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Bill Wendling9a4d2e42010-12-21 01:54:40 +00001//===-- ARMConstantIslandPass.cpp - ARM constant islands ------------------===//
Evan Chenga8e29892007-01-19 07:51:42 +00002//
3// The LLVM Compiler Infrastructure
4//
Chris Lattner4ee451d2007-12-29 20:36:04 +00005// This file is distributed under the University of Illinois Open Source
6// License. See LICENSE.TXT for details.
Evan Chenga8e29892007-01-19 07:51:42 +00007//
8//===----------------------------------------------------------------------===//
9//
10// This file contains a pass that splits the constant pool up into 'islands'
11// which are scattered through-out the function. This is required due to the
12// limited pc-relative displacements that ARM has.
13//
14//===----------------------------------------------------------------------===//
15
16#define DEBUG_TYPE "arm-cp-islands"
17#include "ARM.h"
Evan Chengaf5cbcb2007-01-25 03:12:46 +000018#include "ARMMachineFunctionInfo.h"
Evan Chenga8e29892007-01-19 07:51:42 +000019#include "ARMInstrInfo.h"
Evan Cheng719510a2010-08-12 20:30:05 +000020#include "Thumb2InstrInfo.h"
Evan Chengee04a6d2011-07-20 23:34:39 +000021#include "MCTargetDesc/ARMAddressingModes.h"
Evan Chenga8e29892007-01-19 07:51:42 +000022#include "llvm/CodeGen/MachineConstantPool.h"
23#include "llvm/CodeGen/MachineFunctionPass.h"
Evan Cheng5657c012009-07-29 02:18:14 +000024#include "llvm/CodeGen/MachineJumpTableInfo.h"
Evan Chenga8e29892007-01-19 07:51:42 +000025#include "llvm/Target/TargetData.h"
26#include "llvm/Target/TargetMachine.h"
Evan Chenga8e29892007-01-19 07:51:42 +000027#include "llvm/Support/Debug.h"
Torok Edwinc25e7582009-07-11 20:10:48 +000028#include "llvm/Support/ErrorHandling.h"
Jakob Stoklund Olesen2d5023b2011-12-10 02:55:06 +000029#include "llvm/Support/Format.h"
Chris Lattner705e07f2009-08-23 03:41:05 +000030#include "llvm/Support/raw_ostream.h"
Bob Wilsonb9239532009-10-15 20:49:47 +000031#include "llvm/ADT/SmallSet.h"
Evan Chengc99ef082007-02-09 20:54:44 +000032#include "llvm/ADT/SmallVector.h"
Evan Chenga8e29892007-01-19 07:51:42 +000033#include "llvm/ADT/STLExtras.h"
34#include "llvm/ADT/Statistic.h"
Jim Grosbach1fc7d712009-11-11 02:47:19 +000035#include "llvm/Support/CommandLine.h"
Bob Wilsonb9239532009-10-15 20:49:47 +000036#include <algorithm>
Evan Chenga8e29892007-01-19 07:51:42 +000037using namespace llvm;
38
Evan Chenga1efbbd2009-08-14 00:32:16 +000039STATISTIC(NumCPEs, "Number of constpool entries");
40STATISTIC(NumSplit, "Number of uncond branches inserted");
41STATISTIC(NumCBrFixed, "Number of cond branches fixed");
42STATISTIC(NumUBrFixed, "Number of uncond branches fixed");
43STATISTIC(NumTBs, "Number of table branches generated");
44STATISTIC(NumT2CPShrunk, "Number of Thumb2 constantpool instructions shrunk");
Evan Cheng31b99dd2009-08-14 18:31:44 +000045STATISTIC(NumT2BrShrunk, "Number of Thumb2 immediate branches shrunk");
Evan Chengde17fb62009-10-31 23:46:45 +000046STATISTIC(NumCBZ, "Number of CBZ / CBNZ formed");
Jim Grosbach1fc7d712009-11-11 02:47:19 +000047STATISTIC(NumJTMoved, "Number of jump table destination blocks moved");
Jim Grosbach80697d12009-11-12 17:25:07 +000048STATISTIC(NumJTInserted, "Number of jump table intermediate blocks inserted");
Jim Grosbach1fc7d712009-11-11 02:47:19 +000049
50
51static cl::opt<bool>
Jim Grosbachf04777b2009-11-17 21:24:11 +000052AdjustJumpTableBlocks("arm-adjust-jump-tables", cl::Hidden, cl::init(true),
Jim Grosbach1fc7d712009-11-11 02:47:19 +000053 cl::desc("Adjust basic block layout to better use TB[BH]"));
Evan Chenga8e29892007-01-19 07:51:42 +000054
Jakob Stoklund Olesenf5bb45f2011-12-16 16:07:41 +000055// FIXME: This option should be removed once it has received sufficient testing.
Jakob Stoklund Olesenb813f922011-12-12 16:49:37 +000056static cl::opt<bool>
Jakob Stoklund Olesenb6ff6ec2011-12-15 22:14:45 +000057AlignConstantIslands("arm-align-constant-islands", cl::Hidden, cl::init(true),
Jakob Stoklund Olesenb813f922011-12-12 16:49:37 +000058 cl::desc("Align constant islands in code"));
59
Jakob Stoklund Olesen77caaf02011-12-10 02:55:10 +000060/// UnknownPadding - Return the worst case padding that could result from
61/// unknown offset bits. This does not include alignment padding caused by
62/// known offset bits.
63///
64/// @param LogAlign log2(alignment)
65/// @param KnownBits Number of known low offset bits.
66static inline unsigned UnknownPadding(unsigned LogAlign, unsigned KnownBits) {
67 if (KnownBits < LogAlign)
68 return (1u << LogAlign) - (1u << KnownBits);
69 return 0;
70}
71
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +000072/// WorstCaseAlign - Assuming only the low KnownBits bits in Offset are exact,
73/// add padding such that:
74///
75/// 1. The result is aligned to 1 << LogAlign.
76///
77/// 2. No other value of the unknown bits would require more padding.
78///
79/// This may add more padding than is required to satisfy just one of the
80/// constraints. It is necessary to compute alignment this way to guarantee
81/// that we don't underestimate the padding before an aligned block. If the
82/// real padding before a block is larger than we think, constant pool entries
83/// may go out of range.
84static inline unsigned WorstCaseAlign(unsigned Offset, unsigned LogAlign,
85 unsigned KnownBits) {
86 // Add the worst possible padding that the unknown bits could cause.
Jakob Stoklund Olesen77caaf02011-12-10 02:55:10 +000087 Offset += UnknownPadding(LogAlign, KnownBits);
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +000088
89 // Then align the result.
90 return RoundUpToAlignment(Offset, 1u << LogAlign);
91}
92
Evan Chenga8e29892007-01-19 07:51:42 +000093namespace {
Dale Johannesen88e37ae2007-02-23 05:02:36 +000094 /// ARMConstantIslands - Due to limited PC-relative displacements, ARM
Evan Chenga8e29892007-01-19 07:51:42 +000095 /// requires constant pool entries to be scattered among the instructions
96 /// inside a function. To do this, it completely ignores the normal LLVM
Dale Johannesen88e37ae2007-02-23 05:02:36 +000097 /// constant pool; instead, it places constants wherever it feels like with
Evan Chenga8e29892007-01-19 07:51:42 +000098 /// special instructions.
99 ///
100 /// The terminology used in this pass includes:
101 /// Islands - Clumps of constants placed in the function.
102 /// Water - Potential places where an island could be formed.
103 /// CPE - A constant pool entry that has been placed somewhere, which
104 /// tracks a list of users.
Nick Lewycky6726b6d2009-10-25 06:33:48 +0000105 class ARMConstantIslands : public MachineFunctionPass {
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +0000106 /// BasicBlockInfo - Information about the offset and size of a single
107 /// basic block.
108 struct BasicBlockInfo {
109 /// Offset - Distance from the beginning of the function to the beginning
110 /// of this basic block.
111 ///
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000112 /// The offset is always aligned as required by the basic block.
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +0000113 unsigned Offset;
Bob Wilson84945262009-05-12 17:09:30 +0000114
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +0000115 /// Size - Size of the basic block in bytes. If the block contains
116 /// inline assembly, this is a worst case estimate.
117 ///
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000118 /// The size does not include any alignment padding whether from the
119 /// beginning of the block, or from an aligned jump table at the end.
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +0000120 unsigned Size;
121
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000122 /// KnownBits - The number of low bits in Offset that are known to be
123 /// exact. The remaining bits of Offset are an upper bound.
124 uint8_t KnownBits;
125
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000126 /// Unalign - When non-zero, the block contains instructions (inline asm)
127 /// of unknown size. The real size may be smaller than Size bytes by a
128 /// multiple of 1 << Unalign.
129 uint8_t Unalign;
130
131 /// PostAlign - When non-zero, the block terminator contains a .align
132 /// directive, so the end of the block is aligned to 1 << PostAlign
133 /// bytes.
134 uint8_t PostAlign;
135
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000136 BasicBlockInfo() : Offset(0), Size(0), KnownBits(0), Unalign(0),
137 PostAlign(0) {}
Jakob Stoklund Olesen5bb32532011-12-07 01:22:52 +0000138
Jakob Stoklund Olesen77caaf02011-12-10 02:55:10 +0000139 /// Compute the number of known offset bits internally to this block.
140 /// This number should be used to predict worst case padding when
141 /// splitting the block.
142 unsigned internalKnownBits() const {
143 return Unalign ? Unalign : KnownBits;
144 }
145
Jakob Stoklund Olesen85528212011-12-12 19:25:54 +0000146 /// Compute the offset immediately following this block. If LogAlign is
147 /// specified, return the offset the successor block will get if it has
148 /// this alignment.
149 unsigned postOffset(unsigned LogAlign = 0) const {
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000150 unsigned PO = Offset + Size;
Jakob Stoklund Olesen85528212011-12-12 19:25:54 +0000151 unsigned LA = std::max(unsigned(PostAlign), LogAlign);
152 if (!LA)
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000153 return PO;
154 // Add alignment padding from the terminator.
Jakob Stoklund Olesen85528212011-12-12 19:25:54 +0000155 return WorstCaseAlign(PO, LA, internalKnownBits());
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000156 }
157
158 /// Compute the number of known low bits of postOffset. If this block
159 /// contains inline asm, the number of known bits drops to the
160 /// instruction alignment. An aligned terminator may increase the number
161 /// of know bits.
Jakob Stoklund Olesen85528212011-12-12 19:25:54 +0000162 /// If LogAlign is given, also consider the alignment of the next block.
163 unsigned postKnownBits(unsigned LogAlign = 0) const {
164 return std::max(std::max(unsigned(PostAlign), LogAlign),
165 internalKnownBits());
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000166 }
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +0000167 };
168
169 std::vector<BasicBlockInfo> BBInfo;
Dale Johannesen99c49a42007-02-25 00:47:03 +0000170
Evan Chenga8e29892007-01-19 07:51:42 +0000171 /// WaterList - A sorted list of basic blocks where islands could be placed
172 /// (i.e. blocks that don't fall through to the following block, due
173 /// to a return, unreachable, or unconditional branch).
Evan Chenge03cff62007-02-09 23:59:14 +0000174 std::vector<MachineBasicBlock*> WaterList;
Evan Chengc99ef082007-02-09 20:54:44 +0000175
Bob Wilsonb9239532009-10-15 20:49:47 +0000176 /// NewWaterList - The subset of WaterList that was created since the
177 /// previous iteration by inserting unconditional branches.
178 SmallSet<MachineBasicBlock*, 4> NewWaterList;
179
Bob Wilson034de5f2009-10-12 18:52:13 +0000180 typedef std::vector<MachineBasicBlock*>::iterator water_iterator;
181
Evan Chenga8e29892007-01-19 07:51:42 +0000182 /// CPUser - One user of a constant pool, keeping the machine instruction
183 /// pointer, the constant pool being referenced, and the max displacement
Bob Wilson549dda92009-10-15 05:52:29 +0000184 /// allowed from the instruction to the CP. The HighWaterMark records the
185 /// highest basic block where a new CPEntry can be placed. To ensure this
186 /// pass terminates, the CP entries are initially placed at the end of the
187 /// function and then move monotonically to lower addresses. The
188 /// exception to this rule is when the current CP entry for a particular
189 /// CPUser is out of range, but there is another CP entry for the same
190 /// constant value in range. We want to use the existing in-range CP
191 /// entry, but if it later moves out of range, the search for new water
192 /// should resume where it left off. The HighWaterMark is used to record
193 /// that point.
Evan Chenga8e29892007-01-19 07:51:42 +0000194 struct CPUser {
195 MachineInstr *MI;
196 MachineInstr *CPEMI;
Bob Wilson549dda92009-10-15 05:52:29 +0000197 MachineBasicBlock *HighWaterMark;
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000198 private:
Evan Chenga8e29892007-01-19 07:51:42 +0000199 unsigned MaxDisp;
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000200 public:
Evan Cheng5d8f1ca2009-07-21 23:56:01 +0000201 bool NegOk;
Evan Chengd3d9d662009-07-23 18:27:47 +0000202 bool IsSoImm;
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000203 bool KnownAlignment;
Evan Chengd3d9d662009-07-23 18:27:47 +0000204 CPUser(MachineInstr *mi, MachineInstr *cpemi, unsigned maxdisp,
205 bool neg, bool soimm)
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000206 : MI(mi), CPEMI(cpemi), MaxDisp(maxdisp), NegOk(neg), IsSoImm(soimm),
207 KnownAlignment(false) {
Bob Wilson549dda92009-10-15 05:52:29 +0000208 HighWaterMark = CPEMI->getParent();
209 }
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000210 /// getMaxDisp - Returns the maximum displacement supported by MI.
211 /// Correct for unknown alignment.
212 unsigned getMaxDisp() const {
213 return KnownAlignment ? MaxDisp : MaxDisp - 2;
214 }
Evan Chenga8e29892007-01-19 07:51:42 +0000215 };
Bob Wilson84945262009-05-12 17:09:30 +0000216
Evan Chenga8e29892007-01-19 07:51:42 +0000217 /// CPUsers - Keep track of all of the machine instructions that use various
218 /// constant pools and their max displacement.
Evan Chenge03cff62007-02-09 23:59:14 +0000219 std::vector<CPUser> CPUsers;
Bob Wilson84945262009-05-12 17:09:30 +0000220
Evan Chengc99ef082007-02-09 20:54:44 +0000221 /// CPEntry - One per constant pool entry, keeping the machine instruction
222 /// pointer, the constpool index, and the number of CPUser's which
223 /// reference this entry.
224 struct CPEntry {
225 MachineInstr *CPEMI;
226 unsigned CPI;
227 unsigned RefCount;
228 CPEntry(MachineInstr *cpemi, unsigned cpi, unsigned rc = 0)
229 : CPEMI(cpemi), CPI(cpi), RefCount(rc) {}
230 };
231
232 /// CPEntries - Keep track of all of the constant pool entry machine
Dale Johannesen88e37ae2007-02-23 05:02:36 +0000233 /// instructions. For each original constpool index (i.e. those that
234 /// existed upon entry to this pass), it keeps a vector of entries.
235 /// Original elements are cloned as we go along; the clones are
236 /// put in the vector of the original element, but have distinct CPIs.
Evan Chengc99ef082007-02-09 20:54:44 +0000237 std::vector<std::vector<CPEntry> > CPEntries;
Bob Wilson84945262009-05-12 17:09:30 +0000238
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000239 /// ImmBranch - One per immediate branch, keeping the machine instruction
240 /// pointer, conditional or unconditional, the max displacement,
241 /// and (if isCond is true) the corresponding unconditional branch
242 /// opcode.
243 struct ImmBranch {
244 MachineInstr *MI;
Evan Chengc2854142007-01-25 23:18:59 +0000245 unsigned MaxDisp : 31;
246 bool isCond : 1;
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000247 int UncondBr;
Evan Chengc2854142007-01-25 23:18:59 +0000248 ImmBranch(MachineInstr *mi, unsigned maxdisp, bool cond, int ubr)
249 : MI(mi), MaxDisp(maxdisp), isCond(cond), UncondBr(ubr) {}
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000250 };
251
Evan Cheng2706f972007-05-16 05:14:06 +0000252 /// ImmBranches - Keep track of all the immediate branch instructions.
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000253 ///
Evan Chenge03cff62007-02-09 23:59:14 +0000254 std::vector<ImmBranch> ImmBranches;
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000255
Evan Chengd1b2c1e2007-01-30 01:18:38 +0000256 /// PushPopMIs - Keep track of all the Thumb push / pop instructions.
257 ///
Evan Chengc99ef082007-02-09 20:54:44 +0000258 SmallVector<MachineInstr*, 4> PushPopMIs;
Evan Chengd1b2c1e2007-01-30 01:18:38 +0000259
Evan Cheng5657c012009-07-29 02:18:14 +0000260 /// T2JumpTables - Keep track of all the Thumb2 jumptable instructions.
261 SmallVector<MachineInstr*, 4> T2JumpTables;
262
Evan Chengd1b2c1e2007-01-30 01:18:38 +0000263 /// HasFarJump - True if any far jump instruction has been emitted during
264 /// the branch fix up pass.
265 bool HasFarJump;
266
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000267 MachineFunction *MF;
268 MachineConstantPool *MCP;
Chris Lattner20628752010-07-22 21:27:00 +0000269 const ARMInstrInfo *TII;
Evan Cheng25f7cfc2009-08-01 06:13:52 +0000270 const ARMSubtarget *STI;
Dale Johannesen8593e412007-04-29 19:19:30 +0000271 ARMFunctionInfo *AFI;
Dale Johannesenb71aa2b2007-02-28 23:20:38 +0000272 bool isThumb;
Evan Chengd3d9d662009-07-23 18:27:47 +0000273 bool isThumb1;
David Goodwin5e47a9a2009-06-30 18:04:13 +0000274 bool isThumb2;
Evan Chenga8e29892007-01-19 07:51:42 +0000275 public:
Devang Patel19974732007-05-03 01:11:54 +0000276 static char ID;
Owen Anderson90c579d2010-08-06 18:33:48 +0000277 ARMConstantIslands() : MachineFunctionPass(ID) {}
Devang Patel794fd752007-05-01 21:15:47 +0000278
Evan Cheng5657c012009-07-29 02:18:14 +0000279 virtual bool runOnMachineFunction(MachineFunction &MF);
Evan Chenga8e29892007-01-19 07:51:42 +0000280
281 virtual const char *getPassName() const {
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000282 return "ARM constant island placement and branch shortening pass";
Evan Chenga8e29892007-01-19 07:51:42 +0000283 }
Bob Wilson84945262009-05-12 17:09:30 +0000284
Evan Chenga8e29892007-01-19 07:51:42 +0000285 private:
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000286 void DoInitialPlacement(std::vector<MachineInstr*> &CPEMIs);
Evan Chengc99ef082007-02-09 20:54:44 +0000287 CPEntry *findConstPoolEntry(unsigned CPI, const MachineInstr *CPEMI);
Jakob Stoklund Olesencca33a32011-12-12 18:45:45 +0000288 unsigned getCPELogAlign(const MachineInstr *CPEMI);
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000289 void JumpTableFunctionScan();
290 void InitialFunctionScan(const std::vector<MachineInstr*> &CPEMIs);
Evan Cheng0c615842007-01-31 02:22:22 +0000291 MachineBasicBlock *SplitBlockBeforeInstr(MachineInstr *MI);
Evan Chenga8e29892007-01-19 07:51:42 +0000292 void UpdateForInsertedWaterBlock(MachineBasicBlock *NewBB);
Jakob Stoklund Olesen2fe71c52011-12-07 05:17:30 +0000293 void AdjustBBOffsetsAfter(MachineBasicBlock *BB);
Evan Chenged884f32007-04-03 23:39:48 +0000294 bool DecrementOldEntry(unsigned CPI, MachineInstr* CPEMI);
Dale Johannesen88e37ae2007-02-23 05:02:36 +0000295 int LookForExistingCPEntry(CPUser& U, unsigned UserOffset);
Bob Wilsonb9239532009-10-15 20:49:47 +0000296 bool LookForWater(CPUser&U, unsigned UserOffset, water_iterator &WaterIter);
Dale Johannesenb71aa2b2007-02-28 23:20:38 +0000297 void CreateNewWater(unsigned CPUserIndex, unsigned UserOffset,
Bob Wilson757652c2009-10-12 21:39:43 +0000298 MachineBasicBlock *&NewMBB);
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000299 bool HandleConstantPoolUser(unsigned CPUserIndex);
Evan Chenged884f32007-04-03 23:39:48 +0000300 void RemoveDeadCPEMI(MachineInstr *CPEMI);
301 bool RemoveUnusedCPEntries();
Bob Wilson84945262009-05-12 17:09:30 +0000302 bool CPEIsInRange(MachineInstr *MI, unsigned UserOffset,
Evan Cheng5d8f1ca2009-07-21 23:56:01 +0000303 MachineInstr *CPEMI, unsigned Disp, bool NegOk,
304 bool DoDump = false);
Dale Johannesen99c49a42007-02-25 00:47:03 +0000305 bool WaterIsInRange(unsigned UserOffset, MachineBasicBlock *Water,
Jakob Stoklund Olesen2e290242011-12-13 00:44:30 +0000306 CPUser &U, unsigned &Growth);
Evan Chengc0dbec72007-01-31 19:57:44 +0000307 bool BBIsInRange(MachineInstr *MI, MachineBasicBlock *BB, unsigned Disp);
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000308 bool FixUpImmediateBr(ImmBranch &Br);
309 bool FixUpConditionalBr(ImmBranch &Br);
310 bool FixUpUnconditionalBr(ImmBranch &Br);
Evan Chengd1b2c1e2007-01-30 01:18:38 +0000311 bool UndoLRSpillRestore();
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000312 bool OptimizeThumb2Instructions();
313 bool OptimizeThumb2Branches();
314 bool ReorderThumb2JumpTables();
315 bool OptimizeThumb2JumpTables();
Jim Grosbach1fc7d712009-11-11 02:47:19 +0000316 MachineBasicBlock *AdjustJTTargetBlockForward(MachineBasicBlock *BB,
317 MachineBasicBlock *JTBB);
Evan Chenga8e29892007-01-19 07:51:42 +0000318
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000319 void ComputeBlockSize(MachineBasicBlock *MBB);
Evan Chenga8e29892007-01-19 07:51:42 +0000320 unsigned GetOffsetOf(MachineInstr *MI) const;
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000321 unsigned GetUserOffset(CPUser&) const;
Dale Johannesen8593e412007-04-29 19:19:30 +0000322 void dumpBBs();
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000323 void verify();
Jakob Stoklund Olesen493ad6b2011-12-09 19:44:39 +0000324
325 bool OffsetIsInRange(unsigned UserOffset, unsigned TrialOffset,
326 unsigned Disp, bool NegativeOK, bool IsSoImm = false);
327 bool OffsetIsInRange(unsigned UserOffset, unsigned TrialOffset,
328 const CPUser &U) {
329 return OffsetIsInRange(UserOffset, TrialOffset,
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000330 U.getMaxDisp(), U.NegOk, U.IsSoImm);
Jakob Stoklund Olesen493ad6b2011-12-09 19:44:39 +0000331 }
Evan Chenga8e29892007-01-19 07:51:42 +0000332 };
Devang Patel19974732007-05-03 01:11:54 +0000333 char ARMConstantIslands::ID = 0;
Evan Chenga8e29892007-01-19 07:51:42 +0000334}
335
Dale Johannesen8593e412007-04-29 19:19:30 +0000336/// verify - check BBOffsets, BBSizes, alignment of islands
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000337void ARMConstantIslands::verify() {
Evan Chengd3d9d662009-07-23 18:27:47 +0000338#ifndef NDEBUG
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000339 for (MachineFunction::iterator MBBI = MF->begin(), E = MF->end();
Evan Chengd3d9d662009-07-23 18:27:47 +0000340 MBBI != E; ++MBBI) {
341 MachineBasicBlock *MBB = MBBI;
Jakob Stoklund Olesen99486be2011-12-08 01:10:05 +0000342 unsigned Align = MBB->getAlignment();
343 unsigned MBBId = MBB->getNumber();
344 assert(BBInfo[MBBId].Offset % (1u << Align) == 0);
345 assert(!MBBId || BBInfo[MBBId - 1].postOffset() <= BBInfo[MBBId].Offset);
Dale Johannesen8593e412007-04-29 19:19:30 +0000346 }
Jim Grosbach4d8e90a2009-11-19 23:10:28 +0000347 for (unsigned i = 0, e = CPUsers.size(); i != e; ++i) {
348 CPUser &U = CPUsers[i];
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000349 unsigned UserOffset = GetUserOffset(U);
Jim Grosbacha9562562009-11-20 19:37:38 +0000350 unsigned CPEOffset = GetOffsetOf(U.CPEMI);
351 unsigned Disp = UserOffset < CPEOffset ? CPEOffset - UserOffset :
352 UserOffset - CPEOffset;
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000353 assert(Disp <= U.getMaxDisp() || "Constant pool entry out of range!");
Jim Grosbach4d8e90a2009-11-19 23:10:28 +0000354 }
Jim Grosbacha9562562009-11-20 19:37:38 +0000355#endif
Dale Johannesen8593e412007-04-29 19:19:30 +0000356}
357
358/// print block size and offset information - debugging
359void ARMConstantIslands::dumpBBs() {
Jakob Stoklund Olesen2d5023b2011-12-10 02:55:06 +0000360 DEBUG({
361 for (unsigned J = 0, E = BBInfo.size(); J !=E; ++J) {
362 const BasicBlockInfo &BBI = BBInfo[J];
363 dbgs() << format("%08x BB#%u\t", BBI.Offset, J)
364 << " kb=" << unsigned(BBI.KnownBits)
365 << " ua=" << unsigned(BBI.Unalign)
366 << " pa=" << unsigned(BBI.PostAlign)
367 << format(" size=%#x\n", BBInfo[J].Size);
368 }
369 });
Dale Johannesen8593e412007-04-29 19:19:30 +0000370}
371
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000372/// createARMConstantIslandPass - returns an instance of the constpool
373/// island pass.
Evan Chenga8e29892007-01-19 07:51:42 +0000374FunctionPass *llvm::createARMConstantIslandPass() {
375 return new ARMConstantIslands();
376}
377
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000378bool ARMConstantIslands::runOnMachineFunction(MachineFunction &mf) {
379 MF = &mf;
380 MCP = mf.getConstantPool();
Bob Wilson84945262009-05-12 17:09:30 +0000381
Jakob Stoklund Olesen2d5023b2011-12-10 02:55:06 +0000382 DEBUG(dbgs() << "***** ARMConstantIslands: "
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000383 << MCP->getConstants().size() << " CP entries, aligned to "
384 << MCP->getConstantPoolAlignment() << " bytes *****\n");
Jakob Stoklund Olesen2d5023b2011-12-10 02:55:06 +0000385
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000386 TII = (const ARMInstrInfo*)MF->getTarget().getInstrInfo();
387 AFI = MF->getInfo<ARMFunctionInfo>();
388 STI = &MF->getTarget().getSubtarget<ARMSubtarget>();
Evan Cheng25f7cfc2009-08-01 06:13:52 +0000389
Dale Johannesenb71aa2b2007-02-28 23:20:38 +0000390 isThumb = AFI->isThumbFunction();
Evan Chengd3d9d662009-07-23 18:27:47 +0000391 isThumb1 = AFI->isThumb1OnlyFunction();
David Goodwin5e47a9a2009-06-30 18:04:13 +0000392 isThumb2 = AFI->isThumb2Function();
Evan Chengd1b2c1e2007-01-30 01:18:38 +0000393
394 HasFarJump = false;
395
Evan Chenga8e29892007-01-19 07:51:42 +0000396 // Renumber all of the machine basic blocks in the function, guaranteeing that
397 // the numbers agree with the position of the block in the function.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000398 MF->RenumberBlocks();
Evan Chenga8e29892007-01-19 07:51:42 +0000399
Jim Grosbach80697d12009-11-12 17:25:07 +0000400 // Try to reorder and otherwise adjust the block layout to make good use
401 // of the TB[BH] instructions.
402 bool MadeChange = false;
403 if (isThumb2 && AdjustJumpTableBlocks) {
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000404 JumpTableFunctionScan();
405 MadeChange |= ReorderThumb2JumpTables();
Jim Grosbach80697d12009-11-12 17:25:07 +0000406 // Data is out of date, so clear it. It'll be re-computed later.
Jim Grosbach80697d12009-11-12 17:25:07 +0000407 T2JumpTables.clear();
408 // Blocks may have shifted around. Keep the numbering up to date.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000409 MF->RenumberBlocks();
Jim Grosbach80697d12009-11-12 17:25:07 +0000410 }
411
Evan Chengd26b14c2009-07-31 18:28:05 +0000412 // Thumb1 functions containing constant pools get 4-byte alignment.
Evan Chengd3d9d662009-07-23 18:27:47 +0000413 // This is so we can keep exact track of where the alignment padding goes.
414
Chris Lattner7d7dab02010-01-27 23:37:36 +0000415 // ARM and Thumb2 functions need to be 4-byte aligned.
416 if (!isThumb1)
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000417 MF->EnsureAlignment(2); // 2 = log2(4)
Dale Johannesen56c42ef2007-04-23 20:09:04 +0000418
Evan Chenga8e29892007-01-19 07:51:42 +0000419 // Perform the initial placement of the constant pool entries. To start with,
420 // we put them all at the end of the function.
Evan Chenge03cff62007-02-09 23:59:14 +0000421 std::vector<MachineInstr*> CPEMIs;
Jakob Stoklund Olesencca33a32011-12-12 18:45:45 +0000422 if (!MCP->isEmpty())
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000423 DoInitialPlacement(CPEMIs);
Bob Wilson84945262009-05-12 17:09:30 +0000424
Evan Chenga8e29892007-01-19 07:51:42 +0000425 /// The next UID to take is the first unused one.
Evan Cheng5de5d4b2011-01-17 08:03:18 +0000426 AFI->initPICLabelUId(CPEMIs.size());
Bob Wilson84945262009-05-12 17:09:30 +0000427
Evan Chenga8e29892007-01-19 07:51:42 +0000428 // Do the initial scan of the function, building up information about the
429 // sizes of each block, the location of all the water, and finding all of the
430 // constant pool users.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000431 InitialFunctionScan(CPEMIs);
Evan Chenga8e29892007-01-19 07:51:42 +0000432 CPEMIs.clear();
Dale Johannesen8086d582010-07-23 22:50:23 +0000433 DEBUG(dumpBBs());
434
Bob Wilson84945262009-05-12 17:09:30 +0000435
Evan Chenged884f32007-04-03 23:39:48 +0000436 /// Remove dead constant pool entries.
Bill Wendlingcd080242010-12-18 01:53:06 +0000437 MadeChange |= RemoveUnusedCPEntries();
Evan Chenged884f32007-04-03 23:39:48 +0000438
Evan Chengd1b2c1e2007-01-30 01:18:38 +0000439 // Iteratively place constant pool entries and fix up branches until there
440 // is no change.
Evan Chengb6879b22009-08-07 07:35:21 +0000441 unsigned NoCPIters = 0, NoBRIters = 0;
Evan Chengd1b2c1e2007-01-30 01:18:38 +0000442 while (true) {
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +0000443 DEBUG(dbgs() << "Beginning CP iteration #" << NoCPIters << '\n');
Evan Chengb6879b22009-08-07 07:35:21 +0000444 bool CPChange = false;
Evan Chenga8e29892007-01-19 07:51:42 +0000445 for (unsigned i = 0, e = CPUsers.size(); i != e; ++i)
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000446 CPChange |= HandleConstantPoolUser(i);
Evan Chengb6879b22009-08-07 07:35:21 +0000447 if (CPChange && ++NoCPIters > 30)
Jakob Stoklund Olesen169db152012-01-09 22:16:24 +0000448 report_fatal_error("Constant Island pass failed to converge!");
Evan Cheng82020102007-07-10 22:00:16 +0000449 DEBUG(dumpBBs());
Jim Grosbach26b8ef52010-07-07 21:06:51 +0000450
Bob Wilsonb9239532009-10-15 20:49:47 +0000451 // Clear NewWaterList now. If we split a block for branches, it should
452 // appear as "new water" for the next iteration of constant pool placement.
453 NewWaterList.clear();
Evan Chengb6879b22009-08-07 07:35:21 +0000454
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +0000455 DEBUG(dbgs() << "Beginning BR iteration #" << NoBRIters << '\n');
Evan Chengb6879b22009-08-07 07:35:21 +0000456 bool BRChange = false;
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000457 for (unsigned i = 0, e = ImmBranches.size(); i != e; ++i)
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000458 BRChange |= FixUpImmediateBr(ImmBranches[i]);
Evan Chengb6879b22009-08-07 07:35:21 +0000459 if (BRChange && ++NoBRIters > 30)
Jakob Stoklund Olesen169db152012-01-09 22:16:24 +0000460 report_fatal_error("Branch Fix Up pass failed to converge!");
Evan Cheng82020102007-07-10 22:00:16 +0000461 DEBUG(dumpBBs());
Evan Chengb6879b22009-08-07 07:35:21 +0000462
463 if (!CPChange && !BRChange)
Evan Chengd1b2c1e2007-01-30 01:18:38 +0000464 break;
465 MadeChange = true;
466 }
Evan Chenged884f32007-04-03 23:39:48 +0000467
Evan Chenga1efbbd2009-08-14 00:32:16 +0000468 // Shrink 32-bit Thumb2 branch, load, and store instructions.
Evan Chenge44be632010-08-09 18:35:19 +0000469 if (isThumb2 && !STI->prefers32BitThumb())
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000470 MadeChange |= OptimizeThumb2Instructions();
Evan Cheng25f7cfc2009-08-01 06:13:52 +0000471
Dale Johannesen8593e412007-04-29 19:19:30 +0000472 // After a while, this might be made debug-only, but it is not expensive.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000473 verify();
Dale Johannesen8593e412007-04-29 19:19:30 +0000474
Jim Grosbach26b8ef52010-07-07 21:06:51 +0000475 // If LR has been forced spilled and no far jump (i.e. BL) has been issued,
476 // undo the spill / restore of LR if possible.
Evan Cheng5657c012009-07-29 02:18:14 +0000477 if (isThumb && !HasFarJump && AFI->isLRSpilledForFarJump())
Evan Chengd1b2c1e2007-01-30 01:18:38 +0000478 MadeChange |= UndoLRSpillRestore();
479
Anton Korobeynikov98b928e2011-01-30 22:07:39 +0000480 // Save the mapping between original and cloned constpool entries.
481 for (unsigned i = 0, e = CPEntries.size(); i != e; ++i) {
482 for (unsigned j = 0, je = CPEntries[i].size(); j != je; ++j) {
483 const CPEntry & CPE = CPEntries[i][j];
484 AFI->recordCPEClone(i, CPE.CPI);
485 }
486 }
487
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +0000488 DEBUG(dbgs() << '\n'; dumpBBs());
Evan Chengb1c857b2010-07-22 02:09:47 +0000489
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +0000490 BBInfo.clear();
Evan Chenga8e29892007-01-19 07:51:42 +0000491 WaterList.clear();
492 CPUsers.clear();
Evan Chengc99ef082007-02-09 20:54:44 +0000493 CPEntries.clear();
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000494 ImmBranches.clear();
Evan Chengc99ef082007-02-09 20:54:44 +0000495 PushPopMIs.clear();
Evan Cheng5657c012009-07-29 02:18:14 +0000496 T2JumpTables.clear();
Evan Chengd1b2c1e2007-01-30 01:18:38 +0000497
498 return MadeChange;
Evan Chenga8e29892007-01-19 07:51:42 +0000499}
500
501/// DoInitialPlacement - Perform the initial placement of the constant pool
502/// entries. To start with, we put them all at the end of the function.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000503void
504ARMConstantIslands::DoInitialPlacement(std::vector<MachineInstr*> &CPEMIs) {
Evan Chenga8e29892007-01-19 07:51:42 +0000505 // Create the basic block to hold the CPE's.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000506 MachineBasicBlock *BB = MF->CreateMachineBasicBlock();
507 MF->push_back(BB);
Bob Wilson84945262009-05-12 17:09:30 +0000508
Jakob Stoklund Olesenb813f922011-12-12 16:49:37 +0000509 // MachineConstantPool measures alignment in bytes. We measure in log2(bytes).
Jakob Stoklund Olesen5e46dcb2011-12-14 18:49:13 +0000510 unsigned MaxAlign = Log2_32(MCP->getConstantPoolAlignment());
Jakob Stoklund Olesenb813f922011-12-12 16:49:37 +0000511
512 // Mark the basic block as required by the const-pool.
513 // If AlignConstantIslands isn't set, use 4-byte alignment for everything.
514 BB->setAlignment(AlignConstantIslands ? MaxAlign : 2);
515
Jakob Stoklund Olesencca33a32011-12-12 18:45:45 +0000516 // The function needs to be as aligned as the basic blocks. The linker may
517 // move functions around based on their alignment.
518 MF->EnsureAlignment(BB->getAlignment());
519
Jakob Stoklund Olesenb813f922011-12-12 16:49:37 +0000520 // Order the entries in BB by descending alignment. That ensures correct
521 // alignment of all entries as long as BB is sufficiently aligned. Keep
522 // track of the insertion point for each alignment. We are going to bucket
523 // sort the entries as they are created.
524 SmallVector<MachineBasicBlock::iterator, 8> InsPoint(MaxAlign + 1, BB->end());
Jakob Stoklund Olesen3e572ac2011-12-06 01:43:02 +0000525
Evan Chenga8e29892007-01-19 07:51:42 +0000526 // Add all of the constants from the constant pool to the end block, use an
527 // identity mapping of CPI's to CPE's.
Jakob Stoklund Olesen5e46dcb2011-12-14 18:49:13 +0000528 const std::vector<MachineConstantPoolEntry> &CPs = MCP->getConstants();
Bob Wilson84945262009-05-12 17:09:30 +0000529
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000530 const TargetData &TD = *MF->getTarget().getTargetData();
Evan Chenga8e29892007-01-19 07:51:42 +0000531 for (unsigned i = 0, e = CPs.size(); i != e; ++i) {
Duncan Sands777d2302009-05-09 07:06:46 +0000532 unsigned Size = TD.getTypeAllocSize(CPs[i].getType());
Jakob Stoklund Olesenb813f922011-12-12 16:49:37 +0000533 assert(Size >= 4 && "Too small constant pool entry");
534 unsigned Align = CPs[i].getAlignment();
535 assert(isPowerOf2_32(Align) && "Invalid alignment");
536 // Verify that all constant pool entries are a multiple of their alignment.
537 // If not, we would have to pad them out so that instructions stay aligned.
538 assert((Size % Align) == 0 && "CP Entry not multiple of 4 bytes!");
539
540 // Insert CONSTPOOL_ENTRY before entries with a smaller alignment.
541 unsigned LogAlign = Log2_32(Align);
542 MachineBasicBlock::iterator InsAt = InsPoint[LogAlign];
Evan Chenga8e29892007-01-19 07:51:42 +0000543 MachineInstr *CPEMI =
Jakob Stoklund Olesenb813f922011-12-12 16:49:37 +0000544 BuildMI(*BB, InsAt, DebugLoc(), TII->get(ARM::CONSTPOOL_ENTRY))
Chris Lattnerc7f3ace2010-04-02 20:16:16 +0000545 .addImm(i).addConstantPoolIndex(i).addImm(Size);
Evan Chenga8e29892007-01-19 07:51:42 +0000546 CPEMIs.push_back(CPEMI);
Evan Chengc99ef082007-02-09 20:54:44 +0000547
Jakob Stoklund Olesenb813f922011-12-12 16:49:37 +0000548 // Ensure that future entries with higher alignment get inserted before
549 // CPEMI. This is bucket sort with iterators.
Jakob Stoklund Olesenb076fb72011-12-16 23:00:05 +0000550 for (unsigned a = LogAlign + 1; a <= MaxAlign; ++a)
Jakob Stoklund Olesenb813f922011-12-12 16:49:37 +0000551 if (InsPoint[a] == InsAt)
552 InsPoint[a] = CPEMI;
553
Evan Chengc99ef082007-02-09 20:54:44 +0000554 // Add a new CPEntry, but no corresponding CPUser yet.
555 std::vector<CPEntry> CPEs;
556 CPEs.push_back(CPEntry(CPEMI, i));
557 CPEntries.push_back(CPEs);
Dan Gohmanfe601042010-06-22 15:08:57 +0000558 ++NumCPEs;
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000559 DEBUG(dbgs() << "Moved CPI#" << i << " to end of function, size = "
560 << Size << ", align = " << Align <<'\n');
Evan Chenga8e29892007-01-19 07:51:42 +0000561 }
Jakob Stoklund Olesenb813f922011-12-12 16:49:37 +0000562 DEBUG(BB->dump());
Evan Chenga8e29892007-01-19 07:51:42 +0000563}
564
Dale Johannesen88e37ae2007-02-23 05:02:36 +0000565/// BBHasFallthrough - Return true if the specified basic block can fallthrough
Evan Chenga8e29892007-01-19 07:51:42 +0000566/// into the block immediately after it.
567static bool BBHasFallthrough(MachineBasicBlock *MBB) {
568 // Get the next machine basic block in the function.
569 MachineFunction::iterator MBBI = MBB;
Jim Grosbach18f30e62010-06-02 21:53:11 +0000570 // Can't fall off end of function.
571 if (llvm::next(MBBI) == MBB->getParent()->end())
Evan Chenga8e29892007-01-19 07:51:42 +0000572 return false;
Bob Wilson84945262009-05-12 17:09:30 +0000573
Chris Lattner7896c9f2009-12-03 00:50:42 +0000574 MachineBasicBlock *NextBB = llvm::next(MBBI);
Evan Chenga8e29892007-01-19 07:51:42 +0000575 for (MachineBasicBlock::succ_iterator I = MBB->succ_begin(),
576 E = MBB->succ_end(); I != E; ++I)
577 if (*I == NextBB)
578 return true;
Bob Wilson84945262009-05-12 17:09:30 +0000579
Evan Chenga8e29892007-01-19 07:51:42 +0000580 return false;
581}
582
Evan Chengc99ef082007-02-09 20:54:44 +0000583/// findConstPoolEntry - Given the constpool index and CONSTPOOL_ENTRY MI,
584/// look up the corresponding CPEntry.
585ARMConstantIslands::CPEntry
586*ARMConstantIslands::findConstPoolEntry(unsigned CPI,
587 const MachineInstr *CPEMI) {
588 std::vector<CPEntry> &CPEs = CPEntries[CPI];
589 // Number of entries per constpool index should be small, just do a
590 // linear search.
591 for (unsigned i = 0, e = CPEs.size(); i != e; ++i) {
592 if (CPEs[i].CPEMI == CPEMI)
593 return &CPEs[i];
594 }
595 return NULL;
596}
597
Jakob Stoklund Olesencca33a32011-12-12 18:45:45 +0000598/// getCPELogAlign - Returns the required alignment of the constant pool entry
Jakob Stoklund Olesenbd1ec172011-12-12 19:25:51 +0000599/// represented by CPEMI. Alignment is measured in log2(bytes) units.
Jakob Stoklund Olesencca33a32011-12-12 18:45:45 +0000600unsigned ARMConstantIslands::getCPELogAlign(const MachineInstr *CPEMI) {
601 assert(CPEMI && CPEMI->getOpcode() == ARM::CONSTPOOL_ENTRY);
602
603 // Everything is 4-byte aligned unless AlignConstantIslands is set.
604 if (!AlignConstantIslands)
605 return 2;
606
607 unsigned CPI = CPEMI->getOperand(1).getIndex();
608 assert(CPI < MCP->getConstants().size() && "Invalid constant pool index.");
609 unsigned Align = MCP->getConstants()[CPI].getAlignment();
610 assert(isPowerOf2_32(Align) && "Invalid CPE alignment");
611 return Log2_32(Align);
612}
613
Jim Grosbach80697d12009-11-12 17:25:07 +0000614/// JumpTableFunctionScan - Do a scan of the function, building up
615/// information about the sizes of each block and the locations of all
616/// the jump tables.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000617void ARMConstantIslands::JumpTableFunctionScan() {
618 for (MachineFunction::iterator MBBI = MF->begin(), E = MF->end();
Jim Grosbach80697d12009-11-12 17:25:07 +0000619 MBBI != E; ++MBBI) {
620 MachineBasicBlock &MBB = *MBBI;
621
Jim Grosbach80697d12009-11-12 17:25:07 +0000622 for (MachineBasicBlock::iterator I = MBB.begin(), E = MBB.end();
Jim Grosbach08cbda52009-11-16 18:58:52 +0000623 I != E; ++I)
Evan Cheng5a96b3d2011-12-07 07:15:52 +0000624 if (I->isBranch() && I->getOpcode() == ARM::t2BR_JT)
Jim Grosbach08cbda52009-11-16 18:58:52 +0000625 T2JumpTables.push_back(I);
Jim Grosbach80697d12009-11-12 17:25:07 +0000626 }
627}
628
Evan Chenga8e29892007-01-19 07:51:42 +0000629/// InitialFunctionScan - Do the initial scan of the function, building up
630/// information about the sizes of each block, the location of all the water,
631/// and finding all of the constant pool users.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000632void ARMConstantIslands::
633InitialFunctionScan(const std::vector<MachineInstr*> &CPEMIs) {
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000634 BBInfo.clear();
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000635 BBInfo.resize(MF->getNumBlockIDs());
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000636
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000637 // First thing, compute the size of all basic blocks, and see if the function
638 // has any inline assembly in it. If so, we have to be conservative about
639 // alignment assumptions, as we don't know for sure the size of any
640 // instructions in the inline assembly.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000641 for (MachineFunction::iterator I = MF->begin(), E = MF->end(); I != E; ++I)
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000642 ComputeBlockSize(I);
643
644 // The known bits of the entry block offset are determined by the function
645 // alignment.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000646 BBInfo.front().KnownBits = MF->getAlignment();
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000647
648 // Compute block offsets and known bits.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000649 AdjustBBOffsetsAfter(MF->begin());
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000650
Bill Wendling9a4d2e42010-12-21 01:54:40 +0000651 // Now go back through the instructions and build up our data structures.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000652 for (MachineFunction::iterator MBBI = MF->begin(), E = MF->end();
Evan Chenga8e29892007-01-19 07:51:42 +0000653 MBBI != E; ++MBBI) {
654 MachineBasicBlock &MBB = *MBBI;
Bob Wilson84945262009-05-12 17:09:30 +0000655
Evan Chenga8e29892007-01-19 07:51:42 +0000656 // If this block doesn't fall through into the next MBB, then this is
657 // 'water' that a constant pool island could be placed.
658 if (!BBHasFallthrough(&MBB))
659 WaterList.push_back(&MBB);
Bob Wilson84945262009-05-12 17:09:30 +0000660
Evan Chenga8e29892007-01-19 07:51:42 +0000661 for (MachineBasicBlock::iterator I = MBB.begin(), E = MBB.end();
662 I != E; ++I) {
Jim Grosbach9cfcfeb2010-06-21 17:49:23 +0000663 if (I->isDebugValue())
664 continue;
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000665
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000666 int Opc = I->getOpcode();
Evan Cheng5a96b3d2011-12-07 07:15:52 +0000667 if (I->isBranch()) {
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000668 bool isCond = false;
669 unsigned Bits = 0;
670 unsigned Scale = 1;
671 int UOpc = Opc;
672 switch (Opc) {
Evan Cheng5657c012009-07-29 02:18:14 +0000673 default:
674 continue; // Ignore other JT branches
Evan Cheng5657c012009-07-29 02:18:14 +0000675 case ARM::t2BR_JT:
676 T2JumpTables.push_back(I);
677 continue; // Does not get an entry in ImmBranches
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000678 case ARM::Bcc:
679 isCond = true;
680 UOpc = ARM::B;
681 // Fallthrough
682 case ARM::B:
683 Bits = 24;
684 Scale = 4;
685 break;
686 case ARM::tBcc:
687 isCond = true;
688 UOpc = ARM::tB;
689 Bits = 8;
690 Scale = 2;
691 break;
692 case ARM::tB:
693 Bits = 11;
694 Scale = 2;
695 break;
David Goodwin5e47a9a2009-06-30 18:04:13 +0000696 case ARM::t2Bcc:
697 isCond = true;
698 UOpc = ARM::t2B;
699 Bits = 20;
700 Scale = 2;
701 break;
702 case ARM::t2B:
703 Bits = 24;
704 Scale = 2;
705 break;
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000706 }
Evan Chengb43216e2007-02-01 10:16:15 +0000707
708 // Record this immediate branch.
Evan Chengbd5d3db2007-02-03 02:08:34 +0000709 unsigned MaxOffs = ((1 << (Bits-1))-1) * Scale;
Evan Chengb43216e2007-02-01 10:16:15 +0000710 ImmBranches.push_back(ImmBranch(I, MaxOffs, isCond, UOpc));
Evan Chengaf5cbcb2007-01-25 03:12:46 +0000711 }
712
Evan Chengd1b2c1e2007-01-30 01:18:38 +0000713 if (Opc == ARM::tPUSH || Opc == ARM::tPOP_RET)
714 PushPopMIs.push_back(I);
715
Evan Chengd3d9d662009-07-23 18:27:47 +0000716 if (Opc == ARM::CONSTPOOL_ENTRY)
717 continue;
718
Evan Chenga8e29892007-01-19 07:51:42 +0000719 // Scan the instructions for constant pool operands.
720 for (unsigned op = 0, e = I->getNumOperands(); op != e; ++op)
Dan Gohmand735b802008-10-03 15:45:36 +0000721 if (I->getOperand(op).isCPI()) {
Evan Chenga8e29892007-01-19 07:51:42 +0000722 // We found one. The addressing mode tells us the max displacement
723 // from the PC that this instruction permits.
Bob Wilson84945262009-05-12 17:09:30 +0000724
Evan Chenga8e29892007-01-19 07:51:42 +0000725 // Basic size info comes from the TSFlags field.
Evan Chengb43216e2007-02-01 10:16:15 +0000726 unsigned Bits = 0;
727 unsigned Scale = 1;
Evan Cheng5d8f1ca2009-07-21 23:56:01 +0000728 bool NegOk = false;
Evan Chengd3d9d662009-07-23 18:27:47 +0000729 bool IsSoImm = false;
730
731 switch (Opc) {
Bob Wilson84945262009-05-12 17:09:30 +0000732 default:
Torok Edwinc23197a2009-07-14 16:55:14 +0000733 llvm_unreachable("Unknown addressing mode for CP reference!");
Evan Chengd3d9d662009-07-23 18:27:47 +0000734 break;
735
736 // Taking the address of a CP entry.
737 case ARM::LEApcrel:
738 // This takes a SoImm, which is 8 bit immediate rotated. We'll
739 // pretend the maximum offset is 255 * 4. Since each instruction
Jim Grosbachdec6de92009-11-19 18:23:19 +0000740 // 4 byte wide, this is always correct. We'll check for other
Evan Chengd3d9d662009-07-23 18:27:47 +0000741 // displacements that fits in a SoImm as well.
Evan Chengb43216e2007-02-01 10:16:15 +0000742 Bits = 8;
Evan Chengd3d9d662009-07-23 18:27:47 +0000743 Scale = 4;
744 NegOk = true;
745 IsSoImm = true;
746 break;
Owen Anderson6b8719f2010-12-13 22:51:08 +0000747 case ARM::t2LEApcrel:
Evan Chengd3d9d662009-07-23 18:27:47 +0000748 Bits = 12;
Evan Cheng5d8f1ca2009-07-21 23:56:01 +0000749 NegOk = true;
Evan Chenga8e29892007-01-19 07:51:42 +0000750 break;
Evan Chengd3d9d662009-07-23 18:27:47 +0000751 case ARM::tLEApcrel:
752 Bits = 8;
753 Scale = 4;
754 break;
755
Jim Grosbach3e556122010-10-26 22:37:02 +0000756 case ARM::LDRi12:
Evan Chengd3d9d662009-07-23 18:27:47 +0000757 case ARM::LDRcp:
Owen Anderson971b83b2011-02-08 22:39:40 +0000758 case ARM::t2LDRpci:
Evan Cheng556f33c2007-02-01 20:44:52 +0000759 Bits = 12; // +-offset_12
Evan Cheng5d8f1ca2009-07-21 23:56:01 +0000760 NegOk = true;
Evan Chenga8e29892007-01-19 07:51:42 +0000761 break;
Evan Chengd3d9d662009-07-23 18:27:47 +0000762
763 case ARM::tLDRpci:
Evan Chengb43216e2007-02-01 10:16:15 +0000764 Bits = 8;
765 Scale = 4; // +(offset_8*4)
Evan Cheng012f2d92007-01-24 08:53:17 +0000766 break;
Evan Chengd3d9d662009-07-23 18:27:47 +0000767
Jim Grosbache5165492009-11-09 00:11:35 +0000768 case ARM::VLDRD:
769 case ARM::VLDRS:
Evan Chengd3d9d662009-07-23 18:27:47 +0000770 Bits = 8;
771 Scale = 4; // +-(offset_8*4)
772 NegOk = true;
Evan Cheng055b0312009-06-29 07:51:04 +0000773 break;
Evan Chenga8e29892007-01-19 07:51:42 +0000774 }
Evan Chengb43216e2007-02-01 10:16:15 +0000775
Evan Chenga8e29892007-01-19 07:51:42 +0000776 // Remember that this is a user of a CP entry.
Chris Lattner8aa797a2007-12-30 23:10:15 +0000777 unsigned CPI = I->getOperand(op).getIndex();
Evan Chengc99ef082007-02-09 20:54:44 +0000778 MachineInstr *CPEMI = CPEMIs[CPI];
Evan Cheng31b99dd2009-08-14 18:31:44 +0000779 unsigned MaxOffs = ((1 << Bits)-1) * Scale;
Evan Chengd3d9d662009-07-23 18:27:47 +0000780 CPUsers.push_back(CPUser(I, CPEMI, MaxOffs, NegOk, IsSoImm));
Evan Chengc99ef082007-02-09 20:54:44 +0000781
782 // Increment corresponding CPEntry reference count.
783 CPEntry *CPE = findConstPoolEntry(CPI, CPEMI);
784 assert(CPE && "Cannot find a corresponding CPEntry!");
785 CPE->RefCount++;
Bob Wilson84945262009-05-12 17:09:30 +0000786
Evan Chenga8e29892007-01-19 07:51:42 +0000787 // Instructions can only use one CP entry, don't bother scanning the
788 // rest of the operands.
789 break;
790 }
791 }
Evan Chenga8e29892007-01-19 07:51:42 +0000792 }
793}
794
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000795/// ComputeBlockSize - Compute the size and some alignment information for MBB.
796/// This function updates BBInfo directly.
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000797void ARMConstantIslands::ComputeBlockSize(MachineBasicBlock *MBB) {
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000798 BasicBlockInfo &BBI = BBInfo[MBB->getNumber()];
799 BBI.Size = 0;
800 BBI.Unalign = 0;
801 BBI.PostAlign = 0;
802
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000803 for (MachineBasicBlock::iterator I = MBB->begin(), E = MBB->end(); I != E;
804 ++I) {
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000805 BBI.Size += TII->GetInstSizeInBytes(I);
806 // For inline asm, GetInstSizeInBytes returns a conservative estimate.
807 // The actual size may be smaller, but still a multiple of the instr size.
Jakob Stoklund Olesene6f9e9d2011-12-08 01:22:39 +0000808 if (I->isInlineAsm())
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000809 BBI.Unalign = isThumb ? 1 : 2;
810 }
811
812 // tBR_JTr contains a .align 2 directive.
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000813 if (!MBB->empty() && MBB->back().getOpcode() == ARM::tBR_JTr) {
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000814 BBI.PostAlign = 2;
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000815 MBB->getParent()->EnsureAlignment(2);
816 }
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000817}
818
Evan Chenga8e29892007-01-19 07:51:42 +0000819/// GetOffsetOf - Return the current offset of the specified machine instruction
820/// from the start of the function. This offset changes as stuff is moved
821/// around inside the function.
822unsigned ARMConstantIslands::GetOffsetOf(MachineInstr *MI) const {
823 MachineBasicBlock *MBB = MI->getParent();
Bob Wilson84945262009-05-12 17:09:30 +0000824
Evan Chenga8e29892007-01-19 07:51:42 +0000825 // The offset is composed of two things: the sum of the sizes of all MBB's
826 // before this instruction's block, and the offset from the start of the block
827 // it is in.
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +0000828 unsigned Offset = BBInfo[MBB->getNumber()].Offset;
Evan Chenga8e29892007-01-19 07:51:42 +0000829
830 // Sum instructions before MI in MBB.
831 for (MachineBasicBlock::iterator I = MBB->begin(); ; ++I) {
832 assert(I != MBB->end() && "Didn't find MI in its own basic block?");
833 if (&*I == MI) return Offset;
Nicolas Geoffray52e724a2008-04-16 20:10:13 +0000834 Offset += TII->GetInstSizeInBytes(I);
Evan Chenga8e29892007-01-19 07:51:42 +0000835 }
836}
837
838/// CompareMBBNumbers - Little predicate function to sort the WaterList by MBB
839/// ID.
840static bool CompareMBBNumbers(const MachineBasicBlock *LHS,
841 const MachineBasicBlock *RHS) {
842 return LHS->getNumber() < RHS->getNumber();
843}
844
845/// UpdateForInsertedWaterBlock - When a block is newly inserted into the
846/// machine function, it upsets all of the block numbers. Renumber the blocks
847/// and update the arrays that parallel this numbering.
848void ARMConstantIslands::UpdateForInsertedWaterBlock(MachineBasicBlock *NewBB) {
Duncan Sandsab4c3662011-02-15 09:23:02 +0000849 // Renumber the MBB's to keep them consecutive.
Evan Chenga8e29892007-01-19 07:51:42 +0000850 NewBB->getParent()->RenumberBlocks(NewBB);
Bob Wilson84945262009-05-12 17:09:30 +0000851
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +0000852 // Insert an entry into BBInfo to align it properly with the (newly
Evan Chenga8e29892007-01-19 07:51:42 +0000853 // renumbered) block numbers.
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +0000854 BBInfo.insert(BBInfo.begin() + NewBB->getNumber(), BasicBlockInfo());
Bob Wilson84945262009-05-12 17:09:30 +0000855
856 // Next, update WaterList. Specifically, we need to add NewMBB as having
Evan Chenga8e29892007-01-19 07:51:42 +0000857 // available water after it.
Bob Wilson034de5f2009-10-12 18:52:13 +0000858 water_iterator IP =
Evan Chenga8e29892007-01-19 07:51:42 +0000859 std::lower_bound(WaterList.begin(), WaterList.end(), NewBB,
860 CompareMBBNumbers);
861 WaterList.insert(IP, NewBB);
862}
863
864
865/// Split the basic block containing MI into two blocks, which are joined by
Bob Wilsonb9239532009-10-15 20:49:47 +0000866/// an unconditional branch. Update data structures and renumber blocks to
Evan Cheng0c615842007-01-31 02:22:22 +0000867/// account for this change and returns the newly created block.
868MachineBasicBlock *ARMConstantIslands::SplitBlockBeforeInstr(MachineInstr *MI) {
Evan Chenga8e29892007-01-19 07:51:42 +0000869 MachineBasicBlock *OrigBB = MI->getParent();
870
871 // Create a new MBB for the code after the OrigBB.
Bob Wilson84945262009-05-12 17:09:30 +0000872 MachineBasicBlock *NewBB =
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000873 MF->CreateMachineBasicBlock(OrigBB->getBasicBlock());
Evan Chenga8e29892007-01-19 07:51:42 +0000874 MachineFunction::iterator MBBI = OrigBB; ++MBBI;
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000875 MF->insert(MBBI, NewBB);
Bob Wilson84945262009-05-12 17:09:30 +0000876
Evan Chenga8e29892007-01-19 07:51:42 +0000877 // Splice the instructions starting with MI over to NewBB.
878 NewBB->splice(NewBB->end(), OrigBB, MI, OrigBB->end());
Bob Wilson84945262009-05-12 17:09:30 +0000879
Evan Chenga8e29892007-01-19 07:51:42 +0000880 // Add an unconditional branch from OrigBB to NewBB.
Evan Chenga9b8b8d2007-01-31 18:29:27 +0000881 // Note the new unconditional branch is not being recorded.
Dale Johannesenb6728402009-02-13 02:25:56 +0000882 // There doesn't seem to be meaningful DebugInfo available; this doesn't
883 // correspond to anything in the source.
Evan Cheng58541fd2009-07-07 01:16:41 +0000884 unsigned Opc = isThumb ? (isThumb2 ? ARM::t2B : ARM::tB) : ARM::B;
Owen Anderson51f6a7a2011-09-09 21:48:23 +0000885 if (!isThumb)
886 BuildMI(OrigBB, DebugLoc(), TII->get(Opc)).addMBB(NewBB);
887 else
888 BuildMI(OrigBB, DebugLoc(), TII->get(Opc)).addMBB(NewBB)
889 .addImm(ARMCC::AL).addReg(0);
Dan Gohmanfe601042010-06-22 15:08:57 +0000890 ++NumSplit;
Bob Wilson84945262009-05-12 17:09:30 +0000891
Evan Chenga8e29892007-01-19 07:51:42 +0000892 // Update the CFG. All succs of OrigBB are now succs of NewBB.
Jakob Stoklund Olesene80fba02011-12-06 00:51:12 +0000893 NewBB->transferSuccessors(OrigBB);
Bob Wilson84945262009-05-12 17:09:30 +0000894
Evan Chenga8e29892007-01-19 07:51:42 +0000895 // OrigBB branches to NewBB.
896 OrigBB->addSuccessor(NewBB);
Bob Wilson84945262009-05-12 17:09:30 +0000897
Evan Chenga8e29892007-01-19 07:51:42 +0000898 // Update internal data structures to account for the newly inserted MBB.
Dale Johannesen88e37ae2007-02-23 05:02:36 +0000899 // This is almost the same as UpdateForInsertedWaterBlock, except that
900 // the Water goes after OrigBB, not NewBB.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +0000901 MF->RenumberBlocks(NewBB);
Bob Wilson84945262009-05-12 17:09:30 +0000902
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +0000903 // Insert an entry into BBInfo to align it properly with the (newly
Dale Johannesen88e37ae2007-02-23 05:02:36 +0000904 // renumbered) block numbers.
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +0000905 BBInfo.insert(BBInfo.begin() + NewBB->getNumber(), BasicBlockInfo());
Dale Johannesen99c49a42007-02-25 00:47:03 +0000906
Bob Wilson84945262009-05-12 17:09:30 +0000907 // Next, update WaterList. Specifically, we need to add OrigMBB as having
Dale Johannesen88e37ae2007-02-23 05:02:36 +0000908 // available water after it (but not if it's already there, which happens
909 // when splitting before a conditional branch that is followed by an
910 // unconditional branch - in that case we want to insert NewBB).
Bob Wilson034de5f2009-10-12 18:52:13 +0000911 water_iterator IP =
Dale Johannesen88e37ae2007-02-23 05:02:36 +0000912 std::lower_bound(WaterList.begin(), WaterList.end(), OrigBB,
913 CompareMBBNumbers);
914 MachineBasicBlock* WaterBB = *IP;
915 if (WaterBB == OrigBB)
Chris Lattner7896c9f2009-12-03 00:50:42 +0000916 WaterList.insert(llvm::next(IP), NewBB);
Dale Johannesen88e37ae2007-02-23 05:02:36 +0000917 else
918 WaterList.insert(IP, OrigBB);
Bob Wilsonb9239532009-10-15 20:49:47 +0000919 NewWaterList.insert(OrigBB);
Dale Johannesen88e37ae2007-02-23 05:02:36 +0000920
Dale Johannesen8086d582010-07-23 22:50:23 +0000921 // Figure out how large the OrigBB is. As the first half of the original
922 // block, it cannot contain a tablejump. The size includes
923 // the new jump we added. (It should be possible to do this without
924 // recounting everything, but it's very confusing, and this is rarely
925 // executed.)
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000926 ComputeBlockSize(OrigBB);
Dale Johannesen99c49a42007-02-25 00:47:03 +0000927
Dale Johannesen8086d582010-07-23 22:50:23 +0000928 // Figure out how large the NewMBB is. As the second half of the original
929 // block, it may contain a tablejump.
Jakob Stoklund Olesena26811e2011-12-07 04:17:35 +0000930 ComputeBlockSize(NewBB);
Dale Johannesen8086d582010-07-23 22:50:23 +0000931
Dale Johannesen99c49a42007-02-25 00:47:03 +0000932 // All BBOffsets following these blocks must be modified.
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +0000933 AdjustBBOffsetsAfter(OrigBB);
Evan Cheng0c615842007-01-31 02:22:22 +0000934
935 return NewBB;
Evan Chenga8e29892007-01-19 07:51:42 +0000936}
937
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000938/// GetUserOffset - Compute the offset of U.MI as seen by the hardware
939/// displacement computation. Update U.KnownAlignment to match its current
940/// basic block location.
941unsigned ARMConstantIslands::GetUserOffset(CPUser &U) const {
942 unsigned UserOffset = GetOffsetOf(U.MI);
943 const BasicBlockInfo &BBI = BBInfo[U.MI->getParent()->getNumber()];
944 unsigned KnownBits = BBI.internalKnownBits();
945
946 // The value read from PC is offset from the actual instruction address.
947 UserOffset += (isThumb ? 4 : 8);
948
949 // Because of inline assembly, we may not know the alignment (mod 4) of U.MI.
950 // Make sure U.getMaxDisp() returns a constrained range.
951 U.KnownAlignment = (KnownBits >= 2);
952
953 // On Thumb, offsets==2 mod 4 are rounded down by the hardware for
954 // purposes of the displacement computation; compensate for that here.
955 // For unknown alignments, getMaxDisp() constrains the range instead.
956 if (isThumb && U.KnownAlignment)
957 UserOffset &= ~3u;
958
959 return UserOffset;
960}
961
Dale Johannesen8593e412007-04-29 19:19:30 +0000962/// OffsetIsInRange - Checks whether UserOffset (the location of a constant pool
Bob Wilson84945262009-05-12 17:09:30 +0000963/// reference) is within MaxDisp of TrialOffset (a proposed location of a
Dale Johannesen8593e412007-04-29 19:19:30 +0000964/// constant pool entry).
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +0000965/// UserOffset is computed by GetUserOffset above to include PC adjustments. If
966/// the mod 4 alignment of UserOffset is not known, the uncertainty must be
967/// subtracted from MaxDisp instead. CPUser::getMaxDisp() does that.
Bob Wilson84945262009-05-12 17:09:30 +0000968bool ARMConstantIslands::OffsetIsInRange(unsigned UserOffset,
Evan Chengd3d9d662009-07-23 18:27:47 +0000969 unsigned TrialOffset, unsigned MaxDisp,
970 bool NegativeOK, bool IsSoImm) {
Dale Johannesen99c49a42007-02-25 00:47:03 +0000971 if (UserOffset <= TrialOffset) {
972 // User before the Trial.
Evan Chengd3d9d662009-07-23 18:27:47 +0000973 if (TrialOffset - UserOffset <= MaxDisp)
974 return true;
Evan Cheng40efc252009-07-24 19:31:03 +0000975 // FIXME: Make use full range of soimm values.
Dale Johannesen99c49a42007-02-25 00:47:03 +0000976 } else if (NegativeOK) {
Evan Chengd3d9d662009-07-23 18:27:47 +0000977 if (UserOffset - TrialOffset <= MaxDisp)
978 return true;
Evan Cheng40efc252009-07-24 19:31:03 +0000979 // FIXME: Make use full range of soimm values.
Dale Johannesen99c49a42007-02-25 00:47:03 +0000980 }
981 return false;
982}
983
Dale Johannesen88e37ae2007-02-23 05:02:36 +0000984/// WaterIsInRange - Returns true if a CPE placed after the specified
985/// Water (a basic block) will be in range for the specific MI.
Jakob Stoklund Olesen2e290242011-12-13 00:44:30 +0000986///
987/// Compute how much the function will grow by inserting a CPE after Water.
Dale Johannesen88e37ae2007-02-23 05:02:36 +0000988bool ARMConstantIslands::WaterIsInRange(unsigned UserOffset,
Jakob Stoklund Olesen2e290242011-12-13 00:44:30 +0000989 MachineBasicBlock* Water, CPUser &U,
990 unsigned &Growth) {
991 unsigned CPELogAlign = getCPELogAlign(U.CPEMI);
992 unsigned CPEOffset = BBInfo[Water->getNumber()].postOffset(CPELogAlign);
993 unsigned NextBlockOffset, NextBlockAlignment;
994 MachineFunction::const_iterator NextBlock = Water;
995 if (++NextBlock == MF->end()) {
996 NextBlockOffset = BBInfo[Water->getNumber()].postOffset();
997 NextBlockAlignment = 0;
998 } else {
999 NextBlockOffset = BBInfo[NextBlock->getNumber()].Offset;
1000 NextBlockAlignment = NextBlock->getAlignment();
1001 }
1002 unsigned Size = U.CPEMI->getOperand(2).getImm();
1003 unsigned CPEEnd = CPEOffset + Size;
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001004
Jakob Stoklund Olesen2e290242011-12-13 00:44:30 +00001005 // The CPE may be able to hide in the alignment padding before the next
1006 // block. It may also cause more padding to be required if it is more aligned
1007 // that the next block.
1008 if (CPEEnd > NextBlockOffset) {
1009 Growth = CPEEnd - NextBlockOffset;
1010 // Compute the padding that would go at the end of the CPE to align the next
1011 // block.
1012 Growth += OffsetToAlignment(CPEEnd, 1u << NextBlockAlignment);
1013
1014 // If the CPE is to be inserted before the instruction, that will raise
1015 // the offset of the instruction. Also account for unknown alignment padding
1016 // in blocks between CPE and the user.
1017 if (CPEOffset < UserOffset)
1018 UserOffset += Growth + UnknownPadding(MF->getAlignment(), CPELogAlign);
1019 } else
1020 // CPE fits in existing padding.
1021 Growth = 0;
Dale Johannesend959aa42007-04-02 20:31:06 +00001022
Jakob Stoklund Olesen493ad6b2011-12-09 19:44:39 +00001023 return OffsetIsInRange(UserOffset, CPEOffset, U);
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001024}
1025
1026/// CPEIsInRange - Returns true if the distance between specific MI and
Evan Chengc0dbec72007-01-31 19:57:44 +00001027/// specific ConstPool entry instruction can fit in MI's displacement field.
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001028bool ARMConstantIslands::CPEIsInRange(MachineInstr *MI, unsigned UserOffset,
Evan Cheng5d8f1ca2009-07-21 23:56:01 +00001029 MachineInstr *CPEMI, unsigned MaxDisp,
1030 bool NegOk, bool DoDump) {
Dale Johannesen8593e412007-04-29 19:19:30 +00001031 unsigned CPEOffset = GetOffsetOf(CPEMI);
Jakob Stoklund Olesene6f9e9d2011-12-08 01:22:39 +00001032 assert(CPEOffset % 4 == 0 && "Misaligned CPE");
Evan Cheng2021abe2007-02-01 01:09:47 +00001033
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001034 if (DoDump) {
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001035 DEBUG({
1036 unsigned Block = MI->getParent()->getNumber();
1037 const BasicBlockInfo &BBI = BBInfo[Block];
1038 dbgs() << "User of CPE#" << CPEMI->getOperand(0).getImm()
1039 << " max delta=" << MaxDisp
Jakob Stoklund Olesen2d5023b2011-12-10 02:55:06 +00001040 << format(" insn address=%#x", UserOffset)
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001041 << " in BB#" << Block << ": "
Jakob Stoklund Olesen2d5023b2011-12-10 02:55:06 +00001042 << format("%#x-%x\t", BBI.Offset, BBI.postOffset()) << *MI
1043 << format("CPE address=%#x offset=%+d: ", CPEOffset,
1044 int(CPEOffset-UserOffset));
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001045 });
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001046 }
Evan Chengc0dbec72007-01-31 19:57:44 +00001047
Evan Cheng5d8f1ca2009-07-21 23:56:01 +00001048 return OffsetIsInRange(UserOffset, CPEOffset, MaxDisp, NegOk);
Evan Chengc0dbec72007-01-31 19:57:44 +00001049}
1050
Evan Chengd1e7d9a2009-01-28 00:53:34 +00001051#ifndef NDEBUG
Evan Chengc99ef082007-02-09 20:54:44 +00001052/// BBIsJumpedOver - Return true of the specified basic block's only predecessor
1053/// unconditionally branches to its only successor.
1054static bool BBIsJumpedOver(MachineBasicBlock *MBB) {
1055 if (MBB->pred_size() != 1 || MBB->succ_size() != 1)
1056 return false;
1057
1058 MachineBasicBlock *Succ = *MBB->succ_begin();
1059 MachineBasicBlock *Pred = *MBB->pred_begin();
1060 MachineInstr *PredMI = &Pred->back();
David Goodwin5e47a9a2009-06-30 18:04:13 +00001061 if (PredMI->getOpcode() == ARM::B || PredMI->getOpcode() == ARM::tB
1062 || PredMI->getOpcode() == ARM::t2B)
Evan Chengc99ef082007-02-09 20:54:44 +00001063 return PredMI->getOperand(0).getMBB() == Succ;
1064 return false;
1065}
Evan Chengd1e7d9a2009-01-28 00:53:34 +00001066#endif // NDEBUG
Evan Chengc99ef082007-02-09 20:54:44 +00001067
Jakob Stoklund Olesen2fe71c52011-12-07 05:17:30 +00001068void ARMConstantIslands::AdjustBBOffsetsAfter(MachineBasicBlock *BB) {
Jakob Stoklund Olesen59ecaae2012-01-06 21:40:15 +00001069 unsigned BBNum = BB->getNumber();
1070 for(unsigned i = BBNum + 1, e = MF->getNumBlockIDs(); i < e; ++i) {
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +00001071 // Get the offset and known bits at the end of the layout predecessor.
Jakob Stoklund Olesen85528212011-12-12 19:25:54 +00001072 // Include the alignment of the current block.
1073 unsigned LogAlign = MF->getBlockNumbered(i)->getAlignment();
1074 unsigned Offset = BBInfo[i - 1].postOffset(LogAlign);
1075 unsigned KnownBits = BBInfo[i - 1].postKnownBits(LogAlign);
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +00001076
Jakob Stoklund Olesen59ecaae2012-01-06 21:40:15 +00001077 // This is where block i begins. Stop if the offset is already correct,
1078 // and we have updated 2 blocks. This is the maximum number of blocks
1079 // changed before calling this function.
1080 if (i > BBNum + 2 &&
1081 BBInfo[i].Offset == Offset &&
1082 BBInfo[i].KnownBits == KnownBits)
1083 break;
1084
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +00001085 BBInfo[i].Offset = Offset;
1086 BBInfo[i].KnownBits = KnownBits;
Dale Johannesen8593e412007-04-29 19:19:30 +00001087 }
Dale Johannesen99c49a42007-02-25 00:47:03 +00001088}
1089
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001090/// DecrementOldEntry - find the constant pool entry with index CPI
1091/// and instruction CPEMI, and decrement its refcount. If the refcount
Bob Wilson84945262009-05-12 17:09:30 +00001092/// becomes 0 remove the entry and instruction. Returns true if we removed
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001093/// the entry, false if we didn't.
Evan Chenga8e29892007-01-19 07:51:42 +00001094
Evan Chenged884f32007-04-03 23:39:48 +00001095bool ARMConstantIslands::DecrementOldEntry(unsigned CPI, MachineInstr *CPEMI) {
Evan Chengc99ef082007-02-09 20:54:44 +00001096 // Find the old entry. Eliminate it if it is no longer used.
Evan Chenged884f32007-04-03 23:39:48 +00001097 CPEntry *CPE = findConstPoolEntry(CPI, CPEMI);
1098 assert(CPE && "Unexpected!");
1099 if (--CPE->RefCount == 0) {
1100 RemoveDeadCPEMI(CPEMI);
1101 CPE->CPEMI = NULL;
Dan Gohmanfe601042010-06-22 15:08:57 +00001102 --NumCPEs;
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001103 return true;
1104 }
1105 return false;
1106}
1107
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001108/// LookForCPEntryInRange - see if the currently referenced CPE is in range;
1109/// if not, see if an in-range clone of the CPE is in range, and if so,
1110/// change the data structures so the user references the clone. Returns:
1111/// 0 = no existing entry found
1112/// 1 = entry found, and there were no code insertions or deletions
1113/// 2 = entry found, and there were code insertions or deletions
1114int ARMConstantIslands::LookForExistingCPEntry(CPUser& U, unsigned UserOffset)
1115{
1116 MachineInstr *UserMI = U.MI;
1117 MachineInstr *CPEMI = U.CPEMI;
1118
1119 // Check to see if the CPE is already in-range.
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +00001120 if (CPEIsInRange(UserMI, UserOffset, CPEMI, U.getMaxDisp(), U.NegOk, true)) {
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001121 DEBUG(dbgs() << "In range\n");
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001122 return 1;
Evan Chengc99ef082007-02-09 20:54:44 +00001123 }
1124
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001125 // No. Look for previously created clones of the CPE that are in range.
Chris Lattner8aa797a2007-12-30 23:10:15 +00001126 unsigned CPI = CPEMI->getOperand(1).getIndex();
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001127 std::vector<CPEntry> &CPEs = CPEntries[CPI];
1128 for (unsigned i = 0, e = CPEs.size(); i != e; ++i) {
1129 // We already tried this one
1130 if (CPEs[i].CPEMI == CPEMI)
1131 continue;
1132 // Removing CPEs can leave empty entries, skip
1133 if (CPEs[i].CPEMI == NULL)
1134 continue;
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +00001135 if (CPEIsInRange(UserMI, UserOffset, CPEs[i].CPEMI, U.getMaxDisp(),
1136 U.NegOk)) {
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001137 DEBUG(dbgs() << "Replacing CPE#" << CPI << " with CPE#"
Chris Lattner893e1c92009-08-23 06:49:22 +00001138 << CPEs[i].CPI << "\n");
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001139 // Point the CPUser node to the replacement
1140 U.CPEMI = CPEs[i].CPEMI;
1141 // Change the CPI in the instruction operand to refer to the clone.
1142 for (unsigned j = 0, e = UserMI->getNumOperands(); j != e; ++j)
Dan Gohmand735b802008-10-03 15:45:36 +00001143 if (UserMI->getOperand(j).isCPI()) {
Chris Lattner8aa797a2007-12-30 23:10:15 +00001144 UserMI->getOperand(j).setIndex(CPEs[i].CPI);
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001145 break;
1146 }
1147 // Adjust the refcount of the clone...
1148 CPEs[i].RefCount++;
1149 // ...and the original. If we didn't remove the old entry, none of the
1150 // addresses changed, so we don't need another pass.
Evan Chenged884f32007-04-03 23:39:48 +00001151 return DecrementOldEntry(CPI, CPEMI) ? 2 : 1;
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001152 }
1153 }
1154 return 0;
1155}
1156
Dale Johannesenf1b214d2007-02-28 18:41:23 +00001157/// getUnconditionalBrDisp - Returns the maximum displacement that can fit in
1158/// the specific unconditional branch instruction.
1159static inline unsigned getUnconditionalBrDisp(int Opc) {
David Goodwin5e47a9a2009-06-30 18:04:13 +00001160 switch (Opc) {
1161 case ARM::tB:
1162 return ((1<<10)-1)*2;
1163 case ARM::t2B:
1164 return ((1<<23)-1)*2;
1165 default:
1166 break;
1167 }
Jim Grosbach764ab522009-08-11 15:33:49 +00001168
David Goodwin5e47a9a2009-06-30 18:04:13 +00001169 return ((1<<23)-1)*4;
Dale Johannesenf1b214d2007-02-28 18:41:23 +00001170}
1171
Bob Wilsonb9239532009-10-15 20:49:47 +00001172/// LookForWater - Look for an existing entry in the WaterList in which
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001173/// we can place the CPE referenced from U so it's within range of U's MI.
Bob Wilsonb9239532009-10-15 20:49:47 +00001174/// Returns true if found, false if not. If it returns true, WaterIter
Bob Wilsonf98032e2009-10-12 21:23:15 +00001175/// is set to the WaterList entry. For Thumb, prefer water that will not
1176/// introduce padding to water that will. To ensure that this pass
1177/// terminates, the CPE location for a particular CPUser is only allowed to
1178/// move to a lower address, so search backward from the end of the list and
1179/// prefer the first water that is in range.
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001180bool ARMConstantIslands::LookForWater(CPUser &U, unsigned UserOffset,
Bob Wilsonb9239532009-10-15 20:49:47 +00001181 water_iterator &WaterIter) {
Bob Wilson3b757352009-10-12 19:04:03 +00001182 if (WaterList.empty())
1183 return false;
1184
Jakob Stoklund Olesen2e290242011-12-13 00:44:30 +00001185 unsigned BestGrowth = ~0u;
1186 for (water_iterator IP = prior(WaterList.end()), B = WaterList.begin();;
1187 --IP) {
Bob Wilson3b757352009-10-12 19:04:03 +00001188 MachineBasicBlock* WaterBB = *IP;
Bob Wilsonb9239532009-10-15 20:49:47 +00001189 // Check if water is in range and is either at a lower address than the
1190 // current "high water mark" or a new water block that was created since
1191 // the previous iteration by inserting an unconditional branch. In the
1192 // latter case, we want to allow resetting the high water mark back to
1193 // this new water since we haven't seen it before. Inserting branches
1194 // should be relatively uncommon and when it does happen, we want to be
1195 // sure to take advantage of it for all the CPEs near that block, so that
1196 // we don't insert more branches than necessary.
Jakob Stoklund Olesen2e290242011-12-13 00:44:30 +00001197 unsigned Growth;
1198 if (WaterIsInRange(UserOffset, WaterBB, U, Growth) &&
Bob Wilsonb9239532009-10-15 20:49:47 +00001199 (WaterBB->getNumber() < U.HighWaterMark->getNumber() ||
Jakob Stoklund Olesen2e290242011-12-13 00:44:30 +00001200 NewWaterList.count(WaterBB)) && Growth < BestGrowth) {
1201 // This is the least amount of required padding seen so far.
1202 BestGrowth = Growth;
1203 WaterIter = IP;
1204 DEBUG(dbgs() << "Found water after BB#" << WaterBB->getNumber()
1205 << " Growth=" << Growth << '\n');
1206
1207 // Keep looking unless it is perfect.
1208 if (BestGrowth == 0)
Bob Wilson3b757352009-10-12 19:04:03 +00001209 return true;
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001210 }
Bob Wilson3b757352009-10-12 19:04:03 +00001211 if (IP == B)
1212 break;
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001213 }
Jakob Stoklund Olesen2e290242011-12-13 00:44:30 +00001214 return BestGrowth != ~0u;
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001215}
1216
Bob Wilson84945262009-05-12 17:09:30 +00001217/// CreateNewWater - No existing WaterList entry will work for
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001218/// CPUsers[CPUserIndex], so create a place to put the CPE. The end of the
1219/// block is used if in range, and the conditional branch munged so control
1220/// flow is correct. Otherwise the block is split to create a hole with an
Bob Wilson757652c2009-10-12 21:39:43 +00001221/// unconditional branch around it. In either case NewMBB is set to a
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001222/// block following which the new island can be inserted (the WaterList
1223/// is not adjusted).
Bob Wilson84945262009-05-12 17:09:30 +00001224void ARMConstantIslands::CreateNewWater(unsigned CPUserIndex,
Bob Wilson757652c2009-10-12 21:39:43 +00001225 unsigned UserOffset,
1226 MachineBasicBlock *&NewMBB) {
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001227 CPUser &U = CPUsers[CPUserIndex];
1228 MachineInstr *UserMI = U.MI;
1229 MachineInstr *CPEMI = U.CPEMI;
Jakob Stoklund Olesen299b0592011-12-14 23:48:54 +00001230 unsigned CPELogAlign = getCPELogAlign(CPEMI);
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001231 MachineBasicBlock *UserMBB = UserMI->getParent();
Jakob Stoklund Olesen77caaf02011-12-10 02:55:10 +00001232 const BasicBlockInfo &UserBBI = BBInfo[UserMBB->getNumber()];
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001233
Bob Wilson36fa5322009-10-15 05:10:36 +00001234 // If the block does not end in an unconditional branch already, and if the
1235 // end of the block is within range, make new water there. (The addition
1236 // below is for the unconditional branch we will be adding: 4 bytes on ARM +
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +00001237 // Thumb2, 2 on Thumb1.
Jakob Stoklund Olesen299b0592011-12-14 23:48:54 +00001238 if (BBHasFallthrough(UserMBB)) {
1239 // Size of branch to insert.
1240 unsigned Delta = isThumb1 ? 2 : 4;
1241 // End of UserBlock after adding a branch.
1242 unsigned UserBlockEnd = UserBBI.postOffset() + Delta;
1243 // Compute the offset where the CPE will begin.
1244 unsigned CPEOffset = WorstCaseAlign(UserBlockEnd, CPELogAlign,
1245 UserBBI.postKnownBits());
Dale Johannesen8593e412007-04-29 19:19:30 +00001246
Jakob Stoklund Olesen299b0592011-12-14 23:48:54 +00001247 if (OffsetIsInRange(UserOffset, CPEOffset, U)) {
1248 DEBUG(dbgs() << "Split at end of BB#" << UserMBB->getNumber()
1249 << format(", expected CPE offset %#x\n", CPEOffset));
1250 NewMBB = llvm::next(MachineFunction::iterator(UserMBB));
1251 // Add an unconditional branch from UserMBB to fallthrough block. Record
1252 // it for branch lengthening; this new branch will not get out of range,
1253 // but if the preceding conditional branch is out of range, the targets
1254 // will be exchanged, and the altered branch may be out of range, so the
1255 // machinery has to know about it.
1256 int UncondBr = isThumb ? ((isThumb2) ? ARM::t2B : ARM::tB) : ARM::B;
1257 if (!isThumb)
1258 BuildMI(UserMBB, DebugLoc(), TII->get(UncondBr)).addMBB(NewMBB);
1259 else
1260 BuildMI(UserMBB, DebugLoc(), TII->get(UncondBr)).addMBB(NewMBB)
1261 .addImm(ARMCC::AL).addReg(0);
1262 unsigned MaxDisp = getUnconditionalBrDisp(UncondBr);
1263 ImmBranches.push_back(ImmBranch(&UserMBB->back(),
1264 MaxDisp, false, UncondBr));
1265 BBInfo[UserMBB->getNumber()].Size += Delta;
1266 AdjustBBOffsetsAfter(UserMBB);
1267 return;
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001268 }
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001269 }
Jakob Stoklund Olesen299b0592011-12-14 23:48:54 +00001270
1271 // What a big block. Find a place within the block to split it. This is a
1272 // little tricky on Thumb1 since instructions are 2 bytes and constant pool
1273 // entries are 4 bytes: if instruction I references island CPE, and
1274 // instruction I+1 references CPE', it will not work well to put CPE as far
1275 // forward as possible, since then CPE' cannot immediately follow it (that
1276 // location is 2 bytes farther away from I+1 than CPE was from I) and we'd
1277 // need to create a new island. So, we make a first guess, then walk through
1278 // the instructions between the one currently being looked at and the
1279 // possible insertion point, and make sure any other instructions that
1280 // reference CPEs will be able to use the same island area; if not, we back
1281 // up the insertion point.
1282
1283 // Try to split the block so it's fully aligned. Compute the latest split
1284 // point where we can add a 4-byte branch instruction, and then
1285 // WorstCaseAlign to LogAlign.
1286 unsigned LogAlign = MF->getAlignment();
1287 assert(LogAlign >= CPELogAlign && "Over-aligned constant pool entry");
1288 unsigned KnownBits = UserBBI.internalKnownBits();
1289 unsigned UPad = UnknownPadding(LogAlign, KnownBits);
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +00001290 unsigned BaseInsertOffset = UserOffset + U.getMaxDisp();
Jakob Stoklund Olesen299b0592011-12-14 23:48:54 +00001291 DEBUG(dbgs() << format("Split in middle of big block before %#x",
1292 BaseInsertOffset));
1293
1294 // Account for alignment and unknown padding.
1295 BaseInsertOffset &= ~((1u << LogAlign) - 1);
1296 BaseInsertOffset -= UPad;
1297
1298 // The 4 in the following is for the unconditional branch we'll be inserting
1299 // (allows for long branch on Thumb1). Alignment of the island is handled
1300 // inside OffsetIsInRange.
1301 BaseInsertOffset -= 4;
1302
1303 DEBUG(dbgs() << format(", adjusted to %#x", BaseInsertOffset)
1304 << " la=" << LogAlign
1305 << " kb=" << KnownBits
1306 << " up=" << UPad << '\n');
1307
1308 // This could point off the end of the block if we've already got constant
1309 // pool entries following this block; only the last one is in the water list.
1310 // Back past any possible branches (allow for a conditional and a maximally
1311 // long unconditional).
1312 if (BaseInsertOffset >= BBInfo[UserMBB->getNumber()+1].Offset)
1313 BaseInsertOffset = BBInfo[UserMBB->getNumber()+1].Offset -
1314 (isThumb1 ? 6 : 8);
1315 unsigned EndInsertOffset =
1316 WorstCaseAlign(BaseInsertOffset + 4, LogAlign, KnownBits) +
1317 CPEMI->getOperand(2).getImm();
1318 MachineBasicBlock::iterator MI = UserMI;
1319 ++MI;
1320 unsigned CPUIndex = CPUserIndex+1;
1321 unsigned NumCPUsers = CPUsers.size();
1322 MachineInstr *LastIT = 0;
1323 for (unsigned Offset = UserOffset+TII->GetInstSizeInBytes(UserMI);
1324 Offset < BaseInsertOffset;
1325 Offset += TII->GetInstSizeInBytes(MI),
1326 MI = llvm::next(MI)) {
1327 if (CPUIndex < NumCPUsers && CPUsers[CPUIndex].MI == MI) {
1328 CPUser &U = CPUsers[CPUIndex];
1329 if (!OffsetIsInRange(Offset, EndInsertOffset, U)) {
1330 // Shift intertion point by one unit of alignment so it is within reach.
1331 BaseInsertOffset -= 1u << LogAlign;
1332 EndInsertOffset -= 1u << LogAlign;
1333 }
1334 // This is overly conservative, as we don't account for CPEMIs being
1335 // reused within the block, but it doesn't matter much. Also assume CPEs
1336 // are added in order with alignment padding. We may eventually be able
1337 // to pack the aligned CPEs better.
1338 EndInsertOffset = RoundUpToAlignment(EndInsertOffset,
1339 1u << getCPELogAlign(U.CPEMI)) +
1340 U.CPEMI->getOperand(2).getImm();
1341 CPUIndex++;
1342 }
1343
1344 // Remember the last IT instruction.
1345 if (MI->getOpcode() == ARM::t2IT)
1346 LastIT = MI;
1347 }
1348
1349 --MI;
1350
1351 // Avoid splitting an IT block.
1352 if (LastIT) {
1353 unsigned PredReg = 0;
1354 ARMCC::CondCodes CC = llvm::getITInstrPredicate(MI, PredReg);
1355 if (CC != ARMCC::AL)
1356 MI = LastIT;
1357 }
1358 NewMBB = SplitBlockBeforeInstr(MI);
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001359}
1360
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001361/// HandleConstantPoolUser - Analyze the specified user, checking to see if it
Bob Wilson39bf0512009-05-12 17:35:29 +00001362/// is out-of-range. If so, pick up the constant pool value and move it some
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001363/// place in-range. Return true if we changed any addresses (thus must run
1364/// another pass of branch lengthening), false otherwise.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001365bool ARMConstantIslands::HandleConstantPoolUser(unsigned CPUserIndex) {
Dale Johannesenf1b214d2007-02-28 18:41:23 +00001366 CPUser &U = CPUsers[CPUserIndex];
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001367 MachineInstr *UserMI = U.MI;
1368 MachineInstr *CPEMI = U.CPEMI;
Chris Lattner8aa797a2007-12-30 23:10:15 +00001369 unsigned CPI = CPEMI->getOperand(1).getIndex();
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001370 unsigned Size = CPEMI->getOperand(2).getImm();
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +00001371 // Compute this only once, it's expensive.
1372 unsigned UserOffset = GetUserOffset(U);
Evan Cheng768c9f72007-04-27 08:14:15 +00001373
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001374 // See if the current entry is within range, or there is a clone of it
1375 // in range.
1376 int result = LookForExistingCPEntry(U, UserOffset);
1377 if (result==1) return false;
1378 else if (result==2) return true;
1379
1380 // No existing clone of this CPE is within range.
1381 // We will be generating a new clone. Get a UID for it.
Evan Cheng5de5d4b2011-01-17 08:03:18 +00001382 unsigned ID = AFI->createPICLabelUId();
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001383
Bob Wilsonf98032e2009-10-12 21:23:15 +00001384 // Look for water where we can place this CPE.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001385 MachineBasicBlock *NewIsland = MF->CreateMachineBasicBlock();
Bob Wilsonb9239532009-10-15 20:49:47 +00001386 MachineBasicBlock *NewMBB;
1387 water_iterator IP;
1388 if (LookForWater(U, UserOffset, IP)) {
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001389 DEBUG(dbgs() << "Found water in range\n");
Bob Wilsonb9239532009-10-15 20:49:47 +00001390 MachineBasicBlock *WaterBB = *IP;
1391
1392 // If the original WaterList entry was "new water" on this iteration,
1393 // propagate that to the new island. This is just keeping NewWaterList
1394 // updated to match the WaterList, which will be updated below.
1395 if (NewWaterList.count(WaterBB)) {
1396 NewWaterList.erase(WaterBB);
1397 NewWaterList.insert(NewIsland);
1398 }
1399 // The new CPE goes before the following block (NewMBB).
Chris Lattner7896c9f2009-12-03 00:50:42 +00001400 NewMBB = llvm::next(MachineFunction::iterator(WaterBB));
Bob Wilsonb9239532009-10-15 20:49:47 +00001401
1402 } else {
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001403 // No water found.
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001404 DEBUG(dbgs() << "No water found\n");
Bob Wilson757652c2009-10-12 21:39:43 +00001405 CreateNewWater(CPUserIndex, UserOffset, NewMBB);
Bob Wilsonb9239532009-10-15 20:49:47 +00001406
1407 // SplitBlockBeforeInstr adds to WaterList, which is important when it is
1408 // called while handling branches so that the water will be seen on the
1409 // next iteration for constant pools, but in this context, we don't want
1410 // it. Check for this so it will be removed from the WaterList.
1411 // Also remove any entry from NewWaterList.
1412 MachineBasicBlock *WaterBB = prior(MachineFunction::iterator(NewMBB));
1413 IP = std::find(WaterList.begin(), WaterList.end(), WaterBB);
1414 if (IP != WaterList.end())
1415 NewWaterList.erase(WaterBB);
1416
1417 // We are adding new water. Update NewWaterList.
1418 NewWaterList.insert(NewIsland);
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001419 }
1420
Bob Wilsonb9239532009-10-15 20:49:47 +00001421 // Remove the original WaterList entry; we want subsequent insertions in
1422 // this vicinity to go after the one we're about to insert. This
1423 // considerably reduces the number of times we have to move the same CPE
1424 // more than once and is also important to ensure the algorithm terminates.
1425 if (IP != WaterList.end())
1426 WaterList.erase(IP);
1427
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001428 // Okay, we know we can put an island before NewMBB now, do it!
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001429 MF->insert(NewMBB, NewIsland);
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001430
1431 // Update internal data structures to account for the newly inserted MBB.
1432 UpdateForInsertedWaterBlock(NewIsland);
1433
1434 // Decrement the old entry, and remove it if refcount becomes 0.
Evan Chenged884f32007-04-03 23:39:48 +00001435 DecrementOldEntry(CPI, CPEMI);
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001436
1437 // Now that we have an island to add the CPE to, clone the original CPE and
1438 // add it to the island.
Bob Wilson549dda92009-10-15 05:52:29 +00001439 U.HighWaterMark = NewIsland;
Chris Lattnerc7f3ace2010-04-02 20:16:16 +00001440 U.CPEMI = BuildMI(NewIsland, DebugLoc(), TII->get(ARM::CONSTPOOL_ENTRY))
Evan Chenga8e29892007-01-19 07:51:42 +00001441 .addImm(ID).addConstantPoolIndex(CPI).addImm(Size);
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001442 CPEntries[CPI].push_back(CPEntry(U.CPEMI, ID, 1));
Dan Gohmanfe601042010-06-22 15:08:57 +00001443 ++NumCPEs;
Evan Chengc99ef082007-02-09 20:54:44 +00001444
Jakob Stoklund Olesencca33a32011-12-12 18:45:45 +00001445 // Mark the basic block as aligned as required by the const-pool entry.
1446 NewIsland->setAlignment(getCPELogAlign(U.CPEMI));
Jakob Stoklund Olesen3e572ac2011-12-06 01:43:02 +00001447
Evan Chenga8e29892007-01-19 07:51:42 +00001448 // Increase the size of the island block to account for the new entry.
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001449 BBInfo[NewIsland->getNumber()].Size += Size;
Jakob Stoklund Olesen540c6d92011-12-08 00:55:02 +00001450 AdjustBBOffsetsAfter(llvm::prior(MachineFunction::iterator(NewIsland)));
Bob Wilson84945262009-05-12 17:09:30 +00001451
Evan Chenga8e29892007-01-19 07:51:42 +00001452 // Finally, change the CPI in the instruction operand to be ID.
1453 for (unsigned i = 0, e = UserMI->getNumOperands(); i != e; ++i)
Dan Gohmand735b802008-10-03 15:45:36 +00001454 if (UserMI->getOperand(i).isCPI()) {
Chris Lattner8aa797a2007-12-30 23:10:15 +00001455 UserMI->getOperand(i).setIndex(ID);
Evan Chenga8e29892007-01-19 07:51:42 +00001456 break;
1457 }
Bob Wilson84945262009-05-12 17:09:30 +00001458
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001459 DEBUG(dbgs() << " Moved CPE to #" << ID << " CPI=" << CPI
Jakob Stoklund Olesen2d5023b2011-12-10 02:55:06 +00001460 << format(" offset=%#x\n", BBInfo[NewIsland->getNumber()].Offset));
Bob Wilson84945262009-05-12 17:09:30 +00001461
Evan Chenga8e29892007-01-19 07:51:42 +00001462 return true;
1463}
1464
Evan Chenged884f32007-04-03 23:39:48 +00001465/// RemoveDeadCPEMI - Remove a dead constant pool entry instruction. Update
1466/// sizes and offsets of impacted basic blocks.
1467void ARMConstantIslands::RemoveDeadCPEMI(MachineInstr *CPEMI) {
1468 MachineBasicBlock *CPEBB = CPEMI->getParent();
Dale Johannesen8593e412007-04-29 19:19:30 +00001469 unsigned Size = CPEMI->getOperand(2).getImm();
1470 CPEMI->eraseFromParent();
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001471 BBInfo[CPEBB->getNumber()].Size -= Size;
Dale Johannesen8593e412007-04-29 19:19:30 +00001472 // All succeeding offsets have the current size value added in, fix this.
Evan Chenged884f32007-04-03 23:39:48 +00001473 if (CPEBB->empty()) {
Jakob Stoklund Olesencca33a32011-12-12 18:45:45 +00001474 BBInfo[CPEBB->getNumber()].Size = 0;
Jakob Stoklund Olesen305e5fe2011-12-06 21:55:35 +00001475
1476 // This block no longer needs to be aligned. <rdar://problem/10534709>.
1477 CPEBB->setAlignment(0);
Jakob Stoklund Olesencca33a32011-12-12 18:45:45 +00001478 } else
1479 // Entries are sorted by descending alignment, so realign from the front.
1480 CPEBB->setAlignment(getCPELogAlign(CPEBB->begin()));
1481
Jakob Stoklund Olesen2fe71c52011-12-07 05:17:30 +00001482 AdjustBBOffsetsAfter(CPEBB);
Dale Johannesen8593e412007-04-29 19:19:30 +00001483 // An island has only one predecessor BB and one successor BB. Check if
1484 // this BB's predecessor jumps directly to this BB's successor. This
1485 // shouldn't happen currently.
1486 assert(!BBIsJumpedOver(CPEBB) && "How did this happen?");
1487 // FIXME: remove the empty blocks after all the work is done?
Evan Chenged884f32007-04-03 23:39:48 +00001488}
1489
1490/// RemoveUnusedCPEntries - Remove constant pool entries whose refcounts
1491/// are zero.
1492bool ARMConstantIslands::RemoveUnusedCPEntries() {
1493 unsigned MadeChange = false;
1494 for (unsigned i = 0, e = CPEntries.size(); i != e; ++i) {
1495 std::vector<CPEntry> &CPEs = CPEntries[i];
1496 for (unsigned j = 0, ee = CPEs.size(); j != ee; ++j) {
1497 if (CPEs[j].RefCount == 0 && CPEs[j].CPEMI) {
1498 RemoveDeadCPEMI(CPEs[j].CPEMI);
1499 CPEs[j].CPEMI = NULL;
1500 MadeChange = true;
1501 }
1502 }
Bob Wilson84945262009-05-12 17:09:30 +00001503 }
Evan Chenged884f32007-04-03 23:39:48 +00001504 return MadeChange;
1505}
1506
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001507/// BBIsInRange - Returns true if the distance between specific MI and
Evan Cheng43aeab62007-01-26 20:38:26 +00001508/// specific BB can fit in MI's displacement field.
Evan Chengc0dbec72007-01-31 19:57:44 +00001509bool ARMConstantIslands::BBIsInRange(MachineInstr *MI,MachineBasicBlock *DestBB,
1510 unsigned MaxDisp) {
Dale Johannesenb71aa2b2007-02-28 23:20:38 +00001511 unsigned PCAdj = isThumb ? 4 : 8;
Evan Chengc0dbec72007-01-31 19:57:44 +00001512 unsigned BrOffset = GetOffsetOf(MI) + PCAdj;
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001513 unsigned DestOffset = BBInfo[DestBB->getNumber()].Offset;
Evan Cheng43aeab62007-01-26 20:38:26 +00001514
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001515 DEBUG(dbgs() << "Branch of destination BB#" << DestBB->getNumber()
Chris Lattner705e07f2009-08-23 03:41:05 +00001516 << " from BB#" << MI->getParent()->getNumber()
1517 << " max delta=" << MaxDisp
1518 << " from " << GetOffsetOf(MI) << " to " << DestOffset
1519 << " offset " << int(DestOffset-BrOffset) << "\t" << *MI);
Evan Chengc0dbec72007-01-31 19:57:44 +00001520
Dale Johannesen8593e412007-04-29 19:19:30 +00001521 if (BrOffset <= DestOffset) {
1522 // Branch before the Dest.
1523 if (DestOffset-BrOffset <= MaxDisp)
1524 return true;
1525 } else {
1526 if (BrOffset-DestOffset <= MaxDisp)
1527 return true;
1528 }
1529 return false;
Evan Cheng43aeab62007-01-26 20:38:26 +00001530}
1531
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001532/// FixUpImmediateBr - Fix up an immediate branch whose destination is too far
1533/// away to fit in its displacement field.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001534bool ARMConstantIslands::FixUpImmediateBr(ImmBranch &Br) {
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001535 MachineInstr *MI = Br.MI;
Chris Lattner8aa797a2007-12-30 23:10:15 +00001536 MachineBasicBlock *DestBB = MI->getOperand(0).getMBB();
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001537
Evan Chengc0dbec72007-01-31 19:57:44 +00001538 // Check to see if the DestBB is already in-range.
1539 if (BBIsInRange(MI, DestBB, Br.MaxDisp))
Evan Cheng43aeab62007-01-26 20:38:26 +00001540 return false;
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001541
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001542 if (!Br.isCond)
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001543 return FixUpUnconditionalBr(Br);
1544 return FixUpConditionalBr(Br);
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001545}
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001546
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001547/// FixUpUnconditionalBr - Fix up an unconditional branch whose destination is
1548/// too far away to fit in its displacement field. If the LR register has been
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001549/// spilled in the epilogue, then we can use BL to implement a far jump.
Bob Wilson39bf0512009-05-12 17:35:29 +00001550/// Otherwise, add an intermediate branch instruction to a branch.
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001551bool
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001552ARMConstantIslands::FixUpUnconditionalBr(ImmBranch &Br) {
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001553 MachineInstr *MI = Br.MI;
1554 MachineBasicBlock *MBB = MI->getParent();
Evan Cheng53c67c02009-08-07 05:45:07 +00001555 if (!isThumb1)
1556 llvm_unreachable("FixUpUnconditionalBr is Thumb1 only!");
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001557
1558 // Use BL to implement far jump.
1559 Br.MaxDisp = (1 << 21) * 2;
Chris Lattner5080f4d2008-01-11 18:10:50 +00001560 MI->setDesc(TII->get(ARM::tBfar));
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001561 BBInfo[MBB->getNumber()].Size += 2;
Jakob Stoklund Olesen2fe71c52011-12-07 05:17:30 +00001562 AdjustBBOffsetsAfter(MBB);
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001563 HasFarJump = true;
Dan Gohmanfe601042010-06-22 15:08:57 +00001564 ++NumUBrFixed;
Evan Chengbd5d3db2007-02-03 02:08:34 +00001565
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001566 DEBUG(dbgs() << " Changed B to long jump " << *MI);
Evan Chengbd5d3db2007-02-03 02:08:34 +00001567
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001568 return true;
1569}
1570
Dale Johannesen88e37ae2007-02-23 05:02:36 +00001571/// FixUpConditionalBr - Fix up a conditional branch whose destination is too
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001572/// far away to fit in its displacement field. It is converted to an inverse
1573/// conditional branch + an unconditional branch to the destination.
1574bool
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001575ARMConstantIslands::FixUpConditionalBr(ImmBranch &Br) {
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001576 MachineInstr *MI = Br.MI;
Chris Lattner8aa797a2007-12-30 23:10:15 +00001577 MachineBasicBlock *DestBB = MI->getOperand(0).getMBB();
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001578
Bob Wilson39bf0512009-05-12 17:35:29 +00001579 // Add an unconditional branch to the destination and invert the branch
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001580 // condition to jump over it:
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001581 // blt L1
1582 // =>
1583 // bge L2
1584 // b L1
1585 // L2:
Chris Lattner9a1ceae2007-12-30 20:49:49 +00001586 ARMCC::CondCodes CC = (ARMCC::CondCodes)MI->getOperand(1).getImm();
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001587 CC = ARMCC::getOppositeCondition(CC);
Evan Cheng0e1d3792007-07-05 07:18:20 +00001588 unsigned CCReg = MI->getOperand(2).getReg();
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001589
1590 // If the branch is at the end of its MBB and that has a fall-through block,
1591 // direct the updated conditional branch to the fall-through block. Otherwise,
1592 // split the MBB before the next instruction.
1593 MachineBasicBlock *MBB = MI->getParent();
Evan Chengbd5d3db2007-02-03 02:08:34 +00001594 MachineInstr *BMI = &MBB->back();
1595 bool NeedSplit = (BMI != MI) || !BBHasFallthrough(MBB);
Evan Cheng43aeab62007-01-26 20:38:26 +00001596
Dan Gohmanfe601042010-06-22 15:08:57 +00001597 ++NumCBrFixed;
Evan Chengbd5d3db2007-02-03 02:08:34 +00001598 if (BMI != MI) {
Chris Lattner7896c9f2009-12-03 00:50:42 +00001599 if (llvm::next(MachineBasicBlock::iterator(MI)) == prior(MBB->end()) &&
Evan Chengbd5d3db2007-02-03 02:08:34 +00001600 BMI->getOpcode() == Br.UncondBr) {
Bob Wilson39bf0512009-05-12 17:35:29 +00001601 // Last MI in the BB is an unconditional branch. Can we simply invert the
Evan Cheng43aeab62007-01-26 20:38:26 +00001602 // condition and swap destinations:
1603 // beq L1
1604 // b L2
1605 // =>
1606 // bne L2
1607 // b L1
Chris Lattner8aa797a2007-12-30 23:10:15 +00001608 MachineBasicBlock *NewDest = BMI->getOperand(0).getMBB();
Evan Chengc0dbec72007-01-31 19:57:44 +00001609 if (BBIsInRange(MI, NewDest, Br.MaxDisp)) {
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001610 DEBUG(dbgs() << " Invert Bcc condition and swap its destination with "
Chris Lattner705e07f2009-08-23 03:41:05 +00001611 << *BMI);
Chris Lattner8aa797a2007-12-30 23:10:15 +00001612 BMI->getOperand(0).setMBB(DestBB);
1613 MI->getOperand(0).setMBB(NewDest);
Evan Cheng43aeab62007-01-26 20:38:26 +00001614 MI->getOperand(1).setImm(CC);
1615 return true;
1616 }
1617 }
1618 }
1619
1620 if (NeedSplit) {
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001621 SplitBlockBeforeInstr(MI);
Bob Wilson39bf0512009-05-12 17:35:29 +00001622 // No need for the branch to the next block. We're adding an unconditional
Evan Chengdd353b82007-01-26 02:02:39 +00001623 // branch to the destination.
Nicolas Geoffray52e724a2008-04-16 20:10:13 +00001624 int delta = TII->GetInstSizeInBytes(&MBB->back());
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001625 BBInfo[MBB->getNumber()].Size -= delta;
Evan Chengdd353b82007-01-26 02:02:39 +00001626 MBB->back().eraseFromParent();
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001627 // BBInfo[SplitBB].Offset is wrong temporarily, fixed below
Evan Chengdd353b82007-01-26 02:02:39 +00001628 }
Chris Lattner7896c9f2009-12-03 00:50:42 +00001629 MachineBasicBlock *NextBB = llvm::next(MachineFunction::iterator(MBB));
Bob Wilson84945262009-05-12 17:09:30 +00001630
Jakob Stoklund Olesen3c4615e2011-12-09 18:20:35 +00001631 DEBUG(dbgs() << " Insert B to BB#" << DestBB->getNumber()
Chris Lattner893e1c92009-08-23 06:49:22 +00001632 << " also invert condition and change dest. to BB#"
1633 << NextBB->getNumber() << "\n");
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001634
Dale Johannesen56c42ef2007-04-23 20:09:04 +00001635 // Insert a new conditional branch and a new unconditional branch.
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001636 // Also update the ImmBranch as well as adding a new entry for the new branch.
Chris Lattnerc7f3ace2010-04-02 20:16:16 +00001637 BuildMI(MBB, DebugLoc(), TII->get(MI->getOpcode()))
Dale Johannesenb6728402009-02-13 02:25:56 +00001638 .addMBB(NextBB).addImm(CC).addReg(CCReg);
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001639 Br.MI = &MBB->back();
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001640 BBInfo[MBB->getNumber()].Size += TII->GetInstSizeInBytes(&MBB->back());
Owen Andersoncd4338f2011-09-09 23:05:14 +00001641 if (isThumb)
1642 BuildMI(MBB, DebugLoc(), TII->get(Br.UncondBr)).addMBB(DestBB)
1643 .addImm(ARMCC::AL).addReg(0);
1644 else
1645 BuildMI(MBB, DebugLoc(), TII->get(Br.UncondBr)).addMBB(DestBB);
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001646 BBInfo[MBB->getNumber()].Size += TII->GetInstSizeInBytes(&MBB->back());
Evan Chenga9b8b8d2007-01-31 18:29:27 +00001647 unsigned MaxDisp = getUnconditionalBrDisp(Br.UncondBr);
Evan Chenga0bf7942007-01-25 23:31:04 +00001648 ImmBranches.push_back(ImmBranch(&MBB->back(), MaxDisp, false, Br.UncondBr));
Dale Johannesen56c42ef2007-04-23 20:09:04 +00001649
1650 // Remove the old conditional branch. It may or may not still be in MBB.
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001651 BBInfo[MI->getParent()->getNumber()].Size -= TII->GetInstSizeInBytes(MI);
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001652 MI->eraseFromParent();
Jakob Stoklund Olesen2fe71c52011-12-07 05:17:30 +00001653 AdjustBBOffsetsAfter(MBB);
Evan Chengaf5cbcb2007-01-25 03:12:46 +00001654 return true;
1655}
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001656
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001657/// UndoLRSpillRestore - Remove Thumb push / pop instructions that only spills
Evan Cheng4b322e52009-08-11 21:11:32 +00001658/// LR / restores LR to pc. FIXME: This is done here because it's only possible
1659/// to do this if tBfar is not used.
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001660bool ARMConstantIslands::UndoLRSpillRestore() {
1661 bool MadeChange = false;
1662 for (unsigned i = 0, e = PushPopMIs.size(); i != e; ++i) {
1663 MachineInstr *MI = PushPopMIs[i];
Bob Wilson815baeb2010-03-13 01:08:20 +00001664 // First two operands are predicates.
Evan Cheng44bec522007-05-15 01:29:07 +00001665 if (MI->getOpcode() == ARM::tPOP_RET &&
Bob Wilson815baeb2010-03-13 01:08:20 +00001666 MI->getOperand(2).getReg() == ARM::PC &&
1667 MI->getNumExplicitOperands() == 3) {
Jim Grosbach25e6d482011-07-08 21:50:04 +00001668 // Create the new insn and copy the predicate from the old.
1669 BuildMI(MI->getParent(), MI->getDebugLoc(), TII->get(ARM::tBX_RET))
1670 .addOperand(MI->getOperand(0))
1671 .addOperand(MI->getOperand(1));
Evan Cheng44bec522007-05-15 01:29:07 +00001672 MI->eraseFromParent();
1673 MadeChange = true;
Evan Chengd1b2c1e2007-01-30 01:18:38 +00001674 }
1675 }
1676 return MadeChange;
1677}
Evan Cheng5657c012009-07-29 02:18:14 +00001678
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001679bool ARMConstantIslands::OptimizeThumb2Instructions() {
Evan Chenga1efbbd2009-08-14 00:32:16 +00001680 bool MadeChange = false;
1681
1682 // Shrink ADR and LDR from constantpool.
1683 for (unsigned i = 0, e = CPUsers.size(); i != e; ++i) {
1684 CPUser &U = CPUsers[i];
1685 unsigned Opcode = U.MI->getOpcode();
1686 unsigned NewOpc = 0;
1687 unsigned Scale = 1;
1688 unsigned Bits = 0;
1689 switch (Opcode) {
1690 default: break;
Owen Anderson6b8719f2010-12-13 22:51:08 +00001691 case ARM::t2LEApcrel:
Evan Chenga1efbbd2009-08-14 00:32:16 +00001692 if (isARMLowRegister(U.MI->getOperand(0).getReg())) {
1693 NewOpc = ARM::tLEApcrel;
1694 Bits = 8;
1695 Scale = 4;
1696 }
1697 break;
1698 case ARM::t2LDRpci:
1699 if (isARMLowRegister(U.MI->getOperand(0).getReg())) {
1700 NewOpc = ARM::tLDRpci;
1701 Bits = 8;
1702 Scale = 4;
1703 }
1704 break;
1705 }
1706
1707 if (!NewOpc)
1708 continue;
1709
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +00001710 unsigned UserOffset = GetUserOffset(U);
Evan Chenga1efbbd2009-08-14 00:32:16 +00001711 unsigned MaxOffs = ((1 << Bits) - 1) * Scale;
Jakob Stoklund Olesendae412b2012-01-10 01:34:59 +00001712
1713 // Be conservative with inline asm.
1714 if (!U.KnownAlignment)
1715 MaxOffs -= 2;
1716
Evan Chenga1efbbd2009-08-14 00:32:16 +00001717 // FIXME: Check if offset is multiple of scale if scale is not 4.
1718 if (CPEIsInRange(U.MI, UserOffset, U.CPEMI, MaxOffs, false, true)) {
1719 U.MI->setDesc(TII->get(NewOpc));
1720 MachineBasicBlock *MBB = U.MI->getParent();
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001721 BBInfo[MBB->getNumber()].Size -= 2;
Jakob Stoklund Olesen2fe71c52011-12-07 05:17:30 +00001722 AdjustBBOffsetsAfter(MBB);
Evan Chenga1efbbd2009-08-14 00:32:16 +00001723 ++NumT2CPShrunk;
1724 MadeChange = true;
1725 }
1726 }
1727
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001728 MadeChange |= OptimizeThumb2Branches();
1729 MadeChange |= OptimizeThumb2JumpTables();
Evan Chenga1efbbd2009-08-14 00:32:16 +00001730 return MadeChange;
1731}
1732
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001733bool ARMConstantIslands::OptimizeThumb2Branches() {
Evan Cheng31b99dd2009-08-14 18:31:44 +00001734 bool MadeChange = false;
1735
1736 for (unsigned i = 0, e = ImmBranches.size(); i != e; ++i) {
1737 ImmBranch &Br = ImmBranches[i];
1738 unsigned Opcode = Br.MI->getOpcode();
1739 unsigned NewOpc = 0;
1740 unsigned Scale = 1;
1741 unsigned Bits = 0;
1742 switch (Opcode) {
1743 default: break;
1744 case ARM::t2B:
1745 NewOpc = ARM::tB;
1746 Bits = 11;
1747 Scale = 2;
1748 break;
Evan Chengde17fb62009-10-31 23:46:45 +00001749 case ARM::t2Bcc: {
Evan Cheng31b99dd2009-08-14 18:31:44 +00001750 NewOpc = ARM::tBcc;
1751 Bits = 8;
Evan Chengde17fb62009-10-31 23:46:45 +00001752 Scale = 2;
Evan Cheng31b99dd2009-08-14 18:31:44 +00001753 break;
1754 }
Evan Chengde17fb62009-10-31 23:46:45 +00001755 }
1756 if (NewOpc) {
1757 unsigned MaxOffs = ((1 << (Bits-1))-1) * Scale;
1758 MachineBasicBlock *DestBB = Br.MI->getOperand(0).getMBB();
1759 if (BBIsInRange(Br.MI, DestBB, MaxOffs)) {
1760 Br.MI->setDesc(TII->get(NewOpc));
1761 MachineBasicBlock *MBB = Br.MI->getParent();
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001762 BBInfo[MBB->getNumber()].Size -= 2;
Jakob Stoklund Olesen2fe71c52011-12-07 05:17:30 +00001763 AdjustBBOffsetsAfter(MBB);
Evan Chengde17fb62009-10-31 23:46:45 +00001764 ++NumT2BrShrunk;
1765 MadeChange = true;
1766 }
1767 }
1768
1769 Opcode = Br.MI->getOpcode();
1770 if (Opcode != ARM::tBcc)
Evan Cheng31b99dd2009-08-14 18:31:44 +00001771 continue;
1772
Evan Chengde17fb62009-10-31 23:46:45 +00001773 NewOpc = 0;
1774 unsigned PredReg = 0;
1775 ARMCC::CondCodes Pred = llvm::getInstrPredicate(Br.MI, PredReg);
1776 if (Pred == ARMCC::EQ)
1777 NewOpc = ARM::tCBZ;
1778 else if (Pred == ARMCC::NE)
1779 NewOpc = ARM::tCBNZ;
1780 if (!NewOpc)
1781 continue;
Evan Cheng31b99dd2009-08-14 18:31:44 +00001782 MachineBasicBlock *DestBB = Br.MI->getOperand(0).getMBB();
Evan Chengde17fb62009-10-31 23:46:45 +00001783 // Check if the distance is within 126. Subtract starting offset by 2
1784 // because the cmp will be eliminated.
1785 unsigned BrOffset = GetOffsetOf(Br.MI) + 4 - 2;
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001786 unsigned DestOffset = BBInfo[DestBB->getNumber()].Offset;
Evan Chengde17fb62009-10-31 23:46:45 +00001787 if (BrOffset < DestOffset && (DestOffset - BrOffset) <= 126) {
Evan Cheng0539c152011-04-01 22:09:28 +00001788 MachineBasicBlock::iterator CmpMI = Br.MI;
1789 if (CmpMI != Br.MI->getParent()->begin()) {
1790 --CmpMI;
1791 if (CmpMI->getOpcode() == ARM::tCMPi8) {
1792 unsigned Reg = CmpMI->getOperand(0).getReg();
1793 Pred = llvm::getInstrPredicate(CmpMI, PredReg);
1794 if (Pred == ARMCC::AL &&
1795 CmpMI->getOperand(1).getImm() == 0 &&
1796 isARMLowRegister(Reg)) {
1797 MachineBasicBlock *MBB = Br.MI->getParent();
1798 MachineInstr *NewBR =
1799 BuildMI(*MBB, CmpMI, Br.MI->getDebugLoc(), TII->get(NewOpc))
1800 .addReg(Reg).addMBB(DestBB,Br.MI->getOperand(0).getTargetFlags());
1801 CmpMI->eraseFromParent();
1802 Br.MI->eraseFromParent();
1803 Br.MI = NewBR;
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001804 BBInfo[MBB->getNumber()].Size -= 2;
Jakob Stoklund Olesen2fe71c52011-12-07 05:17:30 +00001805 AdjustBBOffsetsAfter(MBB);
Evan Cheng0539c152011-04-01 22:09:28 +00001806 ++NumCBZ;
1807 MadeChange = true;
1808 }
Evan Chengde17fb62009-10-31 23:46:45 +00001809 }
1810 }
Evan Cheng31b99dd2009-08-14 18:31:44 +00001811 }
1812 }
1813
1814 return MadeChange;
Evan Chenga1efbbd2009-08-14 00:32:16 +00001815}
1816
Evan Chenga1efbbd2009-08-14 00:32:16 +00001817/// OptimizeThumb2JumpTables - Use tbb / tbh instructions to generate smaller
1818/// jumptables when it's possible.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001819bool ARMConstantIslands::OptimizeThumb2JumpTables() {
Evan Cheng5657c012009-07-29 02:18:14 +00001820 bool MadeChange = false;
1821
1822 // FIXME: After the tables are shrunk, can we get rid some of the
1823 // constantpool tables?
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001824 MachineJumpTableInfo *MJTI = MF->getJumpTableInfo();
Chris Lattnerb1e80392010-01-25 23:22:00 +00001825 if (MJTI == 0) return false;
Jim Grosbach26b8ef52010-07-07 21:06:51 +00001826
Evan Cheng5657c012009-07-29 02:18:14 +00001827 const std::vector<MachineJumpTableEntry> &JT = MJTI->getJumpTables();
1828 for (unsigned i = 0, e = T2JumpTables.size(); i != e; ++i) {
1829 MachineInstr *MI = T2JumpTables[i];
Evan Chenge837dea2011-06-28 19:10:37 +00001830 const MCInstrDesc &MCID = MI->getDesc();
1831 unsigned NumOps = MCID.getNumOperands();
Evan Cheng5a96b3d2011-12-07 07:15:52 +00001832 unsigned JTOpIdx = NumOps - (MI->isPredicable() ? 3 : 2);
Evan Cheng5657c012009-07-29 02:18:14 +00001833 MachineOperand JTOP = MI->getOperand(JTOpIdx);
1834 unsigned JTI = JTOP.getIndex();
1835 assert(JTI < JT.size());
1836
Jim Grosbach1fc7d712009-11-11 02:47:19 +00001837 bool ByteOk = true;
1838 bool HalfWordOk = true;
Jim Grosbach80697d12009-11-12 17:25:07 +00001839 unsigned JTOffset = GetOffsetOf(MI) + 4;
1840 const std::vector<MachineBasicBlock*> &JTBBs = JT[JTI].MBBs;
Evan Cheng5657c012009-07-29 02:18:14 +00001841 for (unsigned j = 0, ee = JTBBs.size(); j != ee; ++j) {
1842 MachineBasicBlock *MBB = JTBBs[j];
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001843 unsigned DstOffset = BBInfo[MBB->getNumber()].Offset;
Evan Cheng8770f742009-07-29 23:20:20 +00001844 // Negative offset is not ok. FIXME: We should change BB layout to make
1845 // sure all the branches are forward.
Evan Chengd26b14c2009-07-31 18:28:05 +00001846 if (ByteOk && (DstOffset - JTOffset) > ((1<<8)-1)*2)
Evan Cheng5657c012009-07-29 02:18:14 +00001847 ByteOk = false;
Evan Cheng25f7cfc2009-08-01 06:13:52 +00001848 unsigned TBHLimit = ((1<<16)-1)*2;
Evan Cheng25f7cfc2009-08-01 06:13:52 +00001849 if (HalfWordOk && (DstOffset - JTOffset) > TBHLimit)
Evan Cheng5657c012009-07-29 02:18:14 +00001850 HalfWordOk = false;
1851 if (!ByteOk && !HalfWordOk)
1852 break;
1853 }
1854
1855 if (ByteOk || HalfWordOk) {
1856 MachineBasicBlock *MBB = MI->getParent();
1857 unsigned BaseReg = MI->getOperand(0).getReg();
1858 bool BaseRegKill = MI->getOperand(0).isKill();
1859 if (!BaseRegKill)
1860 continue;
1861 unsigned IdxReg = MI->getOperand(1).getReg();
1862 bool IdxRegKill = MI->getOperand(1).isKill();
Jim Grosbachc7937ae2010-07-07 22:51:22 +00001863
1864 // Scan backwards to find the instruction that defines the base
1865 // register. Due to post-RA scheduling, we can't count on it
1866 // immediately preceding the branch instruction.
Evan Cheng5657c012009-07-29 02:18:14 +00001867 MachineBasicBlock::iterator PrevI = MI;
Jim Grosbachc7937ae2010-07-07 22:51:22 +00001868 MachineBasicBlock::iterator B = MBB->begin();
1869 while (PrevI != B && !PrevI->definesRegister(BaseReg))
1870 --PrevI;
1871
1872 // If for some reason we didn't find it, we can't do anything, so
1873 // just skip this one.
1874 if (!PrevI->definesRegister(BaseReg))
Evan Cheng5657c012009-07-29 02:18:14 +00001875 continue;
1876
Jim Grosbachc7937ae2010-07-07 22:51:22 +00001877 MachineInstr *AddrMI = PrevI;
Evan Cheng5657c012009-07-29 02:18:14 +00001878 bool OptOk = true;
Jim Grosbach26b8ef52010-07-07 21:06:51 +00001879 // Examine the instruction that calculates the jumptable entry address.
Jim Grosbachc7937ae2010-07-07 22:51:22 +00001880 // Make sure it only defines the base register and kills any uses
1881 // other than the index register.
Evan Cheng5657c012009-07-29 02:18:14 +00001882 for (unsigned k = 0, eee = AddrMI->getNumOperands(); k != eee; ++k) {
1883 const MachineOperand &MO = AddrMI->getOperand(k);
1884 if (!MO.isReg() || !MO.getReg())
1885 continue;
1886 if (MO.isDef() && MO.getReg() != BaseReg) {
1887 OptOk = false;
1888 break;
1889 }
1890 if (MO.isUse() && !MO.isKill() && MO.getReg() != IdxReg) {
1891 OptOk = false;
1892 break;
1893 }
1894 }
1895 if (!OptOk)
1896 continue;
1897
Owen Anderson6b8719f2010-12-13 22:51:08 +00001898 // Now scan back again to find the tLEApcrel or t2LEApcrelJT instruction
Jim Grosbachc7937ae2010-07-07 22:51:22 +00001899 // that gave us the initial base register definition.
1900 for (--PrevI; PrevI != B && !PrevI->definesRegister(BaseReg); --PrevI)
1901 ;
1902
Owen Anderson6b8719f2010-12-13 22:51:08 +00001903 // The instruction should be a tLEApcrel or t2LEApcrelJT; we want
Evan Chenga1efbbd2009-08-14 00:32:16 +00001904 // to delete it as well.
Jim Grosbachc7937ae2010-07-07 22:51:22 +00001905 MachineInstr *LeaMI = PrevI;
Evan Chenga1efbbd2009-08-14 00:32:16 +00001906 if ((LeaMI->getOpcode() != ARM::tLEApcrelJT &&
Owen Anderson6b8719f2010-12-13 22:51:08 +00001907 LeaMI->getOpcode() != ARM::t2LEApcrelJT) ||
Evan Cheng5657c012009-07-29 02:18:14 +00001908 LeaMI->getOperand(0).getReg() != BaseReg)
Evan Cheng25f7cfc2009-08-01 06:13:52 +00001909 OptOk = false;
Evan Cheng5657c012009-07-29 02:18:14 +00001910
Evan Cheng25f7cfc2009-08-01 06:13:52 +00001911 if (!OptOk)
1912 continue;
1913
Jim Grosbachd092a872010-11-29 21:28:32 +00001914 unsigned Opc = ByteOk ? ARM::t2TBB_JT : ARM::t2TBH_JT;
Evan Cheng25f7cfc2009-08-01 06:13:52 +00001915 MachineInstr *NewJTMI = BuildMI(MBB, MI->getDebugLoc(), TII->get(Opc))
1916 .addReg(IdxReg, getKillRegState(IdxRegKill))
1917 .addJumpTableIndex(JTI, JTOP.getTargetFlags())
1918 .addImm(MI->getOperand(JTOpIdx+1).getImm());
1919 // FIXME: Insert an "ALIGN" instruction to ensure the next instruction
1920 // is 2-byte aligned. For now, asm printer will fix it up.
1921 unsigned NewSize = TII->GetInstSizeInBytes(NewJTMI);
1922 unsigned OrigSize = TII->GetInstSizeInBytes(AddrMI);
1923 OrigSize += TII->GetInstSizeInBytes(LeaMI);
1924 OrigSize += TII->GetInstSizeInBytes(MI);
1925
1926 AddrMI->eraseFromParent();
1927 LeaMI->eraseFromParent();
1928 MI->eraseFromParent();
1929
1930 int delta = OrigSize - NewSize;
Jakob Stoklund Olesena3f331b2011-12-07 01:08:25 +00001931 BBInfo[MBB->getNumber()].Size -= delta;
Jakob Stoklund Olesen2fe71c52011-12-07 05:17:30 +00001932 AdjustBBOffsetsAfter(MBB);
Evan Cheng25f7cfc2009-08-01 06:13:52 +00001933
1934 ++NumTBs;
1935 MadeChange = true;
Evan Cheng5657c012009-07-29 02:18:14 +00001936 }
1937 }
1938
1939 return MadeChange;
1940}
Jim Grosbach1fc7d712009-11-11 02:47:19 +00001941
Jim Grosbach9249efe2009-11-16 18:55:47 +00001942/// ReorderThumb2JumpTables - Adjust the function's block layout to ensure that
1943/// jump tables always branch forwards, since that's what tbb and tbh need.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001944bool ARMConstantIslands::ReorderThumb2JumpTables() {
Jim Grosbach80697d12009-11-12 17:25:07 +00001945 bool MadeChange = false;
1946
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00001947 MachineJumpTableInfo *MJTI = MF->getJumpTableInfo();
Chris Lattnerb1e80392010-01-25 23:22:00 +00001948 if (MJTI == 0) return false;
Jim Grosbach26b8ef52010-07-07 21:06:51 +00001949
Jim Grosbach80697d12009-11-12 17:25:07 +00001950 const std::vector<MachineJumpTableEntry> &JT = MJTI->getJumpTables();
1951 for (unsigned i = 0, e = T2JumpTables.size(); i != e; ++i) {
1952 MachineInstr *MI = T2JumpTables[i];
Evan Chenge837dea2011-06-28 19:10:37 +00001953 const MCInstrDesc &MCID = MI->getDesc();
1954 unsigned NumOps = MCID.getNumOperands();
Evan Cheng5a96b3d2011-12-07 07:15:52 +00001955 unsigned JTOpIdx = NumOps - (MI->isPredicable() ? 3 : 2);
Jim Grosbach80697d12009-11-12 17:25:07 +00001956 MachineOperand JTOP = MI->getOperand(JTOpIdx);
1957 unsigned JTI = JTOP.getIndex();
1958 assert(JTI < JT.size());
1959
1960 // We prefer if target blocks for the jump table come after the jump
1961 // instruction so we can use TB[BH]. Loop through the target blocks
1962 // and try to adjust them such that that's true.
Jim Grosbach08cbda52009-11-16 18:58:52 +00001963 int JTNumber = MI->getParent()->getNumber();
Jim Grosbach80697d12009-11-12 17:25:07 +00001964 const std::vector<MachineBasicBlock*> &JTBBs = JT[JTI].MBBs;
1965 for (unsigned j = 0, ee = JTBBs.size(); j != ee; ++j) {
1966 MachineBasicBlock *MBB = JTBBs[j];
Jim Grosbach08cbda52009-11-16 18:58:52 +00001967 int DTNumber = MBB->getNumber();
Jim Grosbach80697d12009-11-12 17:25:07 +00001968
Jim Grosbach08cbda52009-11-16 18:58:52 +00001969 if (DTNumber < JTNumber) {
Jim Grosbach80697d12009-11-12 17:25:07 +00001970 // The destination precedes the switch. Try to move the block forward
1971 // so we have a positive offset.
1972 MachineBasicBlock *NewBB =
1973 AdjustJTTargetBlockForward(MBB, MI->getParent());
1974 if (NewBB)
Jim Grosbach00a6a1f2009-11-14 20:10:18 +00001975 MJTI->ReplaceMBBInJumpTable(JTI, JTBBs[j], NewBB);
Jim Grosbach80697d12009-11-12 17:25:07 +00001976 MadeChange = true;
1977 }
1978 }
1979 }
1980
1981 return MadeChange;
1982}
1983
Jim Grosbach1fc7d712009-11-11 02:47:19 +00001984MachineBasicBlock *ARMConstantIslands::
1985AdjustJTTargetBlockForward(MachineBasicBlock *BB, MachineBasicBlock *JTBB)
1986{
Jim Grosbach03e2d442010-07-07 22:53:35 +00001987 // If the destination block is terminated by an unconditional branch,
Jim Grosbach80697d12009-11-12 17:25:07 +00001988 // try to move it; otherwise, create a new block following the jump
Jim Grosbach08cbda52009-11-16 18:58:52 +00001989 // table that branches back to the actual target. This is a very simple
1990 // heuristic. FIXME: We can definitely improve it.
Jim Grosbach80697d12009-11-12 17:25:07 +00001991 MachineBasicBlock *TBB = 0, *FBB = 0;
1992 SmallVector<MachineOperand, 4> Cond;
Jim Grosbacha0a95a32009-11-17 01:21:04 +00001993 SmallVector<MachineOperand, 4> CondPrior;
1994 MachineFunction::iterator BBi = BB;
1995 MachineFunction::iterator OldPrior = prior(BBi);
Jim Grosbach00a6a1f2009-11-14 20:10:18 +00001996
Jim Grosbachca215e72009-11-16 17:10:56 +00001997 // If the block terminator isn't analyzable, don't try to move the block
Jim Grosbacha0a95a32009-11-17 01:21:04 +00001998 bool B = TII->AnalyzeBranch(*BB, TBB, FBB, Cond);
Jim Grosbachca215e72009-11-16 17:10:56 +00001999
Jim Grosbacha0a95a32009-11-17 01:21:04 +00002000 // If the block ends in an unconditional branch, move it. The prior block
2001 // has to have an analyzable terminator for us to move this one. Be paranoid
Jim Grosbach08cbda52009-11-16 18:58:52 +00002002 // and make sure we're not trying to move the entry block of the function.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00002003 if (!B && Cond.empty() && BB != MF->begin() &&
Jim Grosbacha0a95a32009-11-17 01:21:04 +00002004 !TII->AnalyzeBranch(*OldPrior, TBB, FBB, CondPrior)) {
Jim Grosbach80697d12009-11-12 17:25:07 +00002005 BB->moveAfter(JTBB);
2006 OldPrior->updateTerminator();
Jim Grosbach00a6a1f2009-11-14 20:10:18 +00002007 BB->updateTerminator();
Jim Grosbach08cbda52009-11-16 18:58:52 +00002008 // Update numbering to account for the block being moved.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00002009 MF->RenumberBlocks();
Jim Grosbach80697d12009-11-12 17:25:07 +00002010 ++NumJTMoved;
2011 return NULL;
2012 }
Jim Grosbach1fc7d712009-11-11 02:47:19 +00002013
2014 // Create a new MBB for the code after the jump BB.
2015 MachineBasicBlock *NewBB =
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00002016 MF->CreateMachineBasicBlock(JTBB->getBasicBlock());
Jim Grosbach1fc7d712009-11-11 02:47:19 +00002017 MachineFunction::iterator MBBI = JTBB; ++MBBI;
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00002018 MF->insert(MBBI, NewBB);
Jim Grosbach1fc7d712009-11-11 02:47:19 +00002019
2020 // Add an unconditional branch from NewBB to BB.
2021 // There doesn't seem to be meaningful DebugInfo available; this doesn't
2022 // correspond directly to anything in the source.
2023 assert (isThumb2 && "Adjusting for TB[BH] but not in Thumb2?");
Owen Anderson51f6a7a2011-09-09 21:48:23 +00002024 BuildMI(NewBB, DebugLoc(), TII->get(ARM::t2B)).addMBB(BB)
2025 .addImm(ARMCC::AL).addReg(0);
Jim Grosbach1fc7d712009-11-11 02:47:19 +00002026
Jim Grosbach00a6a1f2009-11-14 20:10:18 +00002027 // Update internal data structures to account for the newly inserted MBB.
Jakob Stoklund Olesendbf350a2011-12-12 18:16:53 +00002028 MF->RenumberBlocks(NewBB);
Jim Grosbach00a6a1f2009-11-14 20:10:18 +00002029
Jim Grosbach1fc7d712009-11-11 02:47:19 +00002030 // Update the CFG.
2031 NewBB->addSuccessor(BB);
2032 JTBB->removeSuccessor(BB);
2033 JTBB->addSuccessor(NewBB);
2034
Jim Grosbach80697d12009-11-12 17:25:07 +00002035 ++NumJTInserted;
Jim Grosbach1fc7d712009-11-11 02:47:19 +00002036 return NewBB;
2037}