10b57cec5SDimitry Andric //===- LiveRegMatrix.cpp - Track register interference --------------------===//
20b57cec5SDimitry Andric //
30b57cec5SDimitry Andric // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
40b57cec5SDimitry Andric // See https://llvm.org/LICENSE.txt for license information.
50b57cec5SDimitry Andric // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
60b57cec5SDimitry Andric //
70b57cec5SDimitry Andric //===----------------------------------------------------------------------===//
80b57cec5SDimitry Andric //
90b57cec5SDimitry Andric // This file defines the LiveRegMatrix analysis pass.
100b57cec5SDimitry Andric //
110b57cec5SDimitry Andric //===----------------------------------------------------------------------===//
120b57cec5SDimitry Andric
130b57cec5SDimitry Andric #include "llvm/CodeGen/LiveRegMatrix.h"
140b57cec5SDimitry Andric #include "RegisterCoalescer.h"
150b57cec5SDimitry Andric #include "llvm/ADT/Statistic.h"
160b57cec5SDimitry Andric #include "llvm/CodeGen/LiveInterval.h"
170b57cec5SDimitry Andric #include "llvm/CodeGen/LiveIntervalUnion.h"
180b57cec5SDimitry Andric #include "llvm/CodeGen/LiveIntervals.h"
190b57cec5SDimitry Andric #include "llvm/CodeGen/MachineFunction.h"
200b57cec5SDimitry Andric #include "llvm/CodeGen/TargetRegisterInfo.h"
210b57cec5SDimitry Andric #include "llvm/CodeGen/TargetSubtargetInfo.h"
220b57cec5SDimitry Andric #include "llvm/CodeGen/VirtRegMap.h"
23480093f4SDimitry Andric #include "llvm/InitializePasses.h"
240b57cec5SDimitry Andric #include "llvm/MC/LaneBitmask.h"
250b57cec5SDimitry Andric #include "llvm/MC/MCRegisterInfo.h"
260b57cec5SDimitry Andric #include "llvm/Pass.h"
270b57cec5SDimitry Andric #include "llvm/Support/Debug.h"
280b57cec5SDimitry Andric #include "llvm/Support/raw_ostream.h"
290b57cec5SDimitry Andric #include <cassert>
300b57cec5SDimitry Andric
310b57cec5SDimitry Andric using namespace llvm;
320b57cec5SDimitry Andric
330b57cec5SDimitry Andric #define DEBUG_TYPE "regalloc"
340b57cec5SDimitry Andric
350b57cec5SDimitry Andric STATISTIC(NumAssigned , "Number of registers assigned");
360b57cec5SDimitry Andric STATISTIC(NumUnassigned , "Number of registers unassigned");
370b57cec5SDimitry Andric
380b57cec5SDimitry Andric char LiveRegMatrix::ID = 0;
390b57cec5SDimitry Andric INITIALIZE_PASS_BEGIN(LiveRegMatrix, "liveregmatrix",
400b57cec5SDimitry Andric "Live Register Matrix", false, false)
INITIALIZE_PASS_DEPENDENCY(LiveIntervals)410b57cec5SDimitry Andric INITIALIZE_PASS_DEPENDENCY(LiveIntervals)
420b57cec5SDimitry Andric INITIALIZE_PASS_DEPENDENCY(VirtRegMap)
430b57cec5SDimitry Andric INITIALIZE_PASS_END(LiveRegMatrix, "liveregmatrix",
440b57cec5SDimitry Andric "Live Register Matrix", false, false)
450b57cec5SDimitry Andric
460b57cec5SDimitry Andric LiveRegMatrix::LiveRegMatrix() : MachineFunctionPass(ID) {}
470b57cec5SDimitry Andric
getAnalysisUsage(AnalysisUsage & AU) const480b57cec5SDimitry Andric void LiveRegMatrix::getAnalysisUsage(AnalysisUsage &AU) const {
490b57cec5SDimitry Andric AU.setPreservesAll();
500b57cec5SDimitry Andric AU.addRequiredTransitive<LiveIntervals>();
510b57cec5SDimitry Andric AU.addRequiredTransitive<VirtRegMap>();
520b57cec5SDimitry Andric MachineFunctionPass::getAnalysisUsage(AU);
530b57cec5SDimitry Andric }
540b57cec5SDimitry Andric
runOnMachineFunction(MachineFunction & MF)550b57cec5SDimitry Andric bool LiveRegMatrix::runOnMachineFunction(MachineFunction &MF) {
560b57cec5SDimitry Andric TRI = MF.getSubtarget().getRegisterInfo();
570b57cec5SDimitry Andric LIS = &getAnalysis<LiveIntervals>();
580b57cec5SDimitry Andric VRM = &getAnalysis<VirtRegMap>();
590b57cec5SDimitry Andric
600b57cec5SDimitry Andric unsigned NumRegUnits = TRI->getNumRegUnits();
610b57cec5SDimitry Andric if (NumRegUnits != Matrix.size())
620b57cec5SDimitry Andric Queries.reset(new LiveIntervalUnion::Query[NumRegUnits]);
630b57cec5SDimitry Andric Matrix.init(LIUAlloc, NumRegUnits);
640b57cec5SDimitry Andric
650b57cec5SDimitry Andric // Make sure no stale queries get reused.
660b57cec5SDimitry Andric invalidateVirtRegs();
670b57cec5SDimitry Andric return false;
680b57cec5SDimitry Andric }
690b57cec5SDimitry Andric
releaseMemory()700b57cec5SDimitry Andric void LiveRegMatrix::releaseMemory() {
710b57cec5SDimitry Andric for (unsigned i = 0, e = Matrix.size(); i != e; ++i) {
720b57cec5SDimitry Andric Matrix[i].clear();
730b57cec5SDimitry Andric // No need to clear Queries here, since LiveIntervalUnion::Query doesn't
740b57cec5SDimitry Andric // have anything important to clear and LiveRegMatrix's runOnFunction()
750b57cec5SDimitry Andric // does a std::unique_ptr::reset anyways.
760b57cec5SDimitry Andric }
770b57cec5SDimitry Andric }
780b57cec5SDimitry Andric
790b57cec5SDimitry Andric template <typename Callable>
foreachUnit(const TargetRegisterInfo * TRI,const LiveInterval & VRegInterval,MCRegister PhysReg,Callable Func)800b57cec5SDimitry Andric static bool foreachUnit(const TargetRegisterInfo *TRI,
8181ad6265SDimitry Andric const LiveInterval &VRegInterval, MCRegister PhysReg,
820b57cec5SDimitry Andric Callable Func) {
830b57cec5SDimitry Andric if (VRegInterval.hasSubRanges()) {
840b57cec5SDimitry Andric for (MCRegUnitMaskIterator Units(PhysReg, TRI); Units.isValid(); ++Units) {
850b57cec5SDimitry Andric unsigned Unit = (*Units).first;
860b57cec5SDimitry Andric LaneBitmask Mask = (*Units).second;
8781ad6265SDimitry Andric for (const LiveInterval::SubRange &S : VRegInterval.subranges()) {
880b57cec5SDimitry Andric if ((S.LaneMask & Mask).any()) {
890b57cec5SDimitry Andric if (Func(Unit, S))
900b57cec5SDimitry Andric return true;
910b57cec5SDimitry Andric break;
920b57cec5SDimitry Andric }
930b57cec5SDimitry Andric }
940b57cec5SDimitry Andric }
950b57cec5SDimitry Andric } else {
96*fe013be4SDimitry Andric for (MCRegUnit Unit : TRI->regunits(PhysReg)) {
97*fe013be4SDimitry Andric if (Func(Unit, VRegInterval))
980b57cec5SDimitry Andric return true;
990b57cec5SDimitry Andric }
1000b57cec5SDimitry Andric }
1010b57cec5SDimitry Andric return false;
1020b57cec5SDimitry Andric }
1030b57cec5SDimitry Andric
assign(const LiveInterval & VirtReg,MCRegister PhysReg)10481ad6265SDimitry Andric void LiveRegMatrix::assign(const LiveInterval &VirtReg, MCRegister PhysReg) {
105e8d8bef9SDimitry Andric LLVM_DEBUG(dbgs() << "assigning " << printReg(VirtReg.reg(), TRI) << " to "
1060b57cec5SDimitry Andric << printReg(PhysReg, TRI) << ':');
107e8d8bef9SDimitry Andric assert(!VRM->hasPhys(VirtReg.reg()) && "Duplicate VirtReg assignment");
108e8d8bef9SDimitry Andric VRM->assignVirt2Phys(VirtReg.reg(), PhysReg);
1090b57cec5SDimitry Andric
1100b57cec5SDimitry Andric foreachUnit(
1110b57cec5SDimitry Andric TRI, VirtReg, PhysReg, [&](unsigned Unit, const LiveRange &Range) {
1120b57cec5SDimitry Andric LLVM_DEBUG(dbgs() << ' ' << printRegUnit(Unit, TRI) << ' ' << Range);
1130b57cec5SDimitry Andric Matrix[Unit].unify(VirtReg, Range);
1140b57cec5SDimitry Andric return false;
1150b57cec5SDimitry Andric });
1160b57cec5SDimitry Andric
1170b57cec5SDimitry Andric ++NumAssigned;
1180b57cec5SDimitry Andric LLVM_DEBUG(dbgs() << '\n');
1190b57cec5SDimitry Andric }
1200b57cec5SDimitry Andric
unassign(const LiveInterval & VirtReg)12181ad6265SDimitry Andric void LiveRegMatrix::unassign(const LiveInterval &VirtReg) {
122e8d8bef9SDimitry Andric Register PhysReg = VRM->getPhys(VirtReg.reg());
123e8d8bef9SDimitry Andric LLVM_DEBUG(dbgs() << "unassigning " << printReg(VirtReg.reg(), TRI)
124e8d8bef9SDimitry Andric << " from " << printReg(PhysReg, TRI) << ':');
125e8d8bef9SDimitry Andric VRM->clearVirt(VirtReg.reg());
1260b57cec5SDimitry Andric
1270b57cec5SDimitry Andric foreachUnit(TRI, VirtReg, PhysReg,
1280b57cec5SDimitry Andric [&](unsigned Unit, const LiveRange &Range) {
1290b57cec5SDimitry Andric LLVM_DEBUG(dbgs() << ' ' << printRegUnit(Unit, TRI));
1300b57cec5SDimitry Andric Matrix[Unit].extract(VirtReg, Range);
1310b57cec5SDimitry Andric return false;
1320b57cec5SDimitry Andric });
1330b57cec5SDimitry Andric
1340b57cec5SDimitry Andric ++NumUnassigned;
1350b57cec5SDimitry Andric LLVM_DEBUG(dbgs() << '\n');
1360b57cec5SDimitry Andric }
1370b57cec5SDimitry Andric
isPhysRegUsed(MCRegister PhysReg) const138e8d8bef9SDimitry Andric bool LiveRegMatrix::isPhysRegUsed(MCRegister PhysReg) const {
139*fe013be4SDimitry Andric for (MCRegUnit Unit : TRI->regunits(PhysReg)) {
140*fe013be4SDimitry Andric if (!Matrix[Unit].empty())
1410b57cec5SDimitry Andric return true;
1420b57cec5SDimitry Andric }
1430b57cec5SDimitry Andric return false;
1440b57cec5SDimitry Andric }
1450b57cec5SDimitry Andric
checkRegMaskInterference(const LiveInterval & VirtReg,MCRegister PhysReg)14681ad6265SDimitry Andric bool LiveRegMatrix::checkRegMaskInterference(const LiveInterval &VirtReg,
147e8d8bef9SDimitry Andric MCRegister PhysReg) {
1480b57cec5SDimitry Andric // Check if the cached information is valid.
1490b57cec5SDimitry Andric // The same BitVector can be reused for all PhysRegs.
1500b57cec5SDimitry Andric // We could cache multiple VirtRegs if it becomes necessary.
151e8d8bef9SDimitry Andric if (RegMaskVirtReg != VirtReg.reg() || RegMaskTag != UserTag) {
152e8d8bef9SDimitry Andric RegMaskVirtReg = VirtReg.reg();
1530b57cec5SDimitry Andric RegMaskTag = UserTag;
1540b57cec5SDimitry Andric RegMaskUsable.clear();
1550b57cec5SDimitry Andric LIS->checkRegMaskInterference(VirtReg, RegMaskUsable);
1560b57cec5SDimitry Andric }
1570b57cec5SDimitry Andric
1580b57cec5SDimitry Andric // The BitVector is indexed by PhysReg, not register unit.
1590b57cec5SDimitry Andric // Regmask interference is more fine grained than regunits.
1600b57cec5SDimitry Andric // For example, a Win64 call can clobber %ymm8 yet preserve %xmm8.
1610b57cec5SDimitry Andric return !RegMaskUsable.empty() && (!PhysReg || !RegMaskUsable.test(PhysReg));
1620b57cec5SDimitry Andric }
1630b57cec5SDimitry Andric
checkRegUnitInterference(const LiveInterval & VirtReg,MCRegister PhysReg)16481ad6265SDimitry Andric bool LiveRegMatrix::checkRegUnitInterference(const LiveInterval &VirtReg,
165e8d8bef9SDimitry Andric MCRegister PhysReg) {
1660b57cec5SDimitry Andric if (VirtReg.empty())
1670b57cec5SDimitry Andric return false;
168e8d8bef9SDimitry Andric CoalescerPair CP(VirtReg.reg(), PhysReg, *TRI);
1690b57cec5SDimitry Andric
1700b57cec5SDimitry Andric bool Result = foreachUnit(TRI, VirtReg, PhysReg, [&](unsigned Unit,
1710b57cec5SDimitry Andric const LiveRange &Range) {
1720b57cec5SDimitry Andric const LiveRange &UnitRange = LIS->getRegUnit(Unit);
1730b57cec5SDimitry Andric return Range.overlaps(UnitRange, CP, *LIS->getSlotIndexes());
1740b57cec5SDimitry Andric });
1750b57cec5SDimitry Andric return Result;
1760b57cec5SDimitry Andric }
1770b57cec5SDimitry Andric
query(const LiveRange & LR,MCRegister RegUnit)1780b57cec5SDimitry Andric LiveIntervalUnion::Query &LiveRegMatrix::query(const LiveRange &LR,
179e8d8bef9SDimitry Andric MCRegister RegUnit) {
1800b57cec5SDimitry Andric LiveIntervalUnion::Query &Q = Queries[RegUnit];
1810b57cec5SDimitry Andric Q.init(UserTag, LR, Matrix[RegUnit]);
1820b57cec5SDimitry Andric return Q;
1830b57cec5SDimitry Andric }
1840b57cec5SDimitry Andric
1850b57cec5SDimitry Andric LiveRegMatrix::InterferenceKind
checkInterference(const LiveInterval & VirtReg,MCRegister PhysReg)18681ad6265SDimitry Andric LiveRegMatrix::checkInterference(const LiveInterval &VirtReg,
18781ad6265SDimitry Andric MCRegister PhysReg) {
1880b57cec5SDimitry Andric if (VirtReg.empty())
1890b57cec5SDimitry Andric return IK_Free;
1900b57cec5SDimitry Andric
1910b57cec5SDimitry Andric // Regmask interference is the fastest check.
1920b57cec5SDimitry Andric if (checkRegMaskInterference(VirtReg, PhysReg))
1930b57cec5SDimitry Andric return IK_RegMask;
1940b57cec5SDimitry Andric
1950b57cec5SDimitry Andric // Check for fixed interference.
1960b57cec5SDimitry Andric if (checkRegUnitInterference(VirtReg, PhysReg))
1970b57cec5SDimitry Andric return IK_RegUnit;
1980b57cec5SDimitry Andric
1990b57cec5SDimitry Andric // Check the matrix for virtual register interference.
2000b57cec5SDimitry Andric bool Interference = foreachUnit(TRI, VirtReg, PhysReg,
201e8d8bef9SDimitry Andric [&](MCRegister Unit, const LiveRange &LR) {
2020b57cec5SDimitry Andric return query(LR, Unit).checkInterference();
2030b57cec5SDimitry Andric });
2040b57cec5SDimitry Andric if (Interference)
2050b57cec5SDimitry Andric return IK_VirtReg;
2060b57cec5SDimitry Andric
2070b57cec5SDimitry Andric return IK_Free;
2080b57cec5SDimitry Andric }
2090b57cec5SDimitry Andric
checkInterference(SlotIndex Start,SlotIndex End,MCRegister PhysReg)2100b57cec5SDimitry Andric bool LiveRegMatrix::checkInterference(SlotIndex Start, SlotIndex End,
211e8d8bef9SDimitry Andric MCRegister PhysReg) {
2120b57cec5SDimitry Andric // Construct artificial live range containing only one segment [Start, End).
2130b57cec5SDimitry Andric VNInfo valno(0, Start);
2140b57cec5SDimitry Andric LiveRange::Segment Seg(Start, End, &valno);
2150b57cec5SDimitry Andric LiveRange LR;
2160b57cec5SDimitry Andric LR.addSegment(Seg);
2170b57cec5SDimitry Andric
2180b57cec5SDimitry Andric // Check for interference with that segment
219*fe013be4SDimitry Andric for (MCRegUnit Unit : TRI->regunits(PhysReg)) {
220fe6060f1SDimitry Andric // LR is stack-allocated. LiveRegMatrix caches queries by a key that
221fe6060f1SDimitry Andric // includes the address of the live range. If (for the same reg unit) this
222fe6060f1SDimitry Andric // checkInterference overload is called twice, without any other query()
223fe6060f1SDimitry Andric // calls in between (on heap-allocated LiveRanges) - which would invalidate
224fe6060f1SDimitry Andric // the cached query - the LR address seen the second time may well be the
225fe6060f1SDimitry Andric // same as that seen the first time, while the Start/End/valno may not - yet
226fe6060f1SDimitry Andric // the same cached result would be fetched. To avoid that, we don't cache
227fe6060f1SDimitry Andric // this query.
228fe6060f1SDimitry Andric //
229fe6060f1SDimitry Andric // FIXME: the usability of the Query API needs to be improved to avoid
230fe6060f1SDimitry Andric // subtle bugs due to query identity. Avoiding caching, for example, would
231fe6060f1SDimitry Andric // greatly simplify things.
232fe6060f1SDimitry Andric LiveIntervalUnion::Query Q;
233*fe013be4SDimitry Andric Q.reset(UserTag, LR, Matrix[Unit]);
234fe6060f1SDimitry Andric if (Q.checkInterference())
2350b57cec5SDimitry Andric return true;
2360b57cec5SDimitry Andric }
2370b57cec5SDimitry Andric return false;
2380b57cec5SDimitry Andric }
239e8d8bef9SDimitry Andric
getOneVReg(unsigned PhysReg) const240e8d8bef9SDimitry Andric Register LiveRegMatrix::getOneVReg(unsigned PhysReg) const {
24181ad6265SDimitry Andric const LiveInterval *VRegInterval = nullptr;
242*fe013be4SDimitry Andric for (MCRegUnit Unit : TRI->regunits(PhysReg)) {
243*fe013be4SDimitry Andric if ((VRegInterval = Matrix[Unit].getOneVReg()))
244e8d8bef9SDimitry Andric return VRegInterval->reg();
245e8d8bef9SDimitry Andric }
246e8d8bef9SDimitry Andric
247e8d8bef9SDimitry Andric return MCRegister::NoRegister;
248e8d8bef9SDimitry Andric }
249