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Chris Lattner36e646c2010-02-24 07:06:50 +00001//===- DAGISelMatcherOpt.cpp - Optimize a DAG Matcher ---------------------===//
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 implements the DAG Matcher optimizer.
11//
12//===----------------------------------------------------------------------===//
13
Chris Lattnerddfd5ab2010-02-27 07:49:13 +000014#define DEBUG_TYPE "isel-opt"
Chris Lattner36e646c2010-02-24 07:06:50 +000015#include "DAGISelMatcher.h"
Chris Lattnercd632fb2010-02-25 07:45:24 +000016#include "llvm/ADT/DenseMap.h"
Chris Lattnerddfd5ab2010-02-27 07:49:13 +000017#include "llvm/Support/Debug.h"
18#include "llvm/Support/raw_ostream.h"
Chris Lattnercd632fb2010-02-25 07:45:24 +000019#include <vector>
Chris Lattner36e646c2010-02-24 07:06:50 +000020using namespace llvm;
21
Chris Lattnerf4950d02010-02-27 06:22:57 +000022/// ContractNodes - Turn multiple matcher node patterns like 'MoveChild+Record'
23/// into single compound nodes like RecordChild.
Chris Lattner9a515172010-02-25 02:04:40 +000024static void ContractNodes(OwningPtr<Matcher> &MatcherPtr) {
Chris Lattner3ee1bc42010-02-24 07:31:45 +000025 // If we reached the end of the chain, we're done.
Chris Lattner9a515172010-02-25 02:04:40 +000026 Matcher *N = MatcherPtr.get();
Chris Lattner3ee1bc42010-02-24 07:31:45 +000027 if (N == 0) return;
28
Chris Lattner42363662010-02-25 19:00:39 +000029 // If we have a scope node, walk down all of the children.
30 if (ScopeMatcher *Scope = dyn_cast<ScopeMatcher>(N)) {
31 for (unsigned i = 0, e = Scope->getNumChildren(); i != e; ++i) {
32 OwningPtr<Matcher> Child(Scope->takeChild(i));
33 ContractNodes(Child);
34 Scope->resetChild(i, Child.take());
35 }
36 return;
37 }
Chris Lattner3ee1bc42010-02-24 07:31:45 +000038
Chris Lattner9feb1e32010-02-24 19:52:48 +000039 // If we found a movechild node with a node that comes in a 'foochild' form,
40 // transform it.
Chris Lattner9a515172010-02-25 02:04:40 +000041 if (MoveChildMatcher *MC = dyn_cast<MoveChildMatcher>(N)) {
42 Matcher *New = 0;
43 if (RecordMatcher *RM = dyn_cast<RecordMatcher>(MC->getNext()))
44 New = new RecordChildMatcher(MC->getChildNo(), RM->getWhatFor());
Chris Lattner3c664b32010-02-24 20:15:25 +000045
Chris Lattner9a515172010-02-25 02:04:40 +000046 if (CheckTypeMatcher *CT= dyn_cast<CheckTypeMatcher>(MC->getNext()))
47 New = new CheckChildTypeMatcher(MC->getChildNo(), CT->getType());
Chris Lattner3c664b32010-02-24 20:15:25 +000048
49 if (New) {
50 // Insert the new node.
Chris Lattnerac10e4f2010-02-25 01:56:48 +000051 New->setNext(MatcherPtr.take());
52 MatcherPtr.reset(New);
Chris Lattner3c664b32010-02-24 20:15:25 +000053 // Remove the old one.
54 MC->setNext(MC->getNext()->takeNext());
Chris Lattnerac10e4f2010-02-25 01:56:48 +000055 return ContractNodes(MatcherPtr);
Chris Lattner9feb1e32010-02-24 19:52:48 +000056 }
Chris Lattner3ee1bc42010-02-24 07:31:45 +000057 }
Chris Lattner9feb1e32010-02-24 19:52:48 +000058
Chris Lattner7a1dab42010-02-28 02:31:26 +000059 // Zap movechild -> moveparent.
Chris Lattner9a515172010-02-25 02:04:40 +000060 if (MoveChildMatcher *MC = dyn_cast<MoveChildMatcher>(N))
61 if (MoveParentMatcher *MP =
62 dyn_cast<MoveParentMatcher>(MC->getNext())) {
Chris Lattnerac10e4f2010-02-25 01:56:48 +000063 MatcherPtr.reset(MP->takeNext());
64 return ContractNodes(MatcherPtr);
Chris Lattner9feb1e32010-02-24 19:52:48 +000065 }
66
Chris Lattner7a1dab42010-02-28 02:31:26 +000067 // Turn EmitNode->CompleteMatch into SelectNodeTo if we can.
68 if (EmitNodeMatcher *EN = dyn_cast<EmitNodeMatcher>(N))
69 if (CompleteMatchMatcher *CM = cast<CompleteMatchMatcher>(EN->getNext())) {
70 (void)CM;
71
72
73 }
74
Chris Lattner9feb1e32010-02-24 19:52:48 +000075 ContractNodes(N->getNextPtr());
Chris Lattner3ee1bc42010-02-24 07:31:45 +000076}
77
Chris Lattnerf4950d02010-02-27 06:22:57 +000078/// SinkPatternPredicates - Pattern predicates can be checked at any level of
79/// the matching tree. The generator dumps them at the top level of the pattern
80/// though, which prevents factoring from being able to see past them. This
81/// optimization sinks them as far down into the pattern as possible.
82///
83/// Conceptually, we'd like to sink these predicates all the way to the last
84/// matcher predicate in the series. However, it turns out that some
85/// ComplexPatterns have side effects on the graph, so we really don't want to
86/// run a the complex pattern if the pattern predicate will fail. For this
87/// reason, we refuse to sink the pattern predicate past a ComplexPattern.
88///
89static void SinkPatternPredicates(OwningPtr<Matcher> &MatcherPtr) {
90 // Recursively scan for a PatternPredicate.
91 // If we reached the end of the chain, we're done.
92 Matcher *N = MatcherPtr.get();
93 if (N == 0) return;
94
95 // Walk down all members of a scope node.
96 if (ScopeMatcher *Scope = dyn_cast<ScopeMatcher>(N)) {
97 for (unsigned i = 0, e = Scope->getNumChildren(); i != e; ++i) {
98 OwningPtr<Matcher> Child(Scope->takeChild(i));
99 SinkPatternPredicates(Child);
100 Scope->resetChild(i, Child.take());
101 }
102 return;
103 }
104
105 // If this node isn't a CheckPatternPredicateMatcher we keep scanning until
106 // we find one.
107 CheckPatternPredicateMatcher *CPPM =dyn_cast<CheckPatternPredicateMatcher>(N);
108 if (CPPM == 0)
109 return SinkPatternPredicates(N->getNextPtr());
110
111 // Ok, we found one, lets try to sink it. Check if we can sink it past the
112 // next node in the chain. If not, we won't be able to change anything and
113 // might as well bail.
114 if (!CPPM->getNext()->isSafeToReorderWithPatternPredicate())
115 return;
116
117 // Okay, we know we can sink it past at least one node. Unlink it from the
118 // chain and scan for the new insertion point.
119 MatcherPtr.take(); // Don't delete CPPM.
120 MatcherPtr.reset(CPPM->takeNext());
121
122 N = MatcherPtr.get();
123 while (N->getNext()->isSafeToReorderWithPatternPredicate())
124 N = N->getNext();
125
126 // At this point, we want to insert CPPM after N.
127 CPPM->setNext(N->takeNext());
128 N->setNext(CPPM);
129}
130
131/// FactorNodes - Turn matches like this:
132/// Scope
133/// OPC_CheckType i32
134/// ABC
135/// OPC_CheckType i32
136/// XYZ
137/// into:
138/// OPC_CheckType i32
139/// Scope
140/// ABC
141/// XYZ
142///
Chris Lattner9a515172010-02-25 02:04:40 +0000143static void FactorNodes(OwningPtr<Matcher> &MatcherPtr) {
Chris Lattner0acf2ba2010-02-25 01:57:41 +0000144 // If we reached the end of the chain, we're done.
Chris Lattner9a515172010-02-25 02:04:40 +0000145 Matcher *N = MatcherPtr.get();
Chris Lattner0acf2ba2010-02-25 01:57:41 +0000146 if (N == 0) return;
147
148 // If this is not a push node, just scan for one.
Chris Lattner42363662010-02-25 19:00:39 +0000149 ScopeMatcher *Scope = dyn_cast<ScopeMatcher>(N);
150 if (Scope == 0)
Chris Lattner0acf2ba2010-02-25 01:57:41 +0000151 return FactorNodes(N->getNextPtr());
152
Chris Lattner42363662010-02-25 19:00:39 +0000153 // Okay, pull together the children of the scope node into a vector so we can
Chris Lattnercd632fb2010-02-25 07:45:24 +0000154 // inspect it more easily. While we're at it, bucket them up by the hash
155 // code of their first predicate.
Chris Lattner9a515172010-02-25 02:04:40 +0000156 SmallVector<Matcher*, 32> OptionsToMatch;
Chris Lattner0acf2ba2010-02-25 01:57:41 +0000157
Chris Lattner42363662010-02-25 19:00:39 +0000158 for (unsigned i = 0, e = Scope->getNumChildren(); i != e; ++i) {
Chris Lattnercd632fb2010-02-25 07:45:24 +0000159 // Factor the subexpression.
Chris Lattner42363662010-02-25 19:00:39 +0000160 OwningPtr<Matcher> Child(Scope->takeChild(i));
161 FactorNodes(Child);
162
Chris Lattner92a22462010-02-26 08:08:41 +0000163 if (Matcher *N = Child.take())
Chris Lattner42363662010-02-25 19:00:39 +0000164 OptionsToMatch.push_back(N);
Chris Lattnercd632fb2010-02-25 07:45:24 +0000165 }
Chris Lattner0acf2ba2010-02-25 01:57:41 +0000166
Chris Lattnercd632fb2010-02-25 07:45:24 +0000167 SmallVector<Matcher*, 32> NewOptionsToMatch;
168
Chris Lattner92a22462010-02-26 08:08:41 +0000169 // Loop over options to match, merging neighboring patterns with identical
170 // starting nodes into a shared matcher.
Chris Lattnerddfd5ab2010-02-27 07:49:13 +0000171 for (unsigned OptionIdx = 0, e = OptionsToMatch.size(); OptionIdx != e;) {
Chris Lattnercd632fb2010-02-25 07:45:24 +0000172 // Find the set of matchers that start with this node.
Chris Lattnerddfd5ab2010-02-27 07:49:13 +0000173 Matcher *Optn = OptionsToMatch[OptionIdx++];
174
175 if (OptionIdx == e) {
Chris Lattnercd632fb2010-02-25 07:45:24 +0000176 NewOptionsToMatch.push_back(Optn);
177 continue;
178 }
179
Chris Lattnerddfd5ab2010-02-27 07:49:13 +0000180 // See if the next option starts with the same matcher. If the two
181 // neighbors *do* start with the same matcher, we can factor the matcher out
182 // of at least these two patterns. See what the maximal set we can merge
183 // together is.
Chris Lattner92a22462010-02-26 08:08:41 +0000184 SmallVector<Matcher*, 8> EqualMatchers;
185 EqualMatchers.push_back(Optn);
Chris Lattner92a22462010-02-26 08:08:41 +0000186
Chris Lattnerddfd5ab2010-02-27 07:49:13 +0000187 // Factor all of the known-equal matchers after this one into the same
188 // group.
189 while (OptionIdx != e && OptionsToMatch[OptionIdx]->isEqual(Optn))
190 EqualMatchers.push_back(OptionsToMatch[OptionIdx++]);
191
192 // If we found a non-equal matcher, see if it is contradictory with the
193 // current node. If so, we know that the ordering relation between the
194 // current sets of nodes and this node don't matter. Look past it to see if
195 // we can merge anything else into this matching group.
196 unsigned Scan = OptionIdx;
197 while (1) {
198 while (Scan != e && Optn->isContradictory(OptionsToMatch[Scan]))
199 ++Scan;
200
201 // Ok, we found something that isn't known to be contradictory. If it is
202 // equal, we can merge it into the set of nodes to factor, if not, we have
203 // to cease factoring.
204 if (Scan == e || !Optn->isEqual(OptionsToMatch[Scan])) break;
205
206 // If is equal after all, add the option to EqualMatchers and remove it
207 // from OptionsToMatch.
208 EqualMatchers.push_back(OptionsToMatch[Scan]);
209 OptionsToMatch.erase(OptionsToMatch.begin()+Scan);
210 --e;
211 }
212
Chris Lattnere9f720b2010-02-27 21:48:43 +0000213 if (Scan != e &&
214 // Don't print it's obvious nothing extra could be merged anyway.
215 Scan+1 != e) {
Chris Lattner086af322010-02-27 08:11:15 +0000216 DEBUG(errs() << "Couldn't merge this:\n";
217 Optn->print(errs(), 4);
218 errs() << "into this:\n";
219 OptionsToMatch[Scan]->print(errs(), 4);
Chris Lattner53d3ec92010-02-27 08:13:23 +0000220 if (Scan+1 != e)
Chris Lattner086af322010-02-27 08:11:15 +0000221 OptionsToMatch[Scan+1]->printOne(errs());
Chris Lattner53d3ec92010-02-27 08:13:23 +0000222 if (Scan+2 < e)
Chris Lattner086af322010-02-27 08:11:15 +0000223 OptionsToMatch[Scan+2]->printOne(errs());
Chris Lattnerddfd5ab2010-02-27 07:49:13 +0000224 errs() << "\n");
225 }
226
227 // If we only found one option starting with this matcher, no factoring is
228 // possible.
229 if (EqualMatchers.size() == 1) {
230 NewOptionsToMatch.push_back(EqualMatchers[0]);
231 continue;
232 }
Chris Lattner92a22462010-02-26 08:08:41 +0000233
Chris Lattnercd632fb2010-02-25 07:45:24 +0000234 // Factor these checks by pulling the first node off each entry and
Chris Lattnerb0e68102010-02-26 07:36:37 +0000235 // discarding it. Take the first one off the first entry to reuse.
236 Matcher *Shared = Optn;
237 Optn = Optn->takeNext();
238 EqualMatchers[0] = Optn;
239
Chris Lattner92a22462010-02-26 08:08:41 +0000240 // Remove and delete the first node from the other matchers we're factoring.
241 for (unsigned i = 1, e = EqualMatchers.size(); i != e; ++i) {
242 Matcher *Tmp = EqualMatchers[i]->takeNext();
243 delete EqualMatchers[i];
244 EqualMatchers[i] = Tmp;
245 }
Chris Lattnercd632fb2010-02-25 07:45:24 +0000246
Chris Lattnerb0e68102010-02-26 07:36:37 +0000247 Shared->setNext(new ScopeMatcher(&EqualMatchers[0], EqualMatchers.size()));
248
249 // Recursively factor the newly created node.
250 FactorNodes(Shared->getNextPtr());
251
252 NewOptionsToMatch.push_back(Shared);
Chris Lattnercd632fb2010-02-25 07:45:24 +0000253 }
254
255 // Reassemble a new Scope node.
Chris Lattnerb0e68102010-02-26 07:36:37 +0000256 assert(!NewOptionsToMatch.empty() && "where'd all our children go?");
257 if (NewOptionsToMatch.size() == 1)
258 MatcherPtr.reset(NewOptionsToMatch[0]);
259 else {
260 Scope->setNumChildren(NewOptionsToMatch.size());
261 for (unsigned i = 0, e = NewOptionsToMatch.size(); i != e; ++i)
262 Scope->resetChild(i, NewOptionsToMatch[i]);
263 }
Chris Lattner0acf2ba2010-02-25 01:57:41 +0000264}
265
Chris Lattner9a515172010-02-25 02:04:40 +0000266Matcher *llvm::OptimizeMatcher(Matcher *TheMatcher) {
267 OwningPtr<Matcher> MatcherPtr(TheMatcher);
Chris Lattner9feb1e32010-02-24 19:52:48 +0000268 ContractNodes(MatcherPtr);
Chris Lattnerf4950d02010-02-27 06:22:57 +0000269 SinkPatternPredicates(MatcherPtr);
Chris Lattner0acf2ba2010-02-25 01:57:41 +0000270 FactorNodes(MatcherPtr);
Chris Lattner3ee1bc42010-02-24 07:31:45 +0000271 return MatcherPtr.take();
Chris Lattner36e646c2010-02-24 07:06:50 +0000272}