BLOCK|LOOP|TRY, the corresponding END_(BLOCK|LOOP|TRY).
68e76fa9ecSHeejin Ahn   DenseMap<const MachineInstr *, MachineInstr *> BeginToEnd;
69e76fa9ecSHeejin Ahn   // For each END_(BLOCK|LOOP|TRY), the corresponding BLOCK|LOOP|TRY.
70e76fa9ecSHeejin Ahn   DenseMap<const MachineInstr *, MachineInstr *> EndToBegin;
71e76fa9ecSHeejin Ahn   // <TRY marker, EH pad> map
72e76fa9ecSHeejin Ahn   DenseMap<const MachineInstr *, MachineBasicBlock *> TryToEHPad;
73e76fa9ecSHeejin Ahn   // <EH pad, TRY marker> map
74e76fa9ecSHeejin Ahn   DenseMap<const MachineBasicBlock *, MachineInstr *> EHPadToTry;
75e76fa9ecSHeejin Ahn 
76c4ac74fbSHeejin Ahn   // There can be an appendix block at the end of each function, shared for:
77c4ac74fbSHeejin Ahn   // - creating a correct signature for fallthrough returns
78c4ac74fbSHeejin Ahn   // - target for rethrows that need to unwind to the caller, but are trapped
79c4ac74fbSHeejin Ahn   //   inside another try/catch
80c4ac74fbSHeejin Ahn   MachineBasicBlock *AppendixBB = nullptr;
81c4ac74fbSHeejin Ahn   MachineBasicBlock *getAppendixBlock(MachineFunction &MF) {
82c4ac74fbSHeejin Ahn     if (!AppendixBB) {
83c4ac74fbSHeejin Ahn       AppendixBB = MF.CreateMachineBasicBlock();
84c4ac74fbSHeejin Ahn       // Give it a fake predecessor so that AsmPrinter prints its label.
85c4ac74fbSHeejin Ahn       AppendixBB->addSuccessor(AppendixBB);
86c4ac74fbSHeejin Ahn       MF.push_back(AppendixBB);
87c4ac74fbSHeejin Ahn     }
88c4ac74fbSHeejin Ahn     return AppendixBB;
89c4ac74fbSHeejin Ahn   }
90c4ac74fbSHeejin Ahn 
91cf699b45SHeejin Ahn   // Helper functions to register / unregister scope information created by
92cf699b45SHeejin Ahn   // marker instructions.
93e76fa9ecSHeejin Ahn   void registerScope(MachineInstr *Begin, MachineInstr *End);
94e76fa9ecSHeejin Ahn   void registerTryScope(MachineInstr *Begin, MachineInstr *End,
95e76fa9ecSHeejin Ahn                         MachineBasicBlock *EHPad);
96cf699b45SHeejin Ahn   void unregisterScope(MachineInstr *Begin);
97e76fa9ecSHeejin Ahn 
98950a13cfSDan Gohman public:
99950a13cfSDan Gohman   static char ID; // Pass identification, replacement for typeid
100950a13cfSDan Gohman   WebAssemblyCFGStackify() : MachineFunctionPass(ID) {}
101e76fa9ecSHeejin Ahn   ~WebAssemblyCFGStackify() override { releaseMemory(); }
102e76fa9ecSHeejin Ahn   void releaseMemory() override;
103950a13cfSDan Gohman };
104950a13cfSDan Gohman } // end anonymous namespace
105950a13cfSDan Gohman 
106950a13cfSDan Gohman char WebAssemblyCFGStackify::ID = 0;
10740926451SJacob Gravelle INITIALIZE_PASS(WebAssemblyCFGStackify, DEBUG_TYPE,
108c4ac74fbSHeejin Ahn                 "Insert BLOCK/LOOP/TRY markers for WebAssembly scopes", false,
109f208f631SHeejin Ahn                 false)
11040926451SJacob Gravelle 
111950a13cfSDan Gohman FunctionPass *llvm::createWebAssemblyCFGStackify() {
112950a13cfSDan Gohman   return new WebAssemblyCFGStackify();
113950a13cfSDan Gohman }
114950a13cfSDan Gohman 
115b3aa1ecaSDan Gohman /// Test whether Pred has any terminators explicitly branching to MBB, as
116b3aa1ecaSDan Gohman /// opposed to falling through. Note that it's possible (eg. in unoptimized
117b3aa1ecaSDan Gohman /// code) for a branch instruction to both branch to a block and fallthrough
118b3aa1ecaSDan Gohman /// to it, so we check the actual branch operands to see if there are any
119b3aa1ecaSDan Gohman /// explicit mentions.
12018c56a07SHeejin Ahn static bool explicitlyBranchesTo(MachineBasicBlock *Pred,
12135e4a289SDan Gohman                                  MachineBasicBlock *MBB) {
122b3aa1ecaSDan Gohman   for (MachineInstr &MI : Pred->terminators())
123b3aa1ecaSDan Gohman     for (MachineOperand &MO : MI.explicit_operands())
124b3aa1ecaSDan Gohman       if (MO.isMBB() && MO.getMBB() == MBB)
125b3aa1ecaSDan Gohman         return true;
126b3aa1ecaSDan Gohman   return false;
127b3aa1ecaSDan Gohman }
128b3aa1ecaSDan Gohman 
129e76fa9ecSHeejin Ahn // Returns an iterator to the earliest position possible within the MBB,
130e76fa9ecSHeejin Ahn // satisfying the restrictions given by BeforeSet and AfterSet. BeforeSet
131e76fa9ecSHeejin Ahn // contains instructions that should go before the marker, and AfterSet contains
132e76fa9ecSHeejin Ahn // ones that should go after the marker. In this function, AfterSet is only
133e76fa9ecSHeejin Ahn // used for sanity checking.
134e76fa9ecSHeejin Ahn static MachineBasicBlock::iterator
13518c56a07SHeejin Ahn getEarliestInsertPos(MachineBasicBlock *MBB,
136e76fa9ecSHeejin Ahn                      const SmallPtrSet<const MachineInstr *, 4> &BeforeSet,
137e76fa9ecSHeejin Ahn                      const SmallPtrSet<const MachineInstr *, 4> &AfterSet) {
138e76fa9ecSHeejin Ahn   auto InsertPos = MBB->end();
139e76fa9ecSHeejin Ahn   while (InsertPos != MBB->begin()) {
140e76fa9ecSHeejin Ahn     if (BeforeSet.count(&*std::prev(InsertPos))) {
141e76fa9ecSHeejin Ahn #ifndef NDEBUG
142e76fa9ecSHeejin Ahn       // Sanity check
143e76fa9ecSHeejin Ahn       for (auto Pos = InsertPos, E = MBB->begin(); Pos != E; --Pos)
144e76fa9ecSHeejin Ahn         assert(!AfterSet.count(&*std::prev(Pos)));
145e76fa9ecSHeejin Ahn #endif
146e76fa9ecSHeejin Ahn       break;
147e76fa9ecSHeejin Ahn     }
148e76fa9ecSHeejin Ahn     --InsertPos;
149e76fa9ecSHeejin Ahn   }
150e76fa9ecSHeejin Ahn   return InsertPos;
151e76fa9ecSHeejin Ahn }
152e76fa9ecSHeejin Ahn 
153e76fa9ecSHeejin Ahn // Returns an iterator to the latest position possible within the MBB,
154e76fa9ecSHeejin Ahn // satisfying the restrictions given by BeforeSet and AfterSet. BeforeSet
155e76fa9ecSHeejin Ahn // contains instructions that should go before the marker, and AfterSet contains
156e76fa9ecSHeejin Ahn // ones that should go after the marker. In this function, BeforeSet is only
157e76fa9ecSHeejin Ahn // used for sanity checking.
158e76fa9ecSHeejin Ahn static MachineBasicBlock::iterator
15918c56a07SHeejin Ahn getLatestInsertPos(MachineBasicBlock *MBB,
160e76fa9ecSHeejin Ahn                    const SmallPtrSet<const MachineInstr *, 4> &BeforeSet,
161e76fa9ecSHeejin Ahn                    const SmallPtrSet<const MachineInstr *, 4> &AfterSet) {
162e76fa9ecSHeejin Ahn   auto InsertPos = MBB->begin();
163e76fa9ecSHeejin Ahn   while (InsertPos != MBB->end()) {
164e76fa9ecSHeejin Ahn     if (AfterSet.count(&*InsertPos)) {
165e76fa9ecSHeejin Ahn #ifndef NDEBUG
166e76fa9ecSHeejin Ahn       // Sanity check
167e76fa9ecSHeejin Ahn       for (auto Pos = InsertPos, E = MBB->end(); Pos != E; ++Pos)
168e76fa9ecSHeejin Ahn         assert(!BeforeSet.count(&*Pos));
169e76fa9ecSHeejin Ahn #endif
170e76fa9ecSHeejin Ahn       break;
171e76fa9ecSHeejin Ahn     }
172e76fa9ecSHeejin Ahn     ++InsertPos;
173e76fa9ecSHeejin Ahn   }
174e76fa9ecSHeejin Ahn   return InsertPos;
175e76fa9ecSHeejin Ahn }
176e76fa9ecSHeejin Ahn 
177e76fa9ecSHeejin Ahn void WebAssemblyCFGStackify::registerScope(MachineInstr *Begin,
178e76fa9ecSHeejin Ahn                                            MachineInstr *End) {
179e76fa9ecSHeejin Ahn   BeginToEnd[Begin] = End;
180e76fa9ecSHeejin Ahn   EndToBegin[End] = Begin;
181e76fa9ecSHeejin Ahn }
182e76fa9ecSHeejin Ahn 
183e76fa9ecSHeejin Ahn void WebAssemblyCFGStackify::registerTryScope(MachineInstr *Begin,
184e76fa9ecSHeejin Ahn                                               MachineInstr *End,
185e76fa9ecSHeejin Ahn                                               MachineBasicBlock *EHPad) {
186e76fa9ecSHeejin Ahn   registerScope(Begin, End);
187e76fa9ecSHeejin Ahn   TryToEHPad[Begin] = EHPad;
188e76fa9ecSHeejin Ahn   EHPadToTry[EHPad] = Begin;
189e76fa9ecSHeejin Ahn }
190e76fa9ecSHeejin Ahn 
191cf699b45SHeejin Ahn void WebAssemblyCFGStackify::unregisterScope(MachineInstr *Begin) {
192cf699b45SHeejin Ahn   assert(BeginToEnd.count(Begin));
193cf699b45SHeejin Ahn   MachineInstr *End = BeginToEnd[Begin];
194cf699b45SHeejin Ahn   assert(EndToBegin.count(End));
195cf699b45SHeejin Ahn   BeginToEnd.erase(Begin);
196cf699b45SHeejin Ahn   EndToBegin.erase(End);
197cf699b45SHeejin Ahn   MachineBasicBlock *EHPad = TryToEHPad.lookup(Begin);
198cf699b45SHeejin Ahn   if (EHPad) {
199cf699b45SHeejin Ahn     assert(EHPadToTry.count(EHPad));
200cf699b45SHeejin Ahn     TryToEHPad.erase(Begin);
201cf699b45SHeejin Ahn     EHPadToTry.erase(EHPad);
202cf699b45SHeejin Ahn   }
203cf699b45SHeejin Ahn }
204cf699b45SHeejin Ahn 
20532807932SDan Gohman /// Insert a BLOCK marker for branches to MBB (if needed).
206c4ac74fbSHeejin Ahn // TODO Consider a more generalized way of handling block (and also loop and
207c4ac74fbSHeejin Ahn // try) signatures when we implement the multi-value proposal later.
208e76fa9ecSHeejin Ahn void WebAssemblyCFGStackify::placeBlockMarker(MachineBasicBlock &MBB) {
20944a5a4b1SHeejin Ahn   assert(!MBB.isEHPad());
210e76fa9ecSHeejin Ahn   MachineFunction &MF = *MBB.getParent();
211e76fa9ecSHeejin Ahn   auto &MDT = getAnalysis<MachineDominatorTree>();
212e76fa9ecSHeejin Ahn   const auto &TII = *MF.getSubtarget<WebAssemblySubtarget>().getInstrInfo();
213e76fa9ecSHeejin Ahn   const auto &MFI = *MF.getInfo<WebAssemblyFunctionInfo>();
214e76fa9ecSHeejin Ahn 
2158fe7e86bSDan Gohman   // First compute the nearest common dominator of all forward non-fallthrough
2168fe7e86bSDan Gohman   // predecessors so that we minimize the time that the BLOCK is on the stack,
2178fe7e86bSDan Gohman   // which reduces overall stack height.
21832807932SDan Gohman   MachineBasicBlock *Header = nullptr;
21932807932SDan Gohman   bool IsBranchedTo = false;
220d6f48786SHeejin Ahn   bool IsBrOnExn = false;
221d6f48786SHeejin Ahn   MachineInstr *BrOnExn = nullptr;
22232807932SDan Gohman   int MBBNumber = MBB.getNumber();
223e76fa9ecSHeejin Ahn   for (MachineBasicBlock *Pred : MBB.predecessors()) {
22432807932SDan Gohman     if (Pred->getNumber() < MBBNumber) {
22532807932SDan Gohman       Header = Header ? MDT.findNearestCommonDominator(Header, Pred) : Pred;
22618c56a07SHeejin Ahn       if (explicitlyBranchesTo(Pred, &MBB)) {
22732807932SDan Gohman         IsBranchedTo = true;
228d6f48786SHeejin Ahn         if (Pred->getFirstTerminator()->getOpcode() == WebAssembly::BR_ON_EXN) {
229d6f48786SHeejin Ahn           IsBrOnExn = true;
230d6f48786SHeejin Ahn           assert(!BrOnExn && "There should be only one br_on_exn per block");
231d6f48786SHeejin Ahn           BrOnExn = &*Pred->getFirstTerminator();
232d6f48786SHeejin Ahn         }
233d6f48786SHeejin Ahn       }
23432807932SDan Gohman     }
235e76fa9ecSHeejin Ahn   }
23632807932SDan Gohman   if (!Header)
23732807932SDan Gohman     return;
23832807932SDan Gohman   if (!IsBranchedTo)
23932807932SDan Gohman     return;
24032807932SDan Gohman 
2418fe7e86bSDan Gohman   assert(&MBB != &MF.front() && "Header blocks shouldn't have predecessors");
2425c644c9bSHeejin Ahn   MachineBasicBlock *LayoutPred = MBB.getPrevNode();
2438fe7e86bSDan Gohman 
2448fe7e86bSDan Gohman   // If the nearest common dominator is inside a more deeply nested context,
2458fe7e86bSDan Gohman   // walk out to the nearest scope which isn't more deeply nested.
2468fe7e86bSDan Gohman   for (MachineFunction::iterator I(LayoutPred), E(Header); I != E; --I) {
2478fe7e86bSDan Gohman     if (MachineBasicBlock *ScopeTop = ScopeTops[I->getNumber()]) {
2488fe7e86bSDan Gohman       if (ScopeTop->getNumber() > Header->getNumber()) {
2498fe7e86bSDan Gohman         // Skip over an intervening scope.
2505c644c9bSHeejin Ahn         I = std::next(ScopeTop->getIterator());
2518fe7e86bSDan Gohman       } else {
2528fe7e86bSDan Gohman         // We found a scope level at an appropriate depth.
2538fe7e86bSDan Gohman         Header = ScopeTop;
2548fe7e86bSDan Gohman         break;
2558fe7e86bSDan Gohman       }
2568fe7e86bSDan Gohman     }
2578fe7e86bSDan Gohman   }
2588fe7e86bSDan Gohman 
2598fe7e86bSDan Gohman   // Decide where in Header to put the BLOCK.
260e76fa9ecSHeejin Ahn 
261e76fa9ecSHeejin Ahn   // Instructions that should go before the BLOCK.
262e76fa9ecSHeejin Ahn   SmallPtrSet<const MachineInstr *, 4> BeforeSet;
263e76fa9ecSHeejin Ahn   // Instructions that should go after the BLOCK.
264e76fa9ecSHeejin Ahn   SmallPtrSet<const MachineInstr *, 4> AfterSet;
265e76fa9ecSHeejin Ahn   for (const auto &MI : *Header) {
26644a5a4b1SHeejin Ahn     // If there is a previously placed LOOP marker and the bottom block of the
26744a5a4b1SHeejin Ahn     // loop is above MBB, it should be after the BLOCK, because the loop is
26844a5a4b1SHeejin Ahn     // nested in this BLOCK. Otherwise it should be before the BLOCK.
26944a5a4b1SHeejin Ahn     if (MI.getOpcode() == WebAssembly::LOOP) {
27044a5a4b1SHeejin Ahn       auto *LoopBottom = BeginToEnd[&MI]->getParent()->getPrevNode();
27144a5a4b1SHeejin Ahn       if (MBB.getNumber() > LoopBottom->getNumber())
272e76fa9ecSHeejin Ahn         AfterSet.insert(&MI);
273e76fa9ecSHeejin Ahn #ifndef NDEBUG
274e76fa9ecSHeejin Ahn       else
275e76fa9ecSHeejin Ahn         BeforeSet.insert(&MI);
276e76fa9ecSHeejin Ahn #endif
277e76fa9ecSHeejin Ahn     }
278e76fa9ecSHeejin Ahn 
27944a5a4b1SHeejin Ahn     // All previously inserted BLOCK/TRY markers should be after the BLOCK
28044a5a4b1SHeejin Ahn     // because they are all nested blocks.
28144a5a4b1SHeejin Ahn     if (MI.getOpcode() == WebAssembly::BLOCK ||
28244a5a4b1SHeejin Ahn         MI.getOpcode() == WebAssembly::TRY)
283e76fa9ecSHeejin Ahn       AfterSet.insert(&MI);
284e76fa9ecSHeejin Ahn 
285e76fa9ecSHeejin Ahn #ifndef NDEBUG
286e76fa9ecSHeejin Ahn     // All END_(BLOCK|LOOP|TRY) markers should be before the BLOCK.
287e76fa9ecSHeejin Ahn     if (MI.getOpcode() == WebAssembly::END_BLOCK ||
288e76fa9ecSHeejin Ahn         MI.getOpcode() == WebAssembly::END_LOOP ||
289e76fa9ecSHeejin Ahn         MI.getOpcode() == WebAssembly::END_TRY)
290e76fa9ecSHeejin Ahn       BeforeSet.insert(&MI);
291e76fa9ecSHeejin Ahn #endif
292e76fa9ecSHeejin Ahn 
293e76fa9ecSHeejin Ahn     // Terminators should go after the BLOCK.
294e76fa9ecSHeejin Ahn     if (MI.isTerminator())
295e76fa9ecSHeejin Ahn       AfterSet.insert(&MI);
296e76fa9ecSHeejin Ahn   }
297e76fa9ecSHeejin Ahn 
298e76fa9ecSHeejin Ahn   // Local expression tree should go after the BLOCK.
299e76fa9ecSHeejin Ahn   for (auto I = Header->getFirstTerminator(), E = Header->begin(); I != E;
300e76fa9ecSHeejin Ahn        --I) {
301409b4391SYury Delendik     if (std::prev(I)->isDebugInstr() || std::prev(I)->isPosition())
302409b4391SYury Delendik       continue;
303e76fa9ecSHeejin Ahn     if (WebAssembly::isChild(*std::prev(I), MFI))
304e76fa9ecSHeejin Ahn       AfterSet.insert(&*std::prev(I));
305e76fa9ecSHeejin Ahn     else
306e76fa9ecSHeejin Ahn       break;
30732807932SDan Gohman   }
30832807932SDan Gohman 
3098fe7e86bSDan Gohman   // Add the BLOCK.
310d6f48786SHeejin Ahn 
3119f96a58cSHeejin Ahn   // 'br_on_exn' extracts exnref object and pushes variable number of values
312d6f48786SHeejin Ahn   // depending on its tag. For C++ exception, its a single i32 value, and the
313d6f48786SHeejin Ahn   // generated code will be in the form of:
314d6f48786SHeejin Ahn   // block i32
315d6f48786SHeejin Ahn   //   br_on_exn 0, $__cpp_exception
316d6f48786SHeejin Ahn   //   rethrow
317d6f48786SHeejin Ahn   // end_block
318*2cb27072SThomas Lively   WebAssembly::BlockType ReturnType = WebAssembly::BlockType::Void;
319d6f48786SHeejin Ahn   if (IsBrOnExn) {
320d6f48786SHeejin Ahn     const char *TagName = BrOnExn->getOperand(1).getSymbolName();
321d6f48786SHeejin Ahn     if (std::strcmp(TagName, "__cpp_exception") != 0)
322d6f48786SHeejin Ahn       llvm_unreachable("Only C++ exception is supported");
323*2cb27072SThomas Lively     ReturnType = WebAssembly::BlockType::I32;
324d6f48786SHeejin Ahn   }
325d6f48786SHeejin Ahn 
32618c56a07SHeejin Ahn   auto InsertPos = getLatestInsertPos(Header, BeforeSet, AfterSet);
32792401cc1SHeejin Ahn   MachineInstr *Begin =
32892401cc1SHeejin Ahn       BuildMI(*Header, InsertPos, Header->findDebugLoc(InsertPos),
3292726b88cSDan Gohman               TII.get(WebAssembly::BLOCK))
330d6f48786SHeejin Ahn           .addImm(int64_t(ReturnType));
3311d68e80fSDan Gohman 
332e76fa9ecSHeejin Ahn   // Decide where in Header to put the END_BLOCK.
333e76fa9ecSHeejin Ahn   BeforeSet.clear();
334e76fa9ecSHeejin Ahn   AfterSet.clear();
335e76fa9ecSHeejin Ahn   for (auto &MI : MBB) {
336e76fa9ecSHeejin Ahn #ifndef NDEBUG
337e76fa9ecSHeejin Ahn     // END_BLOCK should precede existing LOOP and TRY markers.
338e76fa9ecSHeejin Ahn     if (MI.getOpcode() == WebAssembly::LOOP ||
339e76fa9ecSHeejin Ahn         MI.getOpcode() == WebAssembly::TRY)
340e76fa9ecSHeejin Ahn       AfterSet.insert(&MI);
341e76fa9ecSHeejin Ahn #endif
342e76fa9ecSHeejin Ahn 
343e76fa9ecSHeejin Ahn     // If there is a previously placed END_LOOP marker and the header of the
344e76fa9ecSHeejin Ahn     // loop is above this block's header, the END_LOOP should be placed after
345e76fa9ecSHeejin Ahn     // the BLOCK, because the loop contains this block. Otherwise the END_LOOP
346e76fa9ecSHeejin Ahn     // should be placed before the BLOCK. The same for END_TRY.
347e76fa9ecSHeejin Ahn     if (MI.getOpcode() == WebAssembly::END_LOOP ||
348e76fa9ecSHeejin Ahn         MI.getOpcode() == WebAssembly::END_TRY) {
349e76fa9ecSHeejin Ahn       if (EndToBegin[&MI]->getParent()->getNumber() >= Header->getNumber())
350e76fa9ecSHeejin Ahn         BeforeSet.insert(&MI);
351e76fa9ecSHeejin Ahn #ifndef NDEBUG
352e76fa9ecSHeejin Ahn       else
353e76fa9ecSHeejin Ahn         AfterSet.insert(&MI);
354e76fa9ecSHeejin Ahn #endif
355e76fa9ecSHeejin Ahn     }
356e76fa9ecSHeejin Ahn   }
357e76fa9ecSHeejin Ahn 
3581d68e80fSDan Gohman   // Mark the end of the block.
35918c56a07SHeejin Ahn   InsertPos = getEarliestInsertPos(&MBB, BeforeSet, AfterSet);
36010b31358SDerek Schuff   MachineInstr *End = BuildMI(MBB, InsertPos, MBB.findPrevDebugLoc(InsertPos),
3612726b88cSDan Gohman                               TII.get(WebAssembly::END_BLOCK));
362e76fa9ecSHeejin Ahn   registerScope(Begin, End);
3638fe7e86bSDan Gohman 
3648fe7e86bSDan Gohman   // Track the farthest-spanning scope that ends at this point.
3658fe7e86bSDan Gohman   int Number = MBB.getNumber();
3668fe7e86bSDan Gohman   if (!ScopeTops[Number] ||
3678fe7e86bSDan Gohman       ScopeTops[Number]->getNumber() > Header->getNumber())
3688fe7e86bSDan Gohman     ScopeTops[Number] = Header;
369950a13cfSDan Gohman }
370950a13cfSDan Gohman 
3718fe7e86bSDan Gohman /// Insert a LOOP marker for a loop starting at MBB (if it's a loop header).
372e76fa9ecSHeejin Ahn void WebAssemblyCFGStackify::placeLoopMarker(MachineBasicBlock &MBB) {
373e76fa9ecSHeejin Ahn   MachineFunction &MF = *MBB.getParent();
374e76fa9ecSHeejin Ahn   const auto &MLI = getAnalysis<MachineLoopInfo>();
375e76fa9ecSHeejin Ahn   const auto &TII = *MF.getSubtarget<WebAssemblySubtarget>().getInstrInfo();
376e76fa9ecSHeejin Ahn 
3778fe7e86bSDan Gohman   MachineLoop *Loop = MLI.getLoopFor(&MBB);
3788fe7e86bSDan Gohman   if (!Loop || Loop->getHeader() != &MBB)
3798fe7e86bSDan Gohman     return;
3808fe7e86bSDan Gohman 
3818fe7e86bSDan Gohman   // The operand of a LOOP is the first block after the loop. If the loop is the
3828fe7e86bSDan Gohman   // bottom of the function, insert a dummy block at the end.
383817811caSHeejin Ahn   MachineBasicBlock *Bottom = WebAssembly::getBottom(Loop);
3845c644c9bSHeejin Ahn   auto Iter = std::next(Bottom->getIterator());
385e3e4a5ffSDan Gohman   if (Iter == MF.end()) {
386c4ac74fbSHeejin Ahn     getAppendixBlock(MF);
3875c644c9bSHeejin Ahn     Iter = std::next(Bottom->getIterator());
388e3e4a5ffSDan Gohman   }
3898fe7e86bSDan Gohman   MachineBasicBlock *AfterLoop = &*Iter;
390f6857223SDan Gohman 
391e76fa9ecSHeejin Ahn   // Decide where in Header to put the LOOP.
392e76fa9ecSHeejin Ahn   SmallPtrSet<const MachineInstr *, 4> BeforeSet;
393e76fa9ecSHeejin Ahn   SmallPtrSet<const MachineInstr *, 4> AfterSet;
394e76fa9ecSHeejin Ahn   for (const auto &MI : MBB) {
395e76fa9ecSHeejin Ahn     // LOOP marker should be after any existing loop that ends here. Otherwise
396e76fa9ecSHeejin Ahn     // we assume the instruction belongs to the loop.
397e76fa9ecSHeejin Ahn     if (MI.getOpcode() == WebAssembly::END_LOOP)
398e76fa9ecSHeejin Ahn       BeforeSet.insert(&MI);
399e76fa9ecSHeejin Ahn #ifndef NDEBUG
400e76fa9ecSHeejin Ahn     else
401e76fa9ecSHeejin Ahn       AfterSet.insert(&MI);
402e76fa9ecSHeejin Ahn #endif
403e76fa9ecSHeejin Ahn   }
404e76fa9ecSHeejin Ahn 
405e76fa9ecSHeejin Ahn   // Mark the beginning of the loop.
40618c56a07SHeejin Ahn   auto InsertPos = getEarliestInsertPos(&MBB, BeforeSet, AfterSet);
40710b31358SDerek Schuff   MachineInstr *Begin = BuildMI(MBB, InsertPos, MBB.findDebugLoc(InsertPos),
4082726b88cSDan Gohman                                 TII.get(WebAssembly::LOOP))
409*2cb27072SThomas Lively                             .addImm(int64_t(WebAssembly::BlockType::Void));
4101d68e80fSDan Gohman 
411e76fa9ecSHeejin Ahn   // Decide where in Header to put the END_LOOP.
412e76fa9ecSHeejin Ahn   BeforeSet.clear();
413e76fa9ecSHeejin Ahn   AfterSet.clear();
414e76fa9ecSHeejin Ahn #ifndef NDEBUG
415e76fa9ecSHeejin Ahn   for (const auto &MI : MBB)
416e76fa9ecSHeejin Ahn     // Existing END_LOOP markers belong to parent loops of this loop
417e76fa9ecSHeejin Ahn     if (MI.getOpcode() == WebAssembly::END_LOOP)
418e76fa9ecSHeejin Ahn       AfterSet.insert(&MI);
419e76fa9ecSHeejin Ahn #endif
420e76fa9ecSHeejin Ahn 
421e76fa9ecSHeejin Ahn   // Mark the end of the loop (using arbitrary debug location that branched to
422e76fa9ecSHeejin Ahn   // the loop end as its location).
42318c56a07SHeejin Ahn   InsertPos = getEarliestInsertPos(AfterLoop, BeforeSet, AfterSet);
42467f74aceSHeejin Ahn   DebugLoc EndDL = AfterLoop->pred_empty()
42567f74aceSHeejin Ahn                        ? DebugLoc()
42667f74aceSHeejin Ahn                        : (*AfterLoop->pred_rbegin())->findBranchDebugLoc();
427e76fa9ecSHeejin Ahn   MachineInstr *End =
428e76fa9ecSHeejin Ahn       BuildMI(*AfterLoop, InsertPos, EndDL, TII.get(WebAssembly::END_LOOP));
429e76fa9ecSHeejin Ahn   registerScope(Begin, End);
4308fe7e86bSDan Gohman 
4318fe7e86bSDan Gohman   assert((!ScopeTops[AfterLoop->getNumber()] ||
4328fe7e86bSDan Gohman           ScopeTops[AfterLoop->getNumber()]->getNumber() < MBB.getNumber()) &&
433442bfcecSDan Gohman          "With block sorting the outermost loop for a block should be first.");
4348fe7e86bSDan Gohman   if (!ScopeTops[AfterLoop->getNumber()])
4358fe7e86bSDan Gohman     ScopeTops[AfterLoop->getNumber()] = &MBB;
436e3e4a5ffSDan Gohman }
437950a13cfSDan Gohman 
438e76fa9ecSHeejin Ahn void WebAssemblyCFGStackify::placeTryMarker(MachineBasicBlock &MBB) {
43944a5a4b1SHeejin Ahn   assert(MBB.isEHPad());
440e76fa9ecSHeejin Ahn   MachineFunction &MF = *MBB.getParent();
441e76fa9ecSHeejin Ahn   auto &MDT = getAnalysis<MachineDominatorTree>();
442e76fa9ecSHeejin Ahn   const auto &TII = *MF.getSubtarget<WebAssemblySubtarget>().getInstrInfo();
443e76fa9ecSHeejin Ahn   const auto &WEI = getAnalysis<WebAssemblyExceptionInfo>();
444e76fa9ecSHeejin Ahn   const auto &MFI = *MF.getInfo<WebAssemblyFunctionInfo>();
445e76fa9ecSHeejin Ahn 
446e76fa9ecSHeejin Ahn   // Compute the nearest common dominator of all unwind predecessors
447e76fa9ecSHeejin Ahn   MachineBasicBlock *Header = nullptr;
448e76fa9ecSHeejin Ahn   int MBBNumber = MBB.getNumber();
449e76fa9ecSHeejin Ahn   for (auto *Pred : MBB.predecessors()) {
450e76fa9ecSHeejin Ahn     if (Pred->getNumber() < MBBNumber) {
451e76fa9ecSHeejin Ahn       Header = Header ? MDT.findNearestCommonDominator(Header, Pred) : Pred;
45218c56a07SHeejin Ahn       assert(!explicitlyBranchesTo(Pred, &MBB) &&
453e76fa9ecSHeejin Ahn              "Explicit branch to an EH pad!");
454e76fa9ecSHeejin Ahn     }
455e76fa9ecSHeejin Ahn   }
456e76fa9ecSHeejin Ahn   if (!Header)
457e76fa9ecSHeejin Ahn     return;
458e76fa9ecSHeejin Ahn 
459e76fa9ecSHeejin Ahn   // If this try is at the bottom of the function, insert a dummy block at the
460e76fa9ecSHeejin Ahn   // end.
461e76fa9ecSHeejin Ahn   WebAssemblyException *WE = WEI.getExceptionFor(&MBB);
462e76fa9ecSHeejin Ahn   assert(WE);
463e76fa9ecSHeejin Ahn   MachineBasicBlock *Bottom = WebAssembly::getBottom(WE);
464e76fa9ecSHeejin Ahn 
4655c644c9bSHeejin Ahn   auto Iter = std::next(Bottom->getIterator());
466e76fa9ecSHeejin Ahn   if (Iter == MF.end()) {
467c4ac74fbSHeejin Ahn     getAppendixBlock(MF);
4685c644c9bSHeejin Ahn     Iter = std::next(Bottom->getIterator());
469e76fa9ecSHeejin Ahn   }
47020cf0749SHeejin Ahn   MachineBasicBlock *Cont = &*Iter;
471e76fa9ecSHeejin Ahn 
47220cf0749SHeejin Ahn   assert(Cont != &MF.front());
4735c644c9bSHeejin Ahn   MachineBasicBlock *LayoutPred = Cont->getPrevNode();
474e76fa9ecSHeejin Ahn 
475e76fa9ecSHeejin Ahn   // If the nearest common dominator is inside a more deeply nested context,
476e76fa9ecSHeejin Ahn   // walk out to the nearest scope which isn't more deeply nested.
477e76fa9ecSHeejin Ahn   for (MachineFunction::iterator I(LayoutPred), E(Header); I != E; --I) {
478e76fa9ecSHeejin Ahn     if (MachineBasicBlock *ScopeTop = ScopeTops[I->getNumber()]) {
479e76fa9ecSHeejin Ahn       if (ScopeTop->getNumber() > Header->getNumber()) {
480e76fa9ecSHeejin Ahn         // Skip over an intervening scope.
4815c644c9bSHeejin Ahn         I = std::next(ScopeTop->getIterator());
482e76fa9ecSHeejin Ahn       } else {
483e76fa9ecSHeejin Ahn         // We found a scope level at an appropriate depth.
484e76fa9ecSHeejin Ahn         Header = ScopeTop;
485e76fa9ecSHeejin Ahn         break;
486e76fa9ecSHeejin Ahn       }
487e76fa9ecSHeejin Ahn     }
488e76fa9ecSHeejin Ahn   }
489e76fa9ecSHeejin Ahn 
490e76fa9ecSHeejin Ahn   // Decide where in Header to put the TRY.
491e76fa9ecSHeejin Ahn 
49244a5a4b1SHeejin Ahn   // Instructions that should go before the TRY.
493e76fa9ecSHeejin Ahn   SmallPtrSet<const MachineInstr *, 4> BeforeSet;
49444a5a4b1SHeejin Ahn   // Instructions that should go after the TRY.
495e76fa9ecSHeejin Ahn   SmallPtrSet<const MachineInstr *, 4> AfterSet;
496e76fa9ecSHeejin Ahn   for (const auto &MI : *Header) {
49744a5a4b1SHeejin Ahn     // If there is a previously placed LOOP marker and the bottom block of the
49844a5a4b1SHeejin Ahn     // loop is above MBB, it should be after the TRY, because the loop is nested
49944a5a4b1SHeejin Ahn     // in this TRY. Otherwise it should be before the TRY.
500e76fa9ecSHeejin Ahn     if (MI.getOpcode() == WebAssembly::LOOP) {
50144a5a4b1SHeejin Ahn       auto *LoopBottom = BeginToEnd[&MI]->getParent()->getPrevNode();
50244a5a4b1SHeejin Ahn       if (MBB.getNumber() > LoopBottom->getNumber())
503e76fa9ecSHeejin Ahn         AfterSet.insert(&MI);
504e76fa9ecSHeejin Ahn #ifndef NDEBUG
505e76fa9ecSHeejin Ahn       else
506e76fa9ecSHeejin Ahn         BeforeSet.insert(&MI);
507e76fa9ecSHeejin Ahn #endif
508e76fa9ecSHeejin Ahn     }
509e76fa9ecSHeejin Ahn 
51044a5a4b1SHeejin Ahn     // All previously inserted BLOCK/TRY markers should be after the TRY because
51144a5a4b1SHeejin Ahn     // they are all nested trys.
51244a5a4b1SHeejin Ahn     if (MI.getOpcode() == WebAssembly::BLOCK ||
51344a5a4b1SHeejin Ahn         MI.getOpcode() == WebAssembly::TRY)
514e76fa9ecSHeejin Ahn       AfterSet.insert(&MI);
515e76fa9ecSHeejin Ahn 
516e76fa9ecSHeejin Ahn #ifndef NDEBUG
51744a5a4b1SHeejin Ahn     // All END_(BLOCK/LOOP/TRY) markers should be before the TRY.
51844a5a4b1SHeejin Ahn     if (MI.getOpcode() == WebAssembly::END_BLOCK ||
51944a5a4b1SHeejin Ahn         MI.getOpcode() == WebAssembly::END_LOOP ||
520e76fa9ecSHeejin Ahn         MI.getOpcode() == WebAssembly::END_TRY)
521e76fa9ecSHeejin Ahn       BeforeSet.insert(&MI);
522e76fa9ecSHeejin Ahn #endif
523e76fa9ecSHeejin Ahn 
524e76fa9ecSHeejin Ahn     // Terminators should go after the TRY.
525e76fa9ecSHeejin Ahn     if (MI.isTerminator())
526e76fa9ecSHeejin Ahn       AfterSet.insert(&MI);
527e76fa9ecSHeejin Ahn   }
528e76fa9ecSHeejin Ahn 
5296a37c5d6SHeejin Ahn   // If Header unwinds to MBB (= Header contains 'invoke'), the try block should
5306a37c5d6SHeejin Ahn   // contain the call within it. So the call should go after the TRY. The
5316a37c5d6SHeejin Ahn   // exception is when the header's terminator is a rethrow instruction, in
5326a37c5d6SHeejin Ahn   // which case that instruction, not a call instruction before it, is gonna
5336a37c5d6SHeejin Ahn   // throw.
5346a37c5d6SHeejin Ahn   MachineInstr *ThrowingCall = nullptr;
5356a37c5d6SHeejin Ahn   if (MBB.isPredecessor(Header)) {
5366a37c5d6SHeejin Ahn     auto TermPos = Header->getFirstTerminator();
5376a37c5d6SHeejin Ahn     if (TermPos == Header->end() ||
5386a37c5d6SHeejin Ahn         TermPos->getOpcode() != WebAssembly::RETHROW) {
5396a37c5d6SHeejin Ahn       for (auto &MI : reverse(*Header)) {
5406a37c5d6SHeejin Ahn         if (MI.isCall()) {
5416a37c5d6SHeejin Ahn           AfterSet.insert(&MI);
5426a37c5d6SHeejin Ahn           ThrowingCall = &MI;
5436a37c5d6SHeejin Ahn           // Possibly throwing calls are usually wrapped by EH_LABEL
5446a37c5d6SHeejin Ahn           // instructions. We don't want to split them and the call.
5456a37c5d6SHeejin Ahn           if (MI.getIterator() != Header->begin() &&
5466a37c5d6SHeejin Ahn               std::prev(MI.getIterator())->isEHLabel()) {
5476a37c5d6SHeejin Ahn             AfterSet.insert(&*std::prev(MI.getIterator()));
5486a37c5d6SHeejin Ahn             ThrowingCall = &*std::prev(MI.getIterator());
5496a37c5d6SHeejin Ahn           }
5506a37c5d6SHeejin Ahn           break;
5516a37c5d6SHeejin Ahn         }
5526a37c5d6SHeejin Ahn       }
5536a37c5d6SHeejin Ahn     }
5546a37c5d6SHeejin Ahn   }
5556a37c5d6SHeejin Ahn 
556e76fa9ecSHeejin Ahn   // Local expression tree should go after the TRY.
5576a37c5d6SHeejin Ahn   // For BLOCK placement, we start the search from the previous instruction of a
5586a37c5d6SHeejin Ahn   // BB's terminator, but in TRY's case, we should start from the previous
5596a37c5d6SHeejin Ahn   // instruction of a call that can throw, or a EH_LABEL that precedes the call,
5606a37c5d6SHeejin Ahn   // because the return values of the call's previous instructions can be
5616a37c5d6SHeejin Ahn   // stackified and consumed by the throwing call.
5626a37c5d6SHeejin Ahn   auto SearchStartPt = ThrowingCall ? MachineBasicBlock::iterator(ThrowingCall)
5636a37c5d6SHeejin Ahn                                     : Header->getFirstTerminator();
5646a37c5d6SHeejin Ahn   for (auto I = SearchStartPt, E = Header->begin(); I != E; --I) {
565409b4391SYury Delendik     if (std::prev(I)->isDebugInstr() || std::prev(I)->isPosition())
566409b4391SYury Delendik       continue;
567e76fa9ecSHeejin Ahn     if (WebAssembly::isChild(*std::prev(I), MFI))
568e76fa9ecSHeejin Ahn       AfterSet.insert(&*std::prev(I));
569e76fa9ecSHeejin Ahn     else
570e76fa9ecSHeejin Ahn       break;
571e76fa9ecSHeejin Ahn   }
572e76fa9ecSHeejin Ahn 
573e76fa9ecSHeejin Ahn   // Add the TRY.
57418c56a07SHeejin Ahn   auto InsertPos = getLatestInsertPos(Header, BeforeSet, AfterSet);
575e76fa9ecSHeejin Ahn   MachineInstr *Begin =
576e76fa9ecSHeejin Ahn       BuildMI(*Header, InsertPos, Header->findDebugLoc(InsertPos),
577e76fa9ecSHeejin Ahn               TII.get(WebAssembly::TRY))
578*2cb27072SThomas Lively           .addImm(int64_t(WebAssembly::BlockType::Void));
579e76fa9ecSHeejin Ahn 
580e76fa9ecSHeejin Ahn   // Decide where in Header to put the END_TRY.
581e76fa9ecSHeejin Ahn   BeforeSet.clear();
582e76fa9ecSHeejin Ahn   AfterSet.clear();
58320cf0749SHeejin Ahn   for (const auto &MI : *Cont) {
584e76fa9ecSHeejin Ahn #ifndef NDEBUG
58544a5a4b1SHeejin Ahn     // END_TRY should precede existing LOOP and BLOCK markers.
58644a5a4b1SHeejin Ahn     if (MI.getOpcode() == WebAssembly::LOOP ||
58744a5a4b1SHeejin Ahn         MI.getOpcode() == WebAssembly::BLOCK)
588e76fa9ecSHeejin Ahn       AfterSet.insert(&MI);
589e76fa9ecSHeejin Ahn 
590e76fa9ecSHeejin Ahn     // All END_TRY markers placed earlier belong to exceptions that contains
591e76fa9ecSHeejin Ahn     // this one.
592e76fa9ecSHeejin Ahn     if (MI.getOpcode() == WebAssembly::END_TRY)
593e76fa9ecSHeejin Ahn       AfterSet.insert(&MI);
594e76fa9ecSHeejin Ahn #endif
595e76fa9ecSHeejin Ahn 
596e76fa9ecSHeejin Ahn     // If there is a previously placed END_LOOP marker and its header is after
597e76fa9ecSHeejin Ahn     // where TRY marker is, this loop is contained within the 'catch' part, so
598e76fa9ecSHeejin Ahn     // the END_TRY marker should go after that. Otherwise, the whole try-catch
599e76fa9ecSHeejin Ahn     // is contained within this loop, so the END_TRY should go before that.
600e76fa9ecSHeejin Ahn     if (MI.getOpcode() == WebAssembly::END_LOOP) {
601222718fdSHeejin Ahn       // For a LOOP to be after TRY, LOOP's BB should be after TRY's BB; if they
602222718fdSHeejin Ahn       // are in the same BB, LOOP is always before TRY.
603222718fdSHeejin Ahn       if (EndToBegin[&MI]->getParent()->getNumber() > Header->getNumber())
604e76fa9ecSHeejin Ahn         BeforeSet.insert(&MI);
605e76fa9ecSHeejin Ahn #ifndef NDEBUG
606e76fa9ecSHeejin Ahn       else
607e76fa9ecSHeejin Ahn         AfterSet.insert(&MI);
608e76fa9ecSHeejin Ahn #endif
609e76fa9ecSHeejin Ahn     }
61044a5a4b1SHeejin Ahn 
61144a5a4b1SHeejin Ahn     // It is not possible for an END_BLOCK to be already in this block.
612e76fa9ecSHeejin Ahn   }
613e76fa9ecSHeejin Ahn 
614e76fa9ecSHeejin Ahn   // Mark the end of the TRY.
61520cf0749SHeejin Ahn   InsertPos = getEarliestInsertPos(Cont, BeforeSet, AfterSet);
616e76fa9ecSHeejin Ahn   MachineInstr *End =
61720cf0749SHeejin Ahn       BuildMI(*Cont, InsertPos, Bottom->findBranchDebugLoc(),
618e76fa9ecSHeejin Ahn               TII.get(WebAssembly::END_TRY));
619e76fa9ecSHeejin Ahn   registerTryScope(Begin, End, &MBB);
620e76fa9ecSHeejin Ahn 
62182da1ffcSHeejin Ahn   // Track the farthest-spanning scope that ends at this point. We create two
62282da1ffcSHeejin Ahn   // mappings: (BB with 'end_try' -> BB with 'try') and (BB with 'catch' -> BB
62382da1ffcSHeejin Ahn   // with 'try'). We need to create 'catch' -> 'try' mapping here too because
62482da1ffcSHeejin Ahn   // markers should not span across 'catch'. For example, this should not
62582da1ffcSHeejin Ahn   // happen:
62682da1ffcSHeejin Ahn   //
62782da1ffcSHeejin Ahn   // try
62882da1ffcSHeejin Ahn   //   block     --|  (X)
62982da1ffcSHeejin Ahn   // catch         |
63082da1ffcSHeejin Ahn   //   end_block --|
63182da1ffcSHeejin Ahn   // end_try
63282da1ffcSHeejin Ahn   for (int Number : {Cont->getNumber(), MBB.getNumber()}) {
633e76fa9ecSHeejin Ahn     if (!ScopeTops[Number] ||
634e76fa9ecSHeejin Ahn         ScopeTops[Number]->getNumber() > Header->getNumber())
635e76fa9ecSHeejin Ahn       ScopeTops[Number] = Header;
636e76fa9ecSHeejin Ahn   }
63782da1ffcSHeejin Ahn }
638e76fa9ecSHeejin Ahn 
639cf699b45SHeejin Ahn void WebAssemblyCFGStackify::removeUnnecessaryInstrs(MachineFunction &MF) {
640cf699b45SHeejin Ahn   const auto &TII = *MF.getSubtarget<WebAssemblySubtarget>().getInstrInfo();
641cf699b45SHeejin Ahn 
642cf699b45SHeejin Ahn   // When there is an unconditional branch right before a catch instruction and
643cf699b45SHeejin Ahn   // it branches to the end of end_try marker, we don't need the branch, because
644cf699b45SHeejin Ahn   // it there is no exception, the control flow transfers to that point anyway.
645cf699b45SHeejin Ahn   // bb0:
646cf699b45SHeejin Ahn   //   try
647cf699b45SHeejin Ahn   //     ...
648cf699b45SHeejin Ahn   //     br bb2      <- Not necessary
649cf699b45SHeejin Ahn   // bb1:
650cf699b45SHeejin Ahn   //   catch
651cf699b45SHeejin Ahn   //     ...
652cf699b45SHeejin Ahn   // bb2:
653cf699b45SHeejin Ahn   //   end
654cf699b45SHeejin Ahn   for (auto &MBB : MF) {
655cf699b45SHeejin Ahn     if (!MBB.isEHPad())
656cf699b45SHeejin Ahn       continue;
657cf699b45SHeejin Ahn 
658cf699b45SHeejin Ahn     MachineBasicBlock *TBB = nullptr, *FBB = nullptr;
659cf699b45SHeejin Ahn     SmallVector<MachineOperand, 4> Cond;
6605c644c9bSHeejin Ahn     MachineBasicBlock *EHPadLayoutPred = MBB.getPrevNode();
661cf699b45SHeejin Ahn     MachineBasicBlock *Cont = BeginToEnd[EHPadToTry[&MBB]]->getParent();
662cf699b45SHeejin Ahn     bool Analyzable = !TII.analyzeBranch(*EHPadLayoutPred, TBB, FBB, Cond);
663cf699b45SHeejin Ahn     if (Analyzable && ((Cond.empty() && TBB && TBB == Cont) ||
664cf699b45SHeejin Ahn                        (!Cond.empty() && FBB && FBB == Cont)))
665cf699b45SHeejin Ahn       TII.removeBranch(*EHPadLayoutPred);
666cf699b45SHeejin Ahn   }
667cf699b45SHeejin Ahn 
668cf699b45SHeejin Ahn   // When there are block / end_block markers that overlap with try / end_try
669cf699b45SHeejin Ahn   // markers, and the block and try markers' return types are the same, the
670cf699b45SHeejin Ahn   // block /end_block markers are not necessary, because try / end_try markers
671cf699b45SHeejin Ahn   // also can serve as boundaries for branches.
672cf699b45SHeejin Ahn   // block         <- Not necessary
673cf699b45SHeejin Ahn   //   try
674cf699b45SHeejin Ahn   //     ...
675cf699b45SHeejin Ahn   //   catch
676cf699b45SHeejin Ahn   //     ...
677cf699b45SHeejin Ahn   //   end
678cf699b45SHeejin Ahn   // end           <- Not necessary
679cf699b45SHeejin Ahn   SmallVector<MachineInstr *, 32> ToDelete;
680cf699b45SHeejin Ahn   for (auto &MBB : MF) {
681cf699b45SHeejin Ahn     for (auto &MI : MBB) {
682cf699b45SHeejin Ahn       if (MI.getOpcode() != WebAssembly::TRY)
683cf699b45SHeejin Ahn         continue;
684cf699b45SHeejin Ahn 
685cf699b45SHeejin Ahn       MachineInstr *Try = &MI, *EndTry = BeginToEnd[Try];
686cf699b45SHeejin Ahn       MachineBasicBlock *TryBB = Try->getParent();
687cf699b45SHeejin Ahn       MachineBasicBlock *Cont = EndTry->getParent();
688cf699b45SHeejin Ahn       int64_t RetType = Try->getOperand(0).getImm();
6895c644c9bSHeejin Ahn       for (auto B = Try->getIterator(), E = std::next(EndTry->getIterator());
690cf699b45SHeejin Ahn            B != TryBB->begin() && E != Cont->end() &&
691cf699b45SHeejin Ahn            std::prev(B)->getOpcode() == WebAssembly::BLOCK &&
692cf699b45SHeejin Ahn            E->getOpcode() == WebAssembly::END_BLOCK &&
693cf699b45SHeejin Ahn            std::prev(B)->getOperand(0).getImm() == RetType;
694cf699b45SHeejin Ahn            --B, ++E) {
695cf699b45SHeejin Ahn         ToDelete.push_back(&*std::prev(B));
696cf699b45SHeejin Ahn         ToDelete.push_back(&*E);
697cf699b45SHeejin Ahn       }
698cf699b45SHeejin Ahn     }
699cf699b45SHeejin Ahn   }
700cf699b45SHeejin Ahn   for (auto *MI : ToDelete) {
701cf699b45SHeejin Ahn     if (MI->getOpcode() == WebAssembly::BLOCK)
702cf699b45SHeejin Ahn       unregisterScope(MI);
703cf699b45SHeejin Ahn     MI->eraseFromParent();
704cf699b45SHeejin Ahn   }
705cf699b45SHeejin Ahn }
706cf699b45SHeejin Ahn 
70761d5c76aSHeejin Ahn // When MBB is split into MBB and Split, we should unstackify defs in MBB that
70861d5c76aSHeejin Ahn // have their uses in Split.
70961d5c76aSHeejin Ahn static void unstackifyVRegsUsedInSplitBB(MachineBasicBlock &MBB,
71061d5c76aSHeejin Ahn                                          MachineBasicBlock &Split,
71161d5c76aSHeejin Ahn                                          WebAssemblyFunctionInfo &MFI,
71261d5c76aSHeejin Ahn                                          MachineRegisterInfo &MRI) {
71361d5c76aSHeejin Ahn   for (auto &MI : Split) {
71461d5c76aSHeejin Ahn     for (auto &MO : MI.explicit_uses()) {
71561d5c76aSHeejin Ahn       if (!MO.isReg() || Register::isPhysicalRegister(MO.getReg()))
71661d5c76aSHeejin Ahn         continue;
71761d5c76aSHeejin Ahn       if (MachineInstr *Def = MRI.getUniqueVRegDef(MO.getReg()))
71861d5c76aSHeejin Ahn         if (Def->getParent() == &MBB)
71961d5c76aSHeejin Ahn           MFI.unstackifyVReg(MO.getReg());
72061d5c76aSHeejin Ahn     }
72161d5c76aSHeejin Ahn   }
72261d5c76aSHeejin Ahn }
72361d5c76aSHeejin Ahn 
724c4ac74fbSHeejin Ahn bool WebAssemblyCFGStackify::fixUnwindMismatches(MachineFunction &MF) {
725c4ac74fbSHeejin Ahn   const auto &TII = *MF.getSubtarget<WebAssemblySubtarget>().getInstrInfo();
72661d5c76aSHeejin Ahn   auto &MFI = *MF.getInfo<WebAssemblyFunctionInfo>();
727c4ac74fbSHeejin Ahn   MachineRegisterInfo &MRI = MF.getRegInfo();
728c4ac74fbSHeejin Ahn 
729c4ac74fbSHeejin Ahn   // Linearizing the control flow by placing TRY / END_TRY markers can create
730c4ac74fbSHeejin Ahn   // mismatches in unwind destinations. There are two kinds of mismatches we
731c4ac74fbSHeejin Ahn   // try to solve here.
732c4ac74fbSHeejin Ahn 
733c4ac74fbSHeejin Ahn   // 1. When an instruction may throw, but the EH pad it will unwind to can be
734c4ac74fbSHeejin Ahn   //    different from the original CFG.
735c4ac74fbSHeejin Ahn   //
736c4ac74fbSHeejin Ahn   // Example: we have the following CFG:
737c4ac74fbSHeejin Ahn   // bb0:
738c4ac74fbSHeejin Ahn   //   call @foo (if it throws, unwind to bb2)
739c4ac74fbSHeejin Ahn   // bb1:
740c4ac74fbSHeejin Ahn   //   call @bar (if it throws, unwind to bb3)
741c4ac74fbSHeejin Ahn   // bb2 (ehpad):
742c4ac74fbSHeejin Ahn   //   catch
743c4ac74fbSHeejin Ahn   //   ...
744c4ac74fbSHeejin Ahn   // bb3 (ehpad)
745c4ac74fbSHeejin Ahn   //   catch
746c4ac74fbSHeejin Ahn   //   handler body
747c4ac74fbSHeejin Ahn   //
748c4ac74fbSHeejin Ahn   // And the CFG is sorted in this order. Then after placing TRY markers, it
749c4ac74fbSHeejin Ahn   // will look like: (BB markers are omitted)
750c4ac74fbSHeejin Ahn   // try $label1
751c4ac74fbSHeejin Ahn   //   try
752c4ac74fbSHeejin Ahn   //     call @foo
753c4ac74fbSHeejin Ahn   //     call @bar   (if it throws, unwind to bb3)
754c4ac74fbSHeejin Ahn   //   catch         <- ehpad (bb2)
755c4ac74fbSHeejin Ahn   //     ...
756c4ac74fbSHeejin Ahn   //   end_try
757c4ac74fbSHeejin Ahn   // catch           <- ehpad (bb3)
758c4ac74fbSHeejin Ahn   //   handler body
759c4ac74fbSHeejin Ahn   // end_try
760c4ac74fbSHeejin Ahn   //
761c4ac74fbSHeejin Ahn   // Now if bar() throws, it is going to end up ip in bb2, not bb3, where it
762c4ac74fbSHeejin Ahn   // is supposed to end up. We solve this problem by
763c4ac74fbSHeejin Ahn   // a. Split the target unwind EH pad (here bb3) so that the handler body is
764c4ac74fbSHeejin Ahn   //    right after 'end_try', which means we extract the handler body out of
765c4ac74fbSHeejin Ahn   //    the catch block. We do this because this handler body should be
766c4ac74fbSHeejin Ahn   //    somewhere branch-eable from the inner scope.
767c4ac74fbSHeejin Ahn   // b. Wrap the call that has an incorrect unwind destination ('call @bar'
768c4ac74fbSHeejin Ahn   //    here) with a nested try/catch/end_try scope, and within the new catch
769c4ac74fbSHeejin Ahn   //    block, branches to the handler body.
770c4ac74fbSHeejin Ahn   // c. Place a branch after the newly inserted nested end_try so it can bypass
771c4ac74fbSHeejin Ahn   //    the handler body, which is now outside of a catch block.
772c4ac74fbSHeejin Ahn   //
773c4ac74fbSHeejin Ahn   // The result will like as follows. (new: a) means this instruction is newly
774c4ac74fbSHeejin Ahn   // created in the process of doing 'a' above.
775c4ac74fbSHeejin Ahn   //
776c4ac74fbSHeejin Ahn   // block $label0                 (new: placeBlockMarker)
777c4ac74fbSHeejin Ahn   //   try $label1
778c4ac74fbSHeejin Ahn   //     try
779c4ac74fbSHeejin Ahn   //       call @foo
780c4ac74fbSHeejin Ahn   //       try                     (new: b)
781c4ac74fbSHeejin Ahn   //         call @bar
782c4ac74fbSHeejin Ahn   //       catch                   (new: b)
783c4ac74fbSHeejin Ahn   //         local.set n / drop    (new: b)
784c4ac74fbSHeejin Ahn   //         br $label1            (new: b)
785c4ac74fbSHeejin Ahn   //       end_try                 (new: b)
786c4ac74fbSHeejin Ahn   //     catch                     <- ehpad (bb2)
787c4ac74fbSHeejin Ahn   //     end_try
788c4ac74fbSHeejin Ahn   //     br $label0                (new: c)
789c4ac74fbSHeejin Ahn   //   catch                       <- ehpad (bb3)
790c4ac74fbSHeejin Ahn   //   end_try                     (hoisted: a)
791c4ac74fbSHeejin Ahn   //   handler body
792c4ac74fbSHeejin Ahn   // end_block                     (new: placeBlockMarker)
793c4ac74fbSHeejin Ahn   //
794c4ac74fbSHeejin Ahn   // Note that the new wrapping block/end_block will be generated later in
795c4ac74fbSHeejin Ahn   // placeBlockMarker.
796c4ac74fbSHeejin Ahn   //
7979f96a58cSHeejin Ahn   // TODO Currently local.set and local.gets are generated to move exnref value
7989f96a58cSHeejin Ahn   // created by catches. That's because we don't support yielding values from a
7999f96a58cSHeejin Ahn   // block in LLVM machine IR yet, even though it is supported by wasm. Delete
8009f96a58cSHeejin Ahn   // unnecessary local.get/local.sets once yielding values from a block is
8019f96a58cSHeejin Ahn   // supported. The full EH spec requires multi-value support to do this, but
802c4ac74fbSHeejin Ahn   // for C++ we don't yet need it because we only throw a single i32.
803c4ac74fbSHeejin Ahn   //
804c4ac74fbSHeejin Ahn   // ---
805c4ac74fbSHeejin Ahn   // 2. The same as 1, but in this case an instruction unwinds to a caller
806c4ac74fbSHeejin Ahn   //    function and not another EH pad.
807c4ac74fbSHeejin Ahn   //
808c4ac74fbSHeejin Ahn   // Example: we have the following CFG:
809c4ac74fbSHeejin Ahn   // bb0:
810c4ac74fbSHeejin Ahn   //   call @foo (if it throws, unwind to bb2)
811c4ac74fbSHeejin Ahn   // bb1:
812c4ac74fbSHeejin Ahn   //   call @bar (if it throws, unwind to caller)
813c4ac74fbSHeejin Ahn   // bb2 (ehpad):
814c4ac74fbSHeejin Ahn   //   catch
815c4ac74fbSHeejin Ahn   //   ...
816c4ac74fbSHeejin Ahn   //
817c4ac74fbSHeejin Ahn   // And the CFG is sorted in this order. Then after placing TRY markers, it
818c4ac74fbSHeejin Ahn   // will look like:
819c4ac74fbSHeejin Ahn   // try
820c4ac74fbSHeejin Ahn   //   call @foo
821c4ac74fbSHeejin Ahn   //   call @bar   (if it throws, unwind to caller)
822c4ac74fbSHeejin Ahn   // catch         <- ehpad (bb2)
823c4ac74fbSHeejin Ahn   //   ...
824c4ac74fbSHeejin Ahn   // end_try
825c4ac74fbSHeejin Ahn   //
826c4ac74fbSHeejin Ahn   // Now if bar() throws, it is going to end up ip in bb2, when it is supposed
827c4ac74fbSHeejin Ahn   // throw up to the caller.
828c4ac74fbSHeejin Ahn   // We solve this problem by
829c4ac74fbSHeejin Ahn   // a. Create a new 'appendix' BB at the end of the function and put a single
830c4ac74fbSHeejin Ahn   //    'rethrow' instruction (+ local.get) in there.
831c4ac74fbSHeejin Ahn   // b. Wrap the call that has an incorrect unwind destination ('call @bar'
832c4ac74fbSHeejin Ahn   //    here) with a nested try/catch/end_try scope, and within the new catch
833c4ac74fbSHeejin Ahn   //    block, branches to the new appendix block.
834c4ac74fbSHeejin Ahn   //
835c4ac74fbSHeejin Ahn   // block $label0          (new: placeBlockMarker)
836c4ac74fbSHeejin Ahn   //   try
837c4ac74fbSHeejin Ahn   //     call @foo
838c4ac74fbSHeejin Ahn   //     try                (new: b)
839c4ac74fbSHeejin Ahn   //       call @bar
840c4ac74fbSHeejin Ahn   //     catch              (new: b)
841c4ac74fbSHeejin Ahn   //       local.set n      (new: b)
842c4ac74fbSHeejin Ahn   //       br $label0       (new: b)
843c4ac74fbSHeejin Ahn   //     end_try            (new: b)
844c4ac74fbSHeejin Ahn   //   catch                <- ehpad (bb2)
845c4ac74fbSHeejin Ahn   //     ...
846c4ac74fbSHeejin Ahn   //   end_try
847c4ac74fbSHeejin Ahn   // ...
848c4ac74fbSHeejin Ahn   // end_block              (new: placeBlockMarker)
849c4ac74fbSHeejin Ahn   // local.get n            (new: a)  <- appendix block
850c4ac74fbSHeejin Ahn   // rethrow                (new: a)
851c4ac74fbSHeejin Ahn   //
852c4ac74fbSHeejin Ahn   // In case there are multiple calls in a BB that may throw to the caller, they
853c4ac74fbSHeejin Ahn   // can be wrapped together in one nested try scope. (In 1, this couldn't
854c4ac74fbSHeejin Ahn   // happen, because may-throwing instruction there had an unwind destination,
855c4ac74fbSHeejin Ahn   // i.e., it was an invoke before, and there could be only one invoke within a
856c4ac74fbSHeejin Ahn   // BB.)
857c4ac74fbSHeejin Ahn 
858c4ac74fbSHeejin Ahn   SmallVector<const MachineBasicBlock *, 8> EHPadStack;
859c4ac74fbSHeejin Ahn   // Range of intructions to be wrapped in a new nested try/catch
860c4ac74fbSHeejin Ahn   using TryRange = std::pair<MachineInstr *, MachineInstr *>;
861daeead4bSHeejin Ahn   // In original CFG, <unwind destination BB, a vector of try ranges>
862c4ac74fbSHeejin Ahn   DenseMap<MachineBasicBlock *, SmallVector<TryRange, 4>> UnwindDestToTryRanges;
863c4ac74fbSHeejin Ahn   // In new CFG, <destination to branch to, a vector of try ranges>
864c4ac74fbSHeejin Ahn   DenseMap<MachineBasicBlock *, SmallVector<TryRange, 4>> BrDestToTryRanges;
8659f96a58cSHeejin Ahn   // In new CFG, <destination to branch to, register containing exnref>
866c4ac74fbSHeejin Ahn   DenseMap<MachineBasicBlock *, unsigned> BrDestToExnReg;
867c4ac74fbSHeejin Ahn 
868c4ac74fbSHeejin Ahn   // Gather possibly throwing calls (i.e., previously invokes) whose current
869c4ac74fbSHeejin Ahn   // unwind destination is not the same as the original CFG.
870c4ac74fbSHeejin Ahn   for (auto &MBB : reverse(MF)) {
871c4ac74fbSHeejin Ahn     bool SeenThrowableInstInBB = false;
872c4ac74fbSHeejin Ahn     for (auto &MI : reverse(MBB)) {
873c4ac74fbSHeejin Ahn       if (MI.getOpcode() == WebAssembly::TRY)
874c4ac74fbSHeejin Ahn         EHPadStack.pop_back();
875c4ac74fbSHeejin Ahn       else if (MI.getOpcode() == WebAssembly::CATCH)
876c4ac74fbSHeejin Ahn         EHPadStack.push_back(MI.getParent());
877c4ac74fbSHeejin Ahn 
878c4ac74fbSHeejin Ahn       // In this loop we only gather calls that have an EH pad to unwind. So
879c4ac74fbSHeejin Ahn       // there will be at most 1 such call (= invoke) in a BB, so after we've
880c4ac74fbSHeejin Ahn       // seen one, we can skip the rest of BB. Also if MBB has no EH pad
881c4ac74fbSHeejin Ahn       // successor or MI does not throw, this is not an invoke.
882c4ac74fbSHeejin Ahn       if (SeenThrowableInstInBB || !MBB.hasEHPadSuccessor() ||
883c4ac74fbSHeejin Ahn           !WebAssembly::mayThrow(MI))
884c4ac74fbSHeejin Ahn         continue;
885c4ac74fbSHeejin Ahn       SeenThrowableInstInBB = true;
886c4ac74fbSHeejin Ahn 
887c4ac74fbSHeejin Ahn       // If the EH pad on the stack top is where this instruction should unwind
888c4ac74fbSHeejin Ahn       // next, we're good.
889c4ac74fbSHeejin Ahn       MachineBasicBlock *UnwindDest = nullptr;
890c4ac74fbSHeejin Ahn       for (auto *Succ : MBB.successors()) {
891c4ac74fbSHeejin Ahn         if (Succ->isEHPad()) {
892c4ac74fbSHeejin Ahn           UnwindDest = Succ;
893c4ac74fbSHeejin Ahn           break;
894c4ac74fbSHeejin Ahn         }
895c4ac74fbSHeejin Ahn       }
896c4ac74fbSHeejin Ahn       if (EHPadStack.back() == UnwindDest)
897c4ac74fbSHeejin Ahn         continue;
898c4ac74fbSHeejin Ahn 
899c4ac74fbSHeejin Ahn       // If not, record the range.
900c4ac74fbSHeejin Ahn       UnwindDestToTryRanges[UnwindDest].push_back(TryRange(&MI, &MI));
901c4ac74fbSHeejin Ahn     }
902c4ac74fbSHeejin Ahn   }
903c4ac74fbSHeejin Ahn 
904c4ac74fbSHeejin Ahn   assert(EHPadStack.empty());
905c4ac74fbSHeejin Ahn 
906c4ac74fbSHeejin Ahn   // Gather possibly throwing calls that are supposed to unwind up to the caller
907c4ac74fbSHeejin Ahn   // if they throw, but currently unwind to an incorrect destination. Unlike the
908c4ac74fbSHeejin Ahn   // loop above, there can be multiple calls within a BB that unwind to the
909c4ac74fbSHeejin Ahn   // caller, which we should group together in a range.
910c4ac74fbSHeejin Ahn   bool NeedAppendixBlock = false;
911c4ac74fbSHeejin Ahn   for (auto &MBB : reverse(MF)) {
912c4ac74fbSHeejin Ahn     MachineInstr *RangeBegin = nullptr, *RangeEnd = nullptr; // inclusive
913c4ac74fbSHeejin Ahn     for (auto &MI : reverse(MBB)) {
914c4ac74fbSHeejin Ahn       if (MI.getOpcode() == WebAssembly::TRY)
915c4ac74fbSHeejin Ahn         EHPadStack.pop_back();
916c4ac74fbSHeejin Ahn       else if (MI.getOpcode() == WebAssembly::CATCH)
917c4ac74fbSHeejin Ahn         EHPadStack.push_back(MI.getParent());
918c4ac74fbSHeejin Ahn 
919c4ac74fbSHeejin Ahn       // If MBB has an EH pad successor, this inst does not unwind to caller.
920c4ac74fbSHeejin Ahn       if (MBB.hasEHPadSuccessor())
921c4ac74fbSHeejin Ahn         continue;
922c4ac74fbSHeejin Ahn 
923c4ac74fbSHeejin Ahn       // We wrap up the current range when we see a marker even if we haven't
924c4ac74fbSHeejin Ahn       // finished a BB.
925d8ddf839SWouter van Oortmerssen       if (RangeEnd && WebAssembly::isMarker(MI.getOpcode())) {
926c4ac74fbSHeejin Ahn         NeedAppendixBlock = true;
927c4ac74fbSHeejin Ahn         // Record the range. nullptr here means the unwind destination is the
928c4ac74fbSHeejin Ahn         // caller.
929c4ac74fbSHeejin Ahn         UnwindDestToTryRanges[nullptr].push_back(
930c4ac74fbSHeejin Ahn             TryRange(RangeBegin, RangeEnd));
931c4ac74fbSHeejin Ahn         RangeBegin = RangeEnd = nullptr; // Reset range pointers
932c4ac74fbSHeejin Ahn       }
933c4ac74fbSHeejin Ahn 
934c4ac74fbSHeejin Ahn       // If EHPadStack is empty, that means it is correctly unwind to caller if
935c4ac74fbSHeejin Ahn       // it throws, so we're good. If MI does not throw, we're good too.
936c4ac74fbSHeejin Ahn       if (EHPadStack.empty() || !WebAssembly::mayThrow(MI))
937c4ac74fbSHeejin Ahn         continue;
938c4ac74fbSHeejin Ahn 
939c4ac74fbSHeejin Ahn       // We found an instruction that unwinds to the caller but currently has an
940c4ac74fbSHeejin Ahn       // incorrect unwind destination. Create a new range or increment the
941c4ac74fbSHeejin Ahn       // currently existing range.
942c4ac74fbSHeejin Ahn       if (!RangeEnd)
943c4ac74fbSHeejin Ahn         RangeBegin = RangeEnd = &MI;
944c4ac74fbSHeejin Ahn       else
945c4ac74fbSHeejin Ahn         RangeBegin = &MI;
946c4ac74fbSHeejin Ahn     }
947c4ac74fbSHeejin Ahn 
948c4ac74fbSHeejin Ahn     if (RangeEnd) {
949c4ac74fbSHeejin Ahn       NeedAppendixBlock = true;
950c4ac74fbSHeejin Ahn       // Record the range. nullptr here means the unwind destination is the
951c4ac74fbSHeejin Ahn       // caller.
952c4ac74fbSHeejin Ahn       UnwindDestToTryRanges[nullptr].push_back(TryRange(RangeBegin, RangeEnd));
953c4ac74fbSHeejin Ahn       RangeBegin = RangeEnd = nullptr; // Reset range pointers
954c4ac74fbSHeejin Ahn     }
955c4ac74fbSHeejin Ahn   }
956c4ac74fbSHeejin Ahn 
957c4ac74fbSHeejin Ahn   assert(EHPadStack.empty());
958c4ac74fbSHeejin Ahn   // We don't have any unwind destination mismatches to resolve.
959c4ac74fbSHeejin Ahn   if (UnwindDestToTryRanges.empty())
960c4ac74fbSHeejin Ahn     return false;
961c4ac74fbSHeejin Ahn 
962c4ac74fbSHeejin Ahn   // If we found instructions that should unwind to the caller but currently
963c4ac74fbSHeejin Ahn   // have incorrect unwind destination, we create an appendix block at the end
964c4ac74fbSHeejin Ahn   // of the function with a local.get and a rethrow instruction.
965c4ac74fbSHeejin Ahn   if (NeedAppendixBlock) {
966c4ac74fbSHeejin Ahn     auto *AppendixBB = getAppendixBlock(MF);
96705c145d6SDaniel Sanders     Register ExnReg = MRI.createVirtualRegister(&WebAssembly::EXNREFRegClass);
968c4ac74fbSHeejin Ahn     BuildMI(AppendixBB, DebugLoc(), TII.get(WebAssembly::RETHROW))
969c4ac74fbSHeejin Ahn         .addReg(ExnReg);
970c4ac74fbSHeejin Ahn     // These instruction ranges should branch to this appendix BB.
971c4ac74fbSHeejin Ahn     for (auto Range : UnwindDestToTryRanges[nullptr])
972c4ac74fbSHeejin Ahn       BrDestToTryRanges[AppendixBB].push_back(Range);
973c4ac74fbSHeejin Ahn     BrDestToExnReg[AppendixBB] = ExnReg;
974c4ac74fbSHeejin Ahn   }
975c4ac74fbSHeejin Ahn 
976c4ac74fbSHeejin Ahn   // We loop through unwind destination EH pads that are targeted from some
977c4ac74fbSHeejin Ahn   // inner scopes. Because these EH pads are destination of more than one scope
978c4ac74fbSHeejin Ahn   // now, we split them so that the handler body is after 'end_try'.
979c4ac74fbSHeejin Ahn   // - Before
980c4ac74fbSHeejin Ahn   // ehpad:
981c4ac74fbSHeejin Ahn   //   catch
982c4ac74fbSHeejin Ahn   //   local.set n / drop
983c4ac74fbSHeejin Ahn   //   handler body
984c4ac74fbSHeejin Ahn   // ...
985c4ac74fbSHeejin Ahn   // cont:
986c4ac74fbSHeejin Ahn   //   end_try
987c4ac74fbSHeejin Ahn   //
988c4ac74fbSHeejin Ahn   // - After
989c4ac74fbSHeejin Ahn   // ehpad:
990c4ac74fbSHeejin Ahn   //   catch
991c4ac74fbSHeejin Ahn   //   local.set n / drop
992c4ac74fbSHeejin Ahn   // brdest:               (new)
993c4ac74fbSHeejin Ahn   //   end_try             (hoisted from 'cont' BB)
994c4ac74fbSHeejin Ahn   //   handler body        (taken from 'ehpad')
995c4ac74fbSHeejin Ahn   // ...
996c4ac74fbSHeejin Ahn   // cont:
997c4ac74fbSHeejin Ahn   for (auto &P : UnwindDestToTryRanges) {
998daeead4bSHeejin Ahn     NumUnwindMismatches += P.second.size();
999c4ac74fbSHeejin Ahn 
1000c4ac74fbSHeejin Ahn     // This means the destination is the appendix BB, which was separately
1001c4ac74fbSHeejin Ahn     // handled above.
1002c4ac74fbSHeejin Ahn     if (!P.first)
1003c4ac74fbSHeejin Ahn       continue;
1004c4ac74fbSHeejin Ahn 
1005c4ac74fbSHeejin Ahn     MachineBasicBlock *EHPad = P.first;
1006c4ac74fbSHeejin Ahn 
1007c4ac74fbSHeejin Ahn     // Find 'catch' and 'local.set' or 'drop' instruction that follows the
1008c4ac74fbSHeejin Ahn     // 'catch'. If -wasm-disable-explicit-locals is not set, 'catch' should be
1009c4ac74fbSHeejin Ahn     // always followed by either 'local.set' or a 'drop', because 'br_on_exn' is
1010c4ac74fbSHeejin Ahn     // generated after 'catch' in LateEHPrepare and we don't support blocks
1011c4ac74fbSHeejin Ahn     // taking values yet.
1012c4ac74fbSHeejin Ahn     MachineInstr *Catch = nullptr;
1013c4ac74fbSHeejin Ahn     unsigned ExnReg = 0;
1014c4ac74fbSHeejin Ahn     for (auto &MI : *EHPad) {
1015c4ac74fbSHeejin Ahn       switch (MI.getOpcode()) {
1016c4ac74fbSHeejin Ahn       case WebAssembly::CATCH:
1017c4ac74fbSHeejin Ahn         Catch = &MI;
1018c4ac74fbSHeejin Ahn         ExnReg = Catch->getOperand(0).getReg();
1019c4ac74fbSHeejin Ahn         break;
1020c4ac74fbSHeejin Ahn       }
1021c4ac74fbSHeejin Ahn     }
1022c4ac74fbSHeejin Ahn     assert(Catch && "EH pad does not have a catch");
1023c4ac74fbSHeejin Ahn     assert(ExnReg != 0 && "Invalid register");
1024c4ac74fbSHeejin Ahn 
1025c4ac74fbSHeejin Ahn     auto SplitPos = std::next(Catch->getIterator());
1026c4ac74fbSHeejin Ahn 
1027c4ac74fbSHeejin Ahn     // Create a new BB that's gonna be the destination for branches from the
1028c4ac74fbSHeejin Ahn     // inner mismatched scope.
1029c4ac74fbSHeejin Ahn     MachineInstr *BeginTry = EHPadToTry[EHPad];
1030c4ac74fbSHeejin Ahn     MachineInstr *EndTry = BeginToEnd[BeginTry];
1031c4ac74fbSHeejin Ahn     MachineBasicBlock *Cont = EndTry->getParent();
1032c4ac74fbSHeejin Ahn     auto *BrDest = MF.CreateMachineBasicBlock();
1033c4ac74fbSHeejin Ahn     MF.insert(std::next(EHPad->getIterator()), BrDest);
1034c4ac74fbSHeejin Ahn     // Hoist up the existing 'end_try'.
1035c4ac74fbSHeejin Ahn     BrDest->insert(BrDest->end(), EndTry->removeFromParent());
1036c4ac74fbSHeejin Ahn     // Take out the handler body from EH pad to the new branch destination BB.
1037c4ac74fbSHeejin Ahn     BrDest->splice(BrDest->end(), EHPad, SplitPos, EHPad->end());
103861d5c76aSHeejin Ahn     unstackifyVRegsUsedInSplitBB(*EHPad, *BrDest, MFI, MRI);
1039c4ac74fbSHeejin Ahn     // Fix predecessor-successor relationship.
1040c4ac74fbSHeejin Ahn     BrDest->transferSuccessors(EHPad);
1041c4ac74fbSHeejin Ahn     EHPad->addSuccessor(BrDest);
1042c4ac74fbSHeejin Ahn 
1043c4ac74fbSHeejin Ahn     // All try ranges that were supposed to unwind to this EH pad now have to
1044c4ac74fbSHeejin Ahn     // branch to this new branch dest BB.
1045c4ac74fbSHeejin Ahn     for (auto Range : UnwindDestToTryRanges[EHPad])
1046c4ac74fbSHeejin Ahn       BrDestToTryRanges[BrDest].push_back(Range);
1047c4ac74fbSHeejin Ahn     BrDestToExnReg[BrDest] = ExnReg;
1048c4ac74fbSHeejin Ahn 
1049c4ac74fbSHeejin Ahn     // In case we fall through to the continuation BB after the catch block, we
1050c4ac74fbSHeejin Ahn     // now have to add a branch to it.
1051c4ac74fbSHeejin Ahn     // - Before
1052c4ac74fbSHeejin Ahn     // try
1053c4ac74fbSHeejin Ahn     //   ...
1054c4ac74fbSHeejin Ahn     //   (falls through to 'cont')
1055c4ac74fbSHeejin Ahn     // catch
1056c4ac74fbSHeejin Ahn     //   handler body
1057c4ac74fbSHeejin Ahn     // end
1058c4ac74fbSHeejin Ahn     //               <-- cont
1059c4ac74fbSHeejin Ahn     //
1060c4ac74fbSHeejin Ahn     // - After
1061c4ac74fbSHeejin Ahn     // try
1062c4ac74fbSHeejin Ahn     //   ...
1063c4ac74fbSHeejin Ahn     //   br %cont    (new)
1064c4ac74fbSHeejin Ahn     // catch
1065c4ac74fbSHeejin Ahn     // end
1066c4ac74fbSHeejin Ahn     // handler body
1067c4ac74fbSHeejin Ahn     //               <-- cont
1068c4ac74fbSHeejin Ahn     MachineBasicBlock *EHPadLayoutPred = &*std::prev(EHPad->getIterator());
1069c4ac74fbSHeejin Ahn     MachineBasicBlock *TBB = nullptr, *FBB = nullptr;
1070c4ac74fbSHeejin Ahn     SmallVector<MachineOperand, 4> Cond;
1071c4ac74fbSHeejin Ahn     bool Analyzable = !TII.analyzeBranch(*EHPadLayoutPred, TBB, FBB, Cond);
1072c4ac74fbSHeejin Ahn     if (Analyzable && !TBB && !FBB) {
1073c4ac74fbSHeejin Ahn       DebugLoc DL = EHPadLayoutPred->empty()
1074c4ac74fbSHeejin Ahn                         ? DebugLoc()
1075c4ac74fbSHeejin Ahn                         : EHPadLayoutPred->rbegin()->getDebugLoc();
1076c4ac74fbSHeejin Ahn       BuildMI(EHPadLayoutPred, DL, TII.get(WebAssembly::BR)).addMBB(Cont);
1077c4ac74fbSHeejin Ahn     }
1078c4ac74fbSHeejin Ahn   }
1079c4ac74fbSHeejin Ahn 
1080c4ac74fbSHeejin Ahn   // For possibly throwing calls whose unwind destinations are currently
1081c4ac74fbSHeejin Ahn   // incorrect because of CFG linearization, we wrap them with a nested
1082c4ac74fbSHeejin Ahn   // try/catch/end_try, and within the new catch block, we branch to the correct
1083c4ac74fbSHeejin Ahn   // handler.
1084c4ac74fbSHeejin Ahn   // - Before
1085c4ac74fbSHeejin Ahn   // mbb:
1086c4ac74fbSHeejin Ahn   //   call @foo       <- Unwind destination mismatch!
1087c4ac74fbSHeejin Ahn   // ehpad:
1088c4ac74fbSHeejin Ahn   //   ...
1089c4ac74fbSHeejin Ahn   //
1090c4ac74fbSHeejin Ahn   // - After
1091c4ac74fbSHeejin Ahn   // mbb:
1092c4ac74fbSHeejin Ahn   //   try                (new)
1093c4ac74fbSHeejin Ahn   //   call @foo
1094c4ac74fbSHeejin Ahn   // nested-ehpad:        (new)
1095c4ac74fbSHeejin Ahn   //   catch              (new)
1096c4ac74fbSHeejin Ahn   //   local.set n / drop (new)
1097c4ac74fbSHeejin Ahn   //   br %brdest         (new)
1098c4ac74fbSHeejin Ahn   // nested-end:          (new)
1099c4ac74fbSHeejin Ahn   //   end_try            (new)
1100c4ac74fbSHeejin Ahn   // ehpad:
1101c4ac74fbSHeejin Ahn   //   ...
1102c4ac74fbSHeejin Ahn   for (auto &P : BrDestToTryRanges) {
1103c4ac74fbSHeejin Ahn     MachineBasicBlock *BrDest = P.first;
1104c4ac74fbSHeejin Ahn     auto &TryRanges = P.second;
1105c4ac74fbSHeejin Ahn     unsigned ExnReg = BrDestToExnReg[BrDest];
1106c4ac74fbSHeejin Ahn 
1107c4ac74fbSHeejin Ahn     for (auto Range : TryRanges) {
1108c4ac74fbSHeejin Ahn       MachineInstr *RangeBegin = nullptr, *RangeEnd = nullptr;
1109c4ac74fbSHeejin Ahn       std::tie(RangeBegin, RangeEnd) = Range;
1110c4ac74fbSHeejin Ahn       auto *MBB = RangeBegin->getParent();
1111c4ac74fbSHeejin Ahn 
1112c4ac74fbSHeejin Ahn       // Include possible EH_LABELs in the range
1113c4ac74fbSHeejin Ahn       if (RangeBegin->getIterator() != MBB->begin() &&
1114c4ac74fbSHeejin Ahn           std::prev(RangeBegin->getIterator())->isEHLabel())
1115c4ac74fbSHeejin Ahn         RangeBegin = &*std::prev(RangeBegin->getIterator());
1116c4ac74fbSHeejin Ahn       if (std::next(RangeEnd->getIterator()) != MBB->end() &&
1117c4ac74fbSHeejin Ahn           std::next(RangeEnd->getIterator())->isEHLabel())
1118c4ac74fbSHeejin Ahn         RangeEnd = &*std::next(RangeEnd->getIterator());
1119c4ac74fbSHeejin Ahn 
1120c4ac74fbSHeejin Ahn       MachineBasicBlock *EHPad = nullptr;
1121c4ac74fbSHeejin Ahn       for (auto *Succ : MBB->successors()) {
1122c4ac74fbSHeejin Ahn         if (Succ->isEHPad()) {
1123c4ac74fbSHeejin Ahn           EHPad = Succ;
1124c4ac74fbSHeejin Ahn           break;
1125c4ac74fbSHeejin Ahn         }
1126c4ac74fbSHeejin Ahn       }
1127c4ac74fbSHeejin Ahn 
1128c4ac74fbSHeejin Ahn       // Create the nested try instruction.
1129c4ac74fbSHeejin Ahn       MachineInstr *NestedTry =
1130c4ac74fbSHeejin Ahn           BuildMI(*MBB, *RangeBegin, RangeBegin->getDebugLoc(),
1131c4ac74fbSHeejin Ahn                   TII.get(WebAssembly::TRY))
1132*2cb27072SThomas Lively               .addImm(int64_t(WebAssembly::BlockType::Void));
1133c4ac74fbSHeejin Ahn 
1134c4ac74fbSHeejin Ahn       // Create the nested EH pad and fill instructions in.
1135c4ac74fbSHeejin Ahn       MachineBasicBlock *NestedEHPad = MF.CreateMachineBasicBlock();
1136c4ac74fbSHeejin Ahn       MF.insert(std::next(MBB->getIterator()), NestedEHPad);
1137c4ac74fbSHeejin Ahn       NestedEHPad->setIsEHPad();
1138c4ac74fbSHeejin Ahn       NestedEHPad->setIsEHScopeEntry();
1139c4ac74fbSHeejin Ahn       BuildMI(NestedEHPad, RangeEnd->getDebugLoc(), TII.get(WebAssembly::CATCH),
1140c4ac74fbSHeejin Ahn               ExnReg);
1141c4ac74fbSHeejin Ahn       BuildMI(NestedEHPad, RangeEnd->getDebugLoc(), TII.get(WebAssembly::BR))
1142c4ac74fbSHeejin Ahn           .addMBB(BrDest);
1143c4ac74fbSHeejin Ahn 
1144c4ac74fbSHeejin Ahn       // Create the nested continuation BB and end_try instruction.
1145c4ac74fbSHeejin Ahn       MachineBasicBlock *NestedCont = MF.CreateMachineBasicBlock();
1146c4ac74fbSHeejin Ahn       MF.insert(std::next(NestedEHPad->getIterator()), NestedCont);
1147c4ac74fbSHeejin Ahn       MachineInstr *NestedEndTry =
1148c4ac74fbSHeejin Ahn           BuildMI(*NestedCont, NestedCont->begin(), RangeEnd->getDebugLoc(),
1149c4ac74fbSHeejin Ahn                   TII.get(WebAssembly::END_TRY));
1150c4ac74fbSHeejin Ahn       // In case MBB has more instructions after the try range, move them to the
1151c4ac74fbSHeejin Ahn       // new nested continuation BB.
1152c4ac74fbSHeejin Ahn       NestedCont->splice(NestedCont->end(), MBB,
1153c4ac74fbSHeejin Ahn                          std::next(RangeEnd->getIterator()), MBB->end());
115461d5c76aSHeejin Ahn       unstackifyVRegsUsedInSplitBB(*MBB, *NestedCont, MFI, MRI);
1155c4ac74fbSHeejin Ahn       registerTryScope(NestedTry, NestedEndTry, NestedEHPad);
1156c4ac74fbSHeejin Ahn 
1157c4ac74fbSHeejin Ahn       // Fix predecessor-successor relationship.
1158c4ac74fbSHeejin Ahn       NestedCont->transferSuccessors(MBB);
1159c4ac74fbSHeejin Ahn       if (EHPad)
1160c4ac74fbSHeejin Ahn         NestedCont->removeSuccessor(EHPad);
1161c4ac74fbSHeejin Ahn       MBB->addSuccessor(NestedEHPad);
1162c4ac74fbSHeejin Ahn       MBB->addSuccessor(NestedCont);
1163c4ac74fbSHeejin Ahn       NestedEHPad->addSuccessor(BrDest);
1164c4ac74fbSHeejin Ahn     }
1165c4ac74fbSHeejin Ahn   }
1166c4ac74fbSHeejin Ahn 
1167c4ac74fbSHeejin Ahn   // Renumber BBs and recalculate ScopeTop info because new BBs might have been
1168c4ac74fbSHeejin Ahn   // created and inserted above.
1169c4ac74fbSHeejin Ahn   MF.RenumberBlocks();
1170c4ac74fbSHeejin Ahn   ScopeTops.clear();
1171c4ac74fbSHeejin Ahn   ScopeTops.resize(MF.getNumBlockIDs());
1172c4ac74fbSHeejin Ahn   for (auto &MBB : reverse(MF)) {
1173c4ac74fbSHeejin Ahn     for (auto &MI : reverse(MBB)) {
1174c4ac74fbSHeejin Ahn       if (ScopeTops[MBB.getNumber()])
1175c4ac74fbSHeejin Ahn         break;
1176c4ac74fbSHeejin Ahn       switch (MI.getOpcode()) {
1177c4ac74fbSHeejin Ahn       case WebAssembly::END_BLOCK:
1178c4ac74fbSHeejin Ahn       case WebAssembly::END_LOOP:
1179c4ac74fbSHeejin Ahn       case WebAssembly::END_TRY:
1180c4ac74fbSHeejin Ahn         ScopeTops[MBB.getNumber()] = EndToBegin[&MI]->getParent();
1181c4ac74fbSHeejin Ahn         break;
1182c4ac74fbSHeejin Ahn       case WebAssembly::CATCH:
1183c4ac74fbSHeejin Ahn         ScopeTops[MBB.getNumber()] = EHPadToTry[&MBB]->getParent();
1184c4ac74fbSHeejin Ahn         break;
1185c4ac74fbSHeejin Ahn       }
1186c4ac74fbSHeejin Ahn     }
1187c4ac74fbSHeejin Ahn   }
1188c4ac74fbSHeejin Ahn 
1189c4ac74fbSHeejin Ahn   // Recompute the dominator tree.
1190c4ac74fbSHeejin Ahn   getAnalysis<MachineDominatorTree>().runOnMachineFunction(MF);
1191c4ac74fbSHeejin Ahn 
1192c4ac74fbSHeejin Ahn   // Place block markers for newly added branches.
1193c4ac74fbSHeejin Ahn   SmallVector <MachineBasicBlock *, 8> BrDests;
1194c4ac74fbSHeejin Ahn   for (auto &P : BrDestToTryRanges)
1195c4ac74fbSHeejin Ahn     BrDests.push_back(P.first);
1196c4ac74fbSHeejin Ahn   llvm::sort(BrDests,
1197c4ac74fbSHeejin Ahn              [&](const MachineBasicBlock *A, const MachineBasicBlock *B) {
1198c4ac74fbSHeejin Ahn                auto ANum = A->getNumber();
1199c4ac74fbSHeejin Ahn                auto BNum = B->getNumber();
1200c4ac74fbSHeejin Ahn                return ANum < BNum;
1201c4ac74fbSHeejin Ahn              });
1202c4ac74fbSHeejin Ahn   for (auto *Dest : BrDests)
1203c4ac74fbSHeejin Ahn     placeBlockMarker(*Dest);
1204c4ac74fbSHeejin Ahn 
1205c4ac74fbSHeejin Ahn   return true;
1206c4ac74fbSHeejin Ahn }
1207c4ac74fbSHeejin Ahn 
12081d68e80fSDan Gohman static unsigned
120918c56a07SHeejin Ahn getDepth(const SmallVectorImpl<const MachineBasicBlock *> &Stack,
12101d68e80fSDan Gohman          const MachineBasicBlock *MBB) {
12111d68e80fSDan Gohman   unsigned Depth = 0;
12121d68e80fSDan Gohman   for (auto X : reverse(Stack)) {
12131d68e80fSDan Gohman     if (X == MBB)
12141d68e80fSDan Gohman       break;
12151d68e80fSDan Gohman     ++Depth;
12161d68e80fSDan Gohman   }
12171d68e80fSDan Gohman   assert(Depth < Stack.size() && "Branch destination should be in scope");
12181d68e80fSDan Gohman   return Depth;
12191d68e80fSDan Gohman }
12201d68e80fSDan Gohman 
12212726b88cSDan Gohman /// In normal assembly languages, when the end of a function is unreachable,
12222726b88cSDan Gohman /// because the function ends in an infinite loop or a noreturn call or similar,
12232726b88cSDan Gohman /// it isn't necessary to worry about the function return type at the end of
12242726b88cSDan Gohman /// the function, because it's never reached. However, in WebAssembly, blocks
12252726b88cSDan Gohman /// that end at the function end need to have a return type signature that
12262726b88cSDan Gohman /// matches the function signature, even though it's unreachable. This function
12272726b88cSDan Gohman /// checks for such cases and fixes up the signatures.
1228e76fa9ecSHeejin Ahn void WebAssemblyCFGStackify::fixEndsAtEndOfFunction(MachineFunction &MF) {
1229e76fa9ecSHeejin Ahn   const auto &MFI = *MF.getInfo<WebAssemblyFunctionInfo>();
12302726b88cSDan Gohman 
12312726b88cSDan Gohman   if (MFI.getResults().empty())
12322726b88cSDan Gohman     return;
12332726b88cSDan Gohman 
1234*2cb27072SThomas Lively   // MCInstLower will add the proper types to multivalue signatures based on the
1235*2cb27072SThomas Lively   // function return type
1236*2cb27072SThomas Lively   WebAssembly::BlockType RetType =
1237*2cb27072SThomas Lively       MFI.getResults().size() > 1
1238*2cb27072SThomas Lively           ? WebAssembly::BlockType::Multivalue
1239*2cb27072SThomas Lively           : WebAssembly::BlockType(
1240*2cb27072SThomas Lively                 WebAssembly::toValType(MFI.getResults().front()));
12412726b88cSDan Gohman 
12422726b88cSDan Gohman   for (MachineBasicBlock &MBB : reverse(MF)) {
12432726b88cSDan Gohman     for (MachineInstr &MI : reverse(MBB)) {
1244801bf7ebSShiva Chen       if (MI.isPosition() || MI.isDebugInstr())
12452726b88cSDan Gohman         continue;
1246*2cb27072SThomas Lively       switch (MI.getOpcode()) {
1247*2cb27072SThomas Lively       case WebAssembly::END_BLOCK:
1248*2cb27072SThomas Lively       case WebAssembly::END_LOOP:
1249*2cb27072SThomas Lively       case WebAssembly::END_TRY:
125018c56a07SHeejin Ahn         EndToBegin[&MI]->getOperand(0).setImm(int32_t(RetType));
12512726b88cSDan Gohman         continue;
1252*2cb27072SThomas Lively       default:
12532726b88cSDan Gohman         // Something other than an `end`. We're done.
12542726b88cSDan Gohman         return;
12552726b88cSDan Gohman       }
12562726b88cSDan Gohman     }
12572726b88cSDan Gohman   }
1258*2cb27072SThomas Lively }
12592726b88cSDan Gohman 
1260d934cb88SDan Gohman // WebAssembly functions end with an end instruction, as if the function body
1261d934cb88SDan Gohman // were a block.
126218c56a07SHeejin Ahn static void appendEndToFunction(MachineFunction &MF,
1263d934cb88SDan Gohman                                 const WebAssemblyInstrInfo &TII) {
126410b31358SDerek Schuff   BuildMI(MF.back(), MF.back().end(),
126510b31358SDerek Schuff           MF.back().findPrevDebugLoc(MF.back().end()),
1266d934cb88SDan Gohman           TII.get(WebAssembly::END_FUNCTION));
1267d934cb88SDan Gohman }
1268d934cb88SDan Gohman 
1269e76fa9ecSHeejin Ahn /// Insert LOOP/TRY/BLOCK markers at appropriate places.
1270e76fa9ecSHeejin Ahn void WebAssemblyCFGStackify::placeMarkers(MachineFunction &MF) {
1271e76fa9ecSHeejin Ahn   // We allocate one more than the number of blocks in the function to
1272e76fa9ecSHeejin Ahn   // accommodate for the possible fake block we may insert at the end.
1273e76fa9ecSHeejin Ahn   ScopeTops.resize(MF.getNumBlockIDs() + 1);
12748fe7e86bSDan Gohman   // Place the LOOP for MBB if MBB is the header of a loop.
1275e76fa9ecSHeejin Ahn   for (auto &MBB : MF)
1276e76fa9ecSHeejin Ahn     placeLoopMarker(MBB);
127744a5a4b1SHeejin Ahn 
1278d6f48786SHeejin Ahn   const MCAsmInfo *MCAI = MF.getTarget().getMCAsmInfo();
127944a5a4b1SHeejin Ahn   for (auto &MBB : MF) {
128044a5a4b1SHeejin Ahn     if (MBB.isEHPad()) {
128144a5a4b1SHeejin Ahn       // Place the TRY for MBB if MBB is the EH pad of an exception.
1282e76fa9ecSHeejin Ahn       if (MCAI->getExceptionHandlingType() == ExceptionHandling::Wasm &&
1283e76fa9ecSHeejin Ahn           MF.getFunction().hasPersonalityFn())
1284e76fa9ecSHeejin Ahn         placeTryMarker(MBB);
128544a5a4b1SHeejin Ahn     } else {
128632807932SDan Gohman       // Place the BLOCK for MBB if MBB is branched to from above.
1287e76fa9ecSHeejin Ahn       placeBlockMarker(MBB);
1288950a13cfSDan Gohman     }
128944a5a4b1SHeejin Ahn   }
1290c4ac74fbSHeejin Ahn   // Fix mismatches in unwind destinations induced by linearizing the code.
1291daeead4bSHeejin Ahn   if (MCAI->getExceptionHandlingType() == ExceptionHandling::Wasm &&
1292daeead4bSHeejin Ahn       MF.getFunction().hasPersonalityFn())
1293c4ac74fbSHeejin Ahn     fixUnwindMismatches(MF);
129444a5a4b1SHeejin Ahn }
1295950a13cfSDan Gohman 
1296e76fa9ecSHeejin Ahn void WebAssemblyCFGStackify::rewriteDepthImmediates(MachineFunction &MF) {
12971d68e80fSDan Gohman   // Now rewrite references to basic blocks to be depth immediates.
12981d68e80fSDan Gohman   SmallVector<const MachineBasicBlock *, 8> Stack;
12991d68e80fSDan Gohman   for (auto &MBB : reverse(MF)) {
1300e76fa9ecSHeejin Ahn     for (auto I = MBB.rbegin(), E = MBB.rend(); I != E; ++I) {
1301e76fa9ecSHeejin Ahn       MachineInstr &MI = *I;
13021d68e80fSDan Gohman       switch (MI.getOpcode()) {
13031d68e80fSDan Gohman       case WebAssembly::BLOCK:
1304e76fa9ecSHeejin Ahn       case WebAssembly::TRY:
1305e76fa9ecSHeejin Ahn         assert(ScopeTops[Stack.back()->getNumber()]->getNumber() <=
1306e76fa9ecSHeejin Ahn                    MBB.getNumber() &&
1307e76fa9ecSHeejin Ahn                "Block/try marker should be balanced");
1308e76fa9ecSHeejin Ahn         Stack.pop_back();
1309e76fa9ecSHeejin Ahn         break;
1310e76fa9ecSHeejin Ahn 
13111d68e80fSDan Gohman       case WebAssembly::LOOP:
13121d68e80fSDan Gohman         assert(Stack.back() == &MBB && "Loop top should be balanced");
13131d68e80fSDan Gohman         Stack.pop_back();
13141d68e80fSDan Gohman         break;
1315e76fa9ecSHeejin Ahn 
13161d68e80fSDan Gohman       case WebAssembly::END_BLOCK:
1317e76fa9ecSHeejin Ahn       case WebAssembly::END_TRY:
13181d68e80fSDan Gohman         Stack.push_back(&MBB);
13191d68e80fSDan Gohman         break;
1320e76fa9ecSHeejin Ahn 
13211d68e80fSDan Gohman       case WebAssembly::END_LOOP:
1322e76fa9ecSHeejin Ahn         Stack.push_back(EndToBegin[&MI]->getParent());
13231d68e80fSDan Gohman         break;
1324e76fa9ecSHeejin Ahn 
13251d68e80fSDan Gohman       default:
13261d68e80fSDan Gohman         if (MI.isTerminator()) {
13271d68e80fSDan Gohman           // Rewrite MBB operands to be depth immediates.
13281d68e80fSDan Gohman           SmallVector<MachineOperand, 4> Ops(MI.operands());
13291d68e80fSDan Gohman           while (MI.getNumOperands() > 0)
13301d68e80fSDan Gohman             MI.RemoveOperand(MI.getNumOperands() - 1);
13311d68e80fSDan Gohman           for (auto MO : Ops) {
13321d68e80fSDan Gohman             if (MO.isMBB())
133318c56a07SHeejin Ahn               MO = MachineOperand::CreateImm(getDepth(Stack, MO.getMBB()));
13341d68e80fSDan Gohman             MI.addOperand(MF, MO);
133532807932SDan Gohman           }
13361d68e80fSDan Gohman         }
13371d68e80fSDan Gohman         break;
13381d68e80fSDan Gohman       }
13391d68e80fSDan Gohman     }
13401d68e80fSDan Gohman   }
13411d68e80fSDan Gohman   assert(Stack.empty() && "Control flow should be balanced");
1342e76fa9ecSHeejin Ahn }
13432726b88cSDan Gohman 
1344e76fa9ecSHeejin Ahn void WebAssemblyCFGStackify::releaseMemory() {
1345e76fa9ecSHeejin Ahn   ScopeTops.clear();
1346e76fa9ecSHeejin Ahn   BeginToEnd.clear();
1347e76fa9ecSHeejin Ahn   EndToBegin.clear();
1348e76fa9ecSHeejin Ahn   TryToEHPad.clear();
1349e76fa9ecSHeejin Ahn   EHPadToTry.clear();
1350c4ac74fbSHeejin Ahn   AppendixBB = nullptr;
13511d68e80fSDan Gohman }
135232807932SDan Gohman 
1353950a13cfSDan Gohman bool WebAssemblyCFGStackify::runOnMachineFunction(MachineFunction &MF) {
1354d34e60caSNicola Zaghen   LLVM_DEBUG(dbgs() << "********** CFG Stackifying **********\n"
1355950a13cfSDan Gohman                        "********** Function: "
1356950a13cfSDan Gohman                     << MF.getName() << '\n');
1357cf699b45SHeejin Ahn   const MCAsmInfo *MCAI = MF.getTarget().getMCAsmInfo();
1358950a13cfSDan Gohman 
1359e76fa9ecSHeejin Ahn   releaseMemory();
1360e76fa9ecSHeejin Ahn 
1361e040533eSDan Gohman   // Liveness is not tracked for VALUE_STACK physreg.
13629c3bf318SDerek Schuff   MF.getRegInfo().invalidateLiveness();
1363950a13cfSDan Gohman 
1364e76fa9ecSHeejin Ahn   // Place the BLOCK/LOOP/TRY markers to indicate the beginnings of scopes.
1365e76fa9ecSHeejin Ahn   placeMarkers(MF);
1366e76fa9ecSHeejin Ahn 
1367c4ac74fbSHeejin Ahn   // Remove unnecessary instructions possibly introduced by try/end_trys.
1368cf699b45SHeejin Ahn   if (MCAI->getExceptionHandlingType() == ExceptionHandling::Wasm &&
1369cf699b45SHeejin Ahn       MF.getFunction().hasPersonalityFn())
1370cf699b45SHeejin Ahn     removeUnnecessaryInstrs(MF);
1371cf699b45SHeejin Ahn 
1372e76fa9ecSHeejin Ahn   // Convert MBB operands in terminators to relative depth immediates.
1373e76fa9ecSHeejin Ahn   rewriteDepthImmediates(MF);
1374e76fa9ecSHeejin Ahn 
1375e76fa9ecSHeejin Ahn   // Fix up block/loop/try signatures at the end of the function to conform to
1376e76fa9ecSHeejin Ahn   // WebAssembly's rules.
1377e76fa9ecSHeejin Ahn   fixEndsAtEndOfFunction(MF);
1378e76fa9ecSHeejin Ahn 
1379e76fa9ecSHeejin Ahn   // Add an end instruction at the end of the function body.
1380e76fa9ecSHeejin Ahn   const auto &TII = *MF.getSubtarget<WebAssemblySubtarget>().getInstrInfo();
1381e76fa9ecSHeejin Ahn   if (!MF.getSubtarget<WebAssemblySubtarget>()
1382e76fa9ecSHeejin Ahn            .getTargetTriple()
1383e76fa9ecSHeejin Ahn            .isOSBinFormatELF())
138418c56a07SHeejin Ahn     appendEndToFunction(MF, TII);
138532807932SDan Gohman 
13861aaa481fSHeejin Ahn   MF.getInfo<WebAssemblyFunctionInfo>()->setCFGStackified();
1387950a13cfSDan Gohman   return true;
1388950a13cfSDan Gohman }
1389