blob: c10d9c38f509ad8d868f75db58767b2a80302b2b [file] [log] [blame]
Eugene Zelenko79220eae2017-08-03 22:12:30 +00001//===- MipsConstantIslandPass.cpp - Emit Pc Relative loads ----------------===//
Reed Kotlerbb3094a2013-02-27 03:33:58 +00002//
Chandler Carruth2946cd72019-01-19 08:50:56 +00003// 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
Reed Kotlerbb3094a2013-02-27 03:33:58 +00006//
7//===----------------------------------------------------------------------===//
8//
Reed Kotlerbb3094a2013-02-27 03:33:58 +00009// This pass is used to make Pc relative loads of constants.
Fangrui Songf78650a2018-07-30 19:41:25 +000010// For now, only Mips16 will use this.
Reed Kotlerbb3094a2013-02-27 03:33:58 +000011//
12// Loading constants inline is expensive on Mips16 and it's in general better
13// to place the constant nearby in code space and then it can be loaded with a
14// simple 16 bit load instruction.
15//
16// The constants can be not just numbers but addresses of functions and labels.
17// This can be particularly helpful in static relocation mode for embedded
Alp Tokerf907b892013-12-05 05:44:44 +000018// non-linux targets.
Reed Kotlerbb3094a2013-02-27 03:33:58 +000019//
Eugene Zelenkodde94e42017-01-30 23:21:32 +000020//===----------------------------------------------------------------------===//
Reed Kotlerbb3094a2013-02-27 03:33:58 +000021
Reed Kotlerbb3094a2013-02-27 03:33:58 +000022#include "Mips.h"
Reed Kotler5c8ae092013-11-13 04:37:52 +000023#include "Mips16InstrInfo.h"
Reed Kotler0f007fc2013-11-05 08:14:14 +000024#include "MipsMachineFunction.h"
Eugene Zelenkodde94e42017-01-30 23:21:32 +000025#include "MipsSubtarget.h"
Chandler Carruth6bda14b2017-06-06 11:49:48 +000026#include "llvm/ADT/STLExtras.h"
Eugene Zelenkodde94e42017-01-30 23:21:32 +000027#include "llvm/ADT/SmallSet.h"
28#include "llvm/ADT/SmallVector.h"
Reed Kotlerbb3094a2013-02-27 03:33:58 +000029#include "llvm/ADT/Statistic.h"
Eugene Zelenkodde94e42017-01-30 23:21:32 +000030#include "llvm/ADT/StringRef.h"
Reed Kotler91ae9822013-10-27 21:57:36 +000031#include "llvm/CodeGen/MachineBasicBlock.h"
Eric Christopher79cc1e32014-09-02 22:28:02 +000032#include "llvm/CodeGen/MachineConstantPool.h"
Eugene Zelenkodde94e42017-01-30 23:21:32 +000033#include "llvm/CodeGen/MachineFunction.h"
Reed Kotlerbb3094a2013-02-27 03:33:58 +000034#include "llvm/CodeGen/MachineFunctionPass.h"
Eugene Zelenkodde94e42017-01-30 23:21:32 +000035#include "llvm/CodeGen/MachineInstr.h"
Reed Kotlerbb3094a2013-02-27 03:33:58 +000036#include "llvm/CodeGen/MachineInstrBuilder.h"
Eugene Zelenkodde94e42017-01-30 23:21:32 +000037#include "llvm/CodeGen/MachineOperand.h"
Reed Kotler91ae9822013-10-27 21:57:36 +000038#include "llvm/CodeGen/MachineRegisterInfo.h"
Nico Weber432a3882018-04-30 14:59:11 +000039#include "llvm/Config/llvm-config.h"
Eugene Zelenkodde94e42017-01-30 23:21:32 +000040#include "llvm/IR/Constants.h"
41#include "llvm/IR/DataLayout.h"
42#include "llvm/IR/DebugLoc.h"
Reed Kotlerbb3094a2013-02-27 03:33:58 +000043#include "llvm/IR/Function.h"
Eugene Zelenkodde94e42017-01-30 23:21:32 +000044#include "llvm/IR/Type.h"
Reed Kotlerbb3094a2013-02-27 03:33:58 +000045#include "llvm/Support/CommandLine.h"
Eugene Zelenkodde94e42017-01-30 23:21:32 +000046#include "llvm/Support/Compiler.h"
Reed Kotler91ae9822013-10-27 21:57:36 +000047#include "llvm/Support/Debug.h"
Eugene Zelenkodde94e42017-01-30 23:21:32 +000048#include "llvm/Support/ErrorHandling.h"
Chandler Carruth8a8cd2b2014-01-07 11:48:04 +000049#include "llvm/Support/Format.h"
Reed Kotlerbb3094a2013-02-27 03:33:58 +000050#include "llvm/Support/MathExtras.h"
Reed Kotler91ae9822013-10-27 21:57:36 +000051#include "llvm/Support/raw_ostream.h"
Reed Kotler91ae9822013-10-27 21:57:36 +000052#include <algorithm>
Eugene Zelenkodde94e42017-01-30 23:21:32 +000053#include <cassert>
54#include <cstdint>
55#include <iterator>
Eugene Zelenkodde94e42017-01-30 23:21:32 +000056#include <vector>
Reed Kotlerbb3094a2013-02-27 03:33:58 +000057
58using namespace llvm;
59
Chandler Carruth84e68b22014-04-22 02:41:26 +000060#define DEBUG_TYPE "mips-constant-islands"
61
Reed Kotler91ae9822013-10-27 21:57:36 +000062STATISTIC(NumCPEs, "Number of constpool entries");
Reed Kotler0f007fc2013-11-05 08:14:14 +000063STATISTIC(NumSplit, "Number of uncond branches inserted");
64STATISTIC(NumCBrFixed, "Number of cond branches fixed");
65STATISTIC(NumUBrFixed, "Number of uncond branches fixed");
Reed Kotler91ae9822013-10-27 21:57:36 +000066
67// FIXME: This option should be removed once it has received sufficient testing.
68static cl::opt<bool>
69AlignConstantIslands("mips-align-constant-islands", cl::Hidden, cl::init(true),
70 cl::desc("Align constant islands in code"));
71
Reed Kotler0f007fc2013-11-05 08:14:14 +000072// Rather than do make check tests with huge amounts of code, we force
73// the test to use this amount.
Reed Kotler0f007fc2013-11-05 08:14:14 +000074static cl::opt<int> ConstantIslandsSmallOffset(
75 "mips-constant-islands-small-offset",
76 cl::init(0),
77 cl::desc("Make small offsets be this amount for testing purposes"),
78 cl::Hidden);
79
Reed Kotler45c59272013-11-10 00:09:26 +000080// For testing purposes we tell it to not use relaxed load forms so that it
81// will split blocks.
Reed Kotler45c59272013-11-10 00:09:26 +000082static cl::opt<bool> NoLoadRelaxation(
83 "mips-constant-islands-no-load-relaxation",
84 cl::init(false),
85 cl::desc("Don't relax loads to long loads - for testing purposes"),
86 cl::Hidden);
87
Reed Kotler0d409e22013-11-28 00:56:37 +000088static unsigned int branchTargetOperand(MachineInstr *MI) {
89 switch (MI->getOpcode()) {
90 case Mips::Bimm16:
91 case Mips::BimmX16:
92 case Mips::Bteqz16:
93 case Mips::BteqzX16:
94 case Mips::Btnez16:
95 case Mips::BtnezX16:
Reed Kotlerad450f22013-11-29 22:32:56 +000096 case Mips::JalB16:
Reed Kotler0d409e22013-11-28 00:56:37 +000097 return 0;
98 case Mips::BeqzRxImm16:
99 case Mips::BeqzRxImmX16:
100 case Mips::BnezRxImm16:
101 case Mips::BnezRxImmX16:
102 return 1;
103 }
104 llvm_unreachable("Unknown branch type");
105}
106
107static unsigned int longformBranchOpcode(unsigned int Opcode) {
108 switch (Opcode) {
109 case Mips::Bimm16:
110 case Mips::BimmX16:
111 return Mips::BimmX16;
112 case Mips::Bteqz16:
113 case Mips::BteqzX16:
114 return Mips::BteqzX16;
115 case Mips::Btnez16:
116 case Mips::BtnezX16:
117 return Mips::BtnezX16;
Reed Kotlerad450f22013-11-29 22:32:56 +0000118 case Mips::JalB16:
119 return Mips::JalB16;
Reed Kotler0d409e22013-11-28 00:56:37 +0000120 case Mips::BeqzRxImm16:
121 case Mips::BeqzRxImmX16:
122 return Mips::BeqzRxImmX16;
123 case Mips::BnezRxImm16:
124 case Mips::BnezRxImmX16:
125 return Mips::BnezRxImmX16;
126 }
127 llvm_unreachable("Unknown branch type");
128}
129
Reed Kotler0d409e22013-11-28 00:56:37 +0000130// FIXME: need to go through this whole constant islands port and check the math
131// for branch ranges and clean this up and make some functions to calculate things
132// that are done many times identically.
133// Need to refactor some of the code to call this routine.
Reed Kotler0d409e22013-11-28 00:56:37 +0000134static unsigned int branchMaxOffsets(unsigned int Opcode) {
135 unsigned Bits, Scale;
136 switch (Opcode) {
137 case Mips::Bimm16:
138 Bits = 11;
139 Scale = 2;
140 break;
141 case Mips::BimmX16:
142 Bits = 16;
143 Scale = 2;
144 break;
145 case Mips::BeqzRxImm16:
146 Bits = 8;
147 Scale = 2;
148 break;
149 case Mips::BeqzRxImmX16:
150 Bits = 16;
151 Scale = 2;
152 break;
153 case Mips::BnezRxImm16:
154 Bits = 8;
155 Scale = 2;
156 break;
157 case Mips::BnezRxImmX16:
158 Bits = 16;
159 Scale = 2;
160 break;
161 case Mips::Bteqz16:
162 Bits = 8;
163 Scale = 2;
164 break;
165 case Mips::BteqzX16:
166 Bits = 16;
167 Scale = 2;
168 break;
169 case Mips::Btnez16:
170 Bits = 8;
171 Scale = 2;
172 break;
173 case Mips::BtnezX16:
174 Bits = 16;
175 Scale = 2;
176 break;
177 default:
178 llvm_unreachable("Unknown branch type");
179 }
180 unsigned MaxOffs = ((1 << (Bits-1))-1) * Scale;
181 return MaxOffs;
182}
Reed Kotler0f007fc2013-11-05 08:14:14 +0000183
Reed Kotlerbb3094a2013-02-27 03:33:58 +0000184namespace {
Reed Kotler0f007fc2013-11-05 08:14:14 +0000185
Eugene Zelenko79220eae2017-08-03 22:12:30 +0000186 using Iter = MachineBasicBlock::iterator;
187 using ReverseIter = MachineBasicBlock::reverse_iterator;
Reed Kotlerbb3094a2013-02-27 03:33:58 +0000188
Reed Kotler0f007fc2013-11-05 08:14:14 +0000189 /// MipsConstantIslands - Due to limited PC-relative displacements, Mips
190 /// requires constant pool entries to be scattered among the instructions
191 /// inside a function. To do this, it completely ignores the normal LLVM
192 /// constant pool; instead, it places constants wherever it feels like with
193 /// special instructions.
194 ///
195 /// The terminology used in this pass includes:
196 /// Islands - Clumps of constants placed in the function.
197 /// Water - Potential places where an island could be formed.
198 /// CPE - A constant pool entry that has been placed somewhere, which
199 /// tracks a list of users.
200
Reed Kotlerbb3094a2013-02-27 03:33:58 +0000201 class MipsConstantIslands : public MachineFunctionPass {
Reed Kotler0f007fc2013-11-05 08:14:14 +0000202 /// BasicBlockInfo - Information about the offset and size of a single
203 /// basic block.
204 struct BasicBlockInfo {
205 /// Offset - Distance from the beginning of the function to the beginning
206 /// of this basic block.
207 ///
208 /// Offsets are computed assuming worst case padding before an aligned
209 /// block. This means that subtracting basic block offsets always gives a
210 /// conservative estimate of the real distance which may be smaller.
211 ///
212 /// Because worst case padding is used, the computed offset of an aligned
213 /// block may not actually be aligned.
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000214 unsigned Offset = 0;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000215
216 /// Size - Size of the basic block in bytes. If the block contains
217 /// inline assembly, this is a worst case estimate.
218 ///
219 /// The size does not include any alignment padding whether from the
220 /// beginning of the block, or from an aligned jump table at the end.
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000221 unsigned Size = 0;
222
223 BasicBlockInfo() = default;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000224
Reed Kotler7ded5b62013-11-05 23:36:58 +0000225 // FIXME: ignore LogAlign for this patch
226 //
Reed Kotler0f007fc2013-11-05 08:14:14 +0000227 unsigned postOffset(unsigned LogAlign = 0) const {
228 unsigned PO = Offset + Size;
229 return PO;
230 }
Reed Kotler0f007fc2013-11-05 08:14:14 +0000231 };
232
233 std::vector<BasicBlockInfo> BBInfo;
234
235 /// WaterList - A sorted list of basic blocks where islands could be placed
236 /// (i.e. blocks that don't fall through to the following block, due
237 /// to a return, unreachable, or unconditional branch).
238 std::vector<MachineBasicBlock*> WaterList;
239
240 /// NewWaterList - The subset of WaterList that was created since the
241 /// previous iteration by inserting unconditional branches.
242 SmallSet<MachineBasicBlock*, 4> NewWaterList;
243
Eugene Zelenko79220eae2017-08-03 22:12:30 +0000244 using water_iterator = std::vector<MachineBasicBlock *>::iterator;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000245
246 /// CPUser - One user of a constant pool, keeping the machine instruction
247 /// pointer, the constant pool being referenced, and the max displacement
248 /// allowed from the instruction to the CP. The HighWaterMark records the
249 /// highest basic block where a new CPEntry can be placed. To ensure this
250 /// pass terminates, the CP entries are initially placed at the end of the
251 /// function and then move monotonically to lower addresses. The
252 /// exception to this rule is when the current CP entry for a particular
253 /// CPUser is out of range, but there is another CP entry for the same
254 /// constant value in range. We want to use the existing in-range CP
255 /// entry, but if it later moves out of range, the search for new water
256 /// should resume where it left off. The HighWaterMark is used to record
257 /// that point.
258 struct CPUser {
259 MachineInstr *MI;
260 MachineInstr *CPEMI;
261 MachineBasicBlock *HighWaterMark;
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000262
Reed Kotler0f007fc2013-11-05 08:14:14 +0000263 private:
264 unsigned MaxDisp;
265 unsigned LongFormMaxDisp; // mips16 has 16/32 bit instructions
266 // with different displacements
267 unsigned LongFormOpcode;
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000268
Reed Kotler0f007fc2013-11-05 08:14:14 +0000269 public:
270 bool NegOk;
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000271
Reed Kotler0f007fc2013-11-05 08:14:14 +0000272 CPUser(MachineInstr *mi, MachineInstr *cpemi, unsigned maxdisp,
Reed Kotlerb09ebe92013-11-05 22:34:29 +0000273 bool neg,
Reed Kotler0f007fc2013-11-05 08:14:14 +0000274 unsigned longformmaxdisp, unsigned longformopcode)
275 : MI(mi), CPEMI(cpemi), MaxDisp(maxdisp),
276 LongFormMaxDisp(longformmaxdisp), LongFormOpcode(longformopcode),
Reed Kotler7ded5b62013-11-05 23:36:58 +0000277 NegOk(neg){
Reed Kotler0f007fc2013-11-05 08:14:14 +0000278 HighWaterMark = CPEMI->getParent();
279 }
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000280
Reed Kotler0f007fc2013-11-05 08:14:14 +0000281 /// getMaxDisp - Returns the maximum displacement supported by MI.
Reed Kotler0f007fc2013-11-05 08:14:14 +0000282 unsigned getMaxDisp() const {
283 unsigned xMaxDisp = ConstantIslandsSmallOffset?
284 ConstantIslandsSmallOffset: MaxDisp;
Reed Kotler7ded5b62013-11-05 23:36:58 +0000285 return xMaxDisp;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000286 }
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000287
Reed Kotler45c59272013-11-10 00:09:26 +0000288 void setMaxDisp(unsigned val) {
289 MaxDisp = val;
290 }
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000291
Reed Kotler0f007fc2013-11-05 08:14:14 +0000292 unsigned getLongFormMaxDisp() const {
Reed Kotler7ded5b62013-11-05 23:36:58 +0000293 return LongFormMaxDisp;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000294 }
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000295
Reed Kotler0f007fc2013-11-05 08:14:14 +0000296 unsigned getLongFormOpcode() const {
297 return LongFormOpcode;
298 }
299 };
300
301 /// CPUsers - Keep track of all of the machine instructions that use various
302 /// constant pools and their max displacement.
303 std::vector<CPUser> CPUsers;
Reed Kotler91ae9822013-10-27 21:57:36 +0000304
305 /// CPEntry - One per constant pool entry, keeping the machine instruction
306 /// pointer, the constpool index, and the number of CPUser's which
307 /// reference this entry.
308 struct CPEntry {
309 MachineInstr *CPEMI;
310 unsigned CPI;
311 unsigned RefCount;
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000312
Reed Kotler91ae9822013-10-27 21:57:36 +0000313 CPEntry(MachineInstr *cpemi, unsigned cpi, unsigned rc = 0)
314 : CPEMI(cpemi), CPI(cpi), RefCount(rc) {}
315 };
316
317 /// CPEntries - Keep track of all of the constant pool entry machine
318 /// instructions. For each original constpool index (i.e. those that
319 /// existed upon entry to this pass), it keeps a vector of entries.
320 /// Original elements are cloned as we go along; the clones are
321 /// put in the vector of the original element, but have distinct CPIs.
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000322 std::vector<std::vector<CPEntry>> CPEntries;
Reed Kotler91ae9822013-10-27 21:57:36 +0000323
Reed Kotler0f007fc2013-11-05 08:14:14 +0000324 /// ImmBranch - One per immediate branch, keeping the machine instruction
325 /// pointer, conditional or unconditional, the max displacement,
326 /// and (if isCond is true) the corresponding unconditional branch
327 /// opcode.
328 struct ImmBranch {
329 MachineInstr *MI;
330 unsigned MaxDisp : 31;
331 bool isCond : 1;
332 int UncondBr;
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000333
Reed Kotler0f007fc2013-11-05 08:14:14 +0000334 ImmBranch(MachineInstr *mi, unsigned maxdisp, bool cond, int ubr)
335 : MI(mi), MaxDisp(maxdisp), isCond(cond), UncondBr(ubr) {}
336 };
337
338 /// ImmBranches - Keep track of all the immediate branch instructions.
339 ///
340 std::vector<ImmBranch> ImmBranches;
341
342 /// HasFarJump - True if any far jump instruction has been emitted during
343 /// the branch fix up pass.
344 bool HasFarJump;
345
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000346 const MipsSubtarget *STI = nullptr;
Reed Kotler5c8ae092013-11-13 04:37:52 +0000347 const Mips16InstrInfo *TII;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000348 MipsFunctionInfo *MFI;
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000349 MachineFunction *MF = nullptr;
350 MachineConstantPool *MCP = nullptr;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000351
352 unsigned PICLabelUId;
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000353 bool PrescannedForConstants = false;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000354
355 void initPICLabelUId(unsigned UId) {
356 PICLabelUId = UId;
357 }
358
Reed Kotler0f007fc2013-11-05 08:14:14 +0000359 unsigned createPICLabelUId() {
360 return PICLabelUId++;
361 }
362
Reed Kotlerbb3094a2013-02-27 03:33:58 +0000363 public:
364 static char ID;
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000365
366 MipsConstantIslands() : MachineFunctionPass(ID) {}
Reed Kotlerbb3094a2013-02-27 03:33:58 +0000367
Mehdi Amini117296c2016-10-01 02:56:57 +0000368 StringRef getPassName() const override { return "Mips Constant Islands"; }
Reed Kotlerbb3094a2013-02-27 03:33:58 +0000369
Craig Topper56c590a2014-04-29 07:58:02 +0000370 bool runOnMachineFunction(MachineFunction &F) override;
Reed Kotlerbb3094a2013-02-27 03:33:58 +0000371
Derek Schuff1dbf7a52016-04-04 17:09:25 +0000372 MachineFunctionProperties getRequiredProperties() const override {
373 return MachineFunctionProperties().set(
Matthias Braun1eb47362016-08-25 01:27:13 +0000374 MachineFunctionProperties::Property::NoVRegs);
Derek Schuff1dbf7a52016-04-04 17:09:25 +0000375 }
376
Reed Kotler91ae9822013-10-27 21:57:36 +0000377 void doInitialPlacement(std::vector<MachineInstr*> &CPEMIs);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000378 CPEntry *findConstPoolEntry(unsigned CPI, const MachineInstr *CPEMI);
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000379 unsigned getCPELogAlign(const MachineInstr &CPEMI);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000380 void initializeFunctionInfo(const std::vector<MachineInstr*> &CPEMIs);
381 unsigned getOffsetOf(MachineInstr *MI) const;
382 unsigned getUserOffset(CPUser&) const;
383 void dumpBBs();
Reed Kotler0f007fc2013-11-05 08:14:14 +0000384
385 bool isOffsetInRange(unsigned UserOffset, unsigned TrialOffset,
Reed Kotlerb09ebe92013-11-05 22:34:29 +0000386 unsigned Disp, bool NegativeOK);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000387 bool isOffsetInRange(unsigned UserOffset, unsigned TrialOffset,
388 const CPUser &U);
389
Reed Kotler0f007fc2013-11-05 08:14:14 +0000390 void computeBlockSize(MachineBasicBlock *MBB);
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000391 MachineBasicBlock *splitBlockBeforeInstr(MachineInstr &MI);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000392 void updateForInsertedWaterBlock(MachineBasicBlock *NewBB);
393 void adjustBBOffsetsAfter(MachineBasicBlock *BB);
394 bool decrementCPEReferenceCount(unsigned CPI, MachineInstr* CPEMI);
395 int findInRangeCPEntry(CPUser& U, unsigned UserOffset);
396 int findLongFormInRangeCPEntry(CPUser& U, unsigned UserOffset);
397 bool findAvailableWater(CPUser&U, unsigned UserOffset,
398 water_iterator &WaterIter);
399 void createNewWater(unsigned CPUserIndex, unsigned UserOffset,
400 MachineBasicBlock *&NewMBB);
401 bool handleConstantPoolUser(unsigned CPUserIndex);
402 void removeDeadCPEMI(MachineInstr *CPEMI);
403 bool removeUnusedCPEntries();
404 bool isCPEntryInRange(MachineInstr *MI, unsigned UserOffset,
405 MachineInstr *CPEMI, unsigned Disp, bool NegOk,
406 bool DoDump = false);
407 bool isWaterInRange(unsigned UserOffset, MachineBasicBlock *Water,
408 CPUser &U, unsigned &Growth);
409 bool isBBInRange(MachineInstr *MI, MachineBasicBlock *BB, unsigned Disp);
410 bool fixupImmediateBr(ImmBranch &Br);
411 bool fixupConditionalBr(ImmBranch &Br);
412 bool fixupUnconditionalBr(ImmBranch &Br);
Reed Kotler91ae9822013-10-27 21:57:36 +0000413
414 void prescanForConstants();
Reed Kotlerbb3094a2013-02-27 03:33:58 +0000415 };
416
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000417} // end anonymous namespace
Reed Kotlerbb3094a2013-02-27 03:33:58 +0000418
Eugene Zelenko79220eae2017-08-03 22:12:30 +0000419char MipsConstantIslands::ID = 0;
420
Reed Kotler0f007fc2013-11-05 08:14:14 +0000421bool MipsConstantIslands::isOffsetInRange
422 (unsigned UserOffset, unsigned TrialOffset,
423 const CPUser &U) {
424 return isOffsetInRange(UserOffset, TrialOffset,
Reed Kotlerb09ebe92013-11-05 22:34:29 +0000425 U.getMaxDisp(), U.NegOk);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000426}
Eugene Zelenkodde94e42017-01-30 23:21:32 +0000427
Aaron Ballman615eb472017-10-15 14:32:27 +0000428#if !defined(NDEBUG) || defined(LLVM_ENABLE_DUMP)
Reed Kotler0f007fc2013-11-05 08:14:14 +0000429/// print block size and offset information - debugging
Matthias Braun8c209aa2017-01-28 02:02:38 +0000430LLVM_DUMP_METHOD void MipsConstantIslands::dumpBBs() {
431 for (unsigned J = 0, E = BBInfo.size(); J !=E; ++J) {
432 const BasicBlockInfo &BBI = BBInfo[J];
Francis Visoiu Mistrih25528d62017-12-04 17:18:51 +0000433 dbgs() << format("%08x %bb.%u\t", BBI.Offset, J)
Matthias Braun8c209aa2017-01-28 02:02:38 +0000434 << format(" size=%#x\n", BBInfo[J].Size);
435 }
Reed Kotler0f007fc2013-11-05 08:14:14 +0000436}
Matthias Braun8c209aa2017-01-28 02:02:38 +0000437#endif
Reed Kotlerbb3094a2013-02-27 03:33:58 +0000438
Reed Kotler91ae9822013-10-27 21:57:36 +0000439bool MipsConstantIslands::runOnMachineFunction(MachineFunction &mf) {
Reed Kotler1595f362013-04-09 19:46:01 +0000440 // The intention is for this to be a mips16 only pass for now
441 // FIXME:
Reed Kotler91ae9822013-10-27 21:57:36 +0000442 MF = &mf;
443 MCP = mf.getConstantPool();
Eric Christopher96e72c62015-01-29 23:27:36 +0000444 STI = &static_cast<const MipsSubtarget &>(mf.getSubtarget());
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000445 LLVM_DEBUG(dbgs() << "constant island machine function "
446 << "\n");
Eric Christopher4e7d1e72014-07-18 23:41:32 +0000447 if (!STI->inMips16Mode() || !MipsSubtarget::useConstantIslands()) {
Reed Kotler91ae9822013-10-27 21:57:36 +0000448 return false;
449 }
Eric Christopher96e72c62015-01-29 23:27:36 +0000450 TII = (const Mips16InstrInfo *)STI->getInstrInfo();
Reed Kotler0f007fc2013-11-05 08:14:14 +0000451 MFI = MF->getInfo<MipsFunctionInfo>();
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000452 LLVM_DEBUG(dbgs() << "constant island processing "
453 << "\n");
Reed Kotler91ae9822013-10-27 21:57:36 +0000454 //
455 // will need to make predermination if there is any constants we need to
456 // put in constant islands. TBD.
457 //
Reed Kotler0f007fc2013-11-05 08:14:14 +0000458 if (!PrescannedForConstants) prescanForConstants();
Reed Kotler91ae9822013-10-27 21:57:36 +0000459
Reed Kotler0f007fc2013-11-05 08:14:14 +0000460 HasFarJump = false;
Reed Kotler91ae9822013-10-27 21:57:36 +0000461 // This pass invalidates liveness information when it splits basic blocks.
462 MF->getRegInfo().invalidateLiveness();
463
464 // Renumber all of the machine basic blocks in the function, guaranteeing that
465 // the numbers agree with the position of the block in the function.
466 MF->RenumberBlocks();
467
Reed Kotler0f007fc2013-11-05 08:14:14 +0000468 bool MadeChange = false;
469
Reed Kotler91ae9822013-10-27 21:57:36 +0000470 // Perform the initial placement of the constant pool entries. To start with,
471 // we put them all at the end of the function.
472 std::vector<MachineInstr*> CPEMIs;
473 if (!MCP->isEmpty())
474 doInitialPlacement(CPEMIs);
475
Reed Kotler0f007fc2013-11-05 08:14:14 +0000476 /// The next UID to take is the first unused one.
477 initPICLabelUId(CPEMIs.size());
478
479 // Do the initial scan of the function, building up information about the
480 // sizes of each block, the location of all the water, and finding all of the
481 // constant pool users.
482 initializeFunctionInfo(CPEMIs);
483 CPEMIs.clear();
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000484 LLVM_DEBUG(dumpBBs());
Reed Kotler0f007fc2013-11-05 08:14:14 +0000485
486 /// Remove dead constant pool entries.
487 MadeChange |= removeUnusedCPEntries();
488
489 // Iteratively place constant pool entries and fix up branches until there
490 // is no change.
491 unsigned NoCPIters = 0, NoBRIters = 0;
492 (void)NoBRIters;
493 while (true) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000494 LLVM_DEBUG(dbgs() << "Beginning CP iteration #" << NoCPIters << '\n');
Reed Kotler0f007fc2013-11-05 08:14:14 +0000495 bool CPChange = false;
496 for (unsigned i = 0, e = CPUsers.size(); i != e; ++i)
497 CPChange |= handleConstantPoolUser(i);
498 if (CPChange && ++NoCPIters > 30)
499 report_fatal_error("Constant Island pass failed to converge!");
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000500 LLVM_DEBUG(dumpBBs());
Reed Kotler0f007fc2013-11-05 08:14:14 +0000501
502 // Clear NewWaterList now. If we split a block for branches, it should
503 // appear as "new water" for the next iteration of constant pool placement.
504 NewWaterList.clear();
505
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000506 LLVM_DEBUG(dbgs() << "Beginning BR iteration #" << NoBRIters << '\n');
Reed Kotler0f007fc2013-11-05 08:14:14 +0000507 bool BRChange = false;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000508 for (unsigned i = 0, e = ImmBranches.size(); i != e; ++i)
509 BRChange |= fixupImmediateBr(ImmBranches[i]);
510 if (BRChange && ++NoBRIters > 30)
511 report_fatal_error("Branch Fix Up pass failed to converge!");
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000512 LLVM_DEBUG(dumpBBs());
Reed Kotler0f007fc2013-11-05 08:14:14 +0000513 if (!CPChange && !BRChange)
514 break;
515 MadeChange = true;
516 }
517
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000518 LLVM_DEBUG(dbgs() << '\n'; dumpBBs());
Reed Kotler0f007fc2013-11-05 08:14:14 +0000519
520 BBInfo.clear();
521 WaterList.clear();
522 CPUsers.clear();
523 CPEntries.clear();
524 ImmBranches.clear();
525 return MadeChange;
Reed Kotlerbb3094a2013-02-27 03:33:58 +0000526}
527
Reed Kotler91ae9822013-10-27 21:57:36 +0000528/// doInitialPlacement - Perform the initial placement of the constant pool
529/// entries. To start with, we put them all at the end of the function.
530void
531MipsConstantIslands::doInitialPlacement(std::vector<MachineInstr*> &CPEMIs) {
532 // Create the basic block to hold the CPE's.
533 MachineBasicBlock *BB = MF->CreateMachineBasicBlock();
534 MF->push_back(BB);
535
Reed Kotler91ae9822013-10-27 21:57:36 +0000536 // MachineConstantPool measures alignment in bytes. We measure in log2(bytes).
537 unsigned MaxAlign = Log2_32(MCP->getConstantPoolAlignment());
538
539 // Mark the basic block as required by the const-pool.
540 // If AlignConstantIslands isn't set, use 4-byte alignment for everything.
541 BB->setAlignment(AlignConstantIslands ? MaxAlign : 2);
542
543 // The function needs to be as aligned as the basic blocks. The linker may
544 // move functions around based on their alignment.
545 MF->ensureAlignment(BB->getAlignment());
546
547 // Order the entries in BB by descending alignment. That ensures correct
548 // alignment of all entries as long as BB is sufficiently aligned. Keep
549 // track of the insertion point for each alignment. We are going to bucket
550 // sort the entries as they are created.
551 SmallVector<MachineBasicBlock::iterator, 8> InsPoint(MaxAlign + 1, BB->end());
552
553 // Add all of the constants from the constant pool to the end block, use an
554 // identity mapping of CPI's to CPE's.
555 const std::vector<MachineConstantPoolEntry> &CPs = MCP->getConstants();
556
Mehdi Aminibd7287e2015-07-16 06:11:10 +0000557 const DataLayout &TD = MF->getDataLayout();
Reed Kotler91ae9822013-10-27 21:57:36 +0000558 for (unsigned i = 0, e = CPs.size(); i != e; ++i) {
559 unsigned Size = TD.getTypeAllocSize(CPs[i].getType());
560 assert(Size >= 4 && "Too small constant pool entry");
561 unsigned Align = CPs[i].getAlignment();
562 assert(isPowerOf2_32(Align) && "Invalid alignment");
563 // Verify that all constant pool entries are a multiple of their alignment.
564 // If not, we would have to pad them out so that instructions stay aligned.
565 assert((Size % Align) == 0 && "CP Entry not multiple of 4 bytes!");
566
567 // Insert CONSTPOOL_ENTRY before entries with a smaller alignment.
568 unsigned LogAlign = Log2_32(Align);
569 MachineBasicBlock::iterator InsAt = InsPoint[LogAlign];
570
571 MachineInstr *CPEMI =
572 BuildMI(*BB, InsAt, DebugLoc(), TII->get(Mips::CONSTPOOL_ENTRY))
573 .addImm(i).addConstantPoolIndex(i).addImm(Size);
574
575 CPEMIs.push_back(CPEMI);
576
577 // Ensure that future entries with higher alignment get inserted before
578 // CPEMI. This is bucket sort with iterators.
579 for (unsigned a = LogAlign + 1; a <= MaxAlign; ++a)
580 if (InsPoint[a] == InsAt)
581 InsPoint[a] = CPEMI;
582 // Add a new CPEntry, but no corresponding CPUser yet.
Benjamin Kramere12a6ba2014-10-03 18:33:16 +0000583 CPEntries.emplace_back(1, CPEntry(CPEMI, i));
Reed Kotler91ae9822013-10-27 21:57:36 +0000584 ++NumCPEs;
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000585 LLVM_DEBUG(dbgs() << "Moved CPI#" << i << " to end of function, size = "
586 << Size << ", align = " << Align << '\n');
Reed Kotler91ae9822013-10-27 21:57:36 +0000587 }
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000588 LLVM_DEBUG(BB->dump());
Reed Kotler91ae9822013-10-27 21:57:36 +0000589}
590
Reed Kotler0f007fc2013-11-05 08:14:14 +0000591/// BBHasFallthrough - Return true if the specified basic block can fallthrough
592/// into the block immediately after it.
593static bool BBHasFallthrough(MachineBasicBlock *MBB) {
594 // Get the next machine basic block in the function.
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +0000595 MachineFunction::iterator MBBI = MBB->getIterator();
Reed Kotler0f007fc2013-11-05 08:14:14 +0000596 // Can't fall off end of function.
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +0000597 if (std::next(MBBI) == MBB->getParent()->end())
Reed Kotler0f007fc2013-11-05 08:14:14 +0000598 return false;
599
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +0000600 MachineBasicBlock *NextBB = &*std::next(MBBI);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000601 for (MachineBasicBlock::succ_iterator I = MBB->succ_begin(),
602 E = MBB->succ_end(); I != E; ++I)
603 if (*I == NextBB)
604 return true;
605
606 return false;
607}
608
609/// findConstPoolEntry - Given the constpool index and CONSTPOOL_ENTRY MI,
610/// look up the corresponding CPEntry.
611MipsConstantIslands::CPEntry
612*MipsConstantIslands::findConstPoolEntry(unsigned CPI,
613 const MachineInstr *CPEMI) {
614 std::vector<CPEntry> &CPEs = CPEntries[CPI];
615 // Number of entries per constpool index should be small, just do a
616 // linear search.
617 for (unsigned i = 0, e = CPEs.size(); i != e; ++i) {
618 if (CPEs[i].CPEMI == CPEMI)
619 return &CPEs[i];
620 }
Craig Topper062a2ba2014-04-25 05:30:21 +0000621 return nullptr;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000622}
623
624/// getCPELogAlign - Returns the required alignment of the constant pool entry
625/// represented by CPEMI. Alignment is measured in log2(bytes) units.
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000626unsigned MipsConstantIslands::getCPELogAlign(const MachineInstr &CPEMI) {
627 assert(CPEMI.getOpcode() == Mips::CONSTPOOL_ENTRY);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000628
629 // Everything is 4-byte aligned unless AlignConstantIslands is set.
630 if (!AlignConstantIslands)
631 return 2;
632
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000633 unsigned CPI = CPEMI.getOperand(1).getIndex();
Reed Kotler0f007fc2013-11-05 08:14:14 +0000634 assert(CPI < MCP->getConstants().size() && "Invalid constant pool index.");
635 unsigned Align = MCP->getConstants()[CPI].getAlignment();
636 assert(isPowerOf2_32(Align) && "Invalid CPE alignment");
637 return Log2_32(Align);
638}
639
640/// initializeFunctionInfo - Do the initial scan of the function, building up
641/// information about the sizes of each block, the location of all the water,
642/// and finding all of the constant pool users.
643void MipsConstantIslands::
644initializeFunctionInfo(const std::vector<MachineInstr*> &CPEMIs) {
645 BBInfo.clear();
646 BBInfo.resize(MF->getNumBlockIDs());
647
648 // First thing, compute the size of all basic blocks, and see if the function
649 // has any inline assembly in it. If so, we have to be conservative about
650 // alignment assumptions, as we don't know for sure the size of any
651 // instructions in the inline assembly.
652 for (MachineFunction::iterator I = MF->begin(), E = MF->end(); I != E; ++I)
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +0000653 computeBlockSize(&*I);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000654
Reed Kotler0f007fc2013-11-05 08:14:14 +0000655 // Compute block offsets.
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +0000656 adjustBBOffsetsAfter(&MF->front());
Reed Kotler0f007fc2013-11-05 08:14:14 +0000657
658 // Now go back through the instructions and build up our data structures.
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000659 for (MachineBasicBlock &MBB : *MF) {
Reed Kotler0f007fc2013-11-05 08:14:14 +0000660 // If this block doesn't fall through into the next MBB, then this is
661 // 'water' that a constant pool island could be placed.
662 if (!BBHasFallthrough(&MBB))
663 WaterList.push_back(&MBB);
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000664 for (MachineInstr &MI : MBB) {
Shiva Chen801bf7e2018-05-09 02:42:00 +0000665 if (MI.isDebugInstr())
Reed Kotler0f007fc2013-11-05 08:14:14 +0000666 continue;
667
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000668 int Opc = MI.getOpcode();
669 if (MI.isBranch()) {
Reed Kotler0f007fc2013-11-05 08:14:14 +0000670 bool isCond = false;
671 unsigned Bits = 0;
672 unsigned Scale = 1;
673 int UOpc = Opc;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000674 switch (Opc) {
675 default:
Reed Kotler4b7afe52013-11-13 23:52:18 +0000676 continue; // Ignore other branches for now
677 case Mips::Bimm16:
678 Bits = 11;
679 Scale = 2;
680 isCond = false;
681 break;
682 case Mips::BimmX16:
683 Bits = 16;
684 Scale = 2;
685 isCond = false;
Reed Kotler0d409e22013-11-28 00:56:37 +0000686 break;
687 case Mips::BeqzRxImm16:
Reed Kotler59975c22013-12-03 23:42:51 +0000688 UOpc=Mips::Bimm16;
Reed Kotler0d409e22013-11-28 00:56:37 +0000689 Bits = 8;
690 Scale = 2;
691 isCond = true;
692 break;
693 case Mips::BeqzRxImmX16:
Reed Kotler59975c22013-12-03 23:42:51 +0000694 UOpc=Mips::Bimm16;
Reed Kotler0d409e22013-11-28 00:56:37 +0000695 Bits = 16;
696 Scale = 2;
697 isCond = true;
698 break;
699 case Mips::BnezRxImm16:
Reed Kotler59975c22013-12-03 23:42:51 +0000700 UOpc=Mips::Bimm16;
Reed Kotler0d409e22013-11-28 00:56:37 +0000701 Bits = 8;
702 Scale = 2;
703 isCond = true;
704 break;
705 case Mips::BnezRxImmX16:
Reed Kotler59975c22013-12-03 23:42:51 +0000706 UOpc=Mips::Bimm16;
Reed Kotler0d409e22013-11-28 00:56:37 +0000707 Bits = 16;
708 Scale = 2;
709 isCond = true;
710 break;
711 case Mips::Bteqz16:
Reed Kotler59975c22013-12-03 23:42:51 +0000712 UOpc=Mips::Bimm16;
Reed Kotler0d409e22013-11-28 00:56:37 +0000713 Bits = 8;
714 Scale = 2;
715 isCond = true;
716 break;
717 case Mips::BteqzX16:
Reed Kotler59975c22013-12-03 23:42:51 +0000718 UOpc=Mips::Bimm16;
Reed Kotler0d409e22013-11-28 00:56:37 +0000719 Bits = 16;
720 Scale = 2;
721 isCond = true;
722 break;
723 case Mips::Btnez16:
Reed Kotler59975c22013-12-03 23:42:51 +0000724 UOpc=Mips::Bimm16;
Reed Kotler0d409e22013-11-28 00:56:37 +0000725 Bits = 8;
726 Scale = 2;
727 isCond = true;
728 break;
729 case Mips::BtnezX16:
Reed Kotler59975c22013-12-03 23:42:51 +0000730 UOpc=Mips::Bimm16;
Reed Kotler0d409e22013-11-28 00:56:37 +0000731 Bits = 16;
732 Scale = 2;
733 isCond = true;
734 break;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000735 }
736 // Record this immediate branch.
737 unsigned MaxOffs = ((1 << (Bits-1))-1) * Scale;
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000738 ImmBranches.push_back(ImmBranch(&MI, MaxOffs, isCond, UOpc));
Reed Kotler0f007fc2013-11-05 08:14:14 +0000739 }
Reed Kotler0f007fc2013-11-05 08:14:14 +0000740
741 if (Opc == Mips::CONSTPOOL_ENTRY)
742 continue;
743
Reed Kotler0f007fc2013-11-05 08:14:14 +0000744 // Scan the instructions for constant pool operands.
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000745 for (unsigned op = 0, e = MI.getNumOperands(); op != e; ++op)
746 if (MI.getOperand(op).isCPI()) {
Reed Kotler0f007fc2013-11-05 08:14:14 +0000747 // We found one. The addressing mode tells us the max displacement
748 // from the PC that this instruction permits.
749
750 // Basic size info comes from the TSFlags field.
751 unsigned Bits = 0;
752 unsigned Scale = 1;
753 bool NegOk = false;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000754 unsigned LongFormBits = 0;
755 unsigned LongFormScale = 0;
756 unsigned LongFormOpcode = 0;
757 switch (Opc) {
758 default:
759 llvm_unreachable("Unknown addressing mode for CP reference!");
760 case Mips::LwRxPcTcp16:
761 Bits = 8;
Reed Kotler3d7b33f2013-11-06 04:29:52 +0000762 Scale = 4;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000763 LongFormOpcode = Mips::LwRxPcTcpX16;
Reed Kotler43788a22014-01-16 00:47:46 +0000764 LongFormBits = 14;
Reed Kotler45c59272013-11-10 00:09:26 +0000765 LongFormScale = 1;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000766 break;
767 case Mips::LwRxPcTcpX16:
Reed Kotler43788a22014-01-16 00:47:46 +0000768 Bits = 14;
Reed Kotler3d7b33f2013-11-06 04:29:52 +0000769 Scale = 1;
770 NegOk = true;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000771 break;
772 }
773 // Remember that this is a user of a CP entry.
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000774 unsigned CPI = MI.getOperand(op).getIndex();
Reed Kotler0f007fc2013-11-05 08:14:14 +0000775 MachineInstr *CPEMI = CPEMIs[CPI];
776 unsigned MaxOffs = ((1 << Bits)-1) * Scale;
777 unsigned LongFormMaxOffs = ((1 << LongFormBits)-1) * LongFormScale;
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000778 CPUsers.push_back(CPUser(&MI, CPEMI, MaxOffs, NegOk, LongFormMaxOffs,
779 LongFormOpcode));
Reed Kotler0f007fc2013-11-05 08:14:14 +0000780
781 // Increment corresponding CPEntry reference count.
782 CPEntry *CPE = findConstPoolEntry(CPI, CPEMI);
783 assert(CPE && "Cannot find a corresponding CPEntry!");
784 CPE->RefCount++;
785
786 // Instructions can only use one CP entry, don't bother scanning the
787 // rest of the operands.
788 break;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000789 }
Reed Kotler0f007fc2013-11-05 08:14:14 +0000790 }
791 }
Reed Kotler0f007fc2013-11-05 08:14:14 +0000792}
793
794/// computeBlockSize - Compute the size and some alignment information for MBB.
795/// This function updates BBInfo directly.
796void MipsConstantIslands::computeBlockSize(MachineBasicBlock *MBB) {
797 BasicBlockInfo &BBI = BBInfo[MBB->getNumber()];
798 BBI.Size = 0;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000799
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000800 for (const MachineInstr &MI : *MBB)
Sjoerd Meijer89217f82016-07-28 16:32:22 +0000801 BBI.Size += TII->getInstSizeInBytes(MI);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000802}
803
804/// getOffsetOf - Return the current offset of the specified machine instruction
805/// from the start of the function. This offset changes as stuff is moved
806/// around inside the function.
807unsigned MipsConstantIslands::getOffsetOf(MachineInstr *MI) const {
808 MachineBasicBlock *MBB = MI->getParent();
809
810 // The offset is composed of two things: the sum of the sizes of all MBB's
811 // before this instruction's block, and the offset from the start of the block
812 // it is in.
813 unsigned Offset = BBInfo[MBB->getNumber()].Offset;
814
815 // Sum instructions before MI in MBB.
816 for (MachineBasicBlock::iterator I = MBB->begin(); &*I != MI; ++I) {
817 assert(I != MBB->end() && "Didn't find MI in its own basic block?");
Sjoerd Meijer89217f82016-07-28 16:32:22 +0000818 Offset += TII->getInstSizeInBytes(*I);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000819 }
820 return Offset;
821}
822
823/// CompareMBBNumbers - Little predicate function to sort the WaterList by MBB
824/// ID.
825static bool CompareMBBNumbers(const MachineBasicBlock *LHS,
826 const MachineBasicBlock *RHS) {
827 return LHS->getNumber() < RHS->getNumber();
828}
829
830/// updateForInsertedWaterBlock - When a block is newly inserted into the
831/// machine function, it upsets all of the block numbers. Renumber the blocks
832/// and update the arrays that parallel this numbering.
833void MipsConstantIslands::updateForInsertedWaterBlock
834 (MachineBasicBlock *NewBB) {
835 // Renumber the MBB's to keep them consecutive.
836 NewBB->getParent()->RenumberBlocks(NewBB);
837
838 // Insert an entry into BBInfo to align it properly with the (newly
839 // renumbered) block numbers.
840 BBInfo.insert(BBInfo.begin() + NewBB->getNumber(), BasicBlockInfo());
841
842 // Next, update WaterList. Specifically, we need to add NewMBB as having
843 // available water after it.
844 water_iterator IP =
845 std::lower_bound(WaterList.begin(), WaterList.end(), NewBB,
846 CompareMBBNumbers);
847 WaterList.insert(IP, NewBB);
848}
849
Reed Kotler0f007fc2013-11-05 08:14:14 +0000850unsigned MipsConstantIslands::getUserOffset(CPUser &U) const {
Reed Kotler0eb87392013-11-05 21:39:57 +0000851 return getOffsetOf(U.MI);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000852}
853
854/// Split the basic block containing MI into two blocks, which are joined by
855/// an unconditional branch. Update data structures and renumber blocks to
856/// account for this change and returns the newly created block.
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000857MachineBasicBlock *
858MipsConstantIslands::splitBlockBeforeInstr(MachineInstr &MI) {
859 MachineBasicBlock *OrigBB = MI.getParent();
Reed Kotler0f007fc2013-11-05 08:14:14 +0000860
861 // Create a new MBB for the code after the OrigBB.
862 MachineBasicBlock *NewBB =
863 MF->CreateMachineBasicBlock(OrigBB->getBasicBlock());
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +0000864 MachineFunction::iterator MBBI = ++OrigBB->getIterator();
Reed Kotler0f007fc2013-11-05 08:14:14 +0000865 MF->insert(MBBI, NewBB);
866
867 // Splice the instructions starting with MI over to NewBB.
868 NewBB->splice(NewBB->end(), OrigBB, MI, OrigBB->end());
869
870 // Add an unconditional branch from OrigBB to NewBB.
871 // Note the new unconditional branch is not being recorded.
872 // There doesn't seem to be meaningful DebugInfo available; this doesn't
873 // correspond to anything in the source.
Reed Kotlerf0e69682013-11-12 02:27:12 +0000874 BuildMI(OrigBB, DebugLoc(), TII->get(Mips::Bimm16)).addMBB(NewBB);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000875 ++NumSplit;
876
877 // Update the CFG. All succs of OrigBB are now succs of NewBB.
878 NewBB->transferSuccessors(OrigBB);
879
880 // OrigBB branches to NewBB.
881 OrigBB->addSuccessor(NewBB);
882
883 // Update internal data structures to account for the newly inserted MBB.
884 // This is almost the same as updateForInsertedWaterBlock, except that
885 // the Water goes after OrigBB, not NewBB.
886 MF->RenumberBlocks(NewBB);
887
888 // Insert an entry into BBInfo to align it properly with the (newly
889 // renumbered) block numbers.
890 BBInfo.insert(BBInfo.begin() + NewBB->getNumber(), BasicBlockInfo());
891
892 // Next, update WaterList. Specifically, we need to add OrigMBB as having
893 // available water after it (but not if it's already there, which happens
894 // when splitting before a conditional branch that is followed by an
895 // unconditional branch - in that case we want to insert NewBB).
896 water_iterator IP =
897 std::lower_bound(WaterList.begin(), WaterList.end(), OrigBB,
898 CompareMBBNumbers);
899 MachineBasicBlock* WaterBB = *IP;
900 if (WaterBB == OrigBB)
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +0000901 WaterList.insert(std::next(IP), NewBB);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000902 else
903 WaterList.insert(IP, OrigBB);
904 NewWaterList.insert(OrigBB);
905
906 // Figure out how large the OrigBB is. As the first half of the original
907 // block, it cannot contain a tablejump. The size includes
908 // the new jump we added. (It should be possible to do this without
909 // recounting everything, but it's very confusing, and this is rarely
910 // executed.)
911 computeBlockSize(OrigBB);
912
913 // Figure out how large the NewMBB is. As the second half of the original
914 // block, it may contain a tablejump.
915 computeBlockSize(NewBB);
916
917 // All BBOffsets following these blocks must be modified.
918 adjustBBOffsetsAfter(OrigBB);
919
920 return NewBB;
921}
922
Reed Kotler0f007fc2013-11-05 08:14:14 +0000923/// isOffsetInRange - Checks whether UserOffset (the location of a constant pool
924/// reference) is within MaxDisp of TrialOffset (a proposed location of a
925/// constant pool entry).
Reed Kotler0f007fc2013-11-05 08:14:14 +0000926bool MipsConstantIslands::isOffsetInRange(unsigned UserOffset,
927 unsigned TrialOffset, unsigned MaxDisp,
Reed Kotlerb09ebe92013-11-05 22:34:29 +0000928 bool NegativeOK) {
Reed Kotler0f007fc2013-11-05 08:14:14 +0000929 if (UserOffset <= TrialOffset) {
930 // User before the Trial.
931 if (TrialOffset - UserOffset <= MaxDisp)
932 return true;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000933 } else if (NegativeOK) {
934 if (UserOffset - TrialOffset <= MaxDisp)
935 return true;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000936 }
937 return false;
938}
939
940/// isWaterInRange - Returns true if a CPE placed after the specified
941/// Water (a basic block) will be in range for the specific MI.
942///
943/// Compute how much the function will grow by inserting a CPE after Water.
944bool MipsConstantIslands::isWaterInRange(unsigned UserOffset,
945 MachineBasicBlock* Water, CPUser &U,
946 unsigned &Growth) {
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +0000947 unsigned CPELogAlign = getCPELogAlign(*U.CPEMI);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000948 unsigned CPEOffset = BBInfo[Water->getNumber()].postOffset(CPELogAlign);
949 unsigned NextBlockOffset, NextBlockAlignment;
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +0000950 MachineFunction::const_iterator NextBlock = ++Water->getIterator();
951 if (NextBlock == MF->end()) {
Reed Kotler0f007fc2013-11-05 08:14:14 +0000952 NextBlockOffset = BBInfo[Water->getNumber()].postOffset();
953 NextBlockAlignment = 0;
954 } else {
955 NextBlockOffset = BBInfo[NextBlock->getNumber()].Offset;
956 NextBlockAlignment = NextBlock->getAlignment();
957 }
958 unsigned Size = U.CPEMI->getOperand(2).getImm();
959 unsigned CPEEnd = CPEOffset + Size;
960
961 // The CPE may be able to hide in the alignment padding before the next
962 // block. It may also cause more padding to be required if it is more aligned
963 // that the next block.
964 if (CPEEnd > NextBlockOffset) {
965 Growth = CPEEnd - NextBlockOffset;
966 // Compute the padding that would go at the end of the CPE to align the next
967 // block.
Aaron Ballmanef0fe1e2016-03-30 21:30:00 +0000968 Growth += OffsetToAlignment(CPEEnd, 1ULL << NextBlockAlignment);
Reed Kotler0f007fc2013-11-05 08:14:14 +0000969
970 // If the CPE is to be inserted before the instruction, that will raise
971 // the offset of the instruction. Also account for unknown alignment padding
972 // in blocks between CPE and the user.
973 if (CPEOffset < UserOffset)
Reed Kotler7ded5b62013-11-05 23:36:58 +0000974 UserOffset += Growth;
Reed Kotler0f007fc2013-11-05 08:14:14 +0000975 } else
976 // CPE fits in existing padding.
977 Growth = 0;
978
979 return isOffsetInRange(UserOffset, CPEOffset, U);
980}
981
982/// isCPEntryInRange - Returns true if the distance between specific MI and
983/// specific ConstPool entry instruction can fit in MI's displacement field.
984bool MipsConstantIslands::isCPEntryInRange
985 (MachineInstr *MI, unsigned UserOffset,
986 MachineInstr *CPEMI, unsigned MaxDisp,
987 bool NegOk, bool DoDump) {
988 unsigned CPEOffset = getOffsetOf(CPEMI);
989
990 if (DoDump) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +0000991 LLVM_DEBUG({
Reed Kotler0f007fc2013-11-05 08:14:14 +0000992 unsigned Block = MI->getParent()->getNumber();
993 const BasicBlockInfo &BBI = BBInfo[Block];
994 dbgs() << "User of CPE#" << CPEMI->getOperand(0).getImm()
995 << " max delta=" << MaxDisp
Francis Visoiu Mistrih25528d62017-12-04 17:18:51 +0000996 << format(" insn address=%#x", UserOffset) << " in "
997 << printMBBReference(*MI->getParent()) << ": "
Reed Kotler0f007fc2013-11-05 08:14:14 +0000998 << format("%#x-%x\t", BBI.Offset, BBI.postOffset()) << *MI
999 << format("CPE address=%#x offset=%+d: ", CPEOffset,
Francis Visoiu Mistrih25528d62017-12-04 17:18:51 +00001000 int(CPEOffset - UserOffset));
Reed Kotler0f007fc2013-11-05 08:14:14 +00001001 });
1002 }
1003
1004 return isOffsetInRange(UserOffset, CPEOffset, MaxDisp, NegOk);
1005}
1006
1007#ifndef NDEBUG
1008/// BBIsJumpedOver - Return true of the specified basic block's only predecessor
1009/// unconditionally branches to its only successor.
1010static bool BBIsJumpedOver(MachineBasicBlock *MBB) {
1011 if (MBB->pred_size() != 1 || MBB->succ_size() != 1)
1012 return false;
1013 MachineBasicBlock *Succ = *MBB->succ_begin();
1014 MachineBasicBlock *Pred = *MBB->pred_begin();
1015 MachineInstr *PredMI = &Pred->back();
Reed Kotlerf0e69682013-11-12 02:27:12 +00001016 if (PredMI->getOpcode() == Mips::Bimm16)
Reed Kotler0f007fc2013-11-05 08:14:14 +00001017 return PredMI->getOperand(0).getMBB() == Succ;
1018 return false;
1019}
1020#endif
1021
1022void MipsConstantIslands::adjustBBOffsetsAfter(MachineBasicBlock *BB) {
1023 unsigned BBNum = BB->getNumber();
1024 for(unsigned i = BBNum + 1, e = MF->getNumBlockIDs(); i < e; ++i) {
1025 // Get the offset and known bits at the end of the layout predecessor.
1026 // Include the alignment of the current block.
Reed Kotler7ded5b62013-11-05 23:36:58 +00001027 unsigned Offset = BBInfo[i - 1].Offset + BBInfo[i - 1].Size;
Reed Kotler0f007fc2013-11-05 08:14:14 +00001028 BBInfo[i].Offset = Offset;
1029 }
1030}
1031
1032/// decrementCPEReferenceCount - find the constant pool entry with index CPI
1033/// and instruction CPEMI, and decrement its refcount. If the refcount
1034/// becomes 0 remove the entry and instruction. Returns true if we removed
1035/// the entry, false if we didn't.
Reed Kotler0f007fc2013-11-05 08:14:14 +00001036bool MipsConstantIslands::decrementCPEReferenceCount(unsigned CPI,
1037 MachineInstr *CPEMI) {
1038 // Find the old entry. Eliminate it if it is no longer used.
1039 CPEntry *CPE = findConstPoolEntry(CPI, CPEMI);
1040 assert(CPE && "Unexpected!");
1041 if (--CPE->RefCount == 0) {
1042 removeDeadCPEMI(CPEMI);
Craig Topper062a2ba2014-04-25 05:30:21 +00001043 CPE->CPEMI = nullptr;
Reed Kotler0f007fc2013-11-05 08:14:14 +00001044 --NumCPEs;
1045 return true;
1046 }
1047 return false;
1048}
1049
1050/// LookForCPEntryInRange - see if the currently referenced CPE is in range;
1051/// if not, see if an in-range clone of the CPE is in range, and if so,
1052/// change the data structures so the user references the clone. Returns:
1053/// 0 = no existing entry found
1054/// 1 = entry found, and there were no code insertions or deletions
1055/// 2 = entry found, and there were code insertions or deletions
1056int MipsConstantIslands::findInRangeCPEntry(CPUser& U, unsigned UserOffset)
1057{
1058 MachineInstr *UserMI = U.MI;
1059 MachineInstr *CPEMI = U.CPEMI;
1060
1061 // Check to see if the CPE is already in-range.
1062 if (isCPEntryInRange(UserMI, UserOffset, CPEMI, U.getMaxDisp(), U.NegOk,
1063 true)) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001064 LLVM_DEBUG(dbgs() << "In range\n");
Reed Kotler0f007fc2013-11-05 08:14:14 +00001065 return 1;
1066 }
1067
1068 // No. Look for previously created clones of the CPE that are in range.
1069 unsigned CPI = CPEMI->getOperand(1).getIndex();
1070 std::vector<CPEntry> &CPEs = CPEntries[CPI];
1071 for (unsigned i = 0, e = CPEs.size(); i != e; ++i) {
1072 // We already tried this one
1073 if (CPEs[i].CPEMI == CPEMI)
1074 continue;
1075 // Removing CPEs can leave empty entries, skip
Craig Topper062a2ba2014-04-25 05:30:21 +00001076 if (CPEs[i].CPEMI == nullptr)
Reed Kotler0f007fc2013-11-05 08:14:14 +00001077 continue;
1078 if (isCPEntryInRange(UserMI, UserOffset, CPEs[i].CPEMI, U.getMaxDisp(),
1079 U.NegOk)) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001080 LLVM_DEBUG(dbgs() << "Replacing CPE#" << CPI << " with CPE#"
1081 << CPEs[i].CPI << "\n");
Reed Kotler0f007fc2013-11-05 08:14:14 +00001082 // Point the CPUser node to the replacement
1083 U.CPEMI = CPEs[i].CPEMI;
1084 // Change the CPI in the instruction operand to refer to the clone.
1085 for (unsigned j = 0, e = UserMI->getNumOperands(); j != e; ++j)
1086 if (UserMI->getOperand(j).isCPI()) {
1087 UserMI->getOperand(j).setIndex(CPEs[i].CPI);
1088 break;
1089 }
1090 // Adjust the refcount of the clone...
1091 CPEs[i].RefCount++;
1092 // ...and the original. If we didn't remove the old entry, none of the
1093 // addresses changed, so we don't need another pass.
1094 return decrementCPEReferenceCount(CPI, CPEMI) ? 2 : 1;
1095 }
1096 }
1097 return 0;
1098}
1099
1100/// LookForCPEntryInRange - see if the currently referenced CPE is in range;
1101/// This version checks if the longer form of the instruction can be used to
1102/// to satisfy things.
1103/// if not, see if an in-range clone of the CPE is in range, and if so,
1104/// change the data structures so the user references the clone. Returns:
1105/// 0 = no existing entry found
1106/// 1 = entry found, and there were no code insertions or deletions
1107/// 2 = entry found, and there were code insertions or deletions
1108int MipsConstantIslands::findLongFormInRangeCPEntry
1109 (CPUser& U, unsigned UserOffset)
1110{
1111 MachineInstr *UserMI = U.MI;
1112 MachineInstr *CPEMI = U.CPEMI;
1113
1114 // Check to see if the CPE is already in-range.
1115 if (isCPEntryInRange(UserMI, UserOffset, CPEMI,
1116 U.getLongFormMaxDisp(), U.NegOk,
1117 true)) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001118 LLVM_DEBUG(dbgs() << "In range\n");
Reed Kotler0f007fc2013-11-05 08:14:14 +00001119 UserMI->setDesc(TII->get(U.getLongFormOpcode()));
Reed Kotler45c59272013-11-10 00:09:26 +00001120 U.setMaxDisp(U.getLongFormMaxDisp());
Reed Kotler0f007fc2013-11-05 08:14:14 +00001121 return 2; // instruction is longer length now
1122 }
1123
1124 // No. Look for previously created clones of the CPE that are in range.
1125 unsigned CPI = CPEMI->getOperand(1).getIndex();
1126 std::vector<CPEntry> &CPEs = CPEntries[CPI];
1127 for (unsigned i = 0, e = CPEs.size(); i != e; ++i) {
1128 // We already tried this one
1129 if (CPEs[i].CPEMI == CPEMI)
1130 continue;
1131 // Removing CPEs can leave empty entries, skip
Craig Topper062a2ba2014-04-25 05:30:21 +00001132 if (CPEs[i].CPEMI == nullptr)
Reed Kotler0f007fc2013-11-05 08:14:14 +00001133 continue;
1134 if (isCPEntryInRange(UserMI, UserOffset, CPEs[i].CPEMI,
1135 U.getLongFormMaxDisp(), U.NegOk)) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001136 LLVM_DEBUG(dbgs() << "Replacing CPE#" << CPI << " with CPE#"
1137 << CPEs[i].CPI << "\n");
Reed Kotler0f007fc2013-11-05 08:14:14 +00001138 // Point the CPUser node to the replacement
1139 U.CPEMI = CPEs[i].CPEMI;
1140 // Change the CPI in the instruction operand to refer to the clone.
1141 for (unsigned j = 0, e = UserMI->getNumOperands(); j != e; ++j)
1142 if (UserMI->getOperand(j).isCPI()) {
1143 UserMI->getOperand(j).setIndex(CPEs[i].CPI);
1144 break;
1145 }
1146 // Adjust the refcount of the clone...
1147 CPEs[i].RefCount++;
1148 // ...and the original. If we didn't remove the old entry, none of the
1149 // addresses changed, so we don't need another pass.
1150 return decrementCPEReferenceCount(CPI, CPEMI) ? 2 : 1;
1151 }
1152 }
1153 return 0;
1154}
1155
1156/// getUnconditionalBrDisp - Returns the maximum displacement that can fit in
1157/// the specific unconditional branch instruction.
1158static inline unsigned getUnconditionalBrDisp(int Opc) {
1159 switch (Opc) {
Reed Kotlerf0e69682013-11-12 02:27:12 +00001160 case Mips::Bimm16:
1161 return ((1<<10)-1)*2;
Reed Kotler0f007fc2013-11-05 08:14:14 +00001162 case Mips::BimmX16:
1163 return ((1<<16)-1)*2;
1164 default:
1165 break;
1166 }
1167 return ((1<<16)-1)*2;
1168}
1169
1170/// findAvailableWater - Look for an existing entry in the WaterList in which
1171/// we can place the CPE referenced from U so it's within range of U's MI.
1172/// Returns true if found, false if not. If it returns true, WaterIter
Fangrui Songf78650a2018-07-30 19:41:25 +00001173/// is set to the WaterList entry.
Reed Kotler4d0313d2013-11-05 12:04:37 +00001174/// To ensure that this pass
Reed Kotler0f007fc2013-11-05 08:14:14 +00001175/// terminates, the CPE location for a particular CPUser is only allowed to
1176/// move to a lower address, so search backward from the end of the list and
1177/// prefer the first water that is in range.
1178bool MipsConstantIslands::findAvailableWater(CPUser &U, unsigned UserOffset,
1179 water_iterator &WaterIter) {
1180 if (WaterList.empty())
1181 return false;
1182
1183 unsigned BestGrowth = ~0u;
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00001184 for (water_iterator IP = std::prev(WaterList.end()), B = WaterList.begin();;
Reed Kotler0f007fc2013-11-05 08:14:14 +00001185 --IP) {
1186 MachineBasicBlock* WaterBB = *IP;
1187 // Check if water is in range and is either at a lower address than the
1188 // current "high water mark" or a new water block that was created since
1189 // the previous iteration by inserting an unconditional branch. In the
1190 // latter case, we want to allow resetting the high water mark back to
1191 // this new water since we haven't seen it before. Inserting branches
1192 // should be relatively uncommon and when it does happen, we want to be
1193 // sure to take advantage of it for all the CPEs near that block, so that
1194 // we don't insert more branches than necessary.
1195 unsigned Growth;
1196 if (isWaterInRange(UserOffset, WaterBB, U, Growth) &&
1197 (WaterBB->getNumber() < U.HighWaterMark->getNumber() ||
1198 NewWaterList.count(WaterBB)) && Growth < BestGrowth) {
1199 // This is the least amount of required padding seen so far.
1200 BestGrowth = Growth;
1201 WaterIter = IP;
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001202 LLVM_DEBUG(dbgs() << "Found water after " << printMBBReference(*WaterBB)
1203 << " Growth=" << Growth << '\n');
Reed Kotler0f007fc2013-11-05 08:14:14 +00001204
1205 // Keep looking unless it is perfect.
1206 if (BestGrowth == 0)
1207 return true;
1208 }
1209 if (IP == B)
1210 break;
1211 }
1212 return BestGrowth != ~0u;
1213}
1214
1215/// createNewWater - No existing WaterList entry will work for
1216/// CPUsers[CPUserIndex], so create a place to put the CPE. The end of the
1217/// block is used if in range, and the conditional branch munged so control
1218/// flow is correct. Otherwise the block is split to create a hole with an
1219/// unconditional branch around it. In either case NewMBB is set to a
1220/// block following which the new island can be inserted (the WaterList
1221/// is not adjusted).
1222void MipsConstantIslands::createNewWater(unsigned CPUserIndex,
1223 unsigned UserOffset,
1224 MachineBasicBlock *&NewMBB) {
1225 CPUser &U = CPUsers[CPUserIndex];
1226 MachineInstr *UserMI = U.MI;
1227 MachineInstr *CPEMI = U.CPEMI;
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +00001228 unsigned CPELogAlign = getCPELogAlign(*CPEMI);
Reed Kotler0f007fc2013-11-05 08:14:14 +00001229 MachineBasicBlock *UserMBB = UserMI->getParent();
1230 const BasicBlockInfo &UserBBI = BBInfo[UserMBB->getNumber()];
1231
1232 // If the block does not end in an unconditional branch already, and if the
Fangrui Songf78650a2018-07-30 19:41:25 +00001233 // end of the block is within range, make new water there.
Reed Kotler0f007fc2013-11-05 08:14:14 +00001234 if (BBHasFallthrough(UserMBB)) {
1235 // Size of branch to insert.
1236 unsigned Delta = 2;
1237 // Compute the offset where the CPE will begin.
1238 unsigned CPEOffset = UserBBI.postOffset(CPELogAlign) + Delta;
1239
1240 if (isOffsetInRange(UserOffset, CPEOffset, U)) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001241 LLVM_DEBUG(dbgs() << "Split at end of " << printMBBReference(*UserMBB)
1242 << format(", expected CPE offset %#x\n", CPEOffset));
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +00001243 NewMBB = &*++UserMBB->getIterator();
Reed Kotler0f007fc2013-11-05 08:14:14 +00001244 // Add an unconditional branch from UserMBB to fallthrough block. Record
1245 // it for branch lengthening; this new branch will not get out of range,
1246 // but if the preceding conditional branch is out of range, the targets
1247 // will be exchanged, and the altered branch may be out of range, so the
1248 // machinery has to know about it.
Reed Kotlerf0e69682013-11-12 02:27:12 +00001249 int UncondBr = Mips::Bimm16;
Reed Kotler0f007fc2013-11-05 08:14:14 +00001250 BuildMI(UserMBB, DebugLoc(), TII->get(UncondBr)).addMBB(NewMBB);
1251 unsigned MaxDisp = getUnconditionalBrDisp(UncondBr);
1252 ImmBranches.push_back(ImmBranch(&UserMBB->back(),
1253 MaxDisp, false, UncondBr));
1254 BBInfo[UserMBB->getNumber()].Size += Delta;
1255 adjustBBOffsetsAfter(UserMBB);
1256 return;
1257 }
1258 }
1259
Fangrui Songf78650a2018-07-30 19:41:25 +00001260 // What a big block. Find a place within the block to split it.
Reed Kotler0f007fc2013-11-05 08:14:14 +00001261
1262 // Try to split the block so it's fully aligned. Compute the latest split
1263 // point where we can add a 4-byte branch instruction, and then align to
1264 // LogAlign which is the largest possible alignment in the function.
1265 unsigned LogAlign = MF->getAlignment();
1266 assert(LogAlign >= CPELogAlign && "Over-aligned constant pool entry");
Reed Kotler7ded5b62013-11-05 23:36:58 +00001267 unsigned BaseInsertOffset = UserOffset + U.getMaxDisp();
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001268 LLVM_DEBUG(dbgs() << format("Split in middle of big block before %#x",
1269 BaseInsertOffset));
Reed Kotler0f007fc2013-11-05 08:14:14 +00001270
1271 // The 4 in the following is for the unconditional branch we'll be inserting
Reed Kotler4d0313d2013-11-05 12:04:37 +00001272 // Alignment of the island is handled
Reed Kotler0f007fc2013-11-05 08:14:14 +00001273 // inside isOffsetInRange.
1274 BaseInsertOffset -= 4;
1275
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001276 LLVM_DEBUG(dbgs() << format(", adjusted to %#x", BaseInsertOffset)
1277 << " la=" << LogAlign << '\n');
Reed Kotler0f007fc2013-11-05 08:14:14 +00001278
1279 // This could point off the end of the block if we've already got constant
1280 // pool entries following this block; only the last one is in the water list.
1281 // Back past any possible branches (allow for a conditional and a maximally
1282 // long unconditional).
1283 if (BaseInsertOffset + 8 >= UserBBI.postOffset()) {
Reed Kotler7ded5b62013-11-05 23:36:58 +00001284 BaseInsertOffset = UserBBI.postOffset() - 8;
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001285 LLVM_DEBUG(dbgs() << format("Move inside block: %#x\n", BaseInsertOffset));
Reed Kotler0f007fc2013-11-05 08:14:14 +00001286 }
Reed Kotler7ded5b62013-11-05 23:36:58 +00001287 unsigned EndInsertOffset = BaseInsertOffset + 4 +
Reed Kotler0f007fc2013-11-05 08:14:14 +00001288 CPEMI->getOperand(2).getImm();
1289 MachineBasicBlock::iterator MI = UserMI;
1290 ++MI;
1291 unsigned CPUIndex = CPUserIndex+1;
1292 unsigned NumCPUsers = CPUsers.size();
1293 //MachineInstr *LastIT = 0;
Sjoerd Meijer89217f82016-07-28 16:32:22 +00001294 for (unsigned Offset = UserOffset + TII->getInstSizeInBytes(*UserMI);
Reed Kotler0f007fc2013-11-05 08:14:14 +00001295 Offset < BaseInsertOffset;
Sjoerd Meijer89217f82016-07-28 16:32:22 +00001296 Offset += TII->getInstSizeInBytes(*MI), MI = std::next(MI)) {
Reed Kotler0f007fc2013-11-05 08:14:14 +00001297 assert(MI != UserMBB->end() && "Fell off end of block");
Duncan P. N. Exon Smithf197b1f2016-08-12 05:05:36 +00001298 if (CPUIndex < NumCPUsers && CPUsers[CPUIndex].MI == MI) {
Reed Kotler0f007fc2013-11-05 08:14:14 +00001299 CPUser &U = CPUsers[CPUIndex];
1300 if (!isOffsetInRange(Offset, EndInsertOffset, U)) {
1301 // Shift intertion point by one unit of alignment so it is within reach.
1302 BaseInsertOffset -= 1u << LogAlign;
1303 EndInsertOffset -= 1u << LogAlign;
1304 }
1305 // This is overly conservative, as we don't account for CPEMIs being
1306 // reused within the block, but it doesn't matter much. Also assume CPEs
1307 // are added in order with alignment padding. We may eventually be able
1308 // to pack the aligned CPEs better.
1309 EndInsertOffset += U.CPEMI->getOperand(2).getImm();
1310 CPUIndex++;
1311 }
1312 }
1313
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +00001314 NewMBB = splitBlockBeforeInstr(*--MI);
Reed Kotler0f007fc2013-11-05 08:14:14 +00001315}
1316
1317/// handleConstantPoolUser - Analyze the specified user, checking to see if it
1318/// is out-of-range. If so, pick up the constant pool value and move it some
1319/// place in-range. Return true if we changed any addresses (thus must run
1320/// another pass of branch lengthening), false otherwise.
1321bool MipsConstantIslands::handleConstantPoolUser(unsigned CPUserIndex) {
1322 CPUser &U = CPUsers[CPUserIndex];
1323 MachineInstr *UserMI = U.MI;
1324 MachineInstr *CPEMI = U.CPEMI;
1325 unsigned CPI = CPEMI->getOperand(1).getIndex();
1326 unsigned Size = CPEMI->getOperand(2).getImm();
1327 // Compute this only once, it's expensive.
1328 unsigned UserOffset = getUserOffset(U);
1329
1330 // See if the current entry is within range, or there is a clone of it
1331 // in range.
1332 int result = findInRangeCPEntry(U, UserOffset);
1333 if (result==1) return false;
1334 else if (result==2) return true;
1335
Reed Kotler0f007fc2013-11-05 08:14:14 +00001336 // Look for water where we can place this CPE.
1337 MachineBasicBlock *NewIsland = MF->CreateMachineBasicBlock();
1338 MachineBasicBlock *NewMBB;
1339 water_iterator IP;
1340 if (findAvailableWater(U, UserOffset, IP)) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001341 LLVM_DEBUG(dbgs() << "Found water in range\n");
Reed Kotler0f007fc2013-11-05 08:14:14 +00001342 MachineBasicBlock *WaterBB = *IP;
1343
1344 // If the original WaterList entry was "new water" on this iteration,
1345 // propagate that to the new island. This is just keeping NewWaterList
1346 // updated to match the WaterList, which will be updated below.
1347 if (NewWaterList.erase(WaterBB))
1348 NewWaterList.insert(NewIsland);
1349
1350 // The new CPE goes before the following block (NewMBB).
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +00001351 NewMBB = &*++WaterBB->getIterator();
Reed Kotler0f007fc2013-11-05 08:14:14 +00001352 } else {
1353 // No water found.
1354 // we first see if a longer form of the instrucion could have reached
1355 // the constant. in that case we won't bother to split
Reed Kotler45c59272013-11-10 00:09:26 +00001356 if (!NoLoadRelaxation) {
1357 result = findLongFormInRangeCPEntry(U, UserOffset);
1358 if (result != 0) return true;
1359 }
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001360 LLVM_DEBUG(dbgs() << "No water found\n");
Reed Kotler0f007fc2013-11-05 08:14:14 +00001361 createNewWater(CPUserIndex, UserOffset, NewMBB);
1362
1363 // splitBlockBeforeInstr adds to WaterList, which is important when it is
1364 // called while handling branches so that the water will be seen on the
1365 // next iteration for constant pools, but in this context, we don't want
1366 // it. Check for this so it will be removed from the WaterList.
1367 // Also remove any entry from NewWaterList.
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +00001368 MachineBasicBlock *WaterBB = &*--NewMBB->getIterator();
Eugene Zelenkodde94e42017-01-30 23:21:32 +00001369 IP = llvm::find(WaterList, WaterBB);
Reed Kotler0f007fc2013-11-05 08:14:14 +00001370 if (IP != WaterList.end())
1371 NewWaterList.erase(WaterBB);
1372
1373 // We are adding new water. Update NewWaterList.
1374 NewWaterList.insert(NewIsland);
1375 }
1376
1377 // Remove the original WaterList entry; we want subsequent insertions in
1378 // this vicinity to go after the one we're about to insert. This
1379 // considerably reduces the number of times we have to move the same CPE
1380 // more than once and is also important to ensure the algorithm terminates.
1381 if (IP != WaterList.end())
1382 WaterList.erase(IP);
1383
1384 // Okay, we know we can put an island before NewMBB now, do it!
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +00001385 MF->insert(NewMBB->getIterator(), NewIsland);
Reed Kotler0f007fc2013-11-05 08:14:14 +00001386
1387 // Update internal data structures to account for the newly inserted MBB.
1388 updateForInsertedWaterBlock(NewIsland);
1389
1390 // Decrement the old entry, and remove it if refcount becomes 0.
1391 decrementCPEReferenceCount(CPI, CPEMI);
1392
Reed Kotlerd3b28eb2013-11-24 02:53:09 +00001393 // No existing clone of this CPE is within range.
1394 // We will be generating a new clone. Get a UID for it.
1395 unsigned ID = createPICLabelUId();
1396
Reed Kotler0f007fc2013-11-05 08:14:14 +00001397 // Now that we have an island to add the CPE to, clone the original CPE and
1398 // add it to the island.
1399 U.HighWaterMark = NewIsland;
1400 U.CPEMI = BuildMI(NewIsland, DebugLoc(), TII->get(Mips::CONSTPOOL_ENTRY))
1401 .addImm(ID).addConstantPoolIndex(CPI).addImm(Size);
1402 CPEntries[CPI].push_back(CPEntry(U.CPEMI, ID, 1));
1403 ++NumCPEs;
1404
1405 // Mark the basic block as aligned as required by the const-pool entry.
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +00001406 NewIsland->setAlignment(getCPELogAlign(*U.CPEMI));
Reed Kotler0f007fc2013-11-05 08:14:14 +00001407
1408 // Increase the size of the island block to account for the new entry.
1409 BBInfo[NewIsland->getNumber()].Size += Size;
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +00001410 adjustBBOffsetsAfter(&*--NewIsland->getIterator());
Reed Kotler0f007fc2013-11-05 08:14:14 +00001411
1412 // Finally, change the CPI in the instruction operand to be ID.
1413 for (unsigned i = 0, e = UserMI->getNumOperands(); i != e; ++i)
1414 if (UserMI->getOperand(i).isCPI()) {
1415 UserMI->getOperand(i).setIndex(ID);
1416 break;
1417 }
1418
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001419 LLVM_DEBUG(
1420 dbgs() << " Moved CPE to #" << ID << " CPI=" << CPI
1421 << format(" offset=%#x\n", BBInfo[NewIsland->getNumber()].Offset));
Reed Kotler0f007fc2013-11-05 08:14:14 +00001422
1423 return true;
1424}
1425
1426/// removeDeadCPEMI - Remove a dead constant pool entry instruction. Update
1427/// sizes and offsets of impacted basic blocks.
1428void MipsConstantIslands::removeDeadCPEMI(MachineInstr *CPEMI) {
1429 MachineBasicBlock *CPEBB = CPEMI->getParent();
1430 unsigned Size = CPEMI->getOperand(2).getImm();
1431 CPEMI->eraseFromParent();
1432 BBInfo[CPEBB->getNumber()].Size -= Size;
1433 // All succeeding offsets have the current size value added in, fix this.
1434 if (CPEBB->empty()) {
1435 BBInfo[CPEBB->getNumber()].Size = 0;
1436
1437 // This block no longer needs to be aligned.
1438 CPEBB->setAlignment(0);
1439 } else
1440 // Entries are sorted by descending alignment, so realign from the front.
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +00001441 CPEBB->setAlignment(getCPELogAlign(*CPEBB->begin()));
Reed Kotler0f007fc2013-11-05 08:14:14 +00001442
1443 adjustBBOffsetsAfter(CPEBB);
1444 // An island has only one predecessor BB and one successor BB. Check if
1445 // this BB's predecessor jumps directly to this BB's successor. This
1446 // shouldn't happen currently.
1447 assert(!BBIsJumpedOver(CPEBB) && "How did this happen?");
1448 // FIXME: remove the empty blocks after all the work is done?
1449}
1450
1451/// removeUnusedCPEntries - Remove constant pool entries whose refcounts
1452/// are zero.
1453bool MipsConstantIslands::removeUnusedCPEntries() {
1454 unsigned MadeChange = false;
1455 for (unsigned i = 0, e = CPEntries.size(); i != e; ++i) {
1456 std::vector<CPEntry> &CPEs = CPEntries[i];
1457 for (unsigned j = 0, ee = CPEs.size(); j != ee; ++j) {
1458 if (CPEs[j].RefCount == 0 && CPEs[j].CPEMI) {
1459 removeDeadCPEMI(CPEs[j].CPEMI);
Craig Topper062a2ba2014-04-25 05:30:21 +00001460 CPEs[j].CPEMI = nullptr;
Reed Kotler0f007fc2013-11-05 08:14:14 +00001461 MadeChange = true;
1462 }
1463 }
1464 }
1465 return MadeChange;
1466}
1467
1468/// isBBInRange - Returns true if the distance between specific MI and
1469/// specific BB can fit in MI's displacement field.
1470bool MipsConstantIslands::isBBInRange
1471 (MachineInstr *MI,MachineBasicBlock *DestBB, unsigned MaxDisp) {
Eugene Zelenkodde94e42017-01-30 23:21:32 +00001472 unsigned PCAdj = 4;
Reed Kotler0f007fc2013-11-05 08:14:14 +00001473 unsigned BrOffset = getOffsetOf(MI) + PCAdj;
1474 unsigned DestOffset = BBInfo[DestBB->getNumber()].Offset;
1475
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001476 LLVM_DEBUG(dbgs() << "Branch of destination " << printMBBReference(*DestBB)
1477 << " from " << printMBBReference(*MI->getParent())
1478 << " max delta=" << MaxDisp << " from " << getOffsetOf(MI)
1479 << " to " << DestOffset << " offset "
1480 << int(DestOffset - BrOffset) << "\t" << *MI);
Reed Kotler0f007fc2013-11-05 08:14:14 +00001481
1482 if (BrOffset <= DestOffset) {
1483 // Branch before the Dest.
1484 if (DestOffset-BrOffset <= MaxDisp)
1485 return true;
1486 } else {
1487 if (BrOffset-DestOffset <= MaxDisp)
1488 return true;
1489 }
1490 return false;
1491}
1492
1493/// fixupImmediateBr - Fix up an immediate branch whose destination is too far
1494/// away to fit in its displacement field.
1495bool MipsConstantIslands::fixupImmediateBr(ImmBranch &Br) {
1496 MachineInstr *MI = Br.MI;
Reed Kotler0d409e22013-11-28 00:56:37 +00001497 unsigned TargetOperand = branchTargetOperand(MI);
1498 MachineBasicBlock *DestBB = MI->getOperand(TargetOperand).getMBB();
Reed Kotler0f007fc2013-11-05 08:14:14 +00001499
1500 // Check to see if the DestBB is already in-range.
1501 if (isBBInRange(MI, DestBB, Br.MaxDisp))
1502 return false;
1503
1504 if (!Br.isCond)
1505 return fixupUnconditionalBr(Br);
1506 return fixupConditionalBr(Br);
1507}
1508
1509/// fixupUnconditionalBr - Fix up an unconditional branch whose destination is
1510/// too far away to fit in its displacement field. If the LR register has been
1511/// spilled in the epilogue, then we can use BL to implement a far jump.
1512/// Otherwise, add an intermediate branch instruction to a branch.
1513bool
1514MipsConstantIslands::fixupUnconditionalBr(ImmBranch &Br) {
1515 MachineInstr *MI = Br.MI;
1516 MachineBasicBlock *MBB = MI->getParent();
Reed Kotler2fc05be2013-11-21 05:13:23 +00001517 MachineBasicBlock *DestBB = MI->getOperand(0).getMBB();
Reed Kotler0f007fc2013-11-05 08:14:14 +00001518 // Use BL to implement far jump.
Reed Kotler2fc05be2013-11-21 05:13:23 +00001519 unsigned BimmX16MaxDisp = ((1 << 16)-1) * 2;
1520 if (isBBInRange(MI, DestBB, BimmX16MaxDisp)) {
1521 Br.MaxDisp = BimmX16MaxDisp;
1522 MI->setDesc(TII->get(Mips::BimmX16));
1523 }
1524 else {
1525 // need to give the math a more careful look here
1526 // this is really a segment address and not
1527 // a PC relative address. FIXME. But I think that
1528 // just reducing the bits by 1 as I've done is correct.
1529 // The basic block we are branching too much be longword aligned.
1530 // we know that RA is saved because we always save it right now.
1531 // this requirement will be relaxed later but we also have an alternate
1532 // way to implement this that I will implement that does not need jal.
1533 // We should have a way to back out this alignment restriction if we "can" later.
1534 // but it is not harmful.
1535 //
1536 DestBB->setAlignment(2);
1537 Br.MaxDisp = ((1<<24)-1) * 2;
Reed Kotlerad450f22013-11-29 22:32:56 +00001538 MI->setDesc(TII->get(Mips::JalB16));
Reed Kotler2fc05be2013-11-21 05:13:23 +00001539 }
Reed Kotler0f007fc2013-11-05 08:14:14 +00001540 BBInfo[MBB->getNumber()].Size += 2;
1541 adjustBBOffsetsAfter(MBB);
1542 HasFarJump = true;
1543 ++NumUBrFixed;
1544
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001545 LLVM_DEBUG(dbgs() << " Changed B to long jump " << *MI);
Reed Kotler0f007fc2013-11-05 08:14:14 +00001546
1547 return true;
1548}
1549
1550/// fixupConditionalBr - Fix up a conditional branch whose destination is too
1551/// far away to fit in its displacement field. It is converted to an inverse
1552/// conditional branch + an unconditional branch to the destination.
1553bool
1554MipsConstantIslands::fixupConditionalBr(ImmBranch &Br) {
1555 MachineInstr *MI = Br.MI;
Reed Kotler0d409e22013-11-28 00:56:37 +00001556 unsigned TargetOperand = branchTargetOperand(MI);
1557 MachineBasicBlock *DestBB = MI->getOperand(TargetOperand).getMBB();
1558 unsigned Opcode = MI->getOpcode();
1559 unsigned LongFormOpcode = longformBranchOpcode(Opcode);
1560 unsigned LongFormMaxOff = branchMaxOffsets(LongFormOpcode);
1561
1562 // Check to see if the DestBB is already in-range.
1563 if (isBBInRange(MI, DestBB, LongFormMaxOff)) {
1564 Br.MaxDisp = LongFormMaxOff;
1565 MI->setDesc(TII->get(LongFormOpcode));
1566 return true;
1567 }
Reed Kotler0f007fc2013-11-05 08:14:14 +00001568
1569 // Add an unconditional branch to the destination and invert the branch
1570 // condition to jump over it:
Reed Kotlerad450f22013-11-29 22:32:56 +00001571 // bteqz L1
Reed Kotler0f007fc2013-11-05 08:14:14 +00001572 // =>
Reed Kotlerad450f22013-11-29 22:32:56 +00001573 // bnez L2
Reed Kotler0f007fc2013-11-05 08:14:14 +00001574 // b L1
1575 // L2:
Reed Kotler0f007fc2013-11-05 08:14:14 +00001576
1577 // If the branch is at the end of its MBB and that has a fall-through block,
1578 // direct the updated conditional branch to the fall-through block. Otherwise,
1579 // split the MBB before the next instruction.
1580 MachineBasicBlock *MBB = MI->getParent();
1581 MachineInstr *BMI = &MBB->back();
1582 bool NeedSplit = (BMI != MI) || !BBHasFallthrough(MBB);
Reed Kotler47f3c64a2013-12-19 00:43:08 +00001583 unsigned OppositeBranchOpcode = TII->getOppositeBranchOpc(Opcode);
Fangrui Songf78650a2018-07-30 19:41:25 +00001584
Reed Kotler0f007fc2013-11-05 08:14:14 +00001585 ++NumCBrFixed;
1586 if (BMI != MI) {
Benjamin Kramerb6d0bd42014-03-02 12:27:27 +00001587 if (std::next(MachineBasicBlock::iterator(MI)) == std::prev(MBB->end()) &&
Daniel Sandersf9d8b8c2016-05-06 13:23:51 +00001588 BMI->isUnconditionalBranch()) {
Reed Kotler0f007fc2013-11-05 08:14:14 +00001589 // Last MI in the BB is an unconditional branch. Can we simply invert the
1590 // condition and swap destinations:
Reed Kotlerad450f22013-11-29 22:32:56 +00001591 // beqz L1
Reed Kotler0f007fc2013-11-05 08:14:14 +00001592 // b L2
1593 // =>
Reed Kotlerad450f22013-11-29 22:32:56 +00001594 // bnez L2
Reed Kotler0f007fc2013-11-05 08:14:14 +00001595 // b L1
Reed Kotlerad450f22013-11-29 22:32:56 +00001596 unsigned BMITargetOperand = branchTargetOperand(BMI);
Fangrui Songf78650a2018-07-30 19:41:25 +00001597 MachineBasicBlock *NewDest =
Reed Kotlerad450f22013-11-29 22:32:56 +00001598 BMI->getOperand(BMITargetOperand).getMBB();
Reed Kotler0f007fc2013-11-05 08:14:14 +00001599 if (isBBInRange(MI, NewDest, Br.MaxDisp)) {
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001600 LLVM_DEBUG(
1601 dbgs() << " Invert Bcc condition and swap its destination with "
1602 << *BMI);
Reed Kotler59975c22013-12-03 23:42:51 +00001603 MI->setDesc(TII->get(OppositeBranchOpcode));
Reed Kotlerad450f22013-11-29 22:32:56 +00001604 BMI->getOperand(BMITargetOperand).setMBB(DestBB);
1605 MI->getOperand(TargetOperand).setMBB(NewDest);
Reed Kotler0f007fc2013-11-05 08:14:14 +00001606 return true;
1607 }
1608 }
1609 }
1610
1611 if (NeedSplit) {
Duncan P. N. Exon Smith670900b2016-07-15 23:09:47 +00001612 splitBlockBeforeInstr(*MI);
Reed Kotler0f007fc2013-11-05 08:14:14 +00001613 // No need for the branch to the next block. We're adding an unconditional
1614 // branch to the destination.
Sjoerd Meijer89217f82016-07-28 16:32:22 +00001615 int delta = TII->getInstSizeInBytes(MBB->back());
Reed Kotler0f007fc2013-11-05 08:14:14 +00001616 BBInfo[MBB->getNumber()].Size -= delta;
1617 MBB->back().eraseFromParent();
1618 // BBInfo[SplitBB].Offset is wrong temporarily, fixed below
1619 }
Duncan P. N. Exon Smith78691482015-10-20 00:15:20 +00001620 MachineBasicBlock *NextBB = &*++MBB->getIterator();
Reed Kotler0f007fc2013-11-05 08:14:14 +00001621
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001622 LLVM_DEBUG(dbgs() << " Insert B to " << printMBBReference(*DestBB)
1623 << " also invert condition and change dest. to "
1624 << printMBBReference(*NextBB) << "\n");
Reed Kotler0f007fc2013-11-05 08:14:14 +00001625
1626 // Insert a new conditional branch and a new unconditional branch.
1627 // Also update the ImmBranch as well as adding a new entry for the new branch.
Reed Kotler59975c22013-12-03 23:42:51 +00001628 if (MI->getNumExplicitOperands() == 2) {
1629 BuildMI(MBB, DebugLoc(), TII->get(OppositeBranchOpcode))
1630 .addReg(MI->getOperand(0).getReg())
1631 .addMBB(NextBB);
Reed Kotler47f3c64a2013-12-19 00:43:08 +00001632 } else {
1633 BuildMI(MBB, DebugLoc(), TII->get(OppositeBranchOpcode))
1634 .addMBB(NextBB);
Reed Kotler59975c22013-12-03 23:42:51 +00001635 }
Reed Kotler0f007fc2013-11-05 08:14:14 +00001636 Br.MI = &MBB->back();
Sjoerd Meijer89217f82016-07-28 16:32:22 +00001637 BBInfo[MBB->getNumber()].Size += TII->getInstSizeInBytes(MBB->back());
Reed Kotler0f007fc2013-11-05 08:14:14 +00001638 BuildMI(MBB, DebugLoc(), TII->get(Br.UncondBr)).addMBB(DestBB);
Sjoerd Meijer89217f82016-07-28 16:32:22 +00001639 BBInfo[MBB->getNumber()].Size += TII->getInstSizeInBytes(MBB->back());
Reed Kotler0f007fc2013-11-05 08:14:14 +00001640 unsigned MaxDisp = getUnconditionalBrDisp(Br.UncondBr);
1641 ImmBranches.push_back(ImmBranch(&MBB->back(), MaxDisp, false, Br.UncondBr));
1642
1643 // Remove the old conditional branch. It may or may not still be in MBB.
Sjoerd Meijer89217f82016-07-28 16:32:22 +00001644 BBInfo[MI->getParent()->getNumber()].Size -= TII->getInstSizeInBytes(*MI);
Reed Kotler0f007fc2013-11-05 08:14:14 +00001645 MI->eraseFromParent();
1646 adjustBBOffsetsAfter(MBB);
1647 return true;
1648}
1649
Reed Kotler91ae9822013-10-27 21:57:36 +00001650void MipsConstantIslands::prescanForConstants() {
Reed Kotler0f007fc2013-11-05 08:14:14 +00001651 unsigned J = 0;
1652 (void)J;
Reed Kotler91ae9822013-10-27 21:57:36 +00001653 for (MachineFunction::iterator B =
1654 MF->begin(), E = MF->end(); B != E; ++B) {
1655 for (MachineBasicBlock::instr_iterator I =
1656 B->instr_begin(), EB = B->instr_end(); I != EB; ++I) {
1657 switch(I->getDesc().getOpcode()) {
1658 case Mips::LwConstant32: {
Reed Kotlera787aa22013-11-24 06:18:50 +00001659 PrescannedForConstants = true;
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001660 LLVM_DEBUG(dbgs() << "constant island constant " << *I << "\n");
Reed Kotler91ae9822013-10-27 21:57:36 +00001661 J = I->getNumOperands();
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001662 LLVM_DEBUG(dbgs() << "num operands " << J << "\n");
Reed Kotler91ae9822013-10-27 21:57:36 +00001663 MachineOperand& Literal = I->getOperand(1);
1664 if (Literal.isImm()) {
1665 int64_t V = Literal.getImm();
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001666 LLVM_DEBUG(dbgs() << "literal " << V << "\n");
Reed Kotler91ae9822013-10-27 21:57:36 +00001667 Type *Int32Ty =
Matthias Braunf1caa282017-12-15 22:22:58 +00001668 Type::getInt32Ty(MF->getFunction().getContext());
Reed Kotler91ae9822013-10-27 21:57:36 +00001669 const Constant *C = ConstantInt::get(Int32Ty, V);
1670 unsigned index = MCP->getConstantPoolIndex(C, 4);
1671 I->getOperand(2).ChangeToImmediate(index);
Nicola Zaghend34e60c2018-05-14 12:53:11 +00001672 LLVM_DEBUG(dbgs() << "constant island constant " << *I << "\n");
Reed Kotler0f007fc2013-11-05 08:14:14 +00001673 I->setDesc(TII->get(Mips::LwRxPcTcp16));
Reed Kotler91ae9822013-10-27 21:57:36 +00001674 I->RemoveOperand(1);
1675 I->RemoveOperand(1);
1676 I->addOperand(MachineOperand::CreateCPI(index, 0));
Reed Kotler0f007fc2013-11-05 08:14:14 +00001677 I->addOperand(MachineOperand::CreateImm(4));
Reed Kotler91ae9822013-10-27 21:57:36 +00001678 }
1679 break;
1680 }
1681 default:
1682 break;
1683 }
1684 }
1685 }
1686}
Eugene Zelenkodde94e42017-01-30 23:21:32 +00001687
1688/// Returns a pass that converts branches to long branches.
1689FunctionPass *llvm::createMipsConstantIslandPass() {
1690 return new MipsConstantIslands();
1691}