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Dan Gohmand7a2eea2016-03-09 02:01:14 +00001//=- WebAssemblyFixIrreducibleControlFlow.cpp - Fix irreducible control flow -//
2//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4// See https://llvm.org/LICENSE.txt for license information.
5// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
Dan Gohmand7a2eea2016-03-09 02:01:14 +00006//
7//===----------------------------------------------------------------------===//
8///
9/// \file
Heejin Ahna41250c2019-03-16 03:00:19 +000010/// This file implements a pass that removes irreducible control flow.
11/// Irreducible control flow means multiple-entry loops, which this pass
12/// transforms to have a single entry.
Dan Gohmand7a2eea2016-03-09 02:01:14 +000013///
Dan Gohmanddfa1a62016-03-09 04:17:36 +000014/// Note that LLVM has a generic pass that lowers irreducible control flow, but
15/// it linearizes control flow, turning diamonds into two triangles, which is
16/// both unnecessary and undesirable for WebAssembly.
17///
Heejin Ahna41250c2019-03-16 03:00:19 +000018/// The big picture: We recursively process each "region", defined as a group
19/// of blocks with a single entry and no branches back to that entry. A region
20/// may be the entire function body, or the inner part of a loop, i.e., the
21/// loop's body without branches back to the loop entry. In each region we fix
22/// up multi-entry loops by adding a new block that can dispatch to each of the
23/// loop entries, based on the value of a label "helper" variable, and we
24/// replace direct branches to the entries with assignments to the label
25/// variable and a branch to the dispatch block. Then the dispatch block is the
26/// single entry in the loop containing the previous multiple entries. After
27/// ensuring all the loops in a region are reducible, we recurse into them. The
28/// total time complexity of this pass is:
Alon Zakaie9e01cc2019-03-27 20:12:42 +000029///
Heejin Ahna41250c2019-03-16 03:00:19 +000030/// O(NumBlocks * NumNestedLoops * NumIrreducibleLoops +
31/// NumLoops * NumLoops)
Heejin Ahn777d01c2019-01-03 23:10:11 +000032///
Heejin Ahna41250c2019-03-16 03:00:19 +000033/// This pass is similar to what the Relooper [1] does. Both identify looping
34/// code that requires multiple entries, and resolve it in a similar way (in
35/// Relooper terminology, we implement a Multiple shape in a Loop shape). Note
Heejin Ahn777d01c2019-01-03 23:10:11 +000036/// also that like the Relooper, we implement a "minimal" intervention: we only
37/// use the "label" helper for the blocks we absolutely must and no others. We
Heejin Ahna41250c2019-03-16 03:00:19 +000038/// also prioritize code size and do not duplicate code in order to resolve
39/// irreducibility. The graph algorithms for finding loops and entries and so
40/// forth are also similar to the Relooper. The main differences between this
41/// pass and the Relooper are:
Alon Zakaie9e01cc2019-03-27 20:12:42 +000042///
Heejin Ahna41250c2019-03-16 03:00:19 +000043/// * We just care about irreducibility, so we just look at loops.
44/// * The Relooper emits structured control flow (with ifs etc.), while we
45/// emit a CFG.
Heejin Ahn777d01c2019-01-03 23:10:11 +000046///
47/// [1] Alon Zakai. 2011. Emscripten: an LLVM-to-JavaScript compiler. In
48/// Proceedings of the ACM international conference companion on Object oriented
49/// programming systems languages and applications companion (SPLASH '11). ACM,
50/// New York, NY, USA, 301-312. DOI=10.1145/2048147.2048224
51/// http://doi.acm.org/10.1145/2048147.2048224
Dan Gohmand7a2eea2016-03-09 02:01:14 +000052///
53//===----------------------------------------------------------------------===//
54
Dan Gohmand7a2eea2016-03-09 02:01:14 +000055#include "MCTargetDesc/WebAssemblyMCTargetDesc.h"
Chandler Carruth6bda14b2017-06-06 11:49:48 +000056#include "WebAssembly.h"
Dan Gohmand7a2eea2016-03-09 02:01:14 +000057#include "WebAssemblySubtarget.h"
Dan Gohmand7a2eea2016-03-09 02:01:14 +000058#include "llvm/CodeGen/MachineInstrBuilder.h"
Dan Gohmand7a2eea2016-03-09 02:01:14 +000059using namespace llvm;
60
61#define DEBUG_TYPE "wasm-fix-irreducible-control-flow"
62
63namespace {
Dan Gohmand7a2eea2016-03-09 02:01:14 +000064
Heejin Ahna41250c2019-03-16 03:00:19 +000065using BlockVector = SmallVector<MachineBasicBlock *, 4>;
66using BlockSet = SmallPtrSet<MachineBasicBlock *, 4>;
Dan Gohmand7a2eea2016-03-09 02:01:14 +000067
Heejin Ahna41250c2019-03-16 03:00:19 +000068// Calculates reachability in a region. Ignores branches to blocks outside of
69// the region, and ignores branches to the region entry (for the case where
70// the region is the inner part of a loop).
71class ReachabilityGraph {
72public:
73 ReachabilityGraph(MachineBasicBlock *Entry, const BlockSet &Blocks)
74 : Entry(Entry), Blocks(Blocks) {
75#ifndef NDEBUG
76 // The region must have a single entry.
77 for (auto *MBB : Blocks) {
78 if (MBB != Entry) {
79 for (auto *Pred : MBB->predecessors()) {
80 assert(inRegion(Pred));
81 }
82 }
83 }
84#endif
85 calculate();
86 }
87
Heejin Ahnc60bc942019-03-19 05:26:33 +000088 bool canReach(MachineBasicBlock *From, MachineBasicBlock *To) const {
Heejin Ahna41250c2019-03-16 03:00:19 +000089 assert(inRegion(From) && inRegion(To));
Heejin Ahnc60bc942019-03-19 05:26:33 +000090 auto I = Reachable.find(From);
91 if (I == Reachable.end())
92 return false;
93 return I->second.count(To);
Heejin Ahna41250c2019-03-16 03:00:19 +000094 }
95
96 // "Loopers" are blocks that are in a loop. We detect these by finding blocks
97 // that can reach themselves.
Heejin Ahnc60bc942019-03-19 05:26:33 +000098 const BlockSet &getLoopers() const { return Loopers; }
Heejin Ahna41250c2019-03-16 03:00:19 +000099
100 // Get all blocks that are loop entries.
Heejin Ahnc60bc942019-03-19 05:26:33 +0000101 const BlockSet &getLoopEntries() const { return LoopEntries; }
Heejin Ahna41250c2019-03-16 03:00:19 +0000102
103 // Get all blocks that enter a particular loop from outside.
Heejin Ahnc60bc942019-03-19 05:26:33 +0000104 const BlockSet &getLoopEnterers(MachineBasicBlock *LoopEntry) const {
Heejin Ahna41250c2019-03-16 03:00:19 +0000105 assert(inRegion(LoopEntry));
Heejin Ahnc60bc942019-03-19 05:26:33 +0000106 auto I = LoopEnterers.find(LoopEntry);
107 assert(I != LoopEnterers.end());
108 return I->second;
Heejin Ahna41250c2019-03-16 03:00:19 +0000109 }
Jacob Gravelle40926452018-03-30 20:36:58 +0000110
Heejin Ahn777d01c2019-01-03 23:10:11 +0000111private:
Heejin Ahna41250c2019-03-16 03:00:19 +0000112 MachineBasicBlock *Entry;
113 const BlockSet &Blocks;
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000114
Heejin Ahna41250c2019-03-16 03:00:19 +0000115 BlockSet Loopers, LoopEntries;
116 DenseMap<MachineBasicBlock *, BlockSet> LoopEnterers;
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000117
Heejin Ahnc60bc942019-03-19 05:26:33 +0000118 bool inRegion(MachineBasicBlock *MBB) const { return Blocks.count(MBB); }
Heejin Ahna41250c2019-03-16 03:00:19 +0000119
120 // Maps a block to all the other blocks it can reach.
Heejin Ahn777d01c2019-01-03 23:10:11 +0000121 DenseMap<MachineBasicBlock *, BlockSet> Reachable;
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000122
Heejin Ahna41250c2019-03-16 03:00:19 +0000123 void calculate() {
124 // Reachability computation work list. Contains pairs of recent additions
125 // (A, B) where we just added a link A => B.
126 using BlockPair = std::pair<MachineBasicBlock *, MachineBasicBlock *>;
127 SmallVector<BlockPair, 4> WorkList;
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000128
Heejin Ahna41250c2019-03-16 03:00:19 +0000129 // Add all relevant direct branches.
130 for (auto *MBB : Blocks) {
131 for (auto *Succ : MBB->successors()) {
132 if (Succ != Entry && inRegion(Succ)) {
133 Reachable[MBB].insert(Succ);
134 WorkList.emplace_back(MBB, Succ);
135 }
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000136 }
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000137 }
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000138
Heejin Ahna41250c2019-03-16 03:00:19 +0000139 while (!WorkList.empty()) {
140 MachineBasicBlock *MBB, *Succ;
141 std::tie(MBB, Succ) = WorkList.pop_back_val();
142 assert(inRegion(MBB) && Succ != Entry && inRegion(Succ));
143 if (MBB != Entry) {
144 // We recently added MBB => Succ, and that means we may have enabled
145 // Pred => MBB => Succ.
146 for (auto *Pred : MBB->predecessors()) {
147 if (Reachable[Pred].insert(Succ).second) {
148 WorkList.emplace_back(Pred, Succ);
149 }
150 }
151 }
Heejin Ahn777d01c2019-01-03 23:10:11 +0000152 }
Heejin Ahn777d01c2019-01-03 23:10:11 +0000153
Heejin Ahna41250c2019-03-16 03:00:19 +0000154 // Blocks that can return to themselves are in a loop.
155 for (auto *MBB : Blocks) {
156 if (canReach(MBB, MBB)) {
157 Loopers.insert(MBB);
158 }
159 }
160 assert(!Loopers.count(Entry));
161
162 // Find the loop entries - loopers reachable from blocks not in that loop -
163 // and those outside blocks that reach them, the "loop enterers".
164 for (auto *Looper : Loopers) {
165 for (auto *Pred : Looper->predecessors()) {
166 // Pred can reach Looper. If Looper can reach Pred, it is in the loop;
167 // otherwise, it is a block that enters into the loop.
168 if (!canReach(Looper, Pred)) {
169 LoopEntries.insert(Looper);
170 LoopEnterers[Looper].insert(Pred);
171 }
Heejin Ahn777d01c2019-01-03 23:10:11 +0000172 }
173 }
174 }
175};
176
Heejin Ahna41250c2019-03-16 03:00:19 +0000177// Finds the blocks in a single-entry loop, given the loop entry and the
178// list of blocks that enter the loop.
179class LoopBlocks {
180public:
181 LoopBlocks(MachineBasicBlock *Entry, const BlockSet &Enterers)
182 : Entry(Entry), Enterers(Enterers) {
183 calculate();
Heejin Ahn777d01c2019-01-03 23:10:11 +0000184 }
185
Heejin Ahna41250c2019-03-16 03:00:19 +0000186 BlockSet &getBlocks() { return Blocks; }
Heejin Ahn777d01c2019-01-03 23:10:11 +0000187
Heejin Ahna41250c2019-03-16 03:00:19 +0000188private:
189 MachineBasicBlock *Entry;
190 const BlockSet &Enterers;
Heejin Ahn777d01c2019-01-03 23:10:11 +0000191
Heejin Ahna41250c2019-03-16 03:00:19 +0000192 BlockSet Blocks;
193
194 void calculate() {
195 // Going backwards from the loop entry, if we ignore the blocks entering
196 // from outside, we will traverse all the blocks in the loop.
197 BlockVector WorkList;
198 BlockSet AddedToWorkList;
199 Blocks.insert(Entry);
200 for (auto *Pred : Entry->predecessors()) {
201 if (!Enterers.count(Pred)) {
202 WorkList.push_back(Pred);
203 AddedToWorkList.insert(Pred);
Heejin Ahn777d01c2019-01-03 23:10:11 +0000204 }
Heejin Ahna41250c2019-03-16 03:00:19 +0000205 }
206
207 while (!WorkList.empty()) {
208 auto *MBB = WorkList.pop_back_val();
209 assert(!Enterers.count(MBB));
210 if (Blocks.insert(MBB).second) {
211 for (auto *Pred : MBB->predecessors()) {
212 if (!AddedToWorkList.count(Pred)) {
213 WorkList.push_back(Pred);
214 AddedToWorkList.insert(Pred);
215 }
216 }
Heejin Ahn777d01c2019-01-03 23:10:11 +0000217 }
218 }
219 }
Heejin Ahna41250c2019-03-16 03:00:19 +0000220};
Heejin Ahn777d01c2019-01-03 23:10:11 +0000221
Heejin Ahna41250c2019-03-16 03:00:19 +0000222class WebAssemblyFixIrreducibleControlFlow final : public MachineFunctionPass {
223 StringRef getPassName() const override {
224 return "WebAssembly Fix Irreducible Control Flow";
225 }
226
227 bool runOnMachineFunction(MachineFunction &MF) override;
228
229 bool processRegion(MachineBasicBlock *Entry, BlockSet &Blocks,
230 MachineFunction &MF);
231
232 void makeSingleEntryLoop(BlockSet &Entries, BlockSet &Blocks,
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000233 MachineFunction &MF, const ReachabilityGraph &Graph);
Heejin Ahna41250c2019-03-16 03:00:19 +0000234
235public:
236 static char ID; // Pass identification, replacement for typeid
237 WebAssemblyFixIrreducibleControlFlow() : MachineFunctionPass(ID) {}
238};
239
240bool WebAssemblyFixIrreducibleControlFlow::processRegion(
241 MachineBasicBlock *Entry, BlockSet &Blocks, MachineFunction &MF) {
242 bool Changed = false;
243
244 // Remove irreducibility before processing child loops, which may take
245 // multiple iterations.
246 while (true) {
247 ReachabilityGraph Graph(Entry, Blocks);
248
249 bool FoundIrreducibility = false;
250
251 for (auto *LoopEntry : Graph.getLoopEntries()) {
252 // Find mutual entries - all entries which can reach this one, and
253 // are reached by it (that always includes LoopEntry itself). All mutual
254 // entries must be in the same loop, so if we have more than one, then we
255 // have irreducible control flow.
256 //
257 // Note that irreducibility may involve inner loops, e.g. imagine A
258 // starts one loop, and it has B inside it which starts an inner loop.
259 // If we add a branch from all the way on the outside to B, then in a
260 // sense B is no longer an "inner" loop, semantically speaking. We will
261 // fix that irreducibility by adding a block that dispatches to either
262 // either A or B, so B will no longer be an inner loop in our output.
263 // (A fancier approach might try to keep it as such.)
264 //
265 // Note that we still need to recurse into inner loops later, to handle
266 // the case where the irreducibility is entirely nested - we would not
267 // be able to identify that at this point, since the enclosing loop is
268 // a group of blocks all of whom can reach each other. (We'll see the
269 // irreducibility after removing branches to the top of that enclosing
270 // loop.)
271 BlockSet MutualLoopEntries;
272 MutualLoopEntries.insert(LoopEntry);
273 for (auto *OtherLoopEntry : Graph.getLoopEntries()) {
274 if (OtherLoopEntry != LoopEntry &&
275 Graph.canReach(LoopEntry, OtherLoopEntry) &&
276 Graph.canReach(OtherLoopEntry, LoopEntry)) {
277 MutualLoopEntries.insert(OtherLoopEntry);
278 }
Heejin Ahn777d01c2019-01-03 23:10:11 +0000279 }
Heejin Ahn777d01c2019-01-03 23:10:11 +0000280
Heejin Ahna41250c2019-03-16 03:00:19 +0000281 if (MutualLoopEntries.size() > 1) {
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000282 makeSingleEntryLoop(MutualLoopEntries, Blocks, MF, Graph);
Heejin Ahna41250c2019-03-16 03:00:19 +0000283 FoundIrreducibility = true;
284 Changed = true;
Heejin Ahn777d01c2019-01-03 23:10:11 +0000285 break;
286 }
287 }
Heejin Ahna41250c2019-03-16 03:00:19 +0000288 // Only go on to actually process the inner loops when we are done
289 // removing irreducible control flow and changing the graph. Modifying
290 // the graph as we go is possible, and that might let us avoid looking at
291 // the already-fixed loops again if we are careful, but all that is
292 // complex and bug-prone. Since irreducible loops are rare, just starting
293 // another iteration is best.
294 if (FoundIrreducibility) {
295 continue;
296 }
Heejin Ahn777d01c2019-01-03 23:10:11 +0000297
Heejin Ahna41250c2019-03-16 03:00:19 +0000298 for (auto *LoopEntry : Graph.getLoopEntries()) {
299 LoopBlocks InnerBlocks(LoopEntry, Graph.getLoopEnterers(LoopEntry));
300 // Each of these calls to processRegion may change the graph, but are
301 // guaranteed not to interfere with each other. The only changes we make
302 // to the graph are to add blocks on the way to a loop entry. As the
303 // loops are disjoint, that means we may only alter branches that exit
304 // another loop, which are ignored when recursing into that other loop
305 // anyhow.
306 if (processRegion(LoopEntry, InnerBlocks.getBlocks(), MF)) {
307 Changed = true;
308 }
309 }
310
311 return Changed;
312 }
313}
314
315// Given a set of entries to a single loop, create a single entry for that
316// loop by creating a dispatch block for them, routing control flow using
317// a helper variable. Also updates Blocks with any new blocks created, so
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000318// that we properly track all the blocks in the region. But this does not update
319// ReachabilityGraph; this will be updated in the caller of this function as
320// needed.
Heejin Ahna41250c2019-03-16 03:00:19 +0000321void WebAssemblyFixIrreducibleControlFlow::makeSingleEntryLoop(
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000322 BlockSet &Entries, BlockSet &Blocks, MachineFunction &MF,
323 const ReachabilityGraph &Graph) {
Heejin Ahna41250c2019-03-16 03:00:19 +0000324 assert(Entries.size() >= 2);
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000325
Heejin Ahn777d01c2019-01-03 23:10:11 +0000326 // Sort the entries to ensure a deterministic build.
Heejin Ahna41250c2019-03-16 03:00:19 +0000327 BlockVector SortedEntries(Entries.begin(), Entries.end());
Heejin Ahn777d01c2019-01-03 23:10:11 +0000328 llvm::sort(SortedEntries,
329 [&](const MachineBasicBlock *A, const MachineBasicBlock *B) {
330 auto ANum = A->getNumber();
331 auto BNum = B->getNumber();
Heejin Ahn777d01c2019-01-03 23:10:11 +0000332 return ANum < BNum;
333 });
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000334
Richard Trieue1fef942019-01-04 06:49:24 +0000335#ifndef NDEBUG
336 for (auto Block : SortedEntries)
337 assert(Block->getNumber() != -1);
338 if (SortedEntries.size() > 1) {
Heejin Ahna41250c2019-03-16 03:00:19 +0000339 for (auto I = SortedEntries.begin(), E = SortedEntries.end() - 1; I != E;
340 ++I) {
Richard Trieue1fef942019-01-04 06:49:24 +0000341 auto ANum = (*I)->getNumber();
342 auto BNum = (*(std::next(I)))->getNumber();
343 assert(ANum != BNum);
344 }
345 }
346#endif
347
Heejin Ahn777d01c2019-01-03 23:10:11 +0000348 // Create a dispatch block which will contain a jump table to the entries.
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000349 MachineBasicBlock *Dispatch = MF.CreateMachineBasicBlock();
350 MF.insert(MF.end(), Dispatch);
Heejin Ahna41250c2019-03-16 03:00:19 +0000351 Blocks.insert(Dispatch);
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000352
353 // Add the jump table.
354 const auto &TII = *MF.getSubtarget<WebAssemblySubtarget>().getInstrInfo();
Heejin Ahnc60bc942019-03-19 05:26:33 +0000355 MachineInstrBuilder MIB =
356 BuildMI(Dispatch, DebugLoc(), TII.get(WebAssembly::BR_TABLE_I32));
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000357
358 // Add the register which will be used to tell the jump table which block to
359 // jump to.
360 MachineRegisterInfo &MRI = MF.getRegInfo();
361 unsigned Reg = MRI.createVirtualRegister(&WebAssembly::I32RegClass);
362 MIB.addReg(Reg);
363
Heejin Ahn777d01c2019-01-03 23:10:11 +0000364 // Compute the indices in the superheader, one for each bad block, and
365 // add them as successors.
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000366 DenseMap<MachineBasicBlock *, unsigned> Indices;
Heejin Ahna41250c2019-03-16 03:00:19 +0000367 for (auto *Entry : SortedEntries) {
368 auto Pair = Indices.insert(std::make_pair(Entry, 0));
369 assert(Pair.second);
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000370
Dan Gohmanf4562902016-04-26 01:40:56 +0000371 unsigned Index = MIB.getInstr()->getNumExplicitOperands() - 1;
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000372 Pair.first->second = Index;
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000373
Heejin Ahna41250c2019-03-16 03:00:19 +0000374 MIB.addMBB(Entry);
375 Dispatch->addSuccessor(Entry);
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000376 }
377
Heejin Ahna41250c2019-03-16 03:00:19 +0000378 // Rewrite the problematic successors for every block that wants to reach
379 // the bad blocks. For simplicity, we just introduce a new block for every
380 // edge we need to rewrite. (Fancier things are possible.)
Heejin Ahn777d01c2019-01-03 23:10:11 +0000381
Heejin Ahna41250c2019-03-16 03:00:19 +0000382 BlockVector AllPreds;
383 for (auto *Entry : SortedEntries) {
384 for (auto *Pred : Entry->predecessors()) {
Heejin Ahn777d01c2019-01-03 23:10:11 +0000385 if (Pred != Dispatch) {
386 AllPreds.push_back(Pred);
387 }
388 }
389 }
390
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000391 // This set stores predecessors within this loop.
392 DenseSet<MachineBasicBlock *> InLoop;
393 for (auto *Pred : AllPreds) {
Heejin Ahna41250c2019-03-16 03:00:19 +0000394 for (auto *Entry : Pred->successors()) {
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000395 if (!Entries.count(Entry))
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000396 continue;
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000397 if (Graph.canReach(Entry, Pred)) {
398 InLoop.insert(Pred);
399 break;
Heejin Ahn777d01c2019-01-03 23:10:11 +0000400 }
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000401 }
402 }
403
404 // Record if each entry has a layout predecessor. This map stores
405 // <<Predecessor is within the loop?, loop entry>, layout predecessor>
406 std::map<std::pair<bool, MachineBasicBlock *>, MachineBasicBlock *>
407 EntryToLayoutPred;
408 for (auto *Pred : AllPreds)
409 for (auto *Entry : Pred->successors())
410 if (Entries.count(Entry) && Pred->isLayoutSuccessor(Entry))
411 EntryToLayoutPred[std::make_pair(InLoop.count(Pred), Entry)] = Pred;
412
413 // We need to create at most two routing blocks per entry: one for
414 // predecessors outside the loop and one for predecessors inside the loop.
415 // This map stores
416 // <<Predecessor is within the loop?, loop entry>, routing block>
417 std::map<std::pair<bool, MachineBasicBlock *>, MachineBasicBlock *> Map;
418 for (auto *Pred : AllPreds) {
419 bool PredInLoop = InLoop.count(Pred);
420 for (auto *Entry : Pred->successors()) {
421 if (!Entries.count(Entry) ||
422 Map.count(std::make_pair(InLoop.count(Pred), Entry)))
423 continue;
424 // If there exists a layout predecessor of this entry and this predecessor
425 // is not that, we rather create a routing block after that layout
426 // predecessor to save a branch.
427 if (EntryToLayoutPred.count(std::make_pair(PredInLoop, Entry)) &&
428 EntryToLayoutPred[std::make_pair(PredInLoop, Entry)] != Pred)
429 continue;
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000430
Heejin Ahn777d01c2019-01-03 23:10:11 +0000431 // This is a successor we need to rewrite.
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000432 MachineBasicBlock *Routing = MF.CreateMachineBasicBlock();
Heejin Ahna41250c2019-03-16 03:00:19 +0000433 MF.insert(Pred->isLayoutSuccessor(Entry)
434 ? MachineFunction::iterator(Entry)
435 : MF.end(),
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000436 Routing);
437 Blocks.insert(Routing);
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000438
439 // Set the jump table's register of the index of the block we wish to
440 // jump to, and jump to the jump table.
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000441 BuildMI(Routing, DebugLoc(), TII.get(WebAssembly::CONST_I32), Reg)
Heejin Ahna41250c2019-03-16 03:00:19 +0000442 .addImm(Indices[Entry]);
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000443 BuildMI(Routing, DebugLoc(), TII.get(WebAssembly::BR)).addMBB(Dispatch);
444 Routing->addSuccessor(Dispatch);
445 Map[std::make_pair(PredInLoop, Entry)] = Routing;
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000446 }
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000447 }
448
449 for (auto *Pred : AllPreds) {
450 bool PredInLoop = InLoop.count(Pred);
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000451 // Remap the terminator operands and the successor list.
Heejin Ahna41250c2019-03-16 03:00:19 +0000452 for (MachineInstr &Term : Pred->terminators())
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000453 for (auto &Op : Term.explicit_uses())
454 if (Op.isMBB() && Indices.count(Op.getMBB()))
Heejin Ahn7e7aad12019-03-30 01:31:11 +0000455 Op.setMBB(Map[std::make_pair(PredInLoop, Op.getMBB())]);
456
457 for (auto *Succ : Pred->successors()) {
458 if (!Entries.count(Succ))
459 continue;
460 auto *Routing = Map[std::make_pair(PredInLoop, Succ)];
461 Pred->replaceSuccessor(Succ, Routing);
462 }
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000463 }
464
465 // Create a fake default label, because br_table requires one.
466 MIB.addMBB(MIB.getInstr()
467 ->getOperand(MIB.getInstr()->getNumExplicitOperands() - 1)
468 .getMBB());
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000469}
470
Heejin Ahn777d01c2019-01-03 23:10:11 +0000471} // end anonymous namespace
472
473char WebAssemblyFixIrreducibleControlFlow::ID = 0;
474INITIALIZE_PASS(WebAssemblyFixIrreducibleControlFlow, DEBUG_TYPE,
475 "Removes irreducible control flow", false, false)
476
477FunctionPass *llvm::createWebAssemblyFixIrreducibleControlFlow() {
478 return new WebAssemblyFixIrreducibleControlFlow();
479}
480
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000481bool WebAssemblyFixIrreducibleControlFlow::runOnMachineFunction(
482 MachineFunction &MF) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000483 LLVM_DEBUG(dbgs() << "********** Fixing Irreducible Control Flow **********\n"
484 "********** Function: "
485 << MF.getName() << '\n');
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000486
Heejin Ahna41250c2019-03-16 03:00:19 +0000487 // Start the recursive process on the entire function body.
488 BlockSet AllBlocks;
489 for (auto &MBB : MF) {
490 AllBlocks.insert(&MBB);
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000491 }
492
Heejin Ahna41250c2019-03-16 03:00:19 +0000493 if (LLVM_UNLIKELY(processRegion(&*MF.begin(), AllBlocks, MF))) {
494 // We rewrote part of the function; recompute relevant things.
495 MF.getRegInfo().invalidateLiveness();
496 MF.RenumberBlocks();
497 return true;
498 }
499
500 return false;
Dan Gohmand7a2eea2016-03-09 02:01:14 +0000501}