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Chandler Carruth10281422011-10-21 06:46:38 +00001//===-- MachineBlockPlacement.cpp - Basic Block Code Layout optimization --===//
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//
Chandler Carruthbd1be4d2011-10-23 09:18:45 +000010// This file implements basic block placement transformations using the CFG
11// structure and branch probability estimates.
Chandler Carruth10281422011-10-21 06:46:38 +000012//
Chandler Carruthbd1be4d2011-10-23 09:18:45 +000013// The pass strives to preserve the structure of the CFG (that is, retain
Benjamin Kramerbde91762012-06-02 10:20:22 +000014// a topological ordering of basic blocks) in the absence of a *strong* signal
Chandler Carruthbd1be4d2011-10-23 09:18:45 +000015// to the contrary from probabilities. However, within the CFG structure, it
16// attempts to choose an ordering which favors placing more likely sequences of
17// blocks adjacent to each other.
18//
19// The algorithm works from the inner-most loop within a function outward, and
20// at each stage walks through the basic blocks, trying to coalesce them into
21// sequential chains where allowed by the CFG (or demanded by heavy
22// probabilities). Finally, it walks the blocks in topological order, and the
23// first time it reaches a chain of basic blocks, it schedules them in the
24// function in-order.
Chandler Carruth10281422011-10-21 06:46:38 +000025//
26//===----------------------------------------------------------------------===//
27
Chandler Carruthed0881b2012-12-03 16:50:05 +000028#include "llvm/CodeGen/Passes.h"
Haicheng Wu5b458cc2016-06-09 15:24:29 +000029#include "llvm/CodeGen/TargetPassConfig.h"
30#include "BranchFolding.h"
Chandler Carruthed0881b2012-12-03 16:50:05 +000031#include "llvm/ADT/DenseMap.h"
32#include "llvm/ADT/SmallPtrSet.h"
33#include "llvm/ADT/SmallVector.h"
34#include "llvm/ADT/Statistic.h"
Chandler Carruth8b9737c2011-10-21 08:57:37 +000035#include "llvm/CodeGen/MachineBasicBlock.h"
Chandler Carruth10281422011-10-21 06:46:38 +000036#include "llvm/CodeGen/MachineBlockFrequencyInfo.h"
37#include "llvm/CodeGen/MachineBranchProbabilityInfo.h"
Daniel Jasper471e8562015-03-04 11:05:34 +000038#include "llvm/CodeGen/MachineDominators.h"
Chandler Carruth10281422011-10-21 06:46:38 +000039#include "llvm/CodeGen/MachineFunction.h"
Chandler Carruth10281422011-10-21 06:46:38 +000040#include "llvm/CodeGen/MachineFunctionPass.h"
Chandler Carruth8b9737c2011-10-21 08:57:37 +000041#include "llvm/CodeGen/MachineLoopInfo.h"
42#include "llvm/CodeGen/MachineModuleInfo.h"
Chandler Carruth10281422011-10-21 06:46:38 +000043#include "llvm/Support/Allocator.h"
Nadav Rotemc3b0f502013-04-12 00:48:32 +000044#include "llvm/Support/CommandLine.h"
Chandler Carruthbd1be4d2011-10-23 09:18:45 +000045#include "llvm/Support/Debug.h"
Benjamin Kramer799003b2015-03-23 19:32:43 +000046#include "llvm/Support/raw_ostream.h"
Chandler Carruth10281422011-10-21 06:46:38 +000047#include "llvm/Target/TargetInstrInfo.h"
Chandler Carruth8b9737c2011-10-21 08:57:37 +000048#include "llvm/Target/TargetLowering.h"
Eric Christopherd9134482014-08-04 21:25:23 +000049#include "llvm/Target/TargetSubtargetInfo.h"
Chandler Carruth10281422011-10-21 06:46:38 +000050#include <algorithm>
51using namespace llvm;
52
Chandler Carruthd0dced52015-03-05 02:28:25 +000053#define DEBUG_TYPE "block-placement"
Chandler Carruth1b9dde02014-04-22 02:02:50 +000054
Chandler Carruthae4e8002011-11-02 07:17:12 +000055STATISTIC(NumCondBranches, "Number of conditional branches");
Craig Topper77ec0772015-09-16 03:52:32 +000056STATISTIC(NumUncondBranches, "Number of unconditional branches");
Chandler Carruthae4e8002011-11-02 07:17:12 +000057STATISTIC(CondBranchTakenFreq,
58 "Potential frequency of taking conditional branches");
59STATISTIC(UncondBranchTakenFreq,
60 "Potential frequency of taking unconditional branches");
61
Nadav Rotemc3b0f502013-04-12 00:48:32 +000062static cl::opt<unsigned> AlignAllBlock("align-all-blocks",
63 cl::desc("Force the alignment of all "
64 "blocks in the function."),
65 cl::init(0), cl::Hidden);
66
Geoff Berry10494ac2016-01-21 17:25:52 +000067static cl::opt<unsigned> AlignAllNonFallThruBlocks(
68 "align-all-nofallthru-blocks",
69 cl::desc("Force the alignment of all "
70 "blocks that have no fall-through predecessors (i.e. don't add "
71 "nops that are executed)."),
72 cl::init(0), cl::Hidden);
73
Benjamin Kramerc8160d62013-11-20 19:08:44 +000074// FIXME: Find a good default for this flag and remove the flag.
Chandler Carruth2fc3fe12015-03-05 02:35:31 +000075static cl::opt<unsigned> ExitBlockBias(
76 "block-placement-exit-block-bias",
77 cl::desc("Block frequency percentage a loop exit block needs "
78 "over the original exit to be considered the new exit."),
79 cl::init(0), cl::Hidden);
Benjamin Kramerc8160d62013-11-20 19:08:44 +000080
Daniel Jasper471e8562015-03-04 11:05:34 +000081static cl::opt<bool> OutlineOptionalBranches(
82 "outline-optional-branches",
83 cl::desc("Put completely optional branches, i.e. branches with a common "
84 "post dominator, out of line."),
85 cl::init(false), cl::Hidden);
86
Daniel Jasper214997c2015-03-20 10:00:37 +000087static cl::opt<unsigned> OutlineOptionalThreshold(
88 "outline-optional-threshold",
89 cl::desc("Don't outline optional branches that are a single block with an "
90 "instruction count below this threshold"),
91 cl::init(4), cl::Hidden);
92
Cong Houb90b9e02015-11-02 21:24:00 +000093static cl::opt<unsigned> LoopToColdBlockRatio(
94 "loop-to-cold-block-ratio",
95 cl::desc("Outline loop blocks from loop chain if (frequency of loop) / "
96 "(frequency of block) is greater than this ratio"),
97 cl::init(5), cl::Hidden);
98
Cong Hou7745dbc2015-10-19 23:16:40 +000099static cl::opt<bool>
100 PreciseRotationCost("precise-rotation-cost",
101 cl::desc("Model the cost of loop rotation more "
102 "precisely by using profile data."),
103 cl::init(false), cl::Hidden);
Xinliang David Lif0ab6df2016-05-12 02:04:41 +0000104static cl::opt<bool>
105 ForcePreciseRotationCost("force-precise-rotation-cost",
Xinliang David Lib840bb82016-05-12 16:39:02 +0000106 cl::desc("Force the use of precise cost "
107 "loop rotation strategy."),
Xinliang David Lif0ab6df2016-05-12 02:04:41 +0000108 cl::init(false), cl::Hidden);
Cong Hou7745dbc2015-10-19 23:16:40 +0000109
110static cl::opt<unsigned> MisfetchCost(
111 "misfetch-cost",
112 cl::desc("Cost that models the probablistic risk of an instruction "
113 "misfetch due to a jump comparing to falling through, whose cost "
114 "is zero."),
115 cl::init(1), cl::Hidden);
116
117static cl::opt<unsigned> JumpInstCost("jump-inst-cost",
118 cl::desc("Cost of jump instructions."),
119 cl::init(1), cl::Hidden);
120
Haicheng Wu5b458cc2016-06-09 15:24:29 +0000121static cl::opt<bool>
122BranchFoldPlacement("branch-fold-placement",
123 cl::desc("Perform branch folding during placement. "
124 "Reduces code size."),
125 cl::init(true), cl::Hidden);
126
Xinliang David Liff287372016-06-03 23:48:36 +0000127extern cl::opt<unsigned> StaticLikelyProb;
Dehao Chen9f2bdfb2016-06-14 22:27:17 +0000128extern cl::opt<unsigned> ProfileLikelyProb;
Xinliang David Liff287372016-06-03 23:48:36 +0000129
Chandler Carruth10281422011-10-21 06:46:38 +0000130namespace {
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000131class BlockChain;
Chandler Carruth10281422011-10-21 06:46:38 +0000132/// \brief Type for our function-wide basic block -> block chain mapping.
133typedef DenseMap<MachineBasicBlock *, BlockChain *> BlockToChainMapType;
134}
135
136namespace {
137/// \brief A chain of blocks which will be laid out contiguously.
138///
139/// This is the datastructure representing a chain of consecutive blocks that
140/// are profitable to layout together in order to maximize fallthrough
Chandler Carruth9139f442012-06-26 05:16:37 +0000141/// probabilities and code locality. We also can use a block chain to represent
142/// a sequence of basic blocks which have some external (correctness)
143/// requirement for sequential layout.
Chandler Carruth10281422011-10-21 06:46:38 +0000144///
Chandler Carruth9139f442012-06-26 05:16:37 +0000145/// Chains can be built around a single basic block and can be merged to grow
146/// them. They participate in a block-to-chain mapping, which is updated
147/// automatically as chains are merged together.
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000148class BlockChain {
149 /// \brief The sequence of blocks belonging to this chain.
Chandler Carruth10281422011-10-21 06:46:38 +0000150 ///
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000151 /// This is the sequence of blocks for a particular chain. These will be laid
152 /// out in-order within the function.
153 SmallVector<MachineBasicBlock *, 4> Blocks;
Chandler Carruth10281422011-10-21 06:46:38 +0000154
155 /// \brief A handle to the function-wide basic block to block chain mapping.
156 ///
157 /// This is retained in each block chain to simplify the computation of child
158 /// block chains for SCC-formation and iteration. We store the edges to child
159 /// basic blocks, and map them back to their associated chains using this
160 /// structure.
161 BlockToChainMapType &BlockToChain;
162
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000163public:
Chandler Carruth10281422011-10-21 06:46:38 +0000164 /// \brief Construct a new BlockChain.
165 ///
166 /// This builds a new block chain representing a single basic block in the
167 /// function. It also registers itself as the chain that block participates
168 /// in with the BlockToChain mapping.
169 BlockChain(BlockToChainMapType &BlockToChain, MachineBasicBlock *BB)
Philip Reamesae27b232016-03-03 00:58:43 +0000170 : Blocks(1, BB), BlockToChain(BlockToChain), UnscheduledPredecessors(0) {
Chandler Carruth10281422011-10-21 06:46:38 +0000171 assert(BB && "Cannot create a chain with a null basic block");
172 BlockToChain[BB] = this;
173 }
174
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000175 /// \brief Iterator over blocks within the chain.
Chandler Carruthccc7e422012-04-16 01:12:56 +0000176 typedef SmallVectorImpl<MachineBasicBlock *>::iterator iterator;
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000177
178 /// \brief Beginning of blocks within the chain.
Chandler Carruthccc7e422012-04-16 01:12:56 +0000179 iterator begin() { return Blocks.begin(); }
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000180
181 /// \brief End of blocks within the chain.
Chandler Carruthccc7e422012-04-16 01:12:56 +0000182 iterator end() { return Blocks.end(); }
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000183
184 /// \brief Merge a block chain into this one.
Chandler Carruth10281422011-10-21 06:46:38 +0000185 ///
186 /// This routine merges a block chain into this one. It takes care of forming
187 /// a contiguous sequence of basic blocks, updating the edge list, and
188 /// updating the block -> chain mapping. It does not free or tear down the
189 /// old chain, but the old chain's block list is no longer valid.
Jakub Staszak90616162011-12-21 23:02:08 +0000190 void merge(MachineBasicBlock *BB, BlockChain *Chain) {
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000191 assert(BB);
192 assert(!Blocks.empty());
Chandler Carruth10281422011-10-21 06:46:38 +0000193
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000194 // Fast path in case we don't have a chain already.
195 if (!Chain) {
196 assert(!BlockToChain[BB]);
197 Blocks.push_back(BB);
198 BlockToChain[BB] = this;
199 return;
Chandler Carruth10281422011-10-21 06:46:38 +0000200 }
201
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000202 assert(BB == *Chain->begin());
203 assert(Chain->begin() != Chain->end());
Chandler Carruth10281422011-10-21 06:46:38 +0000204
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000205 // Update the incoming blocks to point to this chain, and add them to the
206 // chain structure.
Chandler Carruth7a715da2015-03-05 03:19:05 +0000207 for (MachineBasicBlock *ChainBB : *Chain) {
208 Blocks.push_back(ChainBB);
209 assert(BlockToChain[ChainBB] == Chain && "Incoming blocks not in chain");
210 BlockToChain[ChainBB] = this;
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000211 }
Chandler Carruth10281422011-10-21 06:46:38 +0000212 }
Chandler Carruth8d150782011-11-13 11:20:44 +0000213
Chandler Carruth49158902012-04-08 14:37:01 +0000214#ifndef NDEBUG
215 /// \brief Dump the blocks in this chain.
Nico Weber7408c702014-01-03 22:53:37 +0000216 LLVM_DUMP_METHOD void dump() {
Chandler Carruth7a715da2015-03-05 03:19:05 +0000217 for (MachineBasicBlock *MBB : *this)
218 MBB->dump();
Chandler Carruth49158902012-04-08 14:37:01 +0000219 }
220#endif // NDEBUG
221
Philip Reamesae27b232016-03-03 00:58:43 +0000222 /// \brief Count of predecessors of any block within the chain which have not
223 /// yet been scheduled. In general, we will delay scheduling this chain
224 /// until those predecessors are scheduled (or we find a sufficiently good
225 /// reason to override this heuristic.) Note that when forming loop chains,
226 /// blocks outside the loop are ignored and treated as if they were already
227 /// scheduled.
Chandler Carruth8d150782011-11-13 11:20:44 +0000228 ///
Philip Reamesae27b232016-03-03 00:58:43 +0000229 /// Note: This field is reinitialized multiple times - once for each loop,
230 /// and then once for the function as a whole.
231 unsigned UnscheduledPredecessors;
Chandler Carruth10281422011-10-21 06:46:38 +0000232};
Alexander Kornienkof00654e2015-06-23 09:49:53 +0000233}
Chandler Carruth10281422011-10-21 06:46:38 +0000234
235namespace {
236class MachineBlockPlacement : public MachineFunctionPass {
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000237 /// \brief A typedef for a block filter set.
238 typedef SmallPtrSet<MachineBasicBlock *, 16> BlockFilterSet;
239
Xinliang David Li52530a72016-06-13 22:23:44 +0000240 /// \brief Machine Function
241 MachineFunction *F;
242
Chandler Carruth10281422011-10-21 06:46:38 +0000243 /// \brief A handle to the branch probability pass.
244 const MachineBranchProbabilityInfo *MBPI;
245
246 /// \brief A handle to the function-wide block frequency pass.
Haicheng Wu5b458cc2016-06-09 15:24:29 +0000247 std::unique_ptr<BranchFolder::MBFIWrapper> MBFI;
Chandler Carruth10281422011-10-21 06:46:38 +0000248
Chandler Carruth8b9737c2011-10-21 08:57:37 +0000249 /// \brief A handle to the loop info.
Haicheng Wu5b458cc2016-06-09 15:24:29 +0000250 MachineLoopInfo *MLI;
Chandler Carruth8b9737c2011-10-21 08:57:37 +0000251
Chandler Carruth10281422011-10-21 06:46:38 +0000252 /// \brief A handle to the target's instruction info.
253 const TargetInstrInfo *TII;
254
Chandler Carruth8b9737c2011-10-21 08:57:37 +0000255 /// \brief A handle to the target's lowering info.
Benjamin Kramer56b31bd2013-01-11 20:05:37 +0000256 const TargetLoweringBase *TLI;
Chandler Carruth8b9737c2011-10-21 08:57:37 +0000257
Daniel Jasper471e8562015-03-04 11:05:34 +0000258 /// \brief A handle to the post dominator tree.
259 MachineDominatorTree *MDT;
260
261 /// \brief A set of blocks that are unavoidably execute, i.e. they dominate
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000262 /// all terminators of the MachineFunction.
Daniel Jasper471e8562015-03-04 11:05:34 +0000263 SmallPtrSet<MachineBasicBlock *, 4> UnavoidableBlocks;
264
Chandler Carruth10281422011-10-21 06:46:38 +0000265 /// \brief Allocator and owner of BlockChain structures.
266 ///
Chandler Carruth9139f442012-06-26 05:16:37 +0000267 /// We build BlockChains lazily while processing the loop structure of
268 /// a function. To reduce malloc traffic, we allocate them using this
269 /// slab-like allocator, and destroy them after the pass completes. An
270 /// important guarantee is that this allocator produces stable pointers to
271 /// the chains.
Chandler Carruth10281422011-10-21 06:46:38 +0000272 SpecificBumpPtrAllocator<BlockChain> ChainAllocator;
273
274 /// \brief Function wide BasicBlock to BlockChain mapping.
275 ///
276 /// This mapping allows efficiently moving from any given basic block to the
277 /// BlockChain it participates in, if any. We use it to, among other things,
278 /// allow implicitly defining edges between chains as the existing edges
279 /// between basic blocks.
280 DenseMap<MachineBasicBlock *, BlockChain *> BlockToChain;
281
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000282 void markChainSuccessors(BlockChain &Chain, MachineBasicBlock *LoopHeaderBB,
Chandler Carruth1071cfa2011-11-14 00:00:35 +0000283 SmallVectorImpl<MachineBasicBlock *> &BlockWorkList,
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000284 SmallVectorImpl<MachineBasicBlock *> &EHPadWorkList,
Craig Topperc0196b12014-04-14 00:51:57 +0000285 const BlockFilterSet *BlockFilter = nullptr);
Xinliang David Li594ffa32016-06-11 18:35:40 +0000286 BranchProbability
287 collectViableSuccessors(MachineBasicBlock *BB, BlockChain &Chain,
288 const BlockFilterSet *BlockFilter,
289 SmallVector<MachineBasicBlock *, 4> &Successors);
Xinliang David Li071d0f12016-06-12 16:54:03 +0000290 bool shouldPredBlockBeOutlined(MachineBasicBlock *BB, MachineBasicBlock *Succ,
291 BlockChain &Chain,
292 const BlockFilterSet *BlockFilter,
293 BranchProbability SuccProb,
294 BranchProbability HotProb);
Xinliang David Licbf12142016-06-13 20:24:19 +0000295 bool
296 hasBetterLayoutPredecessor(MachineBasicBlock *BB, MachineBasicBlock *Succ,
297 BlockChain &SuccChain, BranchProbability SuccProb,
298 BranchProbability RealSuccProb, BlockChain &Chain,
299 const BlockFilterSet *BlockFilter);
Jakub Staszak90616162011-12-21 23:02:08 +0000300 MachineBasicBlock *selectBestSuccessor(MachineBasicBlock *BB,
301 BlockChain &Chain,
302 const BlockFilterSet *BlockFilter);
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000303 MachineBasicBlock *
304 selectBestCandidateBlock(BlockChain &Chain,
Amaury Sechet9ee4ddd2016-04-07 06:34:47 +0000305 SmallVectorImpl<MachineBasicBlock *> &WorkList);
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000306 MachineBasicBlock *
Xinliang David Li52530a72016-06-13 22:23:44 +0000307 getFirstUnplacedBlock(const BlockChain &PlacedChain,
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000308 MachineFunction::iterator &PrevUnplacedBlockIt,
309 const BlockFilterSet *BlockFilter);
Amaury Secheteae09c22016-03-14 21:24:11 +0000310
311 /// \brief Add a basic block to the work list if it is apropriate.
312 ///
313 /// If the optional parameter BlockFilter is provided, only MBB
314 /// present in the set will be added to the worklist. If nullptr
315 /// is provided, no filtering occurs.
316 void fillWorkLists(MachineBasicBlock *MBB,
317 SmallPtrSetImpl<BlockChain *> &UpdatedPreds,
318 SmallVectorImpl<MachineBasicBlock *> &BlockWorkList,
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000319 SmallVectorImpl<MachineBasicBlock *> &EHPadWorkList,
Amaury Secheteae09c22016-03-14 21:24:11 +0000320 const BlockFilterSet *BlockFilter);
Chandler Carruth8d150782011-11-13 11:20:44 +0000321 void buildChain(MachineBasicBlock *BB, BlockChain &Chain,
Chandler Carruth1071cfa2011-11-14 00:00:35 +0000322 SmallVectorImpl<MachineBasicBlock *> &BlockWorkList,
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000323 SmallVectorImpl<MachineBasicBlock *> &EHPadWorkList,
Craig Topperc0196b12014-04-14 00:51:57 +0000324 const BlockFilterSet *BlockFilter = nullptr);
Chandler Carruth8c0b41d2012-04-16 13:33:36 +0000325 MachineBasicBlock *findBestLoopTop(MachineLoop &L,
326 const BlockFilterSet &LoopBlockSet);
Xinliang David Li52530a72016-06-13 22:23:44 +0000327 MachineBasicBlock *findBestLoopExit(MachineLoop &L,
Chandler Carruthccc7e422012-04-16 01:12:56 +0000328 const BlockFilterSet &LoopBlockSet);
Xinliang David Li52530a72016-06-13 22:23:44 +0000329 BlockFilterSet collectLoopBlockSet(MachineLoop &L);
330 void buildLoopChains(MachineLoop &L);
Chandler Carruth8c74c7b2012-04-16 09:31:23 +0000331 void rotateLoop(BlockChain &LoopChain, MachineBasicBlock *ExitingBB,
332 const BlockFilterSet &LoopBlockSet);
Cong Hou7745dbc2015-10-19 23:16:40 +0000333 void rotateLoopWithProfile(BlockChain &LoopChain, MachineLoop &L,
334 const BlockFilterSet &LoopBlockSet);
Xinliang David Li52530a72016-06-13 22:23:44 +0000335 void collectMustExecuteBBs();
336 void buildCFGChains();
337 void optimizeBranches();
338 void alignBlocks();
Chandler Carruth10281422011-10-21 06:46:38 +0000339
340public:
341 static char ID; // Pass identification, replacement for typeid
342 MachineBlockPlacement() : MachineFunctionPass(ID) {
343 initializeMachineBlockPlacementPass(*PassRegistry::getPassRegistry());
344 }
345
Craig Topper4584cd52014-03-07 09:26:03 +0000346 bool runOnMachineFunction(MachineFunction &F) override;
Chandler Carruth10281422011-10-21 06:46:38 +0000347
Craig Topper4584cd52014-03-07 09:26:03 +0000348 void getAnalysisUsage(AnalysisUsage &AU) const override {
Chandler Carruth10281422011-10-21 06:46:38 +0000349 AU.addRequired<MachineBranchProbabilityInfo>();
350 AU.addRequired<MachineBlockFrequencyInfo>();
Daniel Jasper471e8562015-03-04 11:05:34 +0000351 AU.addRequired<MachineDominatorTree>();
Chandler Carruth8b9737c2011-10-21 08:57:37 +0000352 AU.addRequired<MachineLoopInfo>();
Haicheng Wu5b458cc2016-06-09 15:24:29 +0000353 AU.addRequired<TargetPassConfig>();
Chandler Carruth10281422011-10-21 06:46:38 +0000354 MachineFunctionPass::getAnalysisUsage(AU);
355 }
Chandler Carruth10281422011-10-21 06:46:38 +0000356};
Alexander Kornienkof00654e2015-06-23 09:49:53 +0000357}
Chandler Carruth10281422011-10-21 06:46:38 +0000358
359char MachineBlockPlacement::ID = 0;
Andrew Trick1fa5bcb2012-02-08 21:23:13 +0000360char &llvm::MachineBlockPlacementID = MachineBlockPlacement::ID;
Chandler Carruthd0dced52015-03-05 02:28:25 +0000361INITIALIZE_PASS_BEGIN(MachineBlockPlacement, "block-placement",
Chandler Carruth10281422011-10-21 06:46:38 +0000362 "Branch Probability Basic Block Placement", false, false)
363INITIALIZE_PASS_DEPENDENCY(MachineBranchProbabilityInfo)
364INITIALIZE_PASS_DEPENDENCY(MachineBlockFrequencyInfo)
Daniel Jasper471e8562015-03-04 11:05:34 +0000365INITIALIZE_PASS_DEPENDENCY(MachineDominatorTree)
Chandler Carruth8b9737c2011-10-21 08:57:37 +0000366INITIALIZE_PASS_DEPENDENCY(MachineLoopInfo)
Chandler Carruthd0dced52015-03-05 02:28:25 +0000367INITIALIZE_PASS_END(MachineBlockPlacement, "block-placement",
Chandler Carruth10281422011-10-21 06:46:38 +0000368 "Branch Probability Basic Block Placement", false, false)
369
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000370#ifndef NDEBUG
371/// \brief Helper to print the name of a MBB.
372///
373/// Only used by debug logging.
Jakub Staszak90616162011-12-21 23:02:08 +0000374static std::string getBlockName(MachineBasicBlock *BB) {
Alp Tokere69170a2014-06-26 22:52:05 +0000375 std::string Result;
376 raw_string_ostream OS(Result);
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000377 OS << "BB#" << BB->getNumber();
Philip Reamesb9688f42016-03-02 21:45:13 +0000378 OS << " ('" << BB->getName() << "')";
Alp Tokere69170a2014-06-26 22:52:05 +0000379 OS.flush();
380 return Result;
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000381}
382#endif
383
Chandler Carrutheb4ec3a2011-11-13 11:34:55 +0000384/// \brief Mark a chain's successors as having one fewer preds.
385///
386/// When a chain is being merged into the "placed" chain, this routine will
387/// quickly walk the successors of each block in the chain and mark them as
388/// having one fewer active predecessor. It also adds any successors of this
389/// chain which reach the zero-predecessor state to the worklist passed in.
Chandler Carruth8d150782011-11-13 11:20:44 +0000390void MachineBlockPlacement::markChainSuccessors(
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000391 BlockChain &Chain, MachineBasicBlock *LoopHeaderBB,
Chandler Carruth8d150782011-11-13 11:20:44 +0000392 SmallVectorImpl<MachineBasicBlock *> &BlockWorkList,
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000393 SmallVectorImpl<MachineBasicBlock *> &EHPadWorkList,
Jakub Staszak90616162011-12-21 23:02:08 +0000394 const BlockFilterSet *BlockFilter) {
Chandler Carruth8d150782011-11-13 11:20:44 +0000395 // Walk all the blocks in this chain, marking their successors as having
396 // a predecessor placed.
Chandler Carruth7a715da2015-03-05 03:19:05 +0000397 for (MachineBasicBlock *MBB : Chain) {
Chandler Carruth8d150782011-11-13 11:20:44 +0000398 // Add any successors for which this is the only un-placed in-loop
399 // predecessor to the worklist as a viable candidate for CFG-neutral
400 // placement. No subsequent placement of this block will violate the CFG
401 // shape, so we get to use heuristics to choose a favorable placement.
Chandler Carruth7a715da2015-03-05 03:19:05 +0000402 for (MachineBasicBlock *Succ : MBB->successors()) {
403 if (BlockFilter && !BlockFilter->count(Succ))
Chandler Carruth8d150782011-11-13 11:20:44 +0000404 continue;
Chandler Carruth7a715da2015-03-05 03:19:05 +0000405 BlockChain &SuccChain = *BlockToChain[Succ];
Chandler Carruth8d150782011-11-13 11:20:44 +0000406 // Disregard edges within a fixed chain, or edges to the loop header.
Chandler Carruth7a715da2015-03-05 03:19:05 +0000407 if (&Chain == &SuccChain || Succ == LoopHeaderBB)
Chandler Carruth8d150782011-11-13 11:20:44 +0000408 continue;
Chandler Carruth10281422011-10-21 06:46:38 +0000409
Chandler Carruth8d150782011-11-13 11:20:44 +0000410 // This is a cross-chain edge that is within the loop, so decrement the
411 // loop predecessor count of the destination chain.
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000412 if (SuccChain.UnscheduledPredecessors == 0 ||
413 --SuccChain.UnscheduledPredecessors > 0)
414 continue;
415
416 auto *MBB = *SuccChain.begin();
417 if (MBB->isEHPad())
418 EHPadWorkList.push_back(MBB);
419 else
420 BlockWorkList.push_back(MBB);
Chandler Carruth10281422011-10-21 06:46:38 +0000421 }
422 }
Chandler Carruth8d150782011-11-13 11:20:44 +0000423}
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000424
Xinliang David Li594ffa32016-06-11 18:35:40 +0000425/// This helper function collects the set of successors of block
426/// \p BB that are allowed to be its layout successors, and return
427/// the total branch probability of edges from \p BB to those
428/// blocks.
429BranchProbability MachineBlockPlacement::collectViableSuccessors(
430 MachineBasicBlock *BB, BlockChain &Chain, const BlockFilterSet *BlockFilter,
431 SmallVector<MachineBasicBlock *, 4> &Successors) {
Cong Houd97c1002015-12-01 05:29:22 +0000432 // Adjust edge probabilities by excluding edges pointing to blocks that is
433 // either not in BlockFilter or is already in the current chain. Consider the
434 // following CFG:
Cong Hou41cf1a52015-11-18 00:52:52 +0000435 //
436 // --->A
437 // | / \
438 // | B C
439 // | \ / \
440 // ----D E
441 //
442 // Assume A->C is very hot (>90%), and C->D has a 50% probability, then after
443 // A->C is chosen as a fall-through, D won't be selected as a successor of C
444 // due to CFG constraint (the probability of C->D is not greater than
Xinliang David Li594ffa32016-06-11 18:35:40 +0000445 // HotProb to break top-oorder). If we exclude E that is not in BlockFilter
446 // when calculating the probability of C->D, D will be selected and we
447 // will get A C D B as the layout of this loop.
Cong Houd97c1002015-12-01 05:29:22 +0000448 auto AdjustedSumProb = BranchProbability::getOne();
Cong Hou41cf1a52015-11-18 00:52:52 +0000449 for (MachineBasicBlock *Succ : BB->successors()) {
450 bool SkipSucc = false;
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000451 if (Succ->isEHPad() || (BlockFilter && !BlockFilter->count(Succ))) {
Cong Hou41cf1a52015-11-18 00:52:52 +0000452 SkipSucc = true;
453 } else {
454 BlockChain *SuccChain = BlockToChain[Succ];
455 if (SuccChain == &Chain) {
Cong Hou41cf1a52015-11-18 00:52:52 +0000456 SkipSucc = true;
457 } else if (Succ != *SuccChain->begin()) {
458 DEBUG(dbgs() << " " << getBlockName(Succ) << " -> Mid chain!\n");
459 continue;
460 }
461 }
462 if (SkipSucc)
Cong Houd97c1002015-12-01 05:29:22 +0000463 AdjustedSumProb -= MBPI->getEdgeProbability(BB, Succ);
Cong Hou41cf1a52015-11-18 00:52:52 +0000464 else
465 Successors.push_back(Succ);
466 }
467
Xinliang David Li594ffa32016-06-11 18:35:40 +0000468 return AdjustedSumProb;
469}
470
471/// The helper function returns the branch probability that is adjusted
472/// or normalized over the new total \p AdjustedSumProb.
473
474static BranchProbability
475getAdjustedProbability(BranchProbability OrigProb,
476 BranchProbability AdjustedSumProb) {
477 BranchProbability SuccProb;
478 uint32_t SuccProbN = OrigProb.getNumerator();
479 uint32_t SuccProbD = AdjustedSumProb.getNumerator();
480 if (SuccProbN >= SuccProbD)
481 SuccProb = BranchProbability::getOne();
482 else
483 SuccProb = BranchProbability(SuccProbN, SuccProbD);
484
485 return SuccProb;
486}
487
Xinliang David Li071d0f12016-06-12 16:54:03 +0000488/// When the option OutlineOptionalBranches is on, this method
489/// checks if the fallthrough candidate block \p Succ (of block
490/// \p BB) also has other unscheduled predecessor blocks which
491/// are also successors of \p BB (forming triagular shape CFG).
492/// If none of such predecessors are small, it returns true.
493/// The caller can choose to select \p Succ as the layout successors
494/// so that \p Succ's predecessors (optional branches) can be
495/// outlined.
496/// FIXME: fold this with more general layout cost analysis.
497bool MachineBlockPlacement::shouldPredBlockBeOutlined(
498 MachineBasicBlock *BB, MachineBasicBlock *Succ, BlockChain &Chain,
499 const BlockFilterSet *BlockFilter, BranchProbability SuccProb,
500 BranchProbability HotProb) {
501 if (!OutlineOptionalBranches)
502 return false;
503 // If we outline optional branches, look whether Succ is unavoidable, i.e.
504 // dominates all terminators of the MachineFunction. If it does, other
505 // successors must be optional. Don't do this for cold branches.
506 if (SuccProb > HotProb.getCompl() && UnavoidableBlocks.count(Succ) > 0) {
507 for (MachineBasicBlock *Pred : Succ->predecessors()) {
508 // Check whether there is an unplaced optional branch.
509 if (Pred == Succ || (BlockFilter && !BlockFilter->count(Pred)) ||
510 BlockToChain[Pred] == &Chain)
511 continue;
512 // Check whether the optional branch has exactly one BB.
513 if (Pred->pred_size() > 1 || *Pred->pred_begin() != BB)
514 continue;
515 // Check whether the optional branch is small.
516 if (Pred->size() < OutlineOptionalThreshold)
517 return false;
518 }
519 return true;
520 } else
521 return false;
522}
523
Dehao Chen9f2bdfb2016-06-14 22:27:17 +0000524// When profile is not present, return the StaticLikelyProb.
525// When profile is available, we need to handle the triangle-shape CFG.
526static BranchProbability getLayoutSuccessorProbThreshold(
527 MachineBasicBlock *BB) {
528 if (!BB->getParent()->getFunction()->getEntryCount())
529 return BranchProbability(StaticLikelyProb, 100);
530 if (BB->succ_size() == 2) {
531 const MachineBasicBlock *Succ1 = *BB->succ_begin();
532 const MachineBasicBlock *Succ2 = *(BB->succ_begin() + 1);
533 if (Succ1->isSuccessor(Succ2) || Succ2->isSuccessor(Succ1))
534 return BranchProbability(
535 200 - 2 * ProfileLikelyProb, 200 - ProfileLikelyProb);
536 }
537 return BranchProbability(ProfileLikelyProb, 100);
Xinliang David Licbf12142016-06-13 20:24:19 +0000538}
539
540/// Checks to see if the layout candidate block \p Succ has a better layout
541/// predecessor than \c BB. If yes, returns true.
542bool MachineBlockPlacement::hasBetterLayoutPredecessor(
543 MachineBasicBlock *BB, MachineBasicBlock *Succ, BlockChain &SuccChain,
544 BranchProbability SuccProb, BranchProbability RealSuccProb,
545 BlockChain &Chain, const BlockFilterSet *BlockFilter) {
546
547 // This is no global conflict, just return false.
548 if (SuccChain.UnscheduledPredecessors == 0)
549 return false;
550
551 // There are two basic scenarios here:
552 // -------------------------------------
553 // Case 1: triagular shape CFG:
554 // BB
555 // | \
556 // | \
557 // | Pred
558 // | /
559 // Succ
560 // In this case, we are evaluating whether to select edge -> Succ, e.g.
561 // set Succ as the layout successor of BB. Picking Succ as BB's
562 // successor breaks the CFG constraints. With this layout, Pred BB
563 // is forced to be outlined, so the overall cost will be cost of the
564 // branch taken from BB to Pred, plus the cost of back taken branch
565 // from Pred to Succ, as well as the additional cost asssociated
566 // with the needed unconditional jump instruction from Pred To Succ.
567 // The cost of the topological order layout is the taken branch cost
568 // from BB to Succ, so to make BB->Succ a viable candidate, the following
569 // must hold:
570 // 2 * freq(BB->Pred) * taken_branch_cost + unconditional_jump_cost
571 // < freq(BB->Succ) * taken_branch_cost.
572 // Ignoring unconditional jump cost, we get
573 // freq(BB->Succ) > 2 * freq(BB->Pred), i.e.,
574 // prob(BB->Succ) > 2 * prob(BB->Pred)
575 //
576 // When real profile data is available, we can precisely compute the the
577 // probabililty threshold that is needed for edge BB->Succ to be considered.
578 // With out profile data, the heuristic requires the branch bias to be
579 // a lot larger to make sure the signal is very strong (e.g. 80% default).
580 // -----------------------------------------------------------------
581 // Case 2: diamond like CFG:
582 // S
583 // / \
584 // | \
585 // BB Pred
586 // \ /
587 // Succ
588 // ..
589 // In this case, edge S->BB has already been selected, and we are evaluating
590 // candidate edge BB->Succ. Edge S->BB is selected because prob(S->BB)
591 // is no less than prob(S->Pred). When real profile data is *available*, if
592 // the condition is true, it will be always better to continue the trace with
593 // edge BB->Succ instead of laying out with topological order (i.e. laying
594 // Pred first). The cost of S->BB->Succ is 2 * freq (S->Pred), while with
595 // the topo order, the cost is freq(S-> Pred) + Pred(S->BB) which is larger.
596 // When profile data is not available, however, we need to be more
597 // conservative. If the branch prediction is wrong, breaking the topo-order
598 // will actually yield a layout with large cost. For this reason, we need
599 // strong biaaed branch at block S with Prob(S->BB) in order to select
600 // BB->Succ. This is equialant to looking the CFG backward with backward
601 // edge: Prob(Succ->BB) needs to >= HotProb in order to be selected (without
602 // profile data).
603
Dehao Chen9f2bdfb2016-06-14 22:27:17 +0000604 BranchProbability HotProb = getLayoutSuccessorProbThreshold(BB);
Xinliang David Licbf12142016-06-13 20:24:19 +0000605
606 // Forward checking. For case 2, SuccProb will be 1.
607 if (SuccProb < HotProb) {
608 DEBUG(dbgs() << " " << getBlockName(Succ) << " -> " << SuccProb
609 << " (prob) (CFG conflict)\n");
610 return true;
611 }
612
613 // Make sure that a hot successor doesn't have a globally more
614 // important predecessor.
615 BlockFrequency CandidateEdgeFreq = MBFI->getBlockFreq(BB) * RealSuccProb;
616 bool BadCFGConflict = false;
617
618 for (MachineBasicBlock *Pred : Succ->predecessors()) {
619 if (Pred == Succ || BlockToChain[Pred] == &SuccChain ||
620 (BlockFilter && !BlockFilter->count(Pred)) ||
621 BlockToChain[Pred] == &Chain)
622 continue;
623 // Do backward checking. For case 1, it is actually redundant check. For
624 // case 2 above, we need a backward checking to filter out edges that are
625 // not 'strongly' biased. With profile data available, the check is mostly
626 // redundant too (when threshold prob is set at 50%) unless S has more than
627 // two successors.
628 // BB Pred
629 // \ /
630 // Succ
631 // We select edgee BB->Succ if
632 // freq(BB->Succ) > freq(Succ) * HotProb
633 // i.e. freq(BB->Succ) > freq(BB->Succ) * HotProb + freq(Pred->Succ) *
634 // HotProb
635 // i.e. freq((BB->Succ) * (1 - HotProb) > freq(Pred->Succ) * HotProb
636 BlockFrequency PredEdgeFreq =
637 MBFI->getBlockFreq(Pred) * MBPI->getEdgeProbability(Pred, Succ);
638 if (PredEdgeFreq * HotProb >= CandidateEdgeFreq * HotProb.getCompl()) {
639 BadCFGConflict = true;
640 break;
641 }
642 }
643
644 if (BadCFGConflict) {
645 DEBUG(dbgs() << " " << getBlockName(Succ) << " -> " << SuccProb
646 << " (prob) (non-cold CFG conflict)\n");
647 return true;
648 }
649
650 return false;
651}
652
Xinliang David Li594ffa32016-06-11 18:35:40 +0000653/// \brief Select the best successor for a block.
654///
655/// This looks across all successors of a particular block and attempts to
656/// select the "best" one to be the layout successor. It only considers direct
657/// successors which also pass the block filter. It will attempt to avoid
658/// breaking CFG structure, but cave and break such structures in the case of
659/// very hot successor edges.
660///
661/// \returns The best successor block found, or null if none are viable.
662MachineBasicBlock *
663MachineBlockPlacement::selectBestSuccessor(MachineBasicBlock *BB,
664 BlockChain &Chain,
665 const BlockFilterSet *BlockFilter) {
666 const BranchProbability HotProb(StaticLikelyProb, 100);
667
668 MachineBasicBlock *BestSucc = nullptr;
669 auto BestProb = BranchProbability::getZero();
670
671 SmallVector<MachineBasicBlock *, 4> Successors;
672 auto AdjustedSumProb =
673 collectViableSuccessors(BB, Chain, BlockFilter, Successors);
674
Cong Hou41cf1a52015-11-18 00:52:52 +0000675 DEBUG(dbgs() << "Attempting merge from: " << getBlockName(BB) << "\n");
676 for (MachineBasicBlock *Succ : Successors) {
Xinliang David Li594ffa32016-06-11 18:35:40 +0000677 auto RealSuccProb = MBPI->getEdgeProbability(BB, Succ);
678 BranchProbability SuccProb =
679 getAdjustedProbability(RealSuccProb, AdjustedSumProb);
Chandler Carruthb3361722011-11-13 11:34:53 +0000680
Xinliang David Li071d0f12016-06-12 16:54:03 +0000681 // This heuristic is off by default.
682 if (shouldPredBlockBeOutlined(BB, Succ, Chain, BlockFilter, SuccProb,
683 HotProb))
684 return Succ;
Daniel Jasper471e8562015-03-04 11:05:34 +0000685
Cong Hou41cf1a52015-11-18 00:52:52 +0000686 BlockChain &SuccChain = *BlockToChain[Succ];
Xinliang David Licbf12142016-06-13 20:24:19 +0000687 // Skip the edge \c BB->Succ if block \c Succ has a better layout
688 // predecessor that yields lower global cost.
689 if (hasBetterLayoutPredecessor(BB, Succ, SuccChain, SuccProb, RealSuccProb,
690 Chain, BlockFilter))
691 continue;
Chandler Carruth18dfac32011-11-20 11:22:06 +0000692
Xinliang David Licbf12142016-06-13 20:24:19 +0000693 DEBUG(
694 dbgs() << " " << getBlockName(Succ) << " -> " << SuccProb
695 << " (prob)"
696 << (SuccChain.UnscheduledPredecessors != 0 ? " (CFG break)" : "")
697 << "\n");
Cong Houd97c1002015-12-01 05:29:22 +0000698 if (BestSucc && BestProb >= SuccProb)
Chandler Carruthb3361722011-11-13 11:34:53 +0000699 continue;
Daniel Jaspered9eb722015-02-18 08:19:16 +0000700 BestSucc = Succ;
Cong Houd97c1002015-12-01 05:29:22 +0000701 BestProb = SuccProb;
Chandler Carruthb3361722011-11-13 11:34:53 +0000702 }
703 return BestSucc;
704}
705
Chandler Carruthf9213fe2011-11-13 11:42:26 +0000706/// \brief Select the best block from a worklist.
707///
708/// This looks through the provided worklist as a list of candidate basic
709/// blocks and select the most profitable one to place. The definition of
710/// profitable only really makes sense in the context of a loop. This returns
711/// the most frequently visited block in the worklist, which in the case of
712/// a loop, is the one most desirable to be physically close to the rest of the
713/// loop body in order to improve icache behavior.
714///
715/// \returns The best block found, or null if none are viable.
716MachineBasicBlock *MachineBlockPlacement::selectBestCandidateBlock(
Amaury Sechet9ee4ddd2016-04-07 06:34:47 +0000717 BlockChain &Chain, SmallVectorImpl<MachineBasicBlock *> &WorkList) {
Chandler Carruth0af6a0b2011-11-14 09:46:33 +0000718 // Once we need to walk the worklist looking for a candidate, cleanup the
719 // worklist of already placed entries.
720 // FIXME: If this shows up on profiles, it could be folded (at the cost of
721 // some code complexity) into the loop below.
722 WorkList.erase(std::remove_if(WorkList.begin(), WorkList.end(),
Benjamin Kramer3a377bc2014-03-01 11:47:00 +0000723 [&](MachineBasicBlock *BB) {
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000724 return BlockToChain.lookup(BB) == &Chain;
725 }),
Chandler Carruth0af6a0b2011-11-14 09:46:33 +0000726 WorkList.end());
727
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000728 if (WorkList.empty())
729 return nullptr;
730
731 bool IsEHPad = WorkList[0]->isEHPad();
732
Craig Topperc0196b12014-04-14 00:51:57 +0000733 MachineBasicBlock *BestBlock = nullptr;
Chandler Carruthf9213fe2011-11-13 11:42:26 +0000734 BlockFrequency BestFreq;
Chandler Carruth7a715da2015-03-05 03:19:05 +0000735 for (MachineBasicBlock *MBB : WorkList) {
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000736 assert(MBB->isEHPad() == IsEHPad);
737
Chandler Carruth7a715da2015-03-05 03:19:05 +0000738 BlockChain &SuccChain = *BlockToChain[MBB];
Philip Reames02e11322016-03-02 22:40:51 +0000739 if (&SuccChain == &Chain)
Chandler Carruthf9213fe2011-11-13 11:42:26 +0000740 continue;
Junmo Park4ba6cf62016-03-11 05:07:07 +0000741
Philip Reamesae27b232016-03-03 00:58:43 +0000742 assert(SuccChain.UnscheduledPredecessors == 0 && "Found CFG-violating block");
Chandler Carruthf9213fe2011-11-13 11:42:26 +0000743
Chandler Carruth7a715da2015-03-05 03:19:05 +0000744 BlockFrequency CandidateFreq = MBFI->getBlockFreq(MBB);
745 DEBUG(dbgs() << " " << getBlockName(MBB) << " -> ";
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000746 MBFI->printBlockFreq(dbgs(), CandidateFreq) << " (freq)\n");
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000747
748 // For ehpad, we layout the least probable first as to avoid jumping back
749 // from least probable landingpads to more probable ones.
750 //
751 // FIXME: Using probability is probably (!) not the best way to achieve
752 // this. We should probably have a more principled approach to layout
753 // cleanup code.
754 //
755 // The goal is to get:
756 //
757 // +--------------------------+
758 // | V
759 // InnerLp -> InnerCleanup OuterLp -> OuterCleanup -> Resume
760 //
761 // Rather than:
762 //
763 // +-------------------------------------+
764 // V |
765 // OuterLp -> OuterCleanup -> Resume InnerLp -> InnerCleanup
766 if (BestBlock && (IsEHPad ^ (BestFreq >= CandidateFreq)))
Chandler Carruthf9213fe2011-11-13 11:42:26 +0000767 continue;
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000768
Chandler Carruth7a715da2015-03-05 03:19:05 +0000769 BestBlock = MBB;
Chandler Carruthf9213fe2011-11-13 11:42:26 +0000770 BestFreq = CandidateFreq;
771 }
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000772
Chandler Carruthf9213fe2011-11-13 11:42:26 +0000773 return BestBlock;
774}
775
Chandler Carruth1071cfa2011-11-14 00:00:35 +0000776/// \brief Retrieve the first unplaced basic block.
777///
778/// This routine is called when we are unable to use the CFG to walk through
779/// all of the basic blocks and form a chain due to unnatural loops in the CFG.
Chandler Carruth9b548a7f2011-11-15 06:26:43 +0000780/// We walk through the function's blocks in order, starting from the
781/// LastUnplacedBlockIt. We update this iterator on each call to avoid
782/// re-scanning the entire sequence on repeated calls to this routine.
Chandler Carruth1071cfa2011-11-14 00:00:35 +0000783MachineBasicBlock *MachineBlockPlacement::getFirstUnplacedBlock(
Xinliang David Li52530a72016-06-13 22:23:44 +0000784 const BlockChain &PlacedChain,
Chandler Carruth9b548a7f2011-11-15 06:26:43 +0000785 MachineFunction::iterator &PrevUnplacedBlockIt,
Jakub Staszak90616162011-12-21 23:02:08 +0000786 const BlockFilterSet *BlockFilter) {
Xinliang David Li52530a72016-06-13 22:23:44 +0000787 for (MachineFunction::iterator I = PrevUnplacedBlockIt, E = F->end(); I != E;
Chandler Carruth9b548a7f2011-11-15 06:26:43 +0000788 ++I) {
Duncan P. N. Exon Smith6ac07fd2015-10-09 19:36:12 +0000789 if (BlockFilter && !BlockFilter->count(&*I))
Chandler Carruth9b548a7f2011-11-15 06:26:43 +0000790 continue;
Duncan P. N. Exon Smith6ac07fd2015-10-09 19:36:12 +0000791 if (BlockToChain[&*I] != &PlacedChain) {
Chandler Carruth9b548a7f2011-11-15 06:26:43 +0000792 PrevUnplacedBlockIt = I;
Chandler Carruth4a87aa02011-11-23 03:03:21 +0000793 // Now select the head of the chain to which the unplaced block belongs
794 // as the block to place. This will force the entire chain to be placed,
795 // and satisfies the requirements of merging chains.
Duncan P. N. Exon Smith6ac07fd2015-10-09 19:36:12 +0000796 return *BlockToChain[&*I]->begin();
Chandler Carruth1071cfa2011-11-14 00:00:35 +0000797 }
798 }
Craig Topperc0196b12014-04-14 00:51:57 +0000799 return nullptr;
Chandler Carruth1071cfa2011-11-14 00:00:35 +0000800}
801
Amaury Secheteae09c22016-03-14 21:24:11 +0000802void MachineBlockPlacement::fillWorkLists(
803 MachineBasicBlock *MBB,
804 SmallPtrSetImpl<BlockChain *> &UpdatedPreds,
805 SmallVectorImpl<MachineBasicBlock *> &BlockWorkList,
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000806 SmallVectorImpl<MachineBasicBlock *> &EHPadWorkList,
Amaury Secheteae09c22016-03-14 21:24:11 +0000807 const BlockFilterSet *BlockFilter = nullptr) {
808 BlockChain &Chain = *BlockToChain[MBB];
809 if (!UpdatedPreds.insert(&Chain).second)
810 return;
811
812 assert(Chain.UnscheduledPredecessors == 0);
813 for (MachineBasicBlock *ChainBB : Chain) {
814 assert(BlockToChain[ChainBB] == &Chain);
815 for (MachineBasicBlock *Pred : ChainBB->predecessors()) {
816 if (BlockFilter && !BlockFilter->count(Pred))
817 continue;
818 if (BlockToChain[Pred] == &Chain)
819 continue;
820 ++Chain.UnscheduledPredecessors;
821 }
822 }
823
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000824 if (Chain.UnscheduledPredecessors != 0)
825 return;
826
827 MBB = *Chain.begin();
828 if (MBB->isEHPad())
829 EHPadWorkList.push_back(MBB);
830 else
831 BlockWorkList.push_back(MBB);
Amaury Secheteae09c22016-03-14 21:24:11 +0000832}
833
Chandler Carruth8d150782011-11-13 11:20:44 +0000834void MachineBlockPlacement::buildChain(
Daniel Jasper471e8562015-03-04 11:05:34 +0000835 MachineBasicBlock *BB, BlockChain &Chain,
Chandler Carruth8d150782011-11-13 11:20:44 +0000836 SmallVectorImpl<MachineBasicBlock *> &BlockWorkList,
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000837 SmallVectorImpl<MachineBasicBlock *> &EHPadWorkList,
Jakub Staszak90616162011-12-21 23:02:08 +0000838 const BlockFilterSet *BlockFilter) {
Chandler Carruth8d150782011-11-13 11:20:44 +0000839 assert(BB);
Jakub Staszak90616162011-12-21 23:02:08 +0000840 assert(BlockToChain[BB] == &Chain);
Xinliang David Li52530a72016-06-13 22:23:44 +0000841 MachineFunction::iterator PrevUnplacedBlockIt = F->begin();
Chandler Carruth1071cfa2011-11-14 00:00:35 +0000842
Chandler Carruth8d150782011-11-13 11:20:44 +0000843 MachineBasicBlock *LoopHeaderBB = BB;
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000844 markChainSuccessors(Chain, LoopHeaderBB, BlockWorkList, EHPadWorkList,
845 BlockFilter);
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +0000846 BB = *std::prev(Chain.end());
Chandler Carruth8d150782011-11-13 11:20:44 +0000847 for (;;) {
848 assert(BB);
Jakub Staszak90616162011-12-21 23:02:08 +0000849 assert(BlockToChain[BB] == &Chain);
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +0000850 assert(*std::prev(Chain.end()) == BB);
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000851
Chandler Carruthf3dc9ef2011-11-19 10:26:02 +0000852 // Look for the best viable successor if there is one to place immediately
853 // after this block.
Duncan Sands291d47e2012-09-14 09:00:11 +0000854 MachineBasicBlock *BestSucc = selectBestSuccessor(BB, Chain, BlockFilter);
Chandler Carruth8d150782011-11-13 11:20:44 +0000855
856 // If an immediate successor isn't available, look for the best viable
857 // block among those we've identified as not violating the loop's CFG at
858 // this point. This won't be a fallthrough, but it will increase locality.
Chandler Carruthf9213fe2011-11-13 11:42:26 +0000859 if (!BestSucc)
Amaury Sechet9ee4ddd2016-04-07 06:34:47 +0000860 BestSucc = selectBestCandidateBlock(Chain, BlockWorkList);
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000861 if (!BestSucc)
862 BestSucc = selectBestCandidateBlock(Chain, EHPadWorkList);
Chandler Carruth8d150782011-11-13 11:20:44 +0000863
Chandler Carruth8d150782011-11-13 11:20:44 +0000864 if (!BestSucc) {
Xinliang David Li52530a72016-06-13 22:23:44 +0000865 BestSucc = getFirstUnplacedBlock(Chain, PrevUnplacedBlockIt, BlockFilter);
Chandler Carruth1071cfa2011-11-14 00:00:35 +0000866 if (!BestSucc)
867 break;
868
869 DEBUG(dbgs() << "Unnatural loop CFG detected, forcibly merging the "
870 "layout successor until the CFG reduces\n");
Chandler Carruth8d150782011-11-13 11:20:44 +0000871 }
Chandler Carruthbd1be4d2011-10-23 09:18:45 +0000872
Chandler Carruth8d150782011-11-13 11:20:44 +0000873 // Place this block, updating the datastructures to reflect its placement.
Jakub Staszak90616162011-12-21 23:02:08 +0000874 BlockChain &SuccChain = *BlockToChain[BestSucc];
Philip Reamesae27b232016-03-03 00:58:43 +0000875 // Zero out UnscheduledPredecessors for the successor we're about to merge in case
Chandler Carruth1071cfa2011-11-14 00:00:35 +0000876 // we selected a successor that didn't fit naturally into the CFG.
Philip Reamesae27b232016-03-03 00:58:43 +0000877 SuccChain.UnscheduledPredecessors = 0;
Philip Reamesb9688f42016-03-02 21:45:13 +0000878 DEBUG(dbgs() << "Merging from " << getBlockName(BB) << " to "
879 << getBlockName(BestSucc) << "\n");
Amaury Sechetc53ad4f2016-04-07 21:29:39 +0000880 markChainSuccessors(SuccChain, LoopHeaderBB, BlockWorkList, EHPadWorkList,
881 BlockFilter);
Chandler Carruth8d150782011-11-13 11:20:44 +0000882 Chain.merge(BestSucc, &SuccChain);
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +0000883 BB = *std::prev(Chain.end());
Jakub Staszak190c7122011-12-07 19:46:10 +0000884 }
Chandler Carruth1071cfa2011-11-14 00:00:35 +0000885
886 DEBUG(dbgs() << "Finished forming chain for header block "
Philip Reamesb9688f42016-03-02 21:45:13 +0000887 << getBlockName(*Chain.begin()) << "\n");
Chandler Carruth10281422011-10-21 06:46:38 +0000888}
889
Chandler Carruth03adbd42011-11-27 13:34:33 +0000890/// \brief Find the best loop top block for layout.
Chandler Carruth9ffb97e2011-11-27 00:38:03 +0000891///
Chandler Carruth8c0b41d2012-04-16 13:33:36 +0000892/// Look for a block which is strictly better than the loop header for laying
893/// out at the top of the loop. This looks for one and only one pattern:
894/// a latch block with no conditional exit. This block will cause a conditional
895/// jump around it or will be the bottom of the loop if we lay it out in place,
896/// but if it it doesn't end up at the bottom of the loop for any reason,
897/// rotation alone won't fix it. Because such a block will always result in an
898/// unconditional jump (for the backedge) rotating it in front of the loop
899/// header is always profitable.
900MachineBasicBlock *
901MachineBlockPlacement::findBestLoopTop(MachineLoop &L,
902 const BlockFilterSet &LoopBlockSet) {
903 // Check that the header hasn't been fused with a preheader block due to
904 // crazy branches. If it has, we need to start with the header at the top to
905 // prevent pulling the preheader into the loop body.
906 BlockChain &HeaderChain = *BlockToChain[L.getHeader()];
907 if (!LoopBlockSet.count(*HeaderChain.begin()))
908 return L.getHeader();
909
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000910 DEBUG(dbgs() << "Finding best loop top for: " << getBlockName(L.getHeader())
911 << "\n");
Chandler Carruth8c0b41d2012-04-16 13:33:36 +0000912
913 BlockFrequency BestPredFreq;
Craig Topperc0196b12014-04-14 00:51:57 +0000914 MachineBasicBlock *BestPred = nullptr;
Chandler Carruth7a715da2015-03-05 03:19:05 +0000915 for (MachineBasicBlock *Pred : L.getHeader()->predecessors()) {
Chandler Carruth8c0b41d2012-04-16 13:33:36 +0000916 if (!LoopBlockSet.count(Pred))
917 continue;
918 DEBUG(dbgs() << " header pred: " << getBlockName(Pred) << ", "
Michael Gottesmanb78dec82013-12-14 00:25:45 +0000919 << Pred->succ_size() << " successors, ";
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000920 MBFI->printBlockFreq(dbgs(), Pred) << " freq\n");
Chandler Carruth8c0b41d2012-04-16 13:33:36 +0000921 if (Pred->succ_size() > 1)
922 continue;
923
924 BlockFrequency PredFreq = MBFI->getBlockFreq(Pred);
925 if (!BestPred || PredFreq > BestPredFreq ||
926 (!(PredFreq < BestPredFreq) &&
927 Pred->isLayoutSuccessor(L.getHeader()))) {
928 BestPred = Pred;
929 BestPredFreq = PredFreq;
930 }
931 }
932
933 // If no direct predecessor is fine, just use the loop header.
Philip Reamesb9688f42016-03-02 21:45:13 +0000934 if (!BestPred) {
935 DEBUG(dbgs() << " final top unchanged\n");
Chandler Carruth8c0b41d2012-04-16 13:33:36 +0000936 return L.getHeader();
Philip Reamesb9688f42016-03-02 21:45:13 +0000937 }
Chandler Carruth8c0b41d2012-04-16 13:33:36 +0000938
939 // Walk backwards through any straight line of predecessors.
940 while (BestPred->pred_size() == 1 &&
941 (*BestPred->pred_begin())->succ_size() == 1 &&
942 *BestPred->pred_begin() != L.getHeader())
943 BestPred = *BestPred->pred_begin();
944
945 DEBUG(dbgs() << " final top: " << getBlockName(BestPred) << "\n");
946 return BestPred;
947}
948
Chandler Carruth8c0b41d2012-04-16 13:33:36 +0000949/// \brief Find the best loop exiting block for layout.
950///
Chandler Carruth03adbd42011-11-27 13:34:33 +0000951/// This routine implements the logic to analyze the loop looking for the best
952/// block to layout at the top of the loop. Typically this is done to maximize
953/// fallthrough opportunities.
954MachineBasicBlock *
Xinliang David Li52530a72016-06-13 22:23:44 +0000955MachineBlockPlacement::findBestLoopExit(MachineLoop &L,
Chandler Carruthccc7e422012-04-16 01:12:56 +0000956 const BlockFilterSet &LoopBlockSet) {
Chandler Carruth68062612012-04-10 13:35:57 +0000957 // We don't want to layout the loop linearly in all cases. If the loop header
958 // is just a normal basic block in the loop, we want to look for what block
959 // within the loop is the best one to layout at the top. However, if the loop
960 // header has be pre-merged into a chain due to predecessors not having
961 // analyzable branches, *and* the predecessor it is merged with is *not* part
962 // of the loop, rotating the header into the middle of the loop will create
963 // a non-contiguous range of blocks which is Very Bad. So start with the
964 // header and only rotate if safe.
965 BlockChain &HeaderChain = *BlockToChain[L.getHeader()];
966 if (!LoopBlockSet.count(*HeaderChain.begin()))
Craig Topperc0196b12014-04-14 00:51:57 +0000967 return nullptr;
Chandler Carruth68062612012-04-10 13:35:57 +0000968
Chandler Carruth03adbd42011-11-27 13:34:33 +0000969 BlockFrequency BestExitEdgeFreq;
Chandler Carruthccc7e422012-04-16 01:12:56 +0000970 unsigned BestExitLoopDepth = 0;
Craig Topperc0196b12014-04-14 00:51:57 +0000971 MachineBasicBlock *ExitingBB = nullptr;
Chandler Carruth4f567202011-11-27 20:18:00 +0000972 // If there are exits to outer loops, loop rotation can severely limit
973 // fallthrough opportunites unless it selects such an exit. Keep a set of
974 // blocks where rotating to exit with that block will reach an outer loop.
975 SmallPtrSet<MachineBasicBlock *, 4> BlocksExitingToOuterLoop;
976
Chandler Carruth2fc3fe12015-03-05 02:35:31 +0000977 DEBUG(dbgs() << "Finding best loop exit for: " << getBlockName(L.getHeader())
978 << "\n");
Chandler Carruth7a715da2015-03-05 03:19:05 +0000979 for (MachineBasicBlock *MBB : L.getBlocks()) {
980 BlockChain &Chain = *BlockToChain[MBB];
Chandler Carruth03adbd42011-11-27 13:34:33 +0000981 // Ensure that this block is at the end of a chain; otherwise it could be
Chandler Carruth9a512a42015-04-15 13:19:54 +0000982 // mid-way through an inner loop or a successor of an unanalyzable branch.
Chandler Carruth7a715da2015-03-05 03:19:05 +0000983 if (MBB != *std::prev(Chain.end()))
Chandler Carruth9ffb97e2011-11-27 00:38:03 +0000984 continue;
Chandler Carruth9ffb97e2011-11-27 00:38:03 +0000985
Chandler Carruth03adbd42011-11-27 13:34:33 +0000986 // Now walk the successors. We need to establish whether this has a viable
987 // exiting successor and whether it has a viable non-exiting successor.
988 // We store the old exiting state and restore it if a viable looping
989 // successor isn't found.
990 MachineBasicBlock *OldExitingBB = ExitingBB;
991 BlockFrequency OldBestExitEdgeFreq = BestExitEdgeFreq;
Chandler Carruthccc7e422012-04-16 01:12:56 +0000992 bool HasLoopingSucc = false;
Chandler Carruth7a715da2015-03-05 03:19:05 +0000993 for (MachineBasicBlock *Succ : MBB->successors()) {
Reid Kleckner0e288232015-08-27 23:27:47 +0000994 if (Succ->isEHPad())
Chandler Carruth03adbd42011-11-27 13:34:33 +0000995 continue;
Chandler Carruth7a715da2015-03-05 03:19:05 +0000996 if (Succ == MBB)
Chandler Carruth03adbd42011-11-27 13:34:33 +0000997 continue;
Chandler Carruth7a715da2015-03-05 03:19:05 +0000998 BlockChain &SuccChain = *BlockToChain[Succ];
Chandler Carruth03adbd42011-11-27 13:34:33 +0000999 // Don't split chains, either this chain or the successor's chain.
Chandler Carruthccc7e422012-04-16 01:12:56 +00001000 if (&Chain == &SuccChain) {
Chandler Carruth7a715da2015-03-05 03:19:05 +00001001 DEBUG(dbgs() << " exiting: " << getBlockName(MBB) << " -> "
1002 << getBlockName(Succ) << " (chain conflict)\n");
Chandler Carruth03adbd42011-11-27 13:34:33 +00001003 continue;
1004 }
1005
Cong Houd97c1002015-12-01 05:29:22 +00001006 auto SuccProb = MBPI->getEdgeProbability(MBB, Succ);
Chandler Carruth7a715da2015-03-05 03:19:05 +00001007 if (LoopBlockSet.count(Succ)) {
1008 DEBUG(dbgs() << " looping: " << getBlockName(MBB) << " -> "
Cong Houd97c1002015-12-01 05:29:22 +00001009 << getBlockName(Succ) << " (" << SuccProb << ")\n");
Chandler Carruthccc7e422012-04-16 01:12:56 +00001010 HasLoopingSucc = true;
Chandler Carruth03adbd42011-11-27 13:34:33 +00001011 continue;
1012 }
1013
Chandler Carruthccc7e422012-04-16 01:12:56 +00001014 unsigned SuccLoopDepth = 0;
Chandler Carruth7a715da2015-03-05 03:19:05 +00001015 if (MachineLoop *ExitLoop = MLI->getLoopFor(Succ)) {
Chandler Carruthccc7e422012-04-16 01:12:56 +00001016 SuccLoopDepth = ExitLoop->getLoopDepth();
1017 if (ExitLoop->contains(&L))
Chandler Carruth7a715da2015-03-05 03:19:05 +00001018 BlocksExitingToOuterLoop.insert(MBB);
Chandler Carruthccc7e422012-04-16 01:12:56 +00001019 }
1020
Chandler Carruth7a715da2015-03-05 03:19:05 +00001021 BlockFrequency ExitEdgeFreq = MBFI->getBlockFreq(MBB) * SuccProb;
1022 DEBUG(dbgs() << " exiting: " << getBlockName(MBB) << " -> "
1023 << getBlockName(Succ) << " [L:" << SuccLoopDepth << "] (";
Chandler Carruth2fc3fe12015-03-05 02:35:31 +00001024 MBFI->printBlockFreq(dbgs(), ExitEdgeFreq) << ")\n");
Benjamin Kramerc8160d62013-11-20 19:08:44 +00001025 // Note that we bias this toward an existing layout successor to retain
1026 // incoming order in the absence of better information. The exit must have
1027 // a frequency higher than the current exit before we consider breaking
1028 // the layout.
1029 BranchProbability Bias(100 - ExitBlockBias, 100);
Chandler Carruth26d30172015-04-15 13:39:42 +00001030 if (!ExitingBB || SuccLoopDepth > BestExitLoopDepth ||
Chandler Carruthccc7e422012-04-16 01:12:56 +00001031 ExitEdgeFreq > BestExitEdgeFreq ||
Chandler Carruth7a715da2015-03-05 03:19:05 +00001032 (MBB->isLayoutSuccessor(Succ) &&
Benjamin Kramerc8160d62013-11-20 19:08:44 +00001033 !(ExitEdgeFreq < BestExitEdgeFreq * Bias))) {
Chandler Carruth03adbd42011-11-27 13:34:33 +00001034 BestExitEdgeFreq = ExitEdgeFreq;
Chandler Carruth7a715da2015-03-05 03:19:05 +00001035 ExitingBB = MBB;
Chandler Carrutha0545802011-11-27 09:22:53 +00001036 }
Chandler Carruth9ffb97e2011-11-27 00:38:03 +00001037 }
Chandler Carruth03adbd42011-11-27 13:34:33 +00001038
Chandler Carruthccc7e422012-04-16 01:12:56 +00001039 if (!HasLoopingSucc) {
Chandler Carruthcfb2b9d2015-04-15 13:26:41 +00001040 // Restore the old exiting state, no viable looping successor was found.
Chandler Carruth03adbd42011-11-27 13:34:33 +00001041 ExitingBB = OldExitingBB;
1042 BestExitEdgeFreq = OldBestExitEdgeFreq;
Chandler Carruth03adbd42011-11-27 13:34:33 +00001043 }
Chandler Carruth9ffb97e2011-11-27 00:38:03 +00001044 }
Chandler Carruthccc7e422012-04-16 01:12:56 +00001045 // Without a candidate exiting block or with only a single block in the
Chandler Carruth03adbd42011-11-27 13:34:33 +00001046 // loop, just use the loop header to layout the loop.
1047 if (!ExitingBB || L.getNumBlocks() == 1)
Craig Topperc0196b12014-04-14 00:51:57 +00001048 return nullptr;
Chandler Carruth9ffb97e2011-11-27 00:38:03 +00001049
Chandler Carruth4f567202011-11-27 20:18:00 +00001050 // Also, if we have exit blocks which lead to outer loops but didn't select
1051 // one of them as the exiting block we are rotating toward, disable loop
1052 // rotation altogether.
1053 if (!BlocksExitingToOuterLoop.empty() &&
1054 !BlocksExitingToOuterLoop.count(ExitingBB))
Craig Topperc0196b12014-04-14 00:51:57 +00001055 return nullptr;
Chandler Carruth4f567202011-11-27 20:18:00 +00001056
Chandler Carruth03adbd42011-11-27 13:34:33 +00001057 DEBUG(dbgs() << " Best exiting block: " << getBlockName(ExitingBB) << "\n");
Chandler Carruthccc7e422012-04-16 01:12:56 +00001058 return ExitingBB;
Chandler Carruth9ffb97e2011-11-27 00:38:03 +00001059}
1060
Chandler Carruth8c74c7b2012-04-16 09:31:23 +00001061/// \brief Attempt to rotate an exiting block to the bottom of the loop.
1062///
1063/// Once we have built a chain, try to rotate it to line up the hot exit block
1064/// with fallthrough out of the loop if doing so doesn't introduce unnecessary
1065/// branches. For example, if the loop has fallthrough into its header and out
1066/// of its bottom already, don't rotate it.
1067void MachineBlockPlacement::rotateLoop(BlockChain &LoopChain,
1068 MachineBasicBlock *ExitingBB,
1069 const BlockFilterSet &LoopBlockSet) {
1070 if (!ExitingBB)
1071 return;
1072
1073 MachineBasicBlock *Top = *LoopChain.begin();
1074 bool ViableTopFallthrough = false;
Chandler Carruth7a715da2015-03-05 03:19:05 +00001075 for (MachineBasicBlock *Pred : Top->predecessors()) {
1076 BlockChain *PredChain = BlockToChain[Pred];
1077 if (!LoopBlockSet.count(Pred) &&
1078 (!PredChain || Pred == *std::prev(PredChain->end()))) {
Chandler Carruth8c74c7b2012-04-16 09:31:23 +00001079 ViableTopFallthrough = true;
1080 break;
1081 }
1082 }
1083
1084 // If the header has viable fallthrough, check whether the current loop
1085 // bottom is a viable exiting block. If so, bail out as rotating will
1086 // introduce an unnecessary branch.
1087 if (ViableTopFallthrough) {
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00001088 MachineBasicBlock *Bottom = *std::prev(LoopChain.end());
Chandler Carruth7a715da2015-03-05 03:19:05 +00001089 for (MachineBasicBlock *Succ : Bottom->successors()) {
1090 BlockChain *SuccChain = BlockToChain[Succ];
1091 if (!LoopBlockSet.count(Succ) &&
1092 (!SuccChain || Succ == *SuccChain->begin()))
Chandler Carruth8c74c7b2012-04-16 09:31:23 +00001093 return;
1094 }
1095 }
1096
Chandler Carruth2fc3fe12015-03-05 02:35:31 +00001097 BlockChain::iterator ExitIt =
1098 std::find(LoopChain.begin(), LoopChain.end(), ExitingBB);
Chandler Carruth8c74c7b2012-04-16 09:31:23 +00001099 if (ExitIt == LoopChain.end())
1100 return;
1101
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00001102 std::rotate(LoopChain.begin(), std::next(ExitIt), LoopChain.end());
Chandler Carruth8c74c7b2012-04-16 09:31:23 +00001103}
1104
Cong Hou7745dbc2015-10-19 23:16:40 +00001105/// \brief Attempt to rotate a loop based on profile data to reduce branch cost.
1106///
1107/// With profile data, we can determine the cost in terms of missed fall through
1108/// opportunities when rotating a loop chain and select the best rotation.
1109/// Basically, there are three kinds of cost to consider for each rotation:
1110/// 1. The possibly missed fall through edge (if it exists) from BB out of
1111/// the loop to the loop header.
1112/// 2. The possibly missed fall through edges (if they exist) from the loop
1113/// exits to BB out of the loop.
1114/// 3. The missed fall through edge (if it exists) from the last BB to the
1115/// first BB in the loop chain.
1116/// Therefore, the cost for a given rotation is the sum of costs listed above.
1117/// We select the best rotation with the smallest cost.
1118void MachineBlockPlacement::rotateLoopWithProfile(
1119 BlockChain &LoopChain, MachineLoop &L, const BlockFilterSet &LoopBlockSet) {
1120 auto HeaderBB = L.getHeader();
1121 auto HeaderIter = std::find(LoopChain.begin(), LoopChain.end(), HeaderBB);
1122 auto RotationPos = LoopChain.end();
1123
1124 BlockFrequency SmallestRotationCost = BlockFrequency::getMaxFrequency();
1125
1126 // A utility lambda that scales up a block frequency by dividing it by a
1127 // branch probability which is the reciprocal of the scale.
1128 auto ScaleBlockFrequency = [](BlockFrequency Freq,
1129 unsigned Scale) -> BlockFrequency {
1130 if (Scale == 0)
1131 return 0;
1132 // Use operator / between BlockFrequency and BranchProbability to implement
1133 // saturating multiplication.
1134 return Freq / BranchProbability(1, Scale);
1135 };
1136
1137 // Compute the cost of the missed fall-through edge to the loop header if the
1138 // chain head is not the loop header. As we only consider natural loops with
1139 // single header, this computation can be done only once.
1140 BlockFrequency HeaderFallThroughCost(0);
1141 for (auto *Pred : HeaderBB->predecessors()) {
1142 BlockChain *PredChain = BlockToChain[Pred];
1143 if (!LoopBlockSet.count(Pred) &&
1144 (!PredChain || Pred == *std::prev(PredChain->end()))) {
1145 auto EdgeFreq =
1146 MBFI->getBlockFreq(Pred) * MBPI->getEdgeProbability(Pred, HeaderBB);
1147 auto FallThruCost = ScaleBlockFrequency(EdgeFreq, MisfetchCost);
1148 // If the predecessor has only an unconditional jump to the header, we
1149 // need to consider the cost of this jump.
1150 if (Pred->succ_size() == 1)
1151 FallThruCost += ScaleBlockFrequency(EdgeFreq, JumpInstCost);
1152 HeaderFallThroughCost = std::max(HeaderFallThroughCost, FallThruCost);
1153 }
1154 }
1155
1156 // Here we collect all exit blocks in the loop, and for each exit we find out
1157 // its hottest exit edge. For each loop rotation, we define the loop exit cost
1158 // as the sum of frequencies of exit edges we collect here, excluding the exit
1159 // edge from the tail of the loop chain.
1160 SmallVector<std::pair<MachineBasicBlock *, BlockFrequency>, 4> ExitsWithFreq;
1161 for (auto BB : LoopChain) {
Cong Houd97c1002015-12-01 05:29:22 +00001162 auto LargestExitEdgeProb = BranchProbability::getZero();
Cong Hou7745dbc2015-10-19 23:16:40 +00001163 for (auto *Succ : BB->successors()) {
1164 BlockChain *SuccChain = BlockToChain[Succ];
1165 if (!LoopBlockSet.count(Succ) &&
1166 (!SuccChain || Succ == *SuccChain->begin())) {
Cong Houd97c1002015-12-01 05:29:22 +00001167 auto SuccProb = MBPI->getEdgeProbability(BB, Succ);
1168 LargestExitEdgeProb = std::max(LargestExitEdgeProb, SuccProb);
Cong Hou7745dbc2015-10-19 23:16:40 +00001169 }
1170 }
Cong Houd97c1002015-12-01 05:29:22 +00001171 if (LargestExitEdgeProb > BranchProbability::getZero()) {
1172 auto ExitFreq = MBFI->getBlockFreq(BB) * LargestExitEdgeProb;
Cong Hou7745dbc2015-10-19 23:16:40 +00001173 ExitsWithFreq.emplace_back(BB, ExitFreq);
1174 }
1175 }
1176
1177 // In this loop we iterate every block in the loop chain and calculate the
1178 // cost assuming the block is the head of the loop chain. When the loop ends,
1179 // we should have found the best candidate as the loop chain's head.
1180 for (auto Iter = LoopChain.begin(), TailIter = std::prev(LoopChain.end()),
1181 EndIter = LoopChain.end();
1182 Iter != EndIter; Iter++, TailIter++) {
1183 // TailIter is used to track the tail of the loop chain if the block we are
1184 // checking (pointed by Iter) is the head of the chain.
1185 if (TailIter == LoopChain.end())
1186 TailIter = LoopChain.begin();
1187
1188 auto TailBB = *TailIter;
1189
1190 // Calculate the cost by putting this BB to the top.
1191 BlockFrequency Cost = 0;
1192
1193 // If the current BB is the loop header, we need to take into account the
1194 // cost of the missed fall through edge from outside of the loop to the
1195 // header.
1196 if (Iter != HeaderIter)
1197 Cost += HeaderFallThroughCost;
1198
1199 // Collect the loop exit cost by summing up frequencies of all exit edges
1200 // except the one from the chain tail.
1201 for (auto &ExitWithFreq : ExitsWithFreq)
1202 if (TailBB != ExitWithFreq.first)
1203 Cost += ExitWithFreq.second;
1204
1205 // The cost of breaking the once fall-through edge from the tail to the top
1206 // of the loop chain. Here we need to consider three cases:
1207 // 1. If the tail node has only one successor, then we will get an
1208 // additional jmp instruction. So the cost here is (MisfetchCost +
1209 // JumpInstCost) * tail node frequency.
1210 // 2. If the tail node has two successors, then we may still get an
1211 // additional jmp instruction if the layout successor after the loop
1212 // chain is not its CFG successor. Note that the more frequently executed
1213 // jmp instruction will be put ahead of the other one. Assume the
1214 // frequency of those two branches are x and y, where x is the frequency
1215 // of the edge to the chain head, then the cost will be
1216 // (x * MisfetechCost + min(x, y) * JumpInstCost) * tail node frequency.
1217 // 3. If the tail node has more than two successors (this rarely happens),
1218 // we won't consider any additional cost.
1219 if (TailBB->isSuccessor(*Iter)) {
1220 auto TailBBFreq = MBFI->getBlockFreq(TailBB);
1221 if (TailBB->succ_size() == 1)
1222 Cost += ScaleBlockFrequency(TailBBFreq.getFrequency(),
1223 MisfetchCost + JumpInstCost);
1224 else if (TailBB->succ_size() == 2) {
1225 auto TailToHeadProb = MBPI->getEdgeProbability(TailBB, *Iter);
1226 auto TailToHeadFreq = TailBBFreq * TailToHeadProb;
1227 auto ColderEdgeFreq = TailToHeadProb > BranchProbability(1, 2)
1228 ? TailBBFreq * TailToHeadProb.getCompl()
1229 : TailToHeadFreq;
1230 Cost += ScaleBlockFrequency(TailToHeadFreq, MisfetchCost) +
1231 ScaleBlockFrequency(ColderEdgeFreq, JumpInstCost);
1232 }
1233 }
1234
Philip Reamesb9688f42016-03-02 21:45:13 +00001235 DEBUG(dbgs() << "The cost of loop rotation by making " << getBlockName(*Iter)
Cong Hou7745dbc2015-10-19 23:16:40 +00001236 << " to the top: " << Cost.getFrequency() << "\n");
1237
1238 if (Cost < SmallestRotationCost) {
1239 SmallestRotationCost = Cost;
1240 RotationPos = Iter;
1241 }
1242 }
1243
1244 if (RotationPos != LoopChain.end()) {
Philip Reamesb9688f42016-03-02 21:45:13 +00001245 DEBUG(dbgs() << "Rotate loop by making " << getBlockName(*RotationPos)
Cong Hou7745dbc2015-10-19 23:16:40 +00001246 << " to the top\n");
1247 std::rotate(LoopChain.begin(), RotationPos, LoopChain.end());
1248 }
1249}
1250
Cong Houb90b9e02015-11-02 21:24:00 +00001251/// \brief Collect blocks in the given loop that are to be placed.
1252///
1253/// When profile data is available, exclude cold blocks from the returned set;
1254/// otherwise, collect all blocks in the loop.
1255MachineBlockPlacement::BlockFilterSet
Xinliang David Li52530a72016-06-13 22:23:44 +00001256MachineBlockPlacement::collectLoopBlockSet(MachineLoop &L) {
Cong Houb90b9e02015-11-02 21:24:00 +00001257 BlockFilterSet LoopBlockSet;
1258
1259 // Filter cold blocks off from LoopBlockSet when profile data is available.
1260 // Collect the sum of frequencies of incoming edges to the loop header from
1261 // outside. If we treat the loop as a super block, this is the frequency of
1262 // the loop. Then for each block in the loop, we calculate the ratio between
1263 // its frequency and the frequency of the loop block. When it is too small,
1264 // don't add it to the loop chain. If there are outer loops, then this block
1265 // will be merged into the first outer loop chain for which this block is not
1266 // cold anymore. This needs precise profile data and we only do this when
1267 // profile data is available.
Xinliang David Li52530a72016-06-13 22:23:44 +00001268 if (F->getFunction()->getEntryCount()) {
Cong Houb90b9e02015-11-02 21:24:00 +00001269 BlockFrequency LoopFreq(0);
1270 for (auto LoopPred : L.getHeader()->predecessors())
1271 if (!L.contains(LoopPred))
1272 LoopFreq += MBFI->getBlockFreq(LoopPred) *
1273 MBPI->getEdgeProbability(LoopPred, L.getHeader());
1274
1275 for (MachineBasicBlock *LoopBB : L.getBlocks()) {
1276 auto Freq = MBFI->getBlockFreq(LoopBB).getFrequency();
1277 if (Freq == 0 || LoopFreq.getFrequency() / Freq > LoopToColdBlockRatio)
1278 continue;
1279 LoopBlockSet.insert(LoopBB);
1280 }
1281 } else
1282 LoopBlockSet.insert(L.block_begin(), L.block_end());
1283
1284 return LoopBlockSet;
1285}
1286
Chandler Carruthbd1be4d2011-10-23 09:18:45 +00001287/// \brief Forms basic block chains from the natural loop structures.
Chandler Carruth10281422011-10-21 06:46:38 +00001288///
Chandler Carruthbd1be4d2011-10-23 09:18:45 +00001289/// These chains are designed to preserve the existing *structure* of the code
1290/// as much as possible. We can then stitch the chains together in a way which
1291/// both preserves the topological structure and minimizes taken conditional
1292/// branches.
Xinliang David Li52530a72016-06-13 22:23:44 +00001293void MachineBlockPlacement::buildLoopChains(MachineLoop &L) {
Chandler Carruthbd1be4d2011-10-23 09:18:45 +00001294 // First recurse through any nested loops, building chains for those inner
1295 // loops.
Chandler Carruth7a715da2015-03-05 03:19:05 +00001296 for (MachineLoop *InnerLoop : L)
Xinliang David Li52530a72016-06-13 22:23:44 +00001297 buildLoopChains(*InnerLoop);
Chandler Carruth10281422011-10-21 06:46:38 +00001298
Chandler Carruth8d150782011-11-13 11:20:44 +00001299 SmallVector<MachineBasicBlock *, 16> BlockWorkList;
Amaury Sechetc53ad4f2016-04-07 21:29:39 +00001300 SmallVector<MachineBasicBlock *, 16> EHPadWorkList;
Xinliang David Li52530a72016-06-13 22:23:44 +00001301 BlockFilterSet LoopBlockSet = collectLoopBlockSet(L);
Chandler Carruth03adbd42011-11-27 13:34:33 +00001302
Cong Hou7745dbc2015-10-19 23:16:40 +00001303 // Check if we have profile data for this function. If yes, we will rotate
1304 // this loop by modeling costs more precisely which requires the profile data
1305 // for better layout.
1306 bool RotateLoopWithProfile =
Xinliang David Lif0ab6df2016-05-12 02:04:41 +00001307 ForcePreciseRotationCost ||
Xinliang David Li52530a72016-06-13 22:23:44 +00001308 (PreciseRotationCost && F->getFunction()->getEntryCount());
Cong Hou7745dbc2015-10-19 23:16:40 +00001309
Chandler Carruth8c0b41d2012-04-16 13:33:36 +00001310 // First check to see if there is an obviously preferable top block for the
1311 // loop. This will default to the header, but may end up as one of the
1312 // predecessors to the header if there is one which will result in strictly
1313 // fewer branches in the loop body.
Cong Hou7745dbc2015-10-19 23:16:40 +00001314 // When we use profile data to rotate the loop, this is unnecessary.
1315 MachineBasicBlock *LoopTop =
1316 RotateLoopWithProfile ? L.getHeader() : findBestLoopTop(L, LoopBlockSet);
Chandler Carruth8c0b41d2012-04-16 13:33:36 +00001317
1318 // If we selected just the header for the loop top, look for a potentially
1319 // profitable exit block in the event that rotating the loop can eliminate
1320 // branches by placing an exit edge at the bottom.
Craig Topperc0196b12014-04-14 00:51:57 +00001321 MachineBasicBlock *ExitingBB = nullptr;
Cong Hou7745dbc2015-10-19 23:16:40 +00001322 if (!RotateLoopWithProfile && LoopTop == L.getHeader())
Xinliang David Li52530a72016-06-13 22:23:44 +00001323 ExitingBB = findBestLoopExit(L, LoopBlockSet);
Chandler Carruth8c0b41d2012-04-16 13:33:36 +00001324
1325 BlockChain &LoopChain = *BlockToChain[LoopTop];
Chandler Carruth10281422011-10-21 06:46:38 +00001326
Chandler Carruth8d150782011-11-13 11:20:44 +00001327 // FIXME: This is a really lame way of walking the chains in the loop: we
1328 // walk the blocks, and use a set to prevent visiting a particular chain
1329 // twice.
Jakub Staszak90616162011-12-21 23:02:08 +00001330 SmallPtrSet<BlockChain *, 4> UpdatedPreds;
Philip Reamesae27b232016-03-03 00:58:43 +00001331 assert(LoopChain.UnscheduledPredecessors == 0);
Jakub Staszak190c7122011-12-07 19:46:10 +00001332 UpdatedPreds.insert(&LoopChain);
Cong Houb90b9e02015-11-02 21:24:00 +00001333
Amaury Secheteae09c22016-03-14 21:24:11 +00001334 for (MachineBasicBlock *LoopBB : LoopBlockSet)
Amaury Sechetc53ad4f2016-04-07 21:29:39 +00001335 fillWorkLists(LoopBB, UpdatedPreds, BlockWorkList, EHPadWorkList,
1336 &LoopBlockSet);
Chandler Carruth8d150782011-11-13 11:20:44 +00001337
Amaury Sechetc53ad4f2016-04-07 21:29:39 +00001338 buildChain(LoopTop, LoopChain, BlockWorkList, EHPadWorkList, &LoopBlockSet);
Cong Hou7745dbc2015-10-19 23:16:40 +00001339
1340 if (RotateLoopWithProfile)
1341 rotateLoopWithProfile(LoopChain, L, LoopBlockSet);
1342 else
1343 rotateLoop(LoopChain, ExitingBB, LoopBlockSet);
Chandler Carruth8d150782011-11-13 11:20:44 +00001344
1345 DEBUG({
Chandler Carruth8e1d9062011-11-13 21:39:51 +00001346 // Crash at the end so we get all of the debugging output first.
1347 bool BadLoop = false;
Philip Reamesae27b232016-03-03 00:58:43 +00001348 if (LoopChain.UnscheduledPredecessors) {
Chandler Carruth8e1d9062011-11-13 21:39:51 +00001349 BadLoop = true;
Chandler Carruth8d150782011-11-13 11:20:44 +00001350 dbgs() << "Loop chain contains a block without its preds placed!\n"
1351 << " Loop header: " << getBlockName(*L.block_begin()) << "\n"
1352 << " Chain header: " << getBlockName(*LoopChain.begin()) << "\n";
Chandler Carruth8e1d9062011-11-13 21:39:51 +00001353 }
Chandler Carruth7a715da2015-03-05 03:19:05 +00001354 for (MachineBasicBlock *ChainBB : LoopChain) {
1355 dbgs() << " ... " << getBlockName(ChainBB) << "\n";
1356 if (!LoopBlockSet.erase(ChainBB)) {
Chandler Carruth0a31d142011-11-14 10:55:53 +00001357 // We don't mark the loop as bad here because there are real situations
1358 // where this can occur. For example, with an unanalyzable fallthrough
Chandler Carruth99fe42f2011-11-23 10:35:36 +00001359 // from a loop block to a non-loop block or vice versa.
Chandler Carruth8d150782011-11-13 11:20:44 +00001360 dbgs() << "Loop chain contains a block not contained by the loop!\n"
1361 << " Loop header: " << getBlockName(*L.block_begin()) << "\n"
1362 << " Chain header: " << getBlockName(*LoopChain.begin()) << "\n"
Chandler Carruth7a715da2015-03-05 03:19:05 +00001363 << " Bad block: " << getBlockName(ChainBB) << "\n";
Chandler Carruth8e1d9062011-11-13 21:39:51 +00001364 }
Chandler Carruthccc7e422012-04-16 01:12:56 +00001365 }
Chandler Carruth8d150782011-11-13 11:20:44 +00001366
Chandler Carruth8e1d9062011-11-13 21:39:51 +00001367 if (!LoopBlockSet.empty()) {
1368 BadLoop = true;
Chandler Carruth7a715da2015-03-05 03:19:05 +00001369 for (MachineBasicBlock *LoopBB : LoopBlockSet)
Chandler Carruth8d150782011-11-13 11:20:44 +00001370 dbgs() << "Loop contains blocks never placed into a chain!\n"
1371 << " Loop header: " << getBlockName(*L.block_begin()) << "\n"
1372 << " Chain header: " << getBlockName(*LoopChain.begin()) << "\n"
Chandler Carruth7a715da2015-03-05 03:19:05 +00001373 << " Bad block: " << getBlockName(LoopBB) << "\n";
Chandler Carruth8e1d9062011-11-13 21:39:51 +00001374 }
1375 assert(!BadLoop && "Detected problems with the placement of this loop.");
Chandler Carruth8d150782011-11-13 11:20:44 +00001376 });
Chandler Carruth10281422011-10-21 06:46:38 +00001377}
1378
Xinliang David Li071d0f12016-06-12 16:54:03 +00001379/// When OutlineOpitonalBranches is on, this method colects BBs that
1380/// dominates all terminator blocks of the function \p F.
Xinliang David Li52530a72016-06-13 22:23:44 +00001381void MachineBlockPlacement::collectMustExecuteBBs() {
Xinliang David Li071d0f12016-06-12 16:54:03 +00001382 if (OutlineOptionalBranches) {
1383 // Find the nearest common dominator of all of F's terminators.
1384 MachineBasicBlock *Terminator = nullptr;
Xinliang David Li52530a72016-06-13 22:23:44 +00001385 for (MachineBasicBlock &MBB : *F) {
Xinliang David Li071d0f12016-06-12 16:54:03 +00001386 if (MBB.succ_size() == 0) {
1387 if (Terminator == nullptr)
1388 Terminator = &MBB;
1389 else
1390 Terminator = MDT->findNearestCommonDominator(Terminator, &MBB);
1391 }
1392 }
1393
1394 // MBBs dominating this common dominator are unavoidable.
1395 UnavoidableBlocks.clear();
Xinliang David Li52530a72016-06-13 22:23:44 +00001396 for (MachineBasicBlock &MBB : *F) {
Xinliang David Li071d0f12016-06-12 16:54:03 +00001397 if (MDT->dominates(&MBB, Terminator)) {
1398 UnavoidableBlocks.insert(&MBB);
1399 }
1400 }
1401 }
1402}
1403
Xinliang David Li52530a72016-06-13 22:23:44 +00001404void MachineBlockPlacement::buildCFGChains() {
Chandler Carruth8d150782011-11-13 11:20:44 +00001405 // Ensure that every BB in the function has an associated chain to simplify
1406 // the assumptions of the remaining algorithm.
Chandler Carruthf3dc9ef2011-11-19 10:26:02 +00001407 SmallVector<MachineOperand, 4> Cond; // For AnalyzeBranch.
Xinliang David Li52530a72016-06-13 22:23:44 +00001408 for (MachineFunction::iterator FI = F->begin(), FE = F->end(); FI != FE;
1409 ++FI) {
Duncan P. N. Exon Smith6ac07fd2015-10-09 19:36:12 +00001410 MachineBasicBlock *BB = &*FI;
Chandler Carruth2fc3fe12015-03-05 02:35:31 +00001411 BlockChain *Chain =
1412 new (ChainAllocator.Allocate()) BlockChain(BlockToChain, BB);
Chandler Carruthf3dc9ef2011-11-19 10:26:02 +00001413 // Also, merge any blocks which we cannot reason about and must preserve
1414 // the exact fallthrough behavior for.
1415 for (;;) {
1416 Cond.clear();
Craig Topperc0196b12014-04-14 00:51:57 +00001417 MachineBasicBlock *TBB = nullptr, *FBB = nullptr; // For AnalyzeBranch.
Chandler Carruthf3dc9ef2011-11-19 10:26:02 +00001418 if (!TII->AnalyzeBranch(*BB, TBB, FBB, Cond) || !FI->canFallThrough())
1419 break;
1420
Duncan P. N. Exon Smith6ac07fd2015-10-09 19:36:12 +00001421 MachineFunction::iterator NextFI = std::next(FI);
1422 MachineBasicBlock *NextBB = &*NextFI;
Chandler Carruthf3dc9ef2011-11-19 10:26:02 +00001423 // Ensure that the layout successor is a viable block, as we know that
1424 // fallthrough is a possibility.
1425 assert(NextFI != FE && "Can't fallthrough past the last block.");
1426 DEBUG(dbgs() << "Pre-merging due to unanalyzable fallthrough: "
1427 << getBlockName(BB) << " -> " << getBlockName(NextBB)
1428 << "\n");
Craig Topperc0196b12014-04-14 00:51:57 +00001429 Chain->merge(NextBB, nullptr);
Chandler Carruthf3dc9ef2011-11-19 10:26:02 +00001430 FI = NextFI;
1431 BB = NextBB;
1432 }
1433 }
Chandler Carruth8d150782011-11-13 11:20:44 +00001434
Xinliang David Li071d0f12016-06-12 16:54:03 +00001435 // Turned on with OutlineOptionalBranches option
Xinliang David Li52530a72016-06-13 22:23:44 +00001436 collectMustExecuteBBs();
Daniel Jasper471e8562015-03-04 11:05:34 +00001437
Chandler Carruth8d150782011-11-13 11:20:44 +00001438 // Build any loop-based chains.
Chandler Carruth7a715da2015-03-05 03:19:05 +00001439 for (MachineLoop *L : *MLI)
Xinliang David Li52530a72016-06-13 22:23:44 +00001440 buildLoopChains(*L);
Chandler Carruthbd1be4d2011-10-23 09:18:45 +00001441
Chandler Carruth8d150782011-11-13 11:20:44 +00001442 SmallVector<MachineBasicBlock *, 16> BlockWorkList;
Amaury Sechetc53ad4f2016-04-07 21:29:39 +00001443 SmallVector<MachineBasicBlock *, 16> EHPadWorkList;
Chandler Carruthbd1be4d2011-10-23 09:18:45 +00001444
Chandler Carruth8d150782011-11-13 11:20:44 +00001445 SmallPtrSet<BlockChain *, 4> UpdatedPreds;
Xinliang David Li52530a72016-06-13 22:23:44 +00001446 for (MachineBasicBlock &MBB : *F)
Amaury Sechetc53ad4f2016-04-07 21:29:39 +00001447 fillWorkLists(&MBB, UpdatedPreds, BlockWorkList, EHPadWorkList);
Chandler Carruth8d150782011-11-13 11:20:44 +00001448
Xinliang David Li52530a72016-06-13 22:23:44 +00001449 BlockChain &FunctionChain = *BlockToChain[&F->front()];
1450 buildChain(&F->front(), FunctionChain, BlockWorkList, EHPadWorkList);
Chandler Carruth8d150782011-11-13 11:20:44 +00001451
Matt Arsenault0f5f0152013-12-10 18:55:37 +00001452#ifndef NDEBUG
Matt Arsenault79d55f52013-12-05 20:02:18 +00001453 typedef SmallPtrSet<MachineBasicBlock *, 16> FunctionBlockSetType;
Matt Arsenault0f5f0152013-12-10 18:55:37 +00001454#endif
Chandler Carruth8d150782011-11-13 11:20:44 +00001455 DEBUG({
Chandler Carruth8e1d9062011-11-13 21:39:51 +00001456 // Crash at the end so we get all of the debugging output first.
1457 bool BadFunc = false;
Chandler Carruth8d150782011-11-13 11:20:44 +00001458 FunctionBlockSetType FunctionBlockSet;
Xinliang David Li52530a72016-06-13 22:23:44 +00001459 for (MachineBasicBlock &MBB : *F)
Chandler Carruth7a715da2015-03-05 03:19:05 +00001460 FunctionBlockSet.insert(&MBB);
Chandler Carruth8d150782011-11-13 11:20:44 +00001461
Chandler Carruth7a715da2015-03-05 03:19:05 +00001462 for (MachineBasicBlock *ChainBB : FunctionChain)
1463 if (!FunctionBlockSet.erase(ChainBB)) {
Chandler Carruth8e1d9062011-11-13 21:39:51 +00001464 BadFunc = true;
Chandler Carruth8d150782011-11-13 11:20:44 +00001465 dbgs() << "Function chain contains a block not in the function!\n"
Chandler Carruth7a715da2015-03-05 03:19:05 +00001466 << " Bad block: " << getBlockName(ChainBB) << "\n";
Chandler Carruth8e1d9062011-11-13 21:39:51 +00001467 }
Chandler Carruth8d150782011-11-13 11:20:44 +00001468
Chandler Carruth8e1d9062011-11-13 21:39:51 +00001469 if (!FunctionBlockSet.empty()) {
1470 BadFunc = true;
Chandler Carruth7a715da2015-03-05 03:19:05 +00001471 for (MachineBasicBlock *RemainingBB : FunctionBlockSet)
Chandler Carruth8d150782011-11-13 11:20:44 +00001472 dbgs() << "Function contains blocks never placed into a chain!\n"
Chandler Carruth7a715da2015-03-05 03:19:05 +00001473 << " Bad block: " << getBlockName(RemainingBB) << "\n";
Chandler Carruth8e1d9062011-11-13 21:39:51 +00001474 }
1475 assert(!BadFunc && "Detected problems with the block placement.");
Chandler Carruth8d150782011-11-13 11:20:44 +00001476 });
1477
1478 // Splice the blocks into place.
Xinliang David Li52530a72016-06-13 22:23:44 +00001479 MachineFunction::iterator InsertPos = F->begin();
Chandler Carruth7a715da2015-03-05 03:19:05 +00001480 for (MachineBasicBlock *ChainBB : FunctionChain) {
1481 DEBUG(dbgs() << (ChainBB == *FunctionChain.begin() ? "Placing chain "
1482 : " ... ")
1483 << getBlockName(ChainBB) << "\n");
1484 if (InsertPos != MachineFunction::iterator(ChainBB))
Xinliang David Li52530a72016-06-13 22:23:44 +00001485 F->splice(InsertPos, ChainBB);
Chandler Carruth8d150782011-11-13 11:20:44 +00001486 else
1487 ++InsertPos;
1488
1489 // Update the terminator of the previous block.
Chandler Carruth7a715da2015-03-05 03:19:05 +00001490 if (ChainBB == *FunctionChain.begin())
Chandler Carruth8d150782011-11-13 11:20:44 +00001491 continue;
Duncan P. N. Exon Smith6ac07fd2015-10-09 19:36:12 +00001492 MachineBasicBlock *PrevBB = &*std::prev(MachineFunction::iterator(ChainBB));
Chandler Carruth8d150782011-11-13 11:20:44 +00001493
Chandler Carruth10281422011-10-21 06:46:38 +00001494 // FIXME: It would be awesome of updateTerminator would just return rather
1495 // than assert when the branch cannot be analyzed in order to remove this
1496 // boiler plate.
1497 Cond.clear();
Craig Topperc0196b12014-04-14 00:51:57 +00001498 MachineBasicBlock *TBB = nullptr, *FBB = nullptr; // For AnalyzeBranch.
Shuxin Yang8b8fd212013-06-04 01:00:57 +00001499
Haicheng Wu90a55652016-05-24 22:16:14 +00001500 // The "PrevBB" is not yet updated to reflect current code layout, so,
1501 // o. it may fall-through to a block without explict "goto" instruction
1502 // before layout, and no longer fall-through it after layout; or
1503 // o. just opposite.
1504 //
1505 // AnalyzeBranch() may return erroneous value for FBB when these two
1506 // situations take place. For the first scenario FBB is mistakenly set NULL;
1507 // for the 2nd scenario, the FBB, which is expected to be NULL, is
1508 // mistakenly pointing to "*BI".
1509 // Thus, if the future change needs to use FBB before the layout is set, it
1510 // has to correct FBB first by using the code similar to the following:
1511 //
1512 // if (!Cond.empty() && (!FBB || FBB == ChainBB)) {
1513 // PrevBB->updateTerminator();
1514 // Cond.clear();
1515 // TBB = FBB = nullptr;
1516 // if (TII->AnalyzeBranch(*PrevBB, TBB, FBB, Cond)) {
1517 // // FIXME: This should never take place.
1518 // TBB = FBB = nullptr;
1519 // }
1520 // }
Xinliang David Li52530a72016-06-13 22:23:44 +00001521 if (!TII->AnalyzeBranch(*PrevBB, TBB, FBB, Cond))
Haicheng Wu90a55652016-05-24 22:16:14 +00001522 PrevBB->updateTerminator();
Chandler Carruth10281422011-10-21 06:46:38 +00001523 }
Chandler Carruth8d150782011-11-13 11:20:44 +00001524
1525 // Fixup the last block.
1526 Cond.clear();
Craig Topperc0196b12014-04-14 00:51:57 +00001527 MachineBasicBlock *TBB = nullptr, *FBB = nullptr; // For AnalyzeBranch.
Xinliang David Li52530a72016-06-13 22:23:44 +00001528 if (!TII->AnalyzeBranch(F->back(), TBB, FBB, Cond))
1529 F->back().updateTerminator();
Haicheng Wu90a55652016-05-24 22:16:14 +00001530}
1531
Xinliang David Li52530a72016-06-13 22:23:44 +00001532void MachineBlockPlacement::optimizeBranches() {
1533 BlockChain &FunctionChain = *BlockToChain[&F->front()];
Haicheng Wu90a55652016-05-24 22:16:14 +00001534 SmallVector<MachineOperand, 4> Cond; // For AnalyzeBranch.
Quentin Colombet776e6de2016-05-02 22:58:59 +00001535
1536 // Now that all the basic blocks in the chain have the proper layout,
1537 // make a final call to AnalyzeBranch with AllowModify set.
1538 // Indeed, the target may be able to optimize the branches in a way we
1539 // cannot because all branches may not be analyzable.
1540 // E.g., the target may be able to remove an unconditional branch to
1541 // a fallthrough when it occurs after predicated terminators.
1542 for (MachineBasicBlock *ChainBB : FunctionChain) {
1543 Cond.clear();
Haicheng Wu90a55652016-05-24 22:16:14 +00001544 MachineBasicBlock *TBB = nullptr, *FBB = nullptr; // For AnalyzeBranch.
1545 if (!TII->AnalyzeBranch(*ChainBB, TBB, FBB, Cond, /*AllowModify*/ true)) {
1546 // If PrevBB has a two-way branch, try to re-order the branches
1547 // such that we branch to the successor with higher probability first.
1548 if (TBB && !Cond.empty() && FBB &&
1549 MBPI->getEdgeProbability(ChainBB, FBB) >
1550 MBPI->getEdgeProbability(ChainBB, TBB) &&
1551 !TII->ReverseBranchCondition(Cond)) {
1552 DEBUG(dbgs() << "Reverse order of the two branches: "
1553 << getBlockName(ChainBB) << "\n");
1554 DEBUG(dbgs() << " Edge probability: "
1555 << MBPI->getEdgeProbability(ChainBB, FBB) << " vs "
1556 << MBPI->getEdgeProbability(ChainBB, TBB) << "\n");
1557 DebugLoc dl; // FIXME: this is nowhere
1558 TII->RemoveBranch(*ChainBB);
1559 TII->InsertBranch(*ChainBB, FBB, TBB, Cond, dl);
1560 ChainBB->updateTerminator();
1561 }
1562 }
Quentin Colombet776e6de2016-05-02 22:58:59 +00001563 }
Haicheng Wue749ce52016-04-29 17:06:44 +00001564}
Chandler Carruth10281422011-10-21 06:46:38 +00001565
Xinliang David Li52530a72016-06-13 22:23:44 +00001566void MachineBlockPlacement::alignBlocks() {
Chandler Carruthccc7e422012-04-16 01:12:56 +00001567 // Walk through the backedges of the function now that we have fully laid out
1568 // the basic blocks and align the destination of each backedge. We don't rely
Chandler Carruth881d0a72012-08-07 09:45:24 +00001569 // exclusively on the loop info here so that we can align backedges in
1570 // unnatural CFGs and backedges that were introduced purely because of the
1571 // loop rotations done during this layout pass.
Xinliang David Li52530a72016-06-13 22:23:44 +00001572 if (F->getFunction()->optForSize())
Chandler Carruth8b9737c2011-10-21 08:57:37 +00001573 return;
Xinliang David Li52530a72016-06-13 22:23:44 +00001574 BlockChain &FunctionChain = *BlockToChain[&F->front()];
Chandler Carruth881d0a72012-08-07 09:45:24 +00001575 if (FunctionChain.begin() == FunctionChain.end())
Chandler Carruth2fc3fe12015-03-05 02:35:31 +00001576 return; // Empty chain.
Chandler Carruth8b9737c2011-10-21 08:57:37 +00001577
Chandler Carruth881d0a72012-08-07 09:45:24 +00001578 const BranchProbability ColdProb(1, 5); // 20%
Xinliang David Li52530a72016-06-13 22:23:44 +00001579 BlockFrequency EntryFreq = MBFI->getBlockFreq(&F->front());
Chandler Carruth881d0a72012-08-07 09:45:24 +00001580 BlockFrequency WeightedEntryFreq = EntryFreq * ColdProb;
Chandler Carruth7a715da2015-03-05 03:19:05 +00001581 for (MachineBasicBlock *ChainBB : FunctionChain) {
1582 if (ChainBB == *FunctionChain.begin())
1583 continue;
1584
Chandler Carruth881d0a72012-08-07 09:45:24 +00001585 // Don't align non-looping basic blocks. These are unlikely to execute
1586 // enough times to matter in practice. Note that we'll still handle
1587 // unnatural CFGs inside of a natural outer loop (the common case) and
1588 // rotated loops.
Chandler Carruth7a715da2015-03-05 03:19:05 +00001589 MachineLoop *L = MLI->getLoopFor(ChainBB);
Chandler Carruth881d0a72012-08-07 09:45:24 +00001590 if (!L)
1591 continue;
1592
Hal Finkel57725662015-01-03 17:58:24 +00001593 unsigned Align = TLI->getPrefLoopAlignment(L);
1594 if (!Align)
Chandler Carruth2fc3fe12015-03-05 02:35:31 +00001595 continue; // Don't care about loop alignment.
Hal Finkel57725662015-01-03 17:58:24 +00001596
Chandler Carruth881d0a72012-08-07 09:45:24 +00001597 // If the block is cold relative to the function entry don't waste space
1598 // aligning it.
Chandler Carruth7a715da2015-03-05 03:19:05 +00001599 BlockFrequency Freq = MBFI->getBlockFreq(ChainBB);
Chandler Carruth881d0a72012-08-07 09:45:24 +00001600 if (Freq < WeightedEntryFreq)
1601 continue;
1602
1603 // If the block is cold relative to its loop header, don't align it
1604 // regardless of what edges into the block exist.
1605 MachineBasicBlock *LoopHeader = L->getHeader();
1606 BlockFrequency LoopHeaderFreq = MBFI->getBlockFreq(LoopHeader);
1607 if (Freq < (LoopHeaderFreq * ColdProb))
1608 continue;
1609
1610 // Check for the existence of a non-layout predecessor which would benefit
1611 // from aligning this block.
Chandler Carruth7a715da2015-03-05 03:19:05 +00001612 MachineBasicBlock *LayoutPred =
1613 &*std::prev(MachineFunction::iterator(ChainBB));
Chandler Carruth881d0a72012-08-07 09:45:24 +00001614
1615 // Force alignment if all the predecessors are jumps. We already checked
1616 // that the block isn't cold above.
Chandler Carruth7a715da2015-03-05 03:19:05 +00001617 if (!LayoutPred->isSuccessor(ChainBB)) {
1618 ChainBB->setAlignment(Align);
Chandler Carruth881d0a72012-08-07 09:45:24 +00001619 continue;
1620 }
1621
1622 // Align this block if the layout predecessor's edge into this block is
Nadav Rotem6036f582013-03-29 16:34:23 +00001623 // cold relative to the block. When this is true, other predecessors make up
Chandler Carruth881d0a72012-08-07 09:45:24 +00001624 // all of the hot entries into the block and thus alignment is likely to be
1625 // important.
Chandler Carruth7a715da2015-03-05 03:19:05 +00001626 BranchProbability LayoutProb =
1627 MBPI->getEdgeProbability(LayoutPred, ChainBB);
Chandler Carruth881d0a72012-08-07 09:45:24 +00001628 BlockFrequency LayoutEdgeFreq = MBFI->getBlockFreq(LayoutPred) * LayoutProb;
1629 if (LayoutEdgeFreq <= (Freq * ColdProb))
Chandler Carruth7a715da2015-03-05 03:19:05 +00001630 ChainBB->setAlignment(Align);
Chandler Carruthccc7e422012-04-16 01:12:56 +00001631 }
Chandler Carruth8b9737c2011-10-21 08:57:37 +00001632}
1633
Xinliang David Li52530a72016-06-13 22:23:44 +00001634bool MachineBlockPlacement::runOnMachineFunction(MachineFunction &MF) {
1635 if (skipFunction(*MF.getFunction()))
Andrew Kaylor50271f72016-05-03 22:32:30 +00001636 return false;
1637
Chandler Carruth10281422011-10-21 06:46:38 +00001638 // Check for single-block functions and skip them.
Xinliang David Li52530a72016-06-13 22:23:44 +00001639 if (std::next(MF.begin()) == MF.end())
Chandler Carruth10281422011-10-21 06:46:38 +00001640 return false;
1641
Xinliang David Li52530a72016-06-13 22:23:44 +00001642 F = &MF;
Chandler Carruth10281422011-10-21 06:46:38 +00001643 MBPI = &getAnalysis<MachineBranchProbabilityInfo>();
Haicheng Wu5b458cc2016-06-09 15:24:29 +00001644 MBFI = llvm::make_unique<BranchFolder::MBFIWrapper>(
1645 getAnalysis<MachineBlockFrequencyInfo>());
Chandler Carruth8b9737c2011-10-21 08:57:37 +00001646 MLI = &getAnalysis<MachineLoopInfo>();
Xinliang David Li52530a72016-06-13 22:23:44 +00001647 TII = MF.getSubtarget().getInstrInfo();
1648 TLI = MF.getSubtarget().getTargetLowering();
Daniel Jasper471e8562015-03-04 11:05:34 +00001649 MDT = &getAnalysis<MachineDominatorTree>();
Chandler Carruth10281422011-10-21 06:46:38 +00001650 assert(BlockToChain.empty());
Chandler Carruth10281422011-10-21 06:46:38 +00001651
Xinliang David Li52530a72016-06-13 22:23:44 +00001652 buildCFGChains();
Haicheng Wu5b458cc2016-06-09 15:24:29 +00001653
1654 // Changing the layout can create new tail merging opportunities.
1655 TargetPassConfig *PassConfig = &getAnalysis<TargetPassConfig>();
1656 // TailMerge can create jump into if branches that make CFG irreducible for
1657 // HW that requires structurized CFG.
Xinliang David Li52530a72016-06-13 22:23:44 +00001658 bool EnableTailMerge = !MF.getTarget().requiresStructuredCFG() &&
Haicheng Wu5b458cc2016-06-09 15:24:29 +00001659 PassConfig->getEnableTailMerge() &&
1660 BranchFoldPlacement;
1661 // No tail merging opportunities if the block number is less than four.
Xinliang David Li52530a72016-06-13 22:23:44 +00001662 if (MF.size() > 3 && EnableTailMerge) {
Haicheng Wu5b458cc2016-06-09 15:24:29 +00001663 BranchFolder BF(/*EnableTailMerge=*/true, /*CommonHoist=*/false, *MBFI,
1664 *MBPI);
1665
Xinliang David Li52530a72016-06-13 22:23:44 +00001666 if (BF.OptimizeFunction(MF, TII, MF.getSubtarget().getRegisterInfo(),
Haicheng Wu5b458cc2016-06-09 15:24:29 +00001667 getAnalysisIfAvailable<MachineModuleInfo>(), MLI,
1668 /*AfterBlockPlacement=*/true)) {
1669 // Redo the layout if tail merging creates/removes/moves blocks.
1670 BlockToChain.clear();
1671 ChainAllocator.DestroyAll();
Xinliang David Li52530a72016-06-13 22:23:44 +00001672 buildCFGChains();
Haicheng Wu5b458cc2016-06-09 15:24:29 +00001673 }
1674 }
1675
Xinliang David Li52530a72016-06-13 22:23:44 +00001676 optimizeBranches();
1677 alignBlocks();
Chandler Carruth10281422011-10-21 06:46:38 +00001678
Chandler Carruth10281422011-10-21 06:46:38 +00001679 BlockToChain.clear();
Chandler Carruthfd9b4d92011-11-14 10:57:23 +00001680 ChainAllocator.DestroyAll();
Chandler Carruth10281422011-10-21 06:46:38 +00001681
Nadav Rotemc0adc9f2013-04-12 01:24:16 +00001682 if (AlignAllBlock)
1683 // Align all of the blocks in the function to a specific alignment.
Xinliang David Li52530a72016-06-13 22:23:44 +00001684 for (MachineBasicBlock &MBB : MF)
Chandler Carruth7a715da2015-03-05 03:19:05 +00001685 MBB.setAlignment(AlignAllBlock);
Geoff Berry10494ac2016-01-21 17:25:52 +00001686 else if (AlignAllNonFallThruBlocks) {
1687 // Align all of the blocks that have no fall-through predecessors to a
1688 // specific alignment.
Xinliang David Li52530a72016-06-13 22:23:44 +00001689 for (auto MBI = std::next(MF.begin()), MBE = MF.end(); MBI != MBE; ++MBI) {
Geoff Berry10494ac2016-01-21 17:25:52 +00001690 auto LayoutPred = std::prev(MBI);
1691 if (!LayoutPred->isSuccessor(&*MBI))
1692 MBI->setAlignment(AlignAllNonFallThruBlocks);
1693 }
1694 }
Nadav Rotemc0adc9f2013-04-12 01:24:16 +00001695
Chandler Carruth10281422011-10-21 06:46:38 +00001696 // We always return true as we have no way to track whether the final order
1697 // differs from the original order.
1698 return true;
1699}
Chandler Carruthae4e8002011-11-02 07:17:12 +00001700
1701namespace {
1702/// \brief A pass to compute block placement statistics.
1703///
1704/// A separate pass to compute interesting statistics for evaluating block
1705/// placement. This is separate from the actual placement pass so that they can
Benjamin Kramerbde91762012-06-02 10:20:22 +00001706/// be computed in the absence of any placement transformations or when using
Chandler Carruthae4e8002011-11-02 07:17:12 +00001707/// alternative placement strategies.
1708class MachineBlockPlacementStats : public MachineFunctionPass {
1709 /// \brief A handle to the branch probability pass.
1710 const MachineBranchProbabilityInfo *MBPI;
1711
1712 /// \brief A handle to the function-wide block frequency pass.
1713 const MachineBlockFrequencyInfo *MBFI;
1714
1715public:
1716 static char ID; // Pass identification, replacement for typeid
1717 MachineBlockPlacementStats() : MachineFunctionPass(ID) {
1718 initializeMachineBlockPlacementStatsPass(*PassRegistry::getPassRegistry());
1719 }
1720
Craig Topper4584cd52014-03-07 09:26:03 +00001721 bool runOnMachineFunction(MachineFunction &F) override;
Chandler Carruthae4e8002011-11-02 07:17:12 +00001722
Craig Topper4584cd52014-03-07 09:26:03 +00001723 void getAnalysisUsage(AnalysisUsage &AU) const override {
Chandler Carruthae4e8002011-11-02 07:17:12 +00001724 AU.addRequired<MachineBranchProbabilityInfo>();
1725 AU.addRequired<MachineBlockFrequencyInfo>();
1726 AU.setPreservesAll();
1727 MachineFunctionPass::getAnalysisUsage(AU);
1728 }
Chandler Carruthae4e8002011-11-02 07:17:12 +00001729};
Alexander Kornienkof00654e2015-06-23 09:49:53 +00001730}
Chandler Carruthae4e8002011-11-02 07:17:12 +00001731
1732char MachineBlockPlacementStats::ID = 0;
Andrew Trick1fa5bcb2012-02-08 21:23:13 +00001733char &llvm::MachineBlockPlacementStatsID = MachineBlockPlacementStats::ID;
Chandler Carruthae4e8002011-11-02 07:17:12 +00001734INITIALIZE_PASS_BEGIN(MachineBlockPlacementStats, "block-placement-stats",
1735 "Basic Block Placement Stats", false, false)
1736INITIALIZE_PASS_DEPENDENCY(MachineBranchProbabilityInfo)
1737INITIALIZE_PASS_DEPENDENCY(MachineBlockFrequencyInfo)
1738INITIALIZE_PASS_END(MachineBlockPlacementStats, "block-placement-stats",
1739 "Basic Block Placement Stats", false, false)
1740
Chandler Carruthae4e8002011-11-02 07:17:12 +00001741bool MachineBlockPlacementStats::runOnMachineFunction(MachineFunction &F) {
1742 // Check for single-block functions and skip them.
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00001743 if (std::next(F.begin()) == F.end())
Chandler Carruthae4e8002011-11-02 07:17:12 +00001744 return false;
1745
1746 MBPI = &getAnalysis<MachineBranchProbabilityInfo>();
1747 MBFI = &getAnalysis<MachineBlockFrequencyInfo>();
1748
Chandler Carruth7a715da2015-03-05 03:19:05 +00001749 for (MachineBasicBlock &MBB : F) {
1750 BlockFrequency BlockFreq = MBFI->getBlockFreq(&MBB);
Chandler Carruth2fc3fe12015-03-05 02:35:31 +00001751 Statistic &NumBranches =
Chandler Carruth7a715da2015-03-05 03:19:05 +00001752 (MBB.succ_size() > 1) ? NumCondBranches : NumUncondBranches;
Chandler Carruth2fc3fe12015-03-05 02:35:31 +00001753 Statistic &BranchTakenFreq =
Chandler Carruth7a715da2015-03-05 03:19:05 +00001754 (MBB.succ_size() > 1) ? CondBranchTakenFreq : UncondBranchTakenFreq;
1755 for (MachineBasicBlock *Succ : MBB.successors()) {
Chandler Carruthae4e8002011-11-02 07:17:12 +00001756 // Skip if this successor is a fallthrough.
Chandler Carruth7a715da2015-03-05 03:19:05 +00001757 if (MBB.isLayoutSuccessor(Succ))
Chandler Carruthae4e8002011-11-02 07:17:12 +00001758 continue;
1759
Chandler Carruth7a715da2015-03-05 03:19:05 +00001760 BlockFrequency EdgeFreq =
1761 BlockFreq * MBPI->getEdgeProbability(&MBB, Succ);
Chandler Carruthae4e8002011-11-02 07:17:12 +00001762 ++NumBranches;
1763 BranchTakenFreq += EdgeFreq.getFrequency();
1764 }
1765 }
1766
1767 return false;
1768}