xref: /llvm-project/llvm/lib/Target/WebAssembly/WebAssemblyCFGStackify.cpp (revision 2b8158f441da74d8432c7629b005a7107a44186b)
1 //===-- WebAssemblyCFGStackify.cpp - CFG Stackification -------------------===//
2 //
3 //                     The LLVM Compiler Infrastructure
4 //
5 // This file is distributed under the University of Illinois Open Source
6 // License. See LICENSE.TXT for details.
7 //
8 //===----------------------------------------------------------------------===//
9 ///
10 /// \file
11 /// \brief This file implements a CFG stacking pass.
12 ///
13 /// This pass inserts BLOCK and LOOP markers to mark the start of scopes, since
14 /// scope boundaries serve as the labels for WebAssembly's control transfers.
15 ///
16 /// This is sufficient to convert arbitrary CFGs into a form that works on
17 /// WebAssembly, provided that all loops are single-entry.
18 ///
19 //===----------------------------------------------------------------------===//
20 
21 #include "MCTargetDesc/WebAssemblyMCTargetDesc.h"
22 #include "WebAssembly.h"
23 #include "WebAssemblyMachineFunctionInfo.h"
24 #include "WebAssemblySubtarget.h"
25 #include "WebAssemblyUtilities.h"
26 #include "llvm/CodeGen/MachineDominators.h"
27 #include "llvm/CodeGen/MachineFunction.h"
28 #include "llvm/CodeGen/MachineInstrBuilder.h"
29 #include "llvm/CodeGen/MachineLoopInfo.h"
30 #include "llvm/CodeGen/MachineRegisterInfo.h"
31 #include "llvm/CodeGen/Passes.h"
32 #include "llvm/Support/Debug.h"
33 #include "llvm/Support/raw_ostream.h"
34 using namespace llvm;
35 
36 #define DEBUG_TYPE "wasm-cfg-stackify"
37 
38 namespace {
39 class WebAssemblyCFGStackify final : public MachineFunctionPass {
40   StringRef getPassName() const override { return "WebAssembly CFG Stackify"; }
41 
42   void getAnalysisUsage(AnalysisUsage &AU) const override {
43     AU.setPreservesCFG();
44     AU.addRequired<MachineDominatorTree>();
45     AU.addPreserved<MachineDominatorTree>();
46     AU.addRequired<MachineLoopInfo>();
47     AU.addPreserved<MachineLoopInfo>();
48     MachineFunctionPass::getAnalysisUsage(AU);
49   }
50 
51   bool runOnMachineFunction(MachineFunction &MF) override;
52 
53 public:
54   static char ID; // Pass identification, replacement for typeid
55   WebAssemblyCFGStackify() : MachineFunctionPass(ID) {}
56 };
57 } // end anonymous namespace
58 
59 char WebAssemblyCFGStackify::ID = 0;
60 INITIALIZE_PASS(WebAssemblyCFGStackify, DEBUG_TYPE,
61                 "Insert BLOCK and LOOP markers for WebAssembly scopes",
62                 false, false)
63 
64 FunctionPass *llvm::createWebAssemblyCFGStackify() {
65   return new WebAssemblyCFGStackify();
66 }
67 
68 /// Test whether Pred has any terminators explicitly branching to MBB, as
69 /// opposed to falling through. Note that it's possible (eg. in unoptimized
70 /// code) for a branch instruction to both branch to a block and fallthrough
71 /// to it, so we check the actual branch operands to see if there are any
72 /// explicit mentions.
73 static bool ExplicitlyBranchesTo(MachineBasicBlock *Pred,
74                                  MachineBasicBlock *MBB) {
75   for (MachineInstr &MI : Pred->terminators())
76     for (MachineOperand &MO : MI.explicit_operands())
77       if (MO.isMBB() && MO.getMBB() == MBB)
78         return true;
79   return false;
80 }
81 
82 /// Insert a BLOCK marker for branches to MBB (if needed).
83 static void PlaceBlockMarker(
84     MachineBasicBlock &MBB, MachineFunction &MF,
85     SmallVectorImpl<MachineBasicBlock *> &ScopeTops,
86     DenseMap<const MachineInstr *, MachineInstr *> &BlockTops,
87     DenseMap<const MachineInstr *, MachineInstr *> &LoopTops,
88     const WebAssemblyInstrInfo &TII,
89     const MachineLoopInfo &MLI,
90     MachineDominatorTree &MDT,
91     WebAssemblyFunctionInfo &MFI) {
92   // First compute the nearest common dominator of all forward non-fallthrough
93   // predecessors so that we minimize the time that the BLOCK is on the stack,
94   // which reduces overall stack height.
95   MachineBasicBlock *Header = nullptr;
96   bool IsBranchedTo = false;
97   int MBBNumber = MBB.getNumber();
98   for (MachineBasicBlock *Pred : MBB.predecessors())
99     if (Pred->getNumber() < MBBNumber) {
100       Header = Header ? MDT.findNearestCommonDominator(Header, Pred) : Pred;
101       if (ExplicitlyBranchesTo(Pred, &MBB))
102         IsBranchedTo = true;
103     }
104   if (!Header)
105     return;
106   if (!IsBranchedTo)
107     return;
108 
109   assert(&MBB != &MF.front() && "Header blocks shouldn't have predecessors");
110   MachineBasicBlock *LayoutPred = &*std::prev(MachineFunction::iterator(&MBB));
111 
112   // If the nearest common dominator is inside a more deeply nested context,
113   // walk out to the nearest scope which isn't more deeply nested.
114   for (MachineFunction::iterator I(LayoutPred), E(Header); I != E; --I) {
115     if (MachineBasicBlock *ScopeTop = ScopeTops[I->getNumber()]) {
116       if (ScopeTop->getNumber() > Header->getNumber()) {
117         // Skip over an intervening scope.
118         I = std::next(MachineFunction::iterator(ScopeTop));
119       } else {
120         // We found a scope level at an appropriate depth.
121         Header = ScopeTop;
122         break;
123       }
124     }
125   }
126 
127   // Decide where in Header to put the BLOCK.
128   MachineBasicBlock::iterator InsertPos;
129   MachineLoop *HeaderLoop = MLI.getLoopFor(Header);
130   if (HeaderLoop && MBB.getNumber() > LoopBottom(HeaderLoop)->getNumber()) {
131     // Header is the header of a loop that does not lexically contain MBB, so
132     // the BLOCK needs to be above the LOOP, after any END constructs.
133     InsertPos = Header->begin();
134     while (InsertPos->getOpcode() == WebAssembly::END_BLOCK ||
135            InsertPos->getOpcode() == WebAssembly::END_LOOP)
136       ++InsertPos;
137   } else {
138     // Otherwise, insert the BLOCK as late in Header as we can, but before the
139     // beginning of the local expression tree and any nested BLOCKs.
140     InsertPos = Header->getFirstTerminator();
141     while (InsertPos != Header->begin() &&
142            WebAssembly::isChild(*std::prev(InsertPos), MFI) &&
143            std::prev(InsertPos)->getOpcode() != WebAssembly::LOOP &&
144            std::prev(InsertPos)->getOpcode() != WebAssembly::END_BLOCK &&
145            std::prev(InsertPos)->getOpcode() != WebAssembly::END_LOOP)
146       --InsertPos;
147   }
148   // The header block in which a 'block' mark will be inserted should have a
149   // terminator because it is branching to a non-layout successor.
150   assert(InsertPos != Header->end());
151 
152   // Add the BLOCK.
153   MachineInstr *Begin =
154       BuildMI(*Header, InsertPos, Header->findDebugLoc(InsertPos),
155               TII.get(WebAssembly::BLOCK))
156           .addImm(int64_t(WebAssembly::ExprType::Void));
157 
158   // Mark the end of the block.
159   InsertPos = MBB.begin();
160   while (InsertPos != MBB.end() &&
161          InsertPos->getOpcode() == WebAssembly::END_LOOP &&
162          LoopTops[&*InsertPos]->getParent()->getNumber() >= Header->getNumber())
163     ++InsertPos;
164   MachineInstr *End = BuildMI(MBB, InsertPos, MBB.findPrevDebugLoc(InsertPos),
165                               TII.get(WebAssembly::END_BLOCK));
166   BlockTops[End] = Begin;
167 
168   // Track the farthest-spanning scope that ends at this point.
169   int Number = MBB.getNumber();
170   if (!ScopeTops[Number] ||
171       ScopeTops[Number]->getNumber() > Header->getNumber())
172     ScopeTops[Number] = Header;
173 }
174 
175 /// Insert a LOOP marker for a loop starting at MBB (if it's a loop header).
176 static void PlaceLoopMarker(
177     MachineBasicBlock &MBB, MachineFunction &MF,
178     SmallVectorImpl<MachineBasicBlock *> &ScopeTops,
179     DenseMap<const MachineInstr *, MachineInstr *> &LoopTops,
180     const WebAssemblyInstrInfo &TII, const MachineLoopInfo &MLI) {
181   MachineLoop *Loop = MLI.getLoopFor(&MBB);
182   if (!Loop || Loop->getHeader() != &MBB)
183     return;
184 
185   // The operand of a LOOP is the first block after the loop. If the loop is the
186   // bottom of the function, insert a dummy block at the end.
187   MachineBasicBlock *Bottom = LoopBottom(Loop);
188   auto Iter = std::next(MachineFunction::iterator(Bottom));
189   if (Iter == MF.end()) {
190     MachineBasicBlock *Label = MF.CreateMachineBasicBlock();
191     // Give it a fake predecessor so that AsmPrinter prints its label.
192     Label->addSuccessor(Label);
193     MF.push_back(Label);
194     Iter = std::next(MachineFunction::iterator(Bottom));
195   }
196   MachineBasicBlock *AfterLoop = &*Iter;
197 
198   // Mark the beginning of the loop (after the end of any existing loop that
199   // ends here).
200   auto InsertPos = MBB.begin();
201   while (InsertPos != MBB.end() &&
202          InsertPos->getOpcode() == WebAssembly::END_LOOP)
203     ++InsertPos;
204   MachineInstr *Begin = BuildMI(MBB, InsertPos, MBB.findDebugLoc(InsertPos),
205                                 TII.get(WebAssembly::LOOP))
206                             .addImm(int64_t(WebAssembly::ExprType::Void));
207 
208   // Mark the end of the loop (using arbitrary debug location that branched
209   // to the loop end as its location).
210   DebugLoc EndDL = (*AfterLoop->pred_rbegin())->findBranchDebugLoc();
211   MachineInstr *End = BuildMI(*AfterLoop, AfterLoop->begin(), EndDL,
212                               TII.get(WebAssembly::END_LOOP));
213   LoopTops[End] = Begin;
214 
215   assert((!ScopeTops[AfterLoop->getNumber()] ||
216           ScopeTops[AfterLoop->getNumber()]->getNumber() < MBB.getNumber()) &&
217          "With block sorting the outermost loop for a block should be first.");
218   if (!ScopeTops[AfterLoop->getNumber()])
219     ScopeTops[AfterLoop->getNumber()] = &MBB;
220 }
221 
222 static unsigned
223 GetDepth(const SmallVectorImpl<const MachineBasicBlock *> &Stack,
224          const MachineBasicBlock *MBB) {
225   unsigned Depth = 0;
226   for (auto X : reverse(Stack)) {
227     if (X == MBB)
228       break;
229     ++Depth;
230   }
231   assert(Depth < Stack.size() && "Branch destination should be in scope");
232   return Depth;
233 }
234 
235 /// In normal assembly languages, when the end of a function is unreachable,
236 /// because the function ends in an infinite loop or a noreturn call or similar,
237 /// it isn't necessary to worry about the function return type at the end of
238 /// the function, because it's never reached. However, in WebAssembly, blocks
239 /// that end at the function end need to have a return type signature that
240 /// matches the function signature, even though it's unreachable. This function
241 /// checks for such cases and fixes up the signatures.
242 static void FixEndsAtEndOfFunction(
243     MachineFunction &MF,
244     const WebAssemblyFunctionInfo &MFI,
245     DenseMap<const MachineInstr *, MachineInstr *> &BlockTops,
246     DenseMap<const MachineInstr *, MachineInstr *> &LoopTops) {
247   assert(MFI.getResults().size() <= 1);
248 
249   if (MFI.getResults().empty())
250     return;
251 
252   WebAssembly::ExprType retType;
253   switch (MFI.getResults().front().SimpleTy) {
254   case MVT::i32: retType = WebAssembly::ExprType::I32; break;
255   case MVT::i64: retType = WebAssembly::ExprType::I64; break;
256   case MVT::f32: retType = WebAssembly::ExprType::F32; break;
257   case MVT::f64: retType = WebAssembly::ExprType::F64; break;
258   case MVT::v16i8: retType = WebAssembly::ExprType::I8x16; break;
259   case MVT::v8i16: retType = WebAssembly::ExprType::I16x8; break;
260   case MVT::v4i32: retType = WebAssembly::ExprType::I32x4; break;
261   case MVT::v4f32: retType = WebAssembly::ExprType::F32x4; break;
262   case MVT::ExceptRef: retType = WebAssembly::ExprType::ExceptRef; break;
263   default: llvm_unreachable("unexpected return type");
264   }
265 
266   for (MachineBasicBlock &MBB : reverse(MF)) {
267     for (MachineInstr &MI : reverse(MBB)) {
268       if (MI.isPosition() || MI.isDebugValue())
269         continue;
270       if (MI.getOpcode() == WebAssembly::END_BLOCK) {
271         BlockTops[&MI]->getOperand(0).setImm(int32_t(retType));
272         continue;
273       }
274       if (MI.getOpcode() == WebAssembly::END_LOOP) {
275         LoopTops[&MI]->getOperand(0).setImm(int32_t(retType));
276         continue;
277       }
278       // Something other than an `end`. We're done.
279       return;
280     }
281   }
282 }
283 
284 // WebAssembly functions end with an end instruction, as if the function body
285 // were a block.
286 static void AppendEndToFunction(
287     MachineFunction &MF,
288     const WebAssemblyInstrInfo &TII) {
289   BuildMI(MF.back(), MF.back().end(),
290           MF.back().findPrevDebugLoc(MF.back().end()),
291           TII.get(WebAssembly::END_FUNCTION));
292 }
293 
294 /// Insert LOOP and BLOCK markers at appropriate places.
295 static void PlaceMarkers(MachineFunction &MF, const MachineLoopInfo &MLI,
296                          const WebAssemblyInstrInfo &TII,
297                          MachineDominatorTree &MDT,
298                          WebAssemblyFunctionInfo &MFI) {
299   // For each block whose label represents the end of a scope, record the block
300   // which holds the beginning of the scope. This will allow us to quickly skip
301   // over scoped regions when walking blocks. We allocate one more than the
302   // number of blocks in the function to accommodate for the possible fake block
303   // we may insert at the end.
304   SmallVector<MachineBasicBlock *, 8> ScopeTops(MF.getNumBlockIDs() + 1);
305 
306   // For each LOOP_END, the corresponding LOOP.
307   DenseMap<const MachineInstr *, MachineInstr *> LoopTops;
308 
309   // For each END_BLOCK, the corresponding BLOCK.
310   DenseMap<const MachineInstr *, MachineInstr *> BlockTops;
311 
312   for (auto &MBB : MF) {
313     // Place the LOOP for MBB if MBB is the header of a loop.
314     PlaceLoopMarker(MBB, MF, ScopeTops, LoopTops, TII, MLI);
315 
316     // Place the BLOCK for MBB if MBB is branched to from above.
317     PlaceBlockMarker(MBB, MF, ScopeTops, BlockTops, LoopTops, TII, MLI, MDT, MFI);
318   }
319 
320   // Now rewrite references to basic blocks to be depth immediates.
321   SmallVector<const MachineBasicBlock *, 8> Stack;
322   for (auto &MBB : reverse(MF)) {
323     for (auto &MI : reverse(MBB)) {
324       switch (MI.getOpcode()) {
325       case WebAssembly::BLOCK:
326         assert(ScopeTops[Stack.back()->getNumber()]->getNumber() <= MBB.getNumber() &&
327                "Block should be balanced");
328         Stack.pop_back();
329         break;
330       case WebAssembly::LOOP:
331         assert(Stack.back() == &MBB && "Loop top should be balanced");
332         Stack.pop_back();
333         break;
334       case WebAssembly::END_BLOCK:
335         Stack.push_back(&MBB);
336         break;
337       case WebAssembly::END_LOOP:
338         Stack.push_back(LoopTops[&MI]->getParent());
339         break;
340       default:
341         if (MI.isTerminator()) {
342           // Rewrite MBB operands to be depth immediates.
343           SmallVector<MachineOperand, 4> Ops(MI.operands());
344           while (MI.getNumOperands() > 0)
345             MI.RemoveOperand(MI.getNumOperands() - 1);
346           for (auto MO : Ops) {
347             if (MO.isMBB())
348               MO = MachineOperand::CreateImm(GetDepth(Stack, MO.getMBB()));
349             MI.addOperand(MF, MO);
350           }
351         }
352         break;
353       }
354     }
355   }
356   assert(Stack.empty() && "Control flow should be balanced");
357 
358   // Fix up block/loop signatures at the end of the function to conform to
359   // WebAssembly's rules.
360   FixEndsAtEndOfFunction(MF, MFI, BlockTops, LoopTops);
361 
362   // Add an end instruction at the end of the function body.
363   if (!MF.getSubtarget<WebAssemblySubtarget>()
364         .getTargetTriple().isOSBinFormatELF())
365     AppendEndToFunction(MF, TII);
366 }
367 
368 bool WebAssemblyCFGStackify::runOnMachineFunction(MachineFunction &MF) {
369   DEBUG(dbgs() << "********** CFG Stackifying **********\n"
370                   "********** Function: "
371                << MF.getName() << '\n');
372 
373   const auto &MLI = getAnalysis<MachineLoopInfo>();
374   auto &MDT = getAnalysis<MachineDominatorTree>();
375   // Liveness is not tracked for VALUE_STACK physreg.
376   const auto &TII = *MF.getSubtarget<WebAssemblySubtarget>().getInstrInfo();
377   WebAssemblyFunctionInfo &MFI = *MF.getInfo<WebAssemblyFunctionInfo>();
378   MF.getRegInfo().invalidateLiveness();
379 
380   // Place the BLOCK and LOOP markers to indicate the beginnings of scopes.
381   PlaceMarkers(MF, MLI, TII, MDT, MFI);
382 
383   return true;
384 }
385