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Jakub Staszak7cc2b072011-06-16 20:22:37 +00001//===- MachineBranchProbabilityInfo.cpp - Machine Branch Probability Info -===//
2//
3// The LLVM Compiler Infrastructure
4//
5// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
7//
8//===----------------------------------------------------------------------===//
9//
10// This analysis uses probability info stored in Machine Basic Blocks.
11//
12//===----------------------------------------------------------------------===//
13
14#include "llvm/Instructions.h"
15#include "llvm/CodeGen/MachineBranchProbabilityInfo.h"
16#include "llvm/CodeGen/MachineBasicBlock.h"
17#include "llvm/Support/Debug.h"
18#include "llvm/Support/raw_ostream.h"
19
20using namespace llvm;
21
22INITIALIZE_PASS_BEGIN(MachineBranchProbabilityInfo, "machine-branch-prob",
23 "Machine Branch Probability Analysis", false, true)
24INITIALIZE_PASS_END(MachineBranchProbabilityInfo, "machine-branch-prob",
25 "Machine Branch Probability Analysis", false, true)
26
27char MachineBranchProbabilityInfo::ID = 0;
28
David Blaikie2d24e2a2011-12-20 02:50:00 +000029void MachineBranchProbabilityInfo::anchor() { }
30
Jakub Staszak7cc2b072011-06-16 20:22:37 +000031uint32_t MachineBranchProbabilityInfo::
Jakub Staszak25101bb2011-12-20 20:03:10 +000032getSumForBlock(const MachineBasicBlock *MBB, uint32_t &Scale) const {
Chandler Carruth2770c142011-11-14 08:50:16 +000033 // First we compute the sum with 64-bits of precision, ensuring that cannot
34 // overflow by bounding the number of weights considered. Hopefully no one
35 // actually needs 2^32 successors.
36 assert(MBB->succ_size() < UINT32_MAX);
37 uint64_t Sum = 0;
38 Scale = 1;
Jakub Staszak7cc2b072011-06-16 20:22:37 +000039 for (MachineBasicBlock::const_succ_iterator I = MBB->succ_begin(),
40 E = MBB->succ_end(); I != E; ++I) {
Jakob Stoklund Olesen990ca552012-08-20 22:01:38 +000041 uint32_t Weight = getEdgeWeight(MBB, I);
Jakub Staszak7cc2b072011-06-16 20:22:37 +000042 Sum += Weight;
Jakub Staszak7cc2b072011-06-16 20:22:37 +000043 }
44
Chandler Carruth2770c142011-11-14 08:50:16 +000045 // If the computed sum fits in 32-bits, we're done.
46 if (Sum <= UINT32_MAX)
47 return Sum;
48
49 // Otherwise, compute the scale necessary to cause the weights to fit, and
50 // re-sum with that scale applied.
51 assert((Sum / UINT32_MAX) < UINT32_MAX);
52 Scale = (Sum / UINT32_MAX) + 1;
53 Sum = 0;
54 for (MachineBasicBlock::const_succ_iterator I = MBB->succ_begin(),
55 E = MBB->succ_end(); I != E; ++I) {
Jakob Stoklund Olesen990ca552012-08-20 22:01:38 +000056 uint32_t Weight = getEdgeWeight(MBB, I);
Chandler Carruth2770c142011-11-14 08:50:16 +000057 Sum += Weight / Scale;
58 }
59 assert(Sum <= UINT32_MAX);
Jakub Staszak7cc2b072011-06-16 20:22:37 +000060 return Sum;
61}
62
Jakob Stoklund Olesen990ca552012-08-20 22:01:38 +000063uint32_t MachineBranchProbabilityInfo::
64getEdgeWeight(const MachineBasicBlock *Src,
65 MachineBasicBlock::const_succ_iterator Dst) const {
Jakub Staszak7cc2b072011-06-16 20:22:37 +000066 uint32_t Weight = Src->getSuccWeight(Dst);
67 if (!Weight)
68 return DEFAULT_WEIGHT;
69 return Weight;
70}
71
Jakob Stoklund Olesen990ca552012-08-20 22:01:38 +000072uint32_t MachineBranchProbabilityInfo::
73getEdgeWeight(const MachineBasicBlock *Src,
74 const MachineBasicBlock *Dst) const {
75 // This is a linear search. Try to use the const_succ_iterator version when
76 // possible.
77 return getEdgeWeight(Src, std::find(Src->succ_begin(), Src->succ_end(), Dst));
78}
79
Jakub Staszak7cc2b072011-06-16 20:22:37 +000080bool MachineBranchProbabilityInfo::isEdgeHot(MachineBasicBlock *Src,
81 MachineBasicBlock *Dst) const {
82 // Hot probability is at least 4/5 = 80%
Benjamin Kramer91bbe232011-10-28 11:14:31 +000083 // FIXME: Compare against a static "hot" BranchProbability.
84 return getEdgeProbability(Src, Dst) > BranchProbability(4, 5);
Jakub Staszak7cc2b072011-06-16 20:22:37 +000085}
86
87MachineBasicBlock *
88MachineBranchProbabilityInfo::getHotSucc(MachineBasicBlock *MBB) const {
Jakub Staszak7cc2b072011-06-16 20:22:37 +000089 uint32_t MaxWeight = 0;
90 MachineBasicBlock *MaxSucc = 0;
Jakub Staszak7cc2b072011-06-16 20:22:37 +000091 for (MachineBasicBlock::const_succ_iterator I = MBB->succ_begin(),
92 E = MBB->succ_end(); I != E; ++I) {
Jakob Stoklund Olesen990ca552012-08-20 22:01:38 +000093 uint32_t Weight = getEdgeWeight(MBB, I);
Jakub Staszak7cc2b072011-06-16 20:22:37 +000094 if (Weight > MaxWeight) {
95 MaxWeight = Weight;
Chandler Carruthc4e15622011-11-14 08:55:59 +000096 MaxSucc = *I;
Jakub Staszak7cc2b072011-06-16 20:22:37 +000097 }
98 }
99
Chandler Carruthc4e15622011-11-14 08:55:59 +0000100 if (getEdgeProbability(MBB, MaxSucc) >= BranchProbability(4, 5))
Jakub Staszak7cc2b072011-06-16 20:22:37 +0000101 return MaxSucc;
102
103 return 0;
104}
105
106BranchProbability
107MachineBranchProbabilityInfo::getEdgeProbability(MachineBasicBlock *Src,
108 MachineBasicBlock *Dst) const {
Chandler Carruth2770c142011-11-14 08:50:16 +0000109 uint32_t Scale = 1;
110 uint32_t D = getSumForBlock(Src, Scale);
111 uint32_t N = getEdgeWeight(Src, Dst) / Scale;
Jakub Staszak7cc2b072011-06-16 20:22:37 +0000112
113 return BranchProbability(N, D);
114}
115
116raw_ostream &MachineBranchProbabilityInfo::
117printEdgeProbability(raw_ostream &OS, MachineBasicBlock *Src,
118 MachineBasicBlock *Dst) const {
119
120 const BranchProbability Prob = getEdgeProbability(Src, Dst);
121 OS << "edge MBB#" << Src->getNumber() << " -> MBB#" << Dst->getNumber()
122 << " probability is " << Prob
123 << (isEdgeHot(Src, Dst) ? " [HOT edge]\n" : "\n");
124
125 return OS;
126}