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Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +00001//===- DFAPacketizerEmitter.cpp - Packetization DFA for a VLIW machine-----===//
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 class parses the Schedule.td file and produces an API that can be used
11// to reason about whether an instruction can be added to a packet on a VLIW
12// architecture. The class internally generates a deterministic finite
13// automaton (DFA) that models all possible mappings of machine instructions
14// to functional units as instructions are added to a packet.
15//
16//===----------------------------------------------------------------------===//
17
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000018#include "llvm/TableGen/Record.h"
19#include "CodeGenTarget.h"
20#include "DFAPacketizerEmitter.h"
21#include <list>
22
23using namespace llvm;
24
25//
26//
27// State represents the usage of machine resources if the packet contains
28// a set of instruction classes.
29//
Sebastian Popf6f77e92011-12-06 17:34:11 +000030// Specifically, currentState is a set of bit-masks.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000031// The nth bit in a bit-mask indicates whether the nth resource is being used
32// by this state. The set of bit-masks in a state represent the different
33// possible outcomes of transitioning to this state.
Sebastian Popf6f77e92011-12-06 17:34:11 +000034// For example: consider a two resource architecture: resource L and resource M
35// with three instruction classes: L, M, and L_or_M.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000036// From the initial state (currentState = 0x00), if we add instruction class
37// L_or_M we will transition to a state with currentState = [0x01, 0x10]. This
38// represents the possible resource states that can result from adding a L_or_M
39// instruction
40//
41// Another way of thinking about this transition is we are mapping a NDFA with
Sebastian Popf6f77e92011-12-06 17:34:11 +000042// two states [0x01] and [0x10] into a DFA with a single state [0x01, 0x10].
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000043//
44//
45namespace {
46class State {
47 public:
48 static int currentStateNum;
49 int stateNum;
50 bool isInitial;
51 std::set<unsigned> stateInfo;
52
53 State();
Sebastian Pop464f3a32011-12-06 17:34:16 +000054 State(const State &S);
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000055
56 //
57 // canAddInsnClass - Returns true if an instruction of type InsnClass is a
Sebastian Popf6f77e92011-12-06 17:34:11 +000058 // valid transition from this state, i.e., can an instruction of type InsnClass
59 // be added to the packet represented by this state.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000060 //
61 // PossibleStates is the set of valid resource states that ensue from valid
Sebastian Popf6f77e92011-12-06 17:34:11 +000062 // transitions.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000063 //
Sebastian Pop464f3a32011-12-06 17:34:16 +000064 bool canAddInsnClass(unsigned InsnClass, std::set<unsigned> &PossibleStates);
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000065};
Sebastian Popf6f77e92011-12-06 17:34:11 +000066} // End anonymous namespace.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000067
68
69namespace {
70struct Transition {
71 public:
72 static int currentTransitionNum;
73 int transitionNum;
Sebastian Pop464f3a32011-12-06 17:34:16 +000074 State *from;
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000075 unsigned input;
Sebastian Pop464f3a32011-12-06 17:34:16 +000076 State *to;
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000077
Sebastian Pop464f3a32011-12-06 17:34:16 +000078 Transition(State *from_, unsigned input_, State *to_);
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000079};
Sebastian Popf6f77e92011-12-06 17:34:11 +000080} // End anonymous namespace.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000081
82
83//
Sebastian Popf6f77e92011-12-06 17:34:11 +000084// Comparators to keep set of states sorted.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000085//
86namespace {
87struct ltState {
Sebastian Pop464f3a32011-12-06 17:34:16 +000088 bool operator()(const State *s1, const State *s2) const;
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000089};
Sebastian Popf6f77e92011-12-06 17:34:11 +000090} // End anonymous namespace.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000091
92
93//
Sebastian Popf6f77e92011-12-06 17:34:11 +000094// class DFA: deterministic finite automaton for processor resource tracking.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +000095//
96namespace {
97class DFA {
98public:
99 DFA();
100
Sebastian Popf6f77e92011-12-06 17:34:11 +0000101 // Set of states. Need to keep this sorted to emit the transition table.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000102 std::set<State*, ltState> states;
103
Sebastian Popf6f77e92011-12-06 17:34:11 +0000104 // Map from a state to the list of transitions with that state as source.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000105 std::map<State*, SmallVector<Transition*, 16>, ltState> stateTransitions;
Sebastian Pop464f3a32011-12-06 17:34:16 +0000106 State *currentState;
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000107
Sebastian Popf6f77e92011-12-06 17:34:11 +0000108 // Highest valued Input seen.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000109 unsigned LargestInput;
110
111 //
Sebastian Popf6f77e92011-12-06 17:34:11 +0000112 // Modify the DFA.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000113 //
114 void initialize();
Sebastian Pop464f3a32011-12-06 17:34:16 +0000115 void addState(State *);
116 void addTransition(Transition *);
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000117
118 //
119 // getTransition - Return the state when a transition is made from
Sebastian Popf6f77e92011-12-06 17:34:11 +0000120 // State From with Input I. If a transition is not found, return NULL.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000121 //
Sebastian Pop464f3a32011-12-06 17:34:16 +0000122 State *getTransition(State *, unsigned);
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000123
124 //
125 // isValidTransition: Predicate that checks if there is a valid transition
Sebastian Popf6f77e92011-12-06 17:34:11 +0000126 // from state From on input InsnClass.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000127 //
Sebastian Pop464f3a32011-12-06 17:34:16 +0000128 bool isValidTransition(State *From, unsigned InsnClass);
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000129
130 //
Sebastian Popf6f77e92011-12-06 17:34:11 +0000131 // writeTable: Print out a table representing the DFA.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000132 //
Sebastian Pop464f3a32011-12-06 17:34:16 +0000133 void writeTableAndAPI(raw_ostream &OS, const std::string &ClassName);
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000134};
Sebastian Popf6f77e92011-12-06 17:34:11 +0000135} // End anonymous namespace.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000136
137
138//
139// Constructors for State, Transition, and DFA
140//
141State::State() :
142 stateNum(currentStateNum++), isInitial(false) {}
143
144
Sebastian Pop464f3a32011-12-06 17:34:16 +0000145State::State(const State &S) :
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000146 stateNum(currentStateNum++), isInitial(S.isInitial),
147 stateInfo(S.stateInfo) {}
148
149
Sebastian Pop464f3a32011-12-06 17:34:16 +0000150Transition::Transition(State *from_, unsigned input_, State *to_) :
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000151 transitionNum(currentTransitionNum++), from(from_), input(input_),
152 to(to_) {}
153
154
155DFA::DFA() :
156 LargestInput(0) {}
157
158
Sebastian Pop464f3a32011-12-06 17:34:16 +0000159bool ltState::operator()(const State *s1, const State *s2) const {
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000160 return (s1->stateNum < s2->stateNum);
161}
162
163
164//
165// canAddInsnClass - Returns true if an instruction of type InsnClass is a
166// valid transition from this state i.e., can an instruction of type InsnClass
Sebastian Popf6f77e92011-12-06 17:34:11 +0000167// be added to the packet represented by this state.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000168//
169// PossibleStates is the set of valid resource states that ensue from valid
Sebastian Popf6f77e92011-12-06 17:34:11 +0000170// transitions.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000171//
172bool State::canAddInsnClass(unsigned InsnClass,
Sebastian Pop464f3a32011-12-06 17:34:16 +0000173 std::set<unsigned> &PossibleStates) {
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000174 //
Sebastian Popf6f77e92011-12-06 17:34:11 +0000175 // Iterate over all resource states in currentState.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000176 //
177 bool AddedState = false;
178
179 for (std::set<unsigned>::iterator SI = stateInfo.begin();
180 SI != stateInfo.end(); ++SI) {
181 unsigned thisState = *SI;
182
183 //
Sebastian Popf6f77e92011-12-06 17:34:11 +0000184 // Iterate over all possible resources used in InsnClass.
185 // For ex: for InsnClass = 0x11, all resources = {0x01, 0x10}.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000186 //
187
188 DenseSet<unsigned> VisitedResourceStates;
189 for (unsigned int j = 0; j < sizeof(InsnClass) * 8; ++j) {
190 if ((0x1 << j) & InsnClass) {
191 //
192 // For each possible resource used in InsnClass, generate the
Sebastian Popf6f77e92011-12-06 17:34:11 +0000193 // resource state if that resource was used.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000194 //
195 unsigned ResultingResourceState = thisState | (0x1 << j);
196 //
197 // Check if the resulting resource state can be accommodated in this
Sebastian Popf6f77e92011-12-06 17:34:11 +0000198 // packet.
199 // We compute ResultingResourceState OR thisState.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000200 // If the result of the OR is different than thisState, it implies
201 // that there is at least one resource that can be used to schedule
Sebastian Popf6f77e92011-12-06 17:34:11 +0000202 // InsnClass in the current packet.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000203 // Insert ResultingResourceState into PossibleStates only if we haven't
Sebastian Popf6f77e92011-12-06 17:34:11 +0000204 // processed ResultingResourceState before.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000205 //
206 if ((ResultingResourceState != thisState) &&
207 (VisitedResourceStates.count(ResultingResourceState) == 0)) {
208 VisitedResourceStates.insert(ResultingResourceState);
209 PossibleStates.insert(ResultingResourceState);
210 AddedState = true;
211 }
212 }
213 }
214 }
215
216 return AddedState;
217}
218
219
220void DFA::initialize() {
221 currentState->isInitial = true;
222}
223
224
Sebastian Pop464f3a32011-12-06 17:34:16 +0000225void DFA::addState(State *S) {
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000226 assert(!states.count(S) && "State already exists");
227 states.insert(S);
228}
229
230
Sebastian Pop464f3a32011-12-06 17:34:16 +0000231void DFA::addTransition(Transition *T) {
Sebastian Popf6f77e92011-12-06 17:34:11 +0000232 // Update LargestInput.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000233 if (T->input > LargestInput)
234 LargestInput = T->input;
235
Sebastian Popf6f77e92011-12-06 17:34:11 +0000236 // Add the new transition.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000237 stateTransitions[T->from].push_back(T);
238}
239
240
241//
242// getTransition - Return the state when a transition is made from
Sebastian Popf6f77e92011-12-06 17:34:11 +0000243// State From with Input I. If a transition is not found, return NULL.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000244//
Sebastian Pop464f3a32011-12-06 17:34:16 +0000245State *DFA::getTransition(State *From, unsigned I) {
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000246 // Do we have a transition from state From?
247 if (!stateTransitions.count(From))
248 return NULL;
249
250 // Do we have a transition from state From with Input I?
251 for (SmallVector<Transition*, 16>::iterator VI =
252 stateTransitions[From].begin();
253 VI != stateTransitions[From].end(); ++VI)
254 if ((*VI)->input == I)
255 return (*VI)->to;
256
257 return NULL;
258}
259
260
Sebastian Pop464f3a32011-12-06 17:34:16 +0000261bool DFA::isValidTransition(State *From, unsigned InsnClass) {
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000262 return (getTransition(From, InsnClass) != NULL);
263}
264
265
266int State::currentStateNum = 0;
267int Transition::currentTransitionNum = 0;
268
Sebastian Pop464f3a32011-12-06 17:34:16 +0000269DFAGen::DFAGen(RecordKeeper &R):
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000270 TargetName(CodeGenTarget(R).getName()),
271 allInsnClasses(), Records(R) {}
272
273
274//
275// writeTableAndAPI - Print out a table representing the DFA and the
Sebastian Popf6f77e92011-12-06 17:34:11 +0000276// associated API to create a DFA packetizer.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000277//
278// Format:
279// DFAStateInputTable[][2] = pairs of <Input, Transition> for all valid
Sebastian Popf6f77e92011-12-06 17:34:11 +0000280// transitions.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000281// DFAStateEntryTable[i] = Index of the first entry in DFAStateInputTable for
Sebastian Popf6f77e92011-12-06 17:34:11 +0000282// the ith state.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000283//
284//
Sebastian Pop464f3a32011-12-06 17:34:16 +0000285void DFA::writeTableAndAPI(raw_ostream &OS, const std::string &TargetName) {
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000286 std::set<State*, ltState>::iterator SI = states.begin();
287 // This table provides a map to the beginning of the transitions for State s
Sebastian Popf6f77e92011-12-06 17:34:11 +0000288 // in DFAStateInputTable.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000289 std::vector<int> StateEntry(states.size());
290
291 OS << "namespace llvm {\n\n";
292 OS << "const int " << TargetName << "DFAStateInputTable[][2] = {\n";
293
294 // Tracks the total valid transitions encountered so far. It is used
Sebastian Popf6f77e92011-12-06 17:34:11 +0000295 // to construct the StateEntry table.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000296 int ValidTransitions = 0;
297 for (unsigned i = 0; i < states.size(); ++i, ++SI) {
298 StateEntry[i] = ValidTransitions;
299 for (unsigned j = 0; j <= LargestInput; ++j) {
300 assert (((*SI)->stateNum == (int) i) && "Mismatch in state numbers");
301 if (!isValidTransition(*SI, j))
302 continue;
303
304 OS << "{" << j << ", "
305 << getTransition(*SI, j)->stateNum
306 << "}, ";
307 ++ValidTransitions;
308 }
309
Sebastian Popf6f77e92011-12-06 17:34:11 +0000310 // If there are no valid transitions from this stage, we need a sentinel
311 // transition.
Brendon Cahoonffbd0712012-02-03 21:08:25 +0000312 if (ValidTransitions == StateEntry[i]) {
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000313 OS << "{-1, -1},";
Brendon Cahoonffbd0712012-02-03 21:08:25 +0000314 ++ValidTransitions;
315 }
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000316
317 OS << "\n";
318 }
319 OS << "};\n\n";
320 OS << "const unsigned int " << TargetName << "DFAStateEntryTable[] = {\n";
321
322 // Multiply i by 2 since each entry in DFAStateInputTable is a set of
Sebastian Popf6f77e92011-12-06 17:34:11 +0000323 // two numbers.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000324 for (unsigned i = 0; i < states.size(); ++i)
325 OS << StateEntry[i] << ", ";
326
327 OS << "\n};\n";
328 OS << "} // namespace\n";
329
330
331 //
Sebastian Popf6f77e92011-12-06 17:34:11 +0000332 // Emit DFA Packetizer tables if the target is a VLIW machine.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000333 //
334 std::string SubTargetClassName = TargetName + "GenSubtargetInfo";
335 OS << "\n" << "#include \"llvm/CodeGen/DFAPacketizer.h\"\n";
336 OS << "namespace llvm {\n";
Sebastian Pop464f3a32011-12-06 17:34:16 +0000337 OS << "DFAPacketizer *" << SubTargetClassName << "::"
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000338 << "createDFAPacketizer(const InstrItineraryData *IID) const {\n"
339 << " return new DFAPacketizer(IID, " << TargetName
340 << "DFAStateInputTable, " << TargetName << "DFAStateEntryTable);\n}\n\n";
341 OS << "} // End llvm namespace \n";
342}
343
344
345//
346// collectAllInsnClasses - Populate allInsnClasses which is a set of units
347// used in each stage.
348//
349void DFAGen::collectAllInsnClasses(const std::string &Name,
350 Record *ItinData,
351 unsigned &NStages,
352 raw_ostream &OS) {
Sebastian Popf6f77e92011-12-06 17:34:11 +0000353 // Collect processor itineraries.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000354 std::vector<Record*> ProcItinList =
Sebastian Popf6f77e92011-12-06 17:34:11 +0000355 Records.getAllDerivedDefinitions("ProcessorItineraries");
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000356
Sebastian Popf6f77e92011-12-06 17:34:11 +0000357 // If just no itinerary then don't bother.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000358 if (ProcItinList.size() < 2)
359 return;
360 std::map<std::string, unsigned> NameToBitsMap;
361
362 // Parse functional units for all the itineraries.
363 for (unsigned i = 0, N = ProcItinList.size(); i < N; ++i) {
364 Record *Proc = ProcItinList[i];
365 std::vector<Record*> FUs = Proc->getValueAsListOfDefs("FU");
366
Sebastian Popf6f77e92011-12-06 17:34:11 +0000367 // Convert macros to bits for each stage.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000368 for (unsigned i = 0, N = FUs.size(); i < N; ++i)
369 NameToBitsMap[FUs[i]->getName()] = (unsigned) (1U << i);
370 }
371
372 const std::vector<Record*> &StageList =
373 ItinData->getValueAsListOfDefs("Stages");
374
Sebastian Popf6f77e92011-12-06 17:34:11 +0000375 // The number of stages.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000376 NStages = StageList.size();
377
Sebastian Popf6f77e92011-12-06 17:34:11 +0000378 // For each unit.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000379 unsigned UnitBitValue = 0;
380
Sebastian Popf6f77e92011-12-06 17:34:11 +0000381 // Compute the bitwise or of each unit used in this stage.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000382 for (unsigned i = 0; i < NStages; ++i) {
383 const Record *Stage = StageList[i];
384
Sebastian Popf6f77e92011-12-06 17:34:11 +0000385 // Get unit list.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000386 const std::vector<Record*> &UnitList =
387 Stage->getValueAsListOfDefs("Units");
388
389 for (unsigned j = 0, M = UnitList.size(); j < M; ++j) {
Sebastian Popf6f77e92011-12-06 17:34:11 +0000390 // Conduct bitwise or.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000391 std::string UnitName = UnitList[j]->getName();
392 assert(NameToBitsMap.count(UnitName));
393 UnitBitValue |= NameToBitsMap[UnitName];
394 }
395
396 if (UnitBitValue != 0)
397 allInsnClasses.insert(UnitBitValue);
398 }
399}
400
401
402//
Sebastian Popf6f77e92011-12-06 17:34:11 +0000403// Run the worklist algorithm to generate the DFA.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000404//
405void DFAGen::run(raw_ostream &OS) {
406 EmitSourceFileHeader("Target DFA Packetizer Tables", OS);
407
Sebastian Popf6f77e92011-12-06 17:34:11 +0000408 // Collect processor iteraries.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000409 std::vector<Record*> ProcItinList =
410 Records.getAllDerivedDefinitions("ProcessorItineraries");
411
412 //
Sebastian Popf6f77e92011-12-06 17:34:11 +0000413 // Collect the instruction classes.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000414 //
415 for (unsigned i = 0, N = ProcItinList.size(); i < N; i++) {
416 Record *Proc = ProcItinList[i];
417
Sebastian Popf6f77e92011-12-06 17:34:11 +0000418 // Get processor itinerary name.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000419 const std::string &Name = Proc->getName();
420
Sebastian Popf6f77e92011-12-06 17:34:11 +0000421 // Skip default.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000422 if (Name == "NoItineraries")
423 continue;
424
Sebastian Popf6f77e92011-12-06 17:34:11 +0000425 // Sanity check for at least one instruction itinerary class.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000426 unsigned NItinClasses =
427 Records.getAllDerivedDefinitions("InstrItinClass").size();
428 if (NItinClasses == 0)
429 return;
430
Sebastian Popf6f77e92011-12-06 17:34:11 +0000431 // Get itinerary data list.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000432 std::vector<Record*> ItinDataList = Proc->getValueAsListOfDefs("IID");
433
Sebastian Popf6f77e92011-12-06 17:34:11 +0000434 // Collect instruction classes for all itinerary data.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000435 for (unsigned j = 0, M = ItinDataList.size(); j < M; j++) {
436 Record *ItinData = ItinDataList[j];
437 unsigned NStages;
438 collectAllInsnClasses(Name, ItinData, NStages, OS);
439 }
440 }
441
442
443 //
Sebastian Popf6f77e92011-12-06 17:34:11 +0000444 // Run a worklist algorithm to generate the DFA.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000445 //
446 DFA D;
Sebastian Pop464f3a32011-12-06 17:34:16 +0000447 State *Initial = new State;
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000448 Initial->isInitial = true;
449 Initial->stateInfo.insert(0x0);
450 D.addState(Initial);
451 SmallVector<State*, 32> WorkList;
452 std::map<std::set<unsigned>, State*> Visited;
453
454 WorkList.push_back(Initial);
455
456 //
Sebastian Popf6f77e92011-12-06 17:34:11 +0000457 // Worklist algorithm to create a DFA for processor resource tracking.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000458 // C = {set of InsnClasses}
459 // Begin with initial node in worklist. Initial node does not have
460 // any consumed resources,
461 // ResourceState = 0x0
462 // Visited = {}
463 // While worklist != empty
464 // S = first element of worklist
465 // For every instruction class C
466 // if we can accommodate C in S:
467 // S' = state with resource states = {S Union C}
468 // Add a new transition: S x C -> S'
469 // If S' is not in Visited:
470 // Add S' to worklist
471 // Add S' to Visited
472 //
473 while (!WorkList.empty()) {
Sebastian Pop464f3a32011-12-06 17:34:16 +0000474 State *current = WorkList.pop_back_val();
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000475 for (DenseSet<unsigned>::iterator CI = allInsnClasses.begin(),
476 CE = allInsnClasses.end(); CI != CE; ++CI) {
477 unsigned InsnClass = *CI;
478
479 std::set<unsigned> NewStateResources;
480 //
481 // If we haven't already created a transition for this input
Sebastian Popf6f77e92011-12-06 17:34:11 +0000482 // and the state can accommodate this InsnClass, create a transition.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000483 //
484 if (!D.getTransition(current, InsnClass) &&
485 current->canAddInsnClass(InsnClass, NewStateResources)) {
Sebastian Pop464f3a32011-12-06 17:34:16 +0000486 State *NewState = NULL;
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000487
488 //
Sebastian Popf6f77e92011-12-06 17:34:11 +0000489 // If we have seen this state before, then do not create a new state.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000490 //
491 //
492 std::map<std::set<unsigned>, State*>::iterator VI;
493 if ((VI = Visited.find(NewStateResources)) != Visited.end())
494 NewState = VI->second;
495 else {
496 NewState = new State;
497 NewState->stateInfo = NewStateResources;
498 D.addState(NewState);
499 Visited[NewStateResources] = NewState;
500 WorkList.push_back(NewState);
501 }
502
Sebastian Pop464f3a32011-12-06 17:34:16 +0000503 Transition *NewTransition = new Transition(current, InsnClass,
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000504 NewState);
505 D.addTransition(NewTransition);
506 }
507 }
508 }
509
Sebastian Popf6f77e92011-12-06 17:34:11 +0000510 // Print out the table.
Anshuman Dasguptadc81e5d2011-12-01 21:10:21 +0000511 D.writeTableAndAPI(OS, TargetName);
512}