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Jakob Stoklund Olesen9f63e102012-07-26 18:38:11 +00001//===- lib/CodeGen/MachineTraceMetrics.h - Super-scalar metrics -*- C++ -*-===//
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 file defines the interface for the MachineTraceMetrics analysis pass
11// that estimates CPU resource usage and critical data dependency paths through
12// preferred traces. This is useful for super-scalar CPUs where execution speed
13// can be limited both by data dependencies and by limited execution resources.
14//
15// Out-of-order CPUs will often be executing instructions from multiple basic
16// blocks at the same time. This makes it difficult to estimate the resource
17// usage accurately in a single basic block. Resources can be estimated better
18// by looking at a trace through the current basic block.
19//
20// For every block, the MachineTraceMetrics pass will pick a preferred trace
21// that passes through the block. The trace is chosen based on loop structure,
22// branch probabilities, and resource usage. The intention is to pick likely
23// traces that would be the most affected by code transformations.
24//
25// It is expensive to compute a full arbitrary trace for every block, so to
26// save some computations, traces are chosen to be convergent. This means that
27// if the traces through basic blocks A and B ever cross when moving away from
28// A and B, they never diverge again. This applies in both directions - If the
29// traces meet above A and B, they won't diverge when going further back.
30//
31// Traces tend to align with loops. The trace through a block in an inner loop
32// will begin at the loop entry block and end at a back edge. If there are
33// nested loops, the trace may begin and end at those instead.
34//
35// For each trace, we compute the critical path length, which is the number of
36// cycles required to execute the trace when execution is limited by data
37// dependencies only. We also compute the resource height, which is the number
38// of cycles required to execute all instructions in the trace when ignoring
39// data dependencies.
40//
41// Every instruction in the current block has a slack - the number of cycles
42// execution of the instruction can be delayed without extending the critical
43// path.
44//
45//===----------------------------------------------------------------------===//
46
47#ifndef LLVM_CODEGEN_MACHINE_TRACE_METRICS_H
48#define LLVM_CODEGEN_MACHINE_TRACE_METRICS_H
49
50#include "llvm/ADT/SmallVector.h"
51#include "llvm/CodeGen/MachineFunctionPass.h"
52
53namespace llvm {
54
55class TargetInstrInfo;
56class TargetRegisterInfo;
57class MachineBasicBlock;
58class MachineRegisterInfo;
59class MachineLoopInfo;
60class MachineLoop;
61class raw_ostream;
62
63class MachineTraceMetrics : public MachineFunctionPass {
64 const TargetInstrInfo *TII;
65 const TargetRegisterInfo *TRI;
66 const MachineRegisterInfo *MRI;
67 const MachineLoopInfo *Loops;
68
69public:
70 class Ensemble;
71 class Trace;
72 static char ID;
73 MachineTraceMetrics();
74 void getAnalysisUsage(AnalysisUsage&) const;
75 bool runOnMachineFunction(MachineFunction&);
76 void releaseMemory();
77
78 friend class Ensemble;
79 friend class Trace;
80
81 /// Per-basic block information that doesn't depend on the trace through the
82 /// block.
83 struct FixedBlockInfo {
84 /// The number of non-trivial instructions in the block.
85 /// Doesn't count PHI and COPY instructions that are likely to be removed.
86 unsigned InstrCount;
87
88 /// True when the block contains calls.
89 bool HasCalls;
90
91 FixedBlockInfo() : InstrCount(~0u), HasCalls(false) {}
92
93 /// Returns true when resource information for this block has been computed.
94 bool hasResources() const { return InstrCount != ~0u; }
95
96 /// Invalidate resource information.
97 void invalidate() { InstrCount = ~0u; }
98 };
99
100 /// Get the fixed resource information about MBB. Compute it on demand.
101 const FixedBlockInfo *getResources(const MachineBasicBlock*);
102
103 /// Per-basic block information that relates to a specific trace through the
104 /// block. Convergent traces means that only one of these is required per
105 /// block in a trace ensemble.
106 struct TraceBlockInfo {
107 /// Trace predecessor, or NULL for the first block in the trace.
108 const MachineBasicBlock *Pred;
109
110 /// Trace successor, or NULL for the last block in the trace.
111 const MachineBasicBlock *Succ;
112
113 /// Accumulated number of instructions in the trace above this block.
114 /// Does not include instructions in this block.
115 unsigned InstrDepth;
116
117 /// Accumulated number of instructions in the trace below this block.
118 /// Includes instructions in this block.
119 unsigned InstrHeight;
120
121 TraceBlockInfo() : Pred(0), Succ(0), InstrDepth(~0u), InstrHeight(~0u) {}
122
123 /// Returns true if the depth resources have been computed from the trace
124 /// above this block.
125 bool hasValidDepth() const { return InstrDepth != ~0u; }
126
127 /// Returns true if the height resources have been computed from the trace
128 /// below this block.
129 bool hasValidHeight() const { return InstrHeight != ~0u; }
130
131 /// Invalidate depth resources when some block above this one has changed.
132 void invalidateDepth() { InstrDepth = ~0u; }
133
134 /// Invalidate height resources when a block below this one has changed.
135 void invalidateHeight() { InstrHeight = ~0u; }
136 };
137
138 /// A trace represents a plausible sequence of executed basic blocks that
139 /// passes through the current basic block one. The Trace class serves as a
140 /// handle to internal cached data structures.
141 class Trace {
142 Ensemble &TE;
143 TraceBlockInfo &TBI;
144
145 public:
146 explicit Trace(Ensemble &te, TraceBlockInfo &tbi) : TE(te), TBI(tbi) {}
147 void print(raw_ostream&) const;
148
149 /// Compute the total number of instructions in the trace.
150 unsigned getInstrCount() const {
151 return TBI.InstrDepth + TBI.InstrHeight;
152 }
153 };
154
155 /// A trace ensemble is a collection of traces selected using the same
156 /// strategy, for example 'minimum resource height'. There is one trace for
157 /// every block in the function.
158 class Ensemble {
159 SmallVector<TraceBlockInfo, 4> BlockInfo;
160 friend class Trace;
161
162 void computeTrace(const MachineBasicBlock*);
163 void computeDepthResources(const MachineBasicBlock*);
164 void computeHeightResources(const MachineBasicBlock*);
165
166 protected:
167 MachineTraceMetrics &CT;
168 virtual const MachineBasicBlock *pickTracePred(const MachineBasicBlock*) =0;
169 virtual const MachineBasicBlock *pickTraceSucc(const MachineBasicBlock*) =0;
170 explicit Ensemble(MachineTraceMetrics*);
171 MachineLoop *getLoopFor(const MachineBasicBlock*);
172 const TraceBlockInfo *getDepthResources(const MachineBasicBlock*) const;
173 const TraceBlockInfo *getHeightResources(const MachineBasicBlock*) const;
174
175 public:
176 virtual ~Ensemble();
177 virtual const char *getName() =0;
178 void invalidate(const MachineBasicBlock *MBB);
179
180 /// Get the trace that passes through MBB.
181 /// The trace is computed on demand.
182 Trace getTrace(const MachineBasicBlock *MBB);
183 };
184
185 /// Strategies for selecting traces.
186 enum Strategy {
187 /// Select the trace through a block that has the fewest instructions.
188 TS_MinInstrCount,
189
190 TS_NumStrategies
191 };
192
193 /// Get the trace ensemble representing the given trace selection strategy.
194 /// The returned Ensemble object is owned by the MachineTraceMetrics analysis,
195 /// and valid for the lifetime of the analysis pass.
196 Ensemble *getEnsemble(Strategy);
197
198 /// Invalidate cached information about MBB. This must be called *before* MBB
199 /// is erased, or the CFG is otherwise changed.
200 void invalidate(const MachineBasicBlock *MBB);
201
202private:
203 // One entry per basic block, indexed by block number.
204 SmallVector<FixedBlockInfo, 4> BlockInfo;
205
206 // One ensemble per strategy.
207 Ensemble* Ensembles[TS_NumStrategies];
208};
209
210inline raw_ostream &operator<<(raw_ostream &OS,
211 const MachineTraceMetrics::Trace &Tr) {
212 Tr.print(OS);
213 return OS;
214}
215
216} // end namespace llvm
217
218#endif