xref: /freebsd/contrib/llvm-project/llvm/lib/CodeGen/SlotIndexes.cpp (revision 37f1f2684f2670b204080ef2d6c303becd28545f)
1  //===-- SlotIndexes.cpp - Slot Indexes Pass  ------------------------------===//
2  //
3  // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
4  // See https://llvm.org/LICENSE.txt for license information.
5  // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
6  //
7  //===----------------------------------------------------------------------===//
8  
9  #include "llvm/CodeGen/SlotIndexes.h"
10  #include "llvm/ADT/Statistic.h"
11  #include "llvm/CodeGen/MachineFunction.h"
12  #include "llvm/Config/llvm-config.h"
13  #include "llvm/InitializePasses.h"
14  #include "llvm/Support/Debug.h"
15  #include "llvm/Support/raw_ostream.h"
16  
17  using namespace llvm;
18  
19  #define DEBUG_TYPE "slotindexes"
20  
21  char SlotIndexes::ID = 0;
22  
23  SlotIndexes::SlotIndexes() : MachineFunctionPass(ID), mf(nullptr) {
24    initializeSlotIndexesPass(*PassRegistry::getPassRegistry());
25  }
26  
27  SlotIndexes::~SlotIndexes() {
28    // The indexList's nodes are all allocated in the BumpPtrAllocator.
29    indexList.clearAndLeakNodesUnsafely();
30  }
31  
32  INITIALIZE_PASS(SlotIndexes, DEBUG_TYPE,
33                  "Slot index numbering", false, false)
34  
35  STATISTIC(NumLocalRenum,  "Number of local renumberings");
36  
37  void SlotIndexes::getAnalysisUsage(AnalysisUsage &au) const {
38    au.setPreservesAll();
39    MachineFunctionPass::getAnalysisUsage(au);
40  }
41  
42  void SlotIndexes::releaseMemory() {
43    mi2iMap.clear();
44    MBBRanges.clear();
45    idx2MBBMap.clear();
46    indexList.clear();
47    ileAllocator.Reset();
48  }
49  
50  bool SlotIndexes::runOnMachineFunction(MachineFunction &fn) {
51  
52    // Compute numbering as follows:
53    // Grab an iterator to the start of the index list.
54    // Iterate over all MBBs, and within each MBB all MIs, keeping the MI
55    // iterator in lock-step (though skipping it over indexes which have
56    // null pointers in the instruction field).
57    // At each iteration assert that the instruction pointed to in the index
58    // is the same one pointed to by the MI iterator. This
59  
60    // FIXME: This can be simplified. The mi2iMap_, Idx2MBBMap, etc. should
61    // only need to be set up once after the first numbering is computed.
62  
63    mf = &fn;
64  
65    // Check that the list contains only the sentinal.
66    assert(indexList.empty() && "Index list non-empty at initial numbering?");
67    assert(idx2MBBMap.empty() &&
68           "Index -> MBB mapping non-empty at initial numbering?");
69    assert(MBBRanges.empty() &&
70           "MBB -> Index mapping non-empty at initial numbering?");
71    assert(mi2iMap.empty() &&
72           "MachineInstr -> Index mapping non-empty at initial numbering?");
73  
74    unsigned index = 0;
75    MBBRanges.resize(mf->getNumBlockIDs());
76    idx2MBBMap.reserve(mf->size());
77  
78    indexList.push_back(createEntry(nullptr, index));
79  
80    // Iterate over the function.
81    for (MachineBasicBlock &MBB : *mf) {
82      // Insert an index for the MBB start.
83      SlotIndex blockStartIndex(&indexList.back(), SlotIndex::Slot_Block);
84  
85      for (MachineInstr &MI : MBB) {
86        if (MI.isDebugInstr())
87          continue;
88  
89        // Insert a store index for the instr.
90        indexList.push_back(createEntry(&MI, index += SlotIndex::InstrDist));
91  
92        // Save this base index in the maps.
93        mi2iMap.insert(std::make_pair(
94            &MI, SlotIndex(&indexList.back(), SlotIndex::Slot_Block)));
95      }
96  
97      // We insert one blank instructions between basic blocks.
98      indexList.push_back(createEntry(nullptr, index += SlotIndex::InstrDist));
99  
100      MBBRanges[MBB.getNumber()].first = blockStartIndex;
101      MBBRanges[MBB.getNumber()].second = SlotIndex(&indexList.back(),
102                                                     SlotIndex::Slot_Block);
103      idx2MBBMap.push_back(IdxMBBPair(blockStartIndex, &MBB));
104    }
105  
106    // Sort the Idx2MBBMap
107    llvm::sort(idx2MBBMap, less_first());
108  
109    LLVM_DEBUG(mf->print(dbgs(), this));
110  
111    // And we're done!
112    return false;
113  }
114  
115  void SlotIndexes::removeMachineInstrFromMaps(MachineInstr &MI) {
116    assert(!MI.isBundledWithPred() &&
117           "Use removeSingleMachineInstrFromMaps() instread");
118    Mi2IndexMap::iterator mi2iItr = mi2iMap.find(&MI);
119    if (mi2iItr == mi2iMap.end())
120      return;
121  
122    SlotIndex MIIndex = mi2iItr->second;
123    IndexListEntry &MIEntry = *MIIndex.listEntry();
124    assert(MIEntry.getInstr() == &MI && "Instruction indexes broken.");
125    mi2iMap.erase(mi2iItr);
126    // FIXME: Eventually we want to actually delete these indexes.
127    MIEntry.setInstr(nullptr);
128  }
129  
130  void SlotIndexes::removeSingleMachineInstrFromMaps(MachineInstr &MI) {
131    Mi2IndexMap::iterator mi2iItr = mi2iMap.find(&MI);
132    if (mi2iItr == mi2iMap.end())
133      return;
134  
135    SlotIndex MIIndex = mi2iItr->second;
136    IndexListEntry &MIEntry = *MIIndex.listEntry();
137    assert(MIEntry.getInstr() == &MI && "Instruction indexes broken.");
138    mi2iMap.erase(mi2iItr);
139  
140    // When removing the first instruction of a bundle update mapping to next
141    // instruction.
142    if (MI.isBundledWithSucc()) {
143      // Only the first instruction of a bundle should have an index assigned.
144      assert(!MI.isBundledWithPred() && "Should have first bundle isntruction");
145  
146      MachineBasicBlock::instr_iterator Next = std::next(MI.getIterator());
147      MachineInstr &NextMI = *Next;
148      MIEntry.setInstr(&NextMI);
149      mi2iMap.insert(std::make_pair(&NextMI, MIIndex));
150      return;
151    } else {
152      // FIXME: Eventually we want to actually delete these indexes.
153      MIEntry.setInstr(nullptr);
154    }
155  }
156  
157  // Renumber indexes locally after curItr was inserted, but failed to get a new
158  // index.
159  void SlotIndexes::renumberIndexes(IndexList::iterator curItr) {
160    // Number indexes with half the default spacing so we can catch up quickly.
161    const unsigned Space = SlotIndex::InstrDist/2;
162    static_assert((Space & 3) == 0, "InstrDist must be a multiple of 2*NUM");
163  
164    IndexList::iterator startItr = std::prev(curItr);
165    unsigned index = startItr->getIndex();
166    do {
167      curItr->setIndex(index += Space);
168      ++curItr;
169      // If the next index is bigger, we have caught up.
170    } while (curItr != indexList.end() && curItr->getIndex() <= index);
171  
172    LLVM_DEBUG(dbgs() << "\n*** Renumbered SlotIndexes " << startItr->getIndex()
173                      << '-' << index << " ***\n");
174    ++NumLocalRenum;
175  }
176  
177  // Repair indexes after adding and removing instructions.
178  void SlotIndexes::repairIndexesInRange(MachineBasicBlock *MBB,
179                                         MachineBasicBlock::iterator Begin,
180                                         MachineBasicBlock::iterator End) {
181    // FIXME: Is this really necessary? The only caller repairIntervalsForRange()
182    // does the same thing.
183    // Find anchor points, which are at the beginning/end of blocks or at
184    // instructions that already have indexes.
185    while (Begin != MBB->begin() && !hasIndex(*Begin))
186      --Begin;
187    while (End != MBB->end() && !hasIndex(*End))
188      ++End;
189  
190    bool includeStart = (Begin == MBB->begin());
191    SlotIndex startIdx;
192    if (includeStart)
193      startIdx = getMBBStartIdx(MBB);
194    else
195      startIdx = getInstructionIndex(*Begin);
196  
197    SlotIndex endIdx;
198    if (End == MBB->end())
199      endIdx = getMBBEndIdx(MBB);
200    else
201      endIdx = getInstructionIndex(*End);
202  
203    // FIXME: Conceptually, this code is implementing an iterator on MBB that
204    // optionally includes an additional position prior to MBB->begin(), indicated
205    // by the includeStart flag. This is done so that we can iterate MIs in a MBB
206    // in parallel with SlotIndexes, but there should be a better way to do this.
207    IndexList::iterator ListB = startIdx.listEntry()->getIterator();
208    IndexList::iterator ListI = endIdx.listEntry()->getIterator();
209    MachineBasicBlock::iterator MBBI = End;
210    bool pastStart = false;
211    while (ListI != ListB || MBBI != Begin || (includeStart && !pastStart)) {
212      assert(ListI->getIndex() >= startIdx.getIndex() &&
213             (includeStart || !pastStart) &&
214             "Decremented past the beginning of region to repair.");
215  
216      MachineInstr *SlotMI = ListI->getInstr();
217      MachineInstr *MI = (MBBI != MBB->end() && !pastStart) ? &*MBBI : nullptr;
218      bool MBBIAtBegin = MBBI == Begin && (!includeStart || pastStart);
219  
220      if (SlotMI == MI && !MBBIAtBegin) {
221        --ListI;
222        if (MBBI != Begin)
223          --MBBI;
224        else
225          pastStart = true;
226      } else if (MI && mi2iMap.find(MI) == mi2iMap.end()) {
227        if (MBBI != Begin)
228          --MBBI;
229        else
230          pastStart = true;
231      } else {
232        --ListI;
233        if (SlotMI)
234          removeMachineInstrFromMaps(*SlotMI);
235      }
236    }
237  
238    // In theory this could be combined with the previous loop, but it is tricky
239    // to update the IndexList while we are iterating it.
240    for (MachineBasicBlock::iterator I = End; I != Begin;) {
241      --I;
242      MachineInstr &MI = *I;
243      if (!MI.isDebugInstr() && mi2iMap.find(&MI) == mi2iMap.end())
244        insertMachineInstrInMaps(MI);
245    }
246  }
247  
248  #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
249  LLVM_DUMP_METHOD void SlotIndexes::dump() const {
250    for (IndexList::const_iterator itr = indexList.begin();
251         itr != indexList.end(); ++itr) {
252      dbgs() << itr->getIndex() << " ";
253  
254      if (itr->getInstr()) {
255        dbgs() << *itr->getInstr();
256      } else {
257        dbgs() << "\n";
258      }
259    }
260  
261    for (unsigned i = 0, e = MBBRanges.size(); i != e; ++i)
262      dbgs() << "%bb." << i << "\t[" << MBBRanges[i].first << ';'
263             << MBBRanges[i].second << ")\n";
264  }
265  #endif
266  
267  // Print a SlotIndex to a raw_ostream.
268  void SlotIndex::print(raw_ostream &os) const {
269    if (isValid())
270      os << listEntry()->getIndex() << "Berd"[getSlot()];
271    else
272      os << "invalid";
273  }
274  
275  #if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
276  // Dump a SlotIndex to stderr.
277  LLVM_DUMP_METHOD void SlotIndex::dump() const {
278    print(dbgs());
279    dbgs() << "\n";
280  }
281  #endif
282  
283