1 //===- DAGISelEmitter.cpp - Generate an instruction selector --------------===//
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 tablegen backend emits a DAG instruction selector.
11 //
12 //===----------------------------------------------------------------------===//
13
14 #include "CodeGenDAGPatterns.h"
15 #include "DAGISelMatcher.h"
16 #include "llvm/Support/Debug.h"
17 #include "llvm/TableGen/Record.h"
18 #include "llvm/TableGen/TableGenBackend.h"
19 using namespace llvm;
20
21 #define DEBUG_TYPE "dag-isel-emitter"
22
23 namespace {
24 /// DAGISelEmitter - The top-level class which coordinates construction
25 /// and emission of the instruction selector.
26 class DAGISelEmitter {
27 CodeGenDAGPatterns CGP;
28 public:
DAGISelEmitter(RecordKeeper & R)29 explicit DAGISelEmitter(RecordKeeper &R) : CGP(R) {}
30 void run(raw_ostream &OS);
31 };
32 } // End anonymous namespace
33
34 //===----------------------------------------------------------------------===//
35 // DAGISelEmitter Helper methods
36 //
37
38 /// getResultPatternCost - Compute the number of instructions for this pattern.
39 /// This is a temporary hack. We should really include the instruction
40 /// latencies in this calculation.
getResultPatternCost(TreePatternNode * P,CodeGenDAGPatterns & CGP)41 static unsigned getResultPatternCost(TreePatternNode *P,
42 CodeGenDAGPatterns &CGP) {
43 if (P->isLeaf()) return 0;
44
45 unsigned Cost = 0;
46 Record *Op = P->getOperator();
47 if (Op->isSubClassOf("Instruction")) {
48 Cost++;
49 CodeGenInstruction &II = CGP.getTargetInfo().getInstruction(Op);
50 if (II.usesCustomInserter)
51 Cost += 10;
52 }
53 for (unsigned i = 0, e = P->getNumChildren(); i != e; ++i)
54 Cost += getResultPatternCost(P->getChild(i), CGP);
55 return Cost;
56 }
57
58 /// getResultPatternCodeSize - Compute the code size of instructions for this
59 /// pattern.
getResultPatternSize(TreePatternNode * P,CodeGenDAGPatterns & CGP)60 static unsigned getResultPatternSize(TreePatternNode *P,
61 CodeGenDAGPatterns &CGP) {
62 if (P->isLeaf()) return 0;
63
64 unsigned Cost = 0;
65 Record *Op = P->getOperator();
66 if (Op->isSubClassOf("Instruction")) {
67 Cost += Op->getValueAsInt("CodeSize");
68 }
69 for (unsigned i = 0, e = P->getNumChildren(); i != e; ++i)
70 Cost += getResultPatternSize(P->getChild(i), CGP);
71 return Cost;
72 }
73
74 namespace {
75 // PatternSortingPredicate - return true if we prefer to match LHS before RHS.
76 // In particular, we want to match maximal patterns first and lowest cost within
77 // a particular complexity first.
78 struct PatternSortingPredicate {
PatternSortingPredicate__anonedbec4880211::PatternSortingPredicate79 PatternSortingPredicate(CodeGenDAGPatterns &cgp) : CGP(cgp) {}
80 CodeGenDAGPatterns &CGP;
81
operator ()__anonedbec4880211::PatternSortingPredicate82 bool operator()(const PatternToMatch *LHS, const PatternToMatch *RHS) {
83 const TreePatternNode *LT = LHS->getSrcPattern();
84 const TreePatternNode *RT = RHS->getSrcPattern();
85
86 MVT LHSVT = LT->getNumTypes() != 0 ? LT->getSimpleType(0) : MVT::Other;
87 MVT RHSVT = RT->getNumTypes() != 0 ? RT->getSimpleType(0) : MVT::Other;
88 if (LHSVT.isVector() != RHSVT.isVector())
89 return RHSVT.isVector();
90
91 if (LHSVT.isFloatingPoint() != RHSVT.isFloatingPoint())
92 return RHSVT.isFloatingPoint();
93
94 // Otherwise, if the patterns might both match, sort based on complexity,
95 // which means that we prefer to match patterns that cover more nodes in the
96 // input over nodes that cover fewer.
97 int LHSSize = LHS->getPatternComplexity(CGP);
98 int RHSSize = RHS->getPatternComplexity(CGP);
99 if (LHSSize > RHSSize) return true; // LHS -> bigger -> less cost
100 if (LHSSize < RHSSize) return false;
101
102 // If the patterns have equal complexity, compare generated instruction cost
103 unsigned LHSCost = getResultPatternCost(LHS->getDstPattern(), CGP);
104 unsigned RHSCost = getResultPatternCost(RHS->getDstPattern(), CGP);
105 if (LHSCost < RHSCost) return true;
106 if (LHSCost > RHSCost) return false;
107
108 unsigned LHSPatSize = getResultPatternSize(LHS->getDstPattern(), CGP);
109 unsigned RHSPatSize = getResultPatternSize(RHS->getDstPattern(), CGP);
110 if (LHSPatSize < RHSPatSize) return true;
111 if (LHSPatSize > RHSPatSize) return false;
112
113 // Sort based on the UID of the pattern, to reflect source order.
114 // Note that this is not guaranteed to be unique, since a single source
115 // pattern may have been resolved into multiple match patterns due to
116 // alternative fragments. To ensure deterministic output, always use
117 // std::stable_sort with this predicate.
118 return LHS->ID < RHS->ID;
119 }
120 };
121 } // End anonymous namespace
122
123
run(raw_ostream & OS)124 void DAGISelEmitter::run(raw_ostream &OS) {
125 emitSourceFileHeader("DAG Instruction Selector for the " +
126 CGP.getTargetInfo().getName().str() + " target", OS);
127
128 OS << "// *** NOTE: This file is #included into the middle of the target\n"
129 << "// *** instruction selector class. These functions are really "
130 << "methods.\n\n";
131
132 OS << "// If GET_DAGISEL_DECL is #defined with any value, only function\n"
133 "// declarations will be included when this file is included.\n"
134 "// If GET_DAGISEL_BODY is #defined, its value should be the name of\n"
135 "// the instruction selector class. Function bodies will be emitted\n"
136 "// and each function's name will be qualified with the name of the\n"
137 "// class.\n"
138 "//\n"
139 "// When neither of the GET_DAGISEL* macros is defined, the functions\n"
140 "// are emitted inline.\n\n";
141
142 LLVM_DEBUG(errs() << "\n\nALL PATTERNS TO MATCH:\n\n";
143 for (CodeGenDAGPatterns::ptm_iterator I = CGP.ptm_begin(),
144 E = CGP.ptm_end();
145 I != E; ++I) {
146 errs() << "PATTERN: ";
147 I->getSrcPattern()->dump();
148 errs() << "\nRESULT: ";
149 I->getDstPattern()->dump();
150 errs() << "\n";
151 });
152
153 // Add all the patterns to a temporary list so we can sort them.
154 std::vector<const PatternToMatch*> Patterns;
155 for (CodeGenDAGPatterns::ptm_iterator I = CGP.ptm_begin(), E = CGP.ptm_end();
156 I != E; ++I)
157 Patterns.push_back(&*I);
158
159 // We want to process the matches in order of minimal cost. Sort the patterns
160 // so the least cost one is at the start.
161 std::stable_sort(Patterns.begin(), Patterns.end(),
162 PatternSortingPredicate(CGP));
163
164
165 // Convert each variant of each pattern into a Matcher.
166 std::vector<Matcher*> PatternMatchers;
167 for (unsigned i = 0, e = Patterns.size(); i != e; ++i) {
168 for (unsigned Variant = 0; ; ++Variant) {
169 if (Matcher *M = ConvertPatternToMatcher(*Patterns[i], Variant, CGP))
170 PatternMatchers.push_back(M);
171 else
172 break;
173 }
174 }
175
176 std::unique_ptr<Matcher> TheMatcher =
177 llvm::make_unique<ScopeMatcher>(PatternMatchers);
178
179 OptimizeMatcher(TheMatcher, CGP);
180 //Matcher->dump();
181 EmitMatcherTable(TheMatcher.get(), CGP, OS);
182 }
183
184 namespace llvm {
185
EmitDAGISel(RecordKeeper & RK,raw_ostream & OS)186 void EmitDAGISel(RecordKeeper &RK, raw_ostream &OS) {
187 DAGISelEmitter(RK).run(OS);
188 }
189
190 } // End llvm namespace
191