mirror of
https://github.com/c64scene-ar/llvm-6502.git
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d94a4e5d8d
git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@78563 91177308-0d34-0410-b5e6-96231b3b80d8
150 lines
4.6 KiB
C++
150 lines
4.6 KiB
C++
//===----- ExactHazardRecognizer.cpp - hazard recognizer -------- ---------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This implements a a hazard recognizer using the instructions itineraries
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// defined for the current target.
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//
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//===----------------------------------------------------------------------===//
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#define DEBUG_TYPE "exact-hazards"
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#include "ExactHazardRecognizer.h"
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#include "llvm/CodeGen/ScheduleHazardRecognizer.h"
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#include "llvm/Support/Debug.h"
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#include "llvm/Support/ErrorHandling.h"
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#include "llvm/Target/TargetInstrItineraries.h"
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namespace llvm {
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ExactHazardRecognizer::ExactHazardRecognizer(const InstrItineraryData &LItinData) :
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ScheduleHazardRecognizer(), ItinData(LItinData)
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{
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// Determine the maximum depth of any itinerary. This determines the
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// depth of the scoreboard. We always make the scoreboard at least 1
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// cycle deep to avoid dealing with the boundary condition.
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ScoreboardDepth = 1;
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if (!ItinData.isEmpty()) {
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for (unsigned idx = 0; ; ++idx) {
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// If the begin stage of an itinerary has 0 cycles and units,
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// then we have reached the end of the itineraries.
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const InstrStage *IS = ItinData.begin(idx), *E = ItinData.end(idx);
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if ((IS->Cycles == 0) && (IS->Units == 0))
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break;
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unsigned ItinDepth = 0;
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for (; IS != E; ++IS)
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ItinDepth += IS->Cycles;
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ScoreboardDepth = std::max(ScoreboardDepth, ItinDepth);
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}
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}
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Scoreboard = new unsigned[ScoreboardDepth];
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ScoreboardHead = 0;
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DOUT << "Using exact hazard recognizer: ScoreboardDepth = "
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<< ScoreboardDepth << '\n';
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}
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ExactHazardRecognizer::~ExactHazardRecognizer() {
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delete Scoreboard;
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}
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void ExactHazardRecognizer::Reset() {
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memset(Scoreboard, 0, ScoreboardDepth * sizeof(unsigned));
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ScoreboardHead = 0;
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}
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unsigned ExactHazardRecognizer::getFutureIndex(unsigned offset) {
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return (ScoreboardHead + offset) % ScoreboardDepth;
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}
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void ExactHazardRecognizer::dumpScoreboard() {
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DOUT << "Scoreboard:\n";
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unsigned last = ScoreboardDepth - 1;
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while ((last > 0) && (Scoreboard[getFutureIndex(last)] == 0))
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last--;
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for (unsigned i = 0; i <= last; i++) {
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unsigned FUs = Scoreboard[getFutureIndex(i)];
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DOUT << "\t";
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for (int j = 31; j >= 0; j--)
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DOUT << ((FUs & (1 << j)) ? '1' : '0');
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DOUT << '\n';
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}
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}
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ExactHazardRecognizer::HazardType ExactHazardRecognizer::getHazardType(SUnit *SU) {
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unsigned cycle = 0;
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// Use the itinerary for the underlying instruction to check for
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// free FU's in the scoreboard at the appropriate future cycles.
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unsigned idx = SU->getInstr()->getDesc().getSchedClass();
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for (const InstrStage *IS = ItinData.begin(idx), *E = ItinData.end(idx);
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IS != E; ++IS) {
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// We must find one of the stage's units free for every cycle the
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// stage is occupied.
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for (unsigned int i = 0; i < IS->Cycles; ++i) {
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assert((cycle < ScoreboardDepth) && "Scoreboard depth exceeded!");
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unsigned index = getFutureIndex(cycle);
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unsigned freeUnits = IS->Units & ~Scoreboard[index];
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if (!freeUnits) {
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DOUT << "*** Hazard in cycle " << cycle << ", ";
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DOUT << "SU(" << SU->NodeNum << "): ";
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DEBUG(SU->getInstr()->dump());
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return Hazard;
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}
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++cycle;
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}
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}
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return NoHazard;
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}
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void ExactHazardRecognizer::EmitInstruction(SUnit *SU) {
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unsigned cycle = 0;
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// Use the itinerary for the underlying instruction to reserve FU's
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// in the scoreboard at the appropriate future cycles.
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unsigned idx = SU->getInstr()->getDesc().getSchedClass();
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for (const InstrStage *IS = ItinData.begin(idx), *E = ItinData.end(idx);
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IS != E; ++IS) {
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// We must reserve one of the stage's units for every cycle the
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// stage is occupied.
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for (unsigned int i = 0; i < IS->Cycles; ++i) {
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assert((cycle < ScoreboardDepth) && "Scoreboard depth exceeded!");
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unsigned index = getFutureIndex(cycle);
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unsigned freeUnits = IS->Units & ~Scoreboard[index];
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// reduce to a single unit
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unsigned freeUnit = 0;
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do {
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freeUnit = freeUnits;
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freeUnits = freeUnit & (freeUnit - 1);
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} while (freeUnits);
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assert(freeUnit && "No function unit available!");
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Scoreboard[index] |= freeUnit;
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++cycle;
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}
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}
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DEBUG(dumpScoreboard());
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}
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void ExactHazardRecognizer::AdvanceCycle() {
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Scoreboard[ScoreboardHead] = 0;
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ScoreboardHead = getFutureIndex(1);
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}
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} /* namespace llvm */
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