ARMConstantIslandPass.cpp revision b1e803985d3378538ae9cff7eed4102c002d1e22
1a8e2989ece6dc46df59b0768184028257f913843Evan Cheng//===-- ARMConstantIslandPass.cpp - ARM constant islands --------*- C++ -*-===//
2a8e2989ece6dc46df59b0768184028257f913843Evan Cheng//
3a8e2989ece6dc46df59b0768184028257f913843Evan Cheng//                     The LLVM Compiler Infrastructure
4a8e2989ece6dc46df59b0768184028257f913843Evan Cheng//
54ee451de366474b9c228b4e5fa573795a715216dChris Lattner// This file is distributed under the University of Illinois Open Source
64ee451de366474b9c228b4e5fa573795a715216dChris Lattner// License. See LICENSE.TXT for details.
7a8e2989ece6dc46df59b0768184028257f913843Evan Cheng//
8a8e2989ece6dc46df59b0768184028257f913843Evan Cheng//===----------------------------------------------------------------------===//
9a8e2989ece6dc46df59b0768184028257f913843Evan Cheng//
10a8e2989ece6dc46df59b0768184028257f913843Evan Cheng// This file contains a pass that splits the constant pool up into 'islands'
11a8e2989ece6dc46df59b0768184028257f913843Evan Cheng// which are scattered through-out the function.  This is required due to the
12a8e2989ece6dc46df59b0768184028257f913843Evan Cheng// limited pc-relative displacements that ARM has.
13a8e2989ece6dc46df59b0768184028257f913843Evan Cheng//
14a8e2989ece6dc46df59b0768184028257f913843Evan Cheng//===----------------------------------------------------------------------===//
15a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
16a8e2989ece6dc46df59b0768184028257f913843Evan Cheng#define DEBUG_TYPE "arm-cp-islands"
17a8e2989ece6dc46df59b0768184028257f913843Evan Cheng#include "ARM.h"
18d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng#include "ARMAddressingModes.h"
19af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng#include "ARMMachineFunctionInfo.h"
20a8e2989ece6dc46df59b0768184028257f913843Evan Cheng#include "ARMInstrInfo.h"
21a8e2989ece6dc46df59b0768184028257f913843Evan Cheng#include "llvm/CodeGen/MachineConstantPool.h"
22a8e2989ece6dc46df59b0768184028257f913843Evan Cheng#include "llvm/CodeGen/MachineFunctionPass.h"
23a8e2989ece6dc46df59b0768184028257f913843Evan Cheng#include "llvm/CodeGen/MachineInstrBuilder.h"
245657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng#include "llvm/CodeGen/MachineJumpTableInfo.h"
25a8e2989ece6dc46df59b0768184028257f913843Evan Cheng#include "llvm/Target/TargetData.h"
26a8e2989ece6dc46df59b0768184028257f913843Evan Cheng#include "llvm/Target/TargetMachine.h"
27a8e2989ece6dc46df59b0768184028257f913843Evan Cheng#include "llvm/Support/Debug.h"
28c25e7581b9b8088910da31702d4ca21c4734c6d7Torok Edwin#include "llvm/Support/ErrorHandling.h"
29705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner#include "llvm/Support/raw_ostream.h"
30b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson#include "llvm/ADT/SmallSet.h"
31c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng#include "llvm/ADT/SmallVector.h"
32a8e2989ece6dc46df59b0768184028257f913843Evan Cheng#include "llvm/ADT/STLExtras.h"
33a8e2989ece6dc46df59b0768184028257f913843Evan Cheng#include "llvm/ADT/Statistic.h"
341fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach#include "llvm/Support/CommandLine.h"
35b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson#include <algorithm>
36a8e2989ece6dc46df59b0768184028257f913843Evan Chengusing namespace llvm;
37a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
38a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan ChengSTATISTIC(NumCPEs,       "Number of constpool entries");
39a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan ChengSTATISTIC(NumSplit,      "Number of uncond branches inserted");
40a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan ChengSTATISTIC(NumCBrFixed,   "Number of cond branches fixed");
41a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan ChengSTATISTIC(NumUBrFixed,   "Number of uncond branches fixed");
42a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan ChengSTATISTIC(NumTBs,        "Number of table branches generated");
43a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan ChengSTATISTIC(NumT2CPShrunk, "Number of Thumb2 constantpool instructions shrunk");
4431b99dd76035067b1c3cc6c7e9d663b7b0210938Evan ChengSTATISTIC(NumT2BrShrunk, "Number of Thumb2 immediate branches shrunk");
45de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan ChengSTATISTIC(NumCBZ,        "Number of CBZ / CBNZ formed");
461fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim GrosbachSTATISTIC(NumJTMoved,    "Number of jump table destination blocks moved");
4780697d1b266cd3cd3b92edd424d66d573db6b4b1Jim GrosbachSTATISTIC(NumJTInserted, "Number of jump table intermediate blocks inserted");
481fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach
491fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach
501fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbachstatic cl::opt<bool>
51f04777b945e272ccec21c7080bd5480d78a14fd2Jim GrosbachAdjustJumpTableBlocks("arm-adjust-jump-tables", cl::Hidden, cl::init(true),
521fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach          cl::desc("Adjust basic block layout to better use TB[BH]"));
53a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
54a8e2989ece6dc46df59b0768184028257f913843Evan Chengnamespace {
5588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  /// ARMConstantIslands - Due to limited PC-relative displacements, ARM
56a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  /// requires constant pool entries to be scattered among the instructions
57a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  /// inside a function.  To do this, it completely ignores the normal LLVM
5888e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  /// constant pool; instead, it places constants wherever it feels like with
59a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  /// special instructions.
60a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  ///
61a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  /// The terminology used in this pass includes:
62a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  ///   Islands - Clumps of constants placed in the function.
63a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  ///   Water   - Potential places where an island could be formed.
64a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  ///   CPE     - A constant pool entry that has been placed somewhere, which
65a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  ///             tracks a list of users.
666726b6d75a8b679068a58cb954ba97cf9d1690baNick Lewycky  class ARMConstantIslands : public MachineFunctionPass {
67a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    /// BBSizes - The size of each MachineBasicBlock in bytes of code, indexed
688593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    /// by MBB Number.  The two-byte pads required for Thumb alignment are
698593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    /// counted as part of the following block (i.e., the offset and size for
708593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    /// a padded block will both be ==2 mod 4).
71e03cff6812ac41598e2bca7854985dc821a07f44Evan Cheng    std::vector<unsigned> BBSizes;
728494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
7399c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen    /// BBOffsets - the offset of each MBB in bytes, starting from 0.
748593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    /// The two-byte pads required for Thumb alignment are counted as part of
758593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    /// the following block.
7699c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen    std::vector<unsigned> BBOffsets;
7799c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen
78a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    /// WaterList - A sorted list of basic blocks where islands could be placed
79a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    /// (i.e. blocks that don't fall through to the following block, due
80a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    /// to a return, unreachable, or unconditional branch).
81e03cff6812ac41598e2bca7854985dc821a07f44Evan Cheng    std::vector<MachineBasicBlock*> WaterList;
82c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng
83b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    /// NewWaterList - The subset of WaterList that was created since the
84b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    /// previous iteration by inserting unconditional branches.
85b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    SmallSet<MachineBasicBlock*, 4> NewWaterList;
86b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson
87034de5f65f9139954cb01d94eaebbaefd294946eBob Wilson    typedef std::vector<MachineBasicBlock*>::iterator water_iterator;
88034de5f65f9139954cb01d94eaebbaefd294946eBob Wilson
89a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    /// CPUser - One user of a constant pool, keeping the machine instruction
90a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    /// pointer, the constant pool being referenced, and the max displacement
91549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson    /// allowed from the instruction to the CP.  The HighWaterMark records the
92549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson    /// highest basic block where a new CPEntry can be placed.  To ensure this
93549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson    /// pass terminates, the CP entries are initially placed at the end of the
94549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson    /// function and then move monotonically to lower addresses.  The
95549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson    /// exception to this rule is when the current CP entry for a particular
96549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson    /// CPUser is out of range, but there is another CP entry for the same
97549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson    /// constant value in range.  We want to use the existing in-range CP
98549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson    /// entry, but if it later moves out of range, the search for new water
99549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson    /// should resume where it left off.  The HighWaterMark is used to record
100549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson    /// that point.
101a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    struct CPUser {
102a8e2989ece6dc46df59b0768184028257f913843Evan Cheng      MachineInstr *MI;
103a8e2989ece6dc46df59b0768184028257f913843Evan Cheng      MachineInstr *CPEMI;
104549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson      MachineBasicBlock *HighWaterMark;
105a8e2989ece6dc46df59b0768184028257f913843Evan Cheng      unsigned MaxDisp;
1065d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng      bool NegOk;
107d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      bool IsSoImm;
108d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      CPUser(MachineInstr *mi, MachineInstr *cpemi, unsigned maxdisp,
109d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng             bool neg, bool soimm)
110549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson        : MI(mi), CPEMI(cpemi), MaxDisp(maxdisp), NegOk(neg), IsSoImm(soimm) {
111549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson        HighWaterMark = CPEMI->getParent();
112549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson      }
113a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    };
1148494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
115a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    /// CPUsers - Keep track of all of the machine instructions that use various
116a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    /// constant pools and their max displacement.
117e03cff6812ac41598e2bca7854985dc821a07f44Evan Cheng    std::vector<CPUser> CPUsers;
1188494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
119c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    /// CPEntry - One per constant pool entry, keeping the machine instruction
120c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    /// pointer, the constpool index, and the number of CPUser's which
121c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    /// reference this entry.
122c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    struct CPEntry {
123c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng      MachineInstr *CPEMI;
124c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng      unsigned CPI;
125c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng      unsigned RefCount;
126c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng      CPEntry(MachineInstr *cpemi, unsigned cpi, unsigned rc = 0)
127c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng        : CPEMI(cpemi), CPI(cpi), RefCount(rc) {}
128c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    };
129c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng
130c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    /// CPEntries - Keep track of all of the constant pool entry machine
13188e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    /// instructions. For each original constpool index (i.e. those that
13288e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    /// existed upon entry to this pass), it keeps a vector of entries.
13388e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    /// Original elements are cloned as we go along; the clones are
13488e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    /// put in the vector of the original element, but have distinct CPIs.
135c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    std::vector<std::vector<CPEntry> > CPEntries;
1368494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
137af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng    /// ImmBranch - One per immediate branch, keeping the machine instruction
138af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng    /// pointer, conditional or unconditional, the max displacement,
139af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng    /// and (if isCond is true) the corresponding unconditional branch
140af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng    /// opcode.
141af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng    struct ImmBranch {
142af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng      MachineInstr *MI;
143c285414988ba026d01e5d8acc07a21cd06fd5732Evan Cheng      unsigned MaxDisp : 31;
144c285414988ba026d01e5d8acc07a21cd06fd5732Evan Cheng      bool isCond : 1;
145af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng      int UncondBr;
146c285414988ba026d01e5d8acc07a21cd06fd5732Evan Cheng      ImmBranch(MachineInstr *mi, unsigned maxdisp, bool cond, int ubr)
147c285414988ba026d01e5d8acc07a21cd06fd5732Evan Cheng        : MI(mi), MaxDisp(maxdisp), isCond(cond), UncondBr(ubr) {}
148af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng    };
149af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng
1502706f9771de8e90ee6379e70afedd91892bb9c8cEvan Cheng    /// ImmBranches - Keep track of all the immediate branch instructions.
151af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng    ///
152e03cff6812ac41598e2bca7854985dc821a07f44Evan Cheng    std::vector<ImmBranch> ImmBranches;
153af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng
154d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng    /// PushPopMIs - Keep track of all the Thumb push / pop instructions.
155d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng    ///
156c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    SmallVector<MachineInstr*, 4> PushPopMIs;
157d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
1585657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    /// T2JumpTables - Keep track of all the Thumb2 jumptable instructions.
1595657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    SmallVector<MachineInstr*, 4> T2JumpTables;
1605657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng
161d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng    /// HasFarJump - True if any far jump instruction has been emitted during
162d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng    /// the branch fix up pass.
163d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng    bool HasFarJump;
164d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
1654d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach    /// HasInlineAsm - True if the function contains inline assembly.
1664d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach    bool HasInlineAsm;
1674d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach
168a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    const TargetInstrInfo *TII;
16925f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng    const ARMSubtarget *STI;
1708593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    ARMFunctionInfo *AFI;
171b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    bool isThumb;
172d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    bool isThumb1;
1735e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin    bool isThumb2;
174a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  public:
1751997473cf72957d0e70322e2fe6fe2ab141c58a6Devang Patel    static char ID;
176ae73dc1448d25b02cabc7c64c86c64371453dda8Dan Gohman    ARMConstantIslands() : MachineFunctionPass(&ID) {}
177794fd75c67a2cdc128d67342c6d88a504d186896Devang Patel
1785657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    virtual bool runOnMachineFunction(MachineFunction &MF);
179a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
180a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    virtual const char *getPassName() const {
181af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng      return "ARM constant island placement and branch shortening pass";
182a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    }
1838494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
184a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  private:
1855657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    void DoInitialPlacement(MachineFunction &MF,
186e03cff6812ac41598e2bca7854985dc821a07f44Evan Cheng                            std::vector<MachineInstr*> &CPEMIs);
187c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    CPEntry *findConstPoolEntry(unsigned CPI, const MachineInstr *CPEMI);
18880697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    void JumpTableFunctionScan(MachineFunction &MF);
1895657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    void InitialFunctionScan(MachineFunction &MF,
190e03cff6812ac41598e2bca7854985dc821a07f44Evan Cheng                             const std::vector<MachineInstr*> &CPEMIs);
1910c61584d05894a5543f690803191a8b0da05b8fcEvan Cheng    MachineBasicBlock *SplitBlockBeforeInstr(MachineInstr *MI);
192a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    void UpdateForInsertedWaterBlock(MachineBasicBlock *NewBB);
19399c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen    void AdjustBBOffsetsAfter(MachineBasicBlock *BB, int delta);
194ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng    bool DecrementOldEntry(unsigned CPI, MachineInstr* CPEMI);
19588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    int LookForExistingCPEntry(CPUser& U, unsigned UserOffset);
196b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    bool LookForWater(CPUser&U, unsigned UserOffset, water_iterator &WaterIter);
197b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    void CreateNewWater(unsigned CPUserIndex, unsigned UserOffset,
198757652c5ba820bbea75d8713d7bf3749e4113778Bob Wilson                        MachineBasicBlock *&NewMBB);
1995657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    bool HandleConstantPoolUser(MachineFunction &MF, unsigned CPUserIndex);
200ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng    void RemoveDeadCPEMI(MachineInstr *CPEMI);
201ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng    bool RemoveUnusedCPEntries();
2028494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson    bool CPEIsInRange(MachineInstr *MI, unsigned UserOffset,
2035d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng                      MachineInstr *CPEMI, unsigned Disp, bool NegOk,
2045d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng                      bool DoDump = false);
20599c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen    bool WaterIsInRange(unsigned UserOffset, MachineBasicBlock *Water,
2065d9c4b60204d741c213456e21b87e9af6a3dc627Dale Johannesen                        CPUser &U);
20799c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen    bool OffsetIsInRange(unsigned UserOffset, unsigned TrialOffset,
208d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng                         unsigned Disp, bool NegativeOK, bool IsSoImm = false);
209c0dbec7e1038ee60b8525eb1e8e3eaa6a839bd5bEvan Cheng    bool BBIsInRange(MachineInstr *MI, MachineBasicBlock *BB, unsigned Disp);
2105657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    bool FixUpImmediateBr(MachineFunction &MF, ImmBranch &Br);
2115657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    bool FixUpConditionalBr(MachineFunction &MF, ImmBranch &Br);
2125657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    bool FixUpUnconditionalBr(MachineFunction &MF, ImmBranch &Br);
213d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng    bool UndoLRSpillRestore();
214a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    bool OptimizeThumb2Instructions(MachineFunction &MF);
215a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    bool OptimizeThumb2Branches(MachineFunction &MF);
21680697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    bool ReorderThumb2JumpTables(MachineFunction &MF);
2175657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    bool OptimizeThumb2JumpTables(MachineFunction &MF);
2181fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach    MachineBasicBlock *AdjustJTTargetBlockForward(MachineBasicBlock *BB,
2191fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach                                                  MachineBasicBlock *JTBB);
220a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
221a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    unsigned GetOffsetOf(MachineInstr *MI) const;
2228593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    void dumpBBs();
2235657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    void verify(MachineFunction &MF);
224a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  };
2251997473cf72957d0e70322e2fe6fe2ab141c58a6Devang Patel  char ARMConstantIslands::ID = 0;
226a8e2989ece6dc46df59b0768184028257f913843Evan Cheng}
227a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
2288593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen/// verify - check BBOffsets, BBSizes, alignment of islands
2295657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Chengvoid ARMConstantIslands::verify(MachineFunction &MF) {
2308593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  assert(BBOffsets.size() == BBSizes.size());
2318593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  for (unsigned i = 1, e = BBOffsets.size(); i != e; ++i)
2328593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    assert(BBOffsets[i-1]+BBSizes[i-1] == BBOffsets[i]);
233d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng  if (!isThumb)
234d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    return;
235d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng#ifndef NDEBUG
2365657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  for (MachineFunction::iterator MBBI = MF.begin(), E = MF.end();
237d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng       MBBI != E; ++MBBI) {
238d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    MachineBasicBlock *MBB = MBBI;
239d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    if (!MBB->empty() &&
240d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng        MBB->begin()->getOpcode() == ARM::CONSTPOOL_ENTRY) {
241d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      unsigned MBBId = MBB->getNumber();
2424d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach      assert(HasInlineAsm ||
2434d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach             (BBOffsets[MBBId]%4 == 0 && BBSizes[MBBId]%4 == 0) ||
244d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng             (BBOffsets[MBBId]%4 != 0 && BBSizes[MBBId]%4 != 0));
2458593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    }
2468593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  }
2474d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach  for (unsigned i = 0, e = CPUsers.size(); i != e; ++i) {
2484d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach    CPUser &U = CPUsers[i];
2494d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach    unsigned UserOffset = GetOffsetOf(U.MI) + (isThumb ? 4 : 8);
250a9562568e5c2a897e3a51b18700eeb70f0dda48cJim Grosbach    unsigned CPEOffset  = GetOffsetOf(U.CPEMI);
251a9562568e5c2a897e3a51b18700eeb70f0dda48cJim Grosbach    unsigned Disp = UserOffset < CPEOffset ? CPEOffset - UserOffset :
252a9562568e5c2a897e3a51b18700eeb70f0dda48cJim Grosbach      UserOffset - CPEOffset;
253a9562568e5c2a897e3a51b18700eeb70f0dda48cJim Grosbach    assert(Disp <= U.MaxDisp || "Constant pool entry out of range!");
2544d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach  }
255a9562568e5c2a897e3a51b18700eeb70f0dda48cJim Grosbach#endif
2568593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen}
2578593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen
2588593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen/// print block size and offset information - debugging
2598593e418555fdae21a070357fd8734b4069c17d0Dale Johannesenvoid ARMConstantIslands::dumpBBs() {
2608593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  for (unsigned J = 0, E = BBOffsets.size(); J !=E; ++J) {
261893e1c90a03a53cf13f73849324e83612688428aChris Lattner    DEBUG(errs() << "block " << J << " offset " << BBOffsets[J]
262893e1c90a03a53cf13f73849324e83612688428aChris Lattner                 << " size " << BBSizes[J] << "\n");
2638593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  }
2648593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen}
2658593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen
266af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng/// createARMConstantIslandPass - returns an instance of the constpool
267af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng/// island pass.
268a8e2989ece6dc46df59b0768184028257f913843Evan ChengFunctionPass *llvm::createARMConstantIslandPass() {
269a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  return new ARMConstantIslands();
270a8e2989ece6dc46df59b0768184028257f913843Evan Cheng}
271a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
2725657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Chengbool ARMConstantIslands::runOnMachineFunction(MachineFunction &MF) {
2735657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  MachineConstantPool &MCP = *MF.getConstantPool();
2748494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
2755657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  TII = MF.getTarget().getInstrInfo();
2765657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  AFI = MF.getInfo<ARMFunctionInfo>();
27725f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng  STI = &MF.getTarget().getSubtarget<ARMSubtarget>();
27825f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng
279b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  isThumb = AFI->isThumbFunction();
280d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng  isThumb1 = AFI->isThumb1OnlyFunction();
2815e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin  isThumb2 = AFI->isThumb2Function();
282d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
283d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  HasFarJump = false;
2844d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach  HasInlineAsm = false;
285d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
286a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Renumber all of the machine basic blocks in the function, guaranteeing that
287a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // the numbers agree with the position of the block in the function.
2885657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  MF.RenumberBlocks();
289a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
29080697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  // Try to reorder and otherwise adjust the block layout to make good use
29180697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  // of the TB[BH] instructions.
29280697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  bool MadeChange = false;
29380697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  if (isThumb2 && AdjustJumpTableBlocks) {
29480697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    JumpTableFunctionScan(MF);
29580697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    MadeChange |= ReorderThumb2JumpTables(MF);
29680697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    // Data is out of date, so clear it. It'll be re-computed later.
29780697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    T2JumpTables.clear();
29880697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    // Blocks may have shifted around. Keep the numbering up to date.
29980697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    MF.RenumberBlocks();
30080697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  }
30180697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach
302d26b14c34cbcee1448b86b524578fc51cc979023Evan Cheng  // Thumb1 functions containing constant pools get 4-byte alignment.
303d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng  // This is so we can keep exact track of where the alignment padding goes.
304d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng
305d26b14c34cbcee1448b86b524578fc51cc979023Evan Cheng  // Set default. Thumb1 function is 2-byte aligned, ARM and Thumb2 are 4-byte
306d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng  // aligned.
307d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng  AFI->setAlign(isThumb1 ? 1U : 2U);
30856c42ef3e43f8eb75c435e781d0ac8251c7588a1Dale Johannesen
309a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Perform the initial placement of the constant pool entries.  To start with,
310a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // we put them all at the end of the function.
311e03cff6812ac41598e2bca7854985dc821a07f44Evan Cheng  std::vector<MachineInstr*> CPEMIs;
31256c42ef3e43f8eb75c435e781d0ac8251c7588a1Dale Johannesen  if (!MCP.isEmpty()) {
3135657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    DoInitialPlacement(MF, CPEMIs);
314d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    if (isThumb1)
31556c42ef3e43f8eb75c435e781d0ac8251c7588a1Dale Johannesen      AFI->setAlign(2U);
31656c42ef3e43f8eb75c435e781d0ac8251c7588a1Dale Johannesen  }
3178494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
318a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  /// The next UID to take is the first unused one.
319f1bbb9577a42cf7dc3079412f1dd7683e3a03665Evan Cheng  AFI->initConstPoolEntryUId(CPEMIs.size());
3208494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
321a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Do the initial scan of the function, building up information about the
322a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // sizes of each block, the location of all the water, and finding all of the
323a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // constant pool users.
3245657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  InitialFunctionScan(MF, CPEMIs);
325a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  CPEMIs.clear();
3268494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
327ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  /// Remove dead constant pool entries.
328ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  RemoveUnusedCPEntries();
329ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng
330d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  // Iteratively place constant pool entries and fix up branches until there
331d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  // is no change.
332b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng  unsigned NoCPIters = 0, NoBRIters = 0;
333d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  while (true) {
334b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng    bool CPChange = false;
335a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    for (unsigned i = 0, e = CPUsers.size(); i != e; ++i)
336b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng      CPChange |= HandleConstantPoolUser(MF, i);
337b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng    if (CPChange && ++NoCPIters > 30)
338b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng      llvm_unreachable("Constant Island pass failed to converge!");
3398202010364e1bfe6111f1ce62f154499b80877fbEvan Cheng    DEBUG(dumpBBs());
340b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson
341b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // Clear NewWaterList now.  If we split a block for branches, it should
342b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // appear as "new water" for the next iteration of constant pool placement.
343b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    NewWaterList.clear();
344b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng
345b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng    bool BRChange = false;
346af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng    for (unsigned i = 0, e = ImmBranches.size(); i != e; ++i)
347b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng      BRChange |= FixUpImmediateBr(MF, ImmBranches[i]);
348b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng    if (BRChange && ++NoBRIters > 30)
349b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng      llvm_unreachable("Branch Fix Up pass failed to converge!");
3508202010364e1bfe6111f1ce62f154499b80877fbEvan Cheng    DEBUG(dumpBBs());
351b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng
352b6879b2b84df2f642cd39f5bf58584c4a39f8080Evan Cheng    if (!CPChange && !BRChange)
353d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng      break;
354d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng    MadeChange = true;
355d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  }
356ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng
357a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng  // Shrink 32-bit Thumb2 branch, load, and store instructions.
358a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng  if (isThumb2)
359a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    MadeChange |= OptimizeThumb2Instructions(MF);
36025f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng
3618593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // After a while, this might be made debug-only, but it is not expensive.
3625657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  verify(MF);
3638593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen
364d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  // If LR has been forced spilled and no far jumps (i.e. BL) has been issued.
365d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  // Undo the spill / restore of LR if possible.
3665657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  if (isThumb && !HasFarJump && AFI->isLRSpilledForFarJump())
367d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng    MadeChange |= UndoLRSpillRestore();
368d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
369a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  BBSizes.clear();
37099c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  BBOffsets.clear();
371a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  WaterList.clear();
372a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  CPUsers.clear();
373c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  CPEntries.clear();
374af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  ImmBranches.clear();
375c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  PushPopMIs.clear();
3765657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  T2JumpTables.clear();
377d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
378d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  return MadeChange;
379a8e2989ece6dc46df59b0768184028257f913843Evan Cheng}
380a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
381a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// DoInitialPlacement - Perform the initial placement of the constant pool
382a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// entries.  To start with, we put them all at the end of the function.
3835657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Chengvoid ARMConstantIslands::DoInitialPlacement(MachineFunction &MF,
3848494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson                                        std::vector<MachineInstr*> &CPEMIs) {
385a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Create the basic block to hold the CPE's.
3865657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  MachineBasicBlock *BB = MF.CreateMachineBasicBlock();
3875657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  MF.push_back(BB);
3888494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
389a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Add all of the constants from the constant pool to the end block, use an
390a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // identity mapping of CPI's to CPE's.
391a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  const std::vector<MachineConstantPoolEntry> &CPs =
3925657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    MF.getConstantPool()->getConstants();
3938494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
3945657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  const TargetData &TD = *MF.getTarget().getTargetData();
395a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  for (unsigned i = 0, e = CPs.size(); i != e; ++i) {
396777d2306b36816a53bc1ae1244c0dc7d998ae691Duncan Sands    unsigned Size = TD.getTypeAllocSize(CPs[i].getType());
397a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    // Verify that all constant pool entries are a multiple of 4 bytes.  If not,
398a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    // we would have to pad them out or something so that instructions stay
399a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    // aligned.
400a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    assert((Size & 3) == 0 && "CP Entry not multiple of 4 bytes!");
401a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    MachineInstr *CPEMI =
402b67284057ee130114055309eabe0bcd1af13777dDale Johannesen      BuildMI(BB, DebugLoc::getUnknownLoc(), TII->get(ARM::CONSTPOOL_ENTRY))
403a8e2989ece6dc46df59b0768184028257f913843Evan Cheng                           .addImm(i).addConstantPoolIndex(i).addImm(Size);
404a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    CPEMIs.push_back(CPEMI);
405c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng
406c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    // Add a new CPEntry, but no corresponding CPUser yet.
407c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    std::vector<CPEntry> CPEs;
408c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    CPEs.push_back(CPEntry(CPEMI, i));
409c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    CPEntries.push_back(CPEs);
410c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    NumCPEs++;
411893e1c90a03a53cf13f73849324e83612688428aChris Lattner    DEBUG(errs() << "Moved CPI#" << i << " to end of function as #" << i
412893e1c90a03a53cf13f73849324e83612688428aChris Lattner                 << "\n");
413a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  }
414a8e2989ece6dc46df59b0768184028257f913843Evan Cheng}
415a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
41688e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// BBHasFallthrough - Return true if the specified basic block can fallthrough
417a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// into the block immediately after it.
418a8e2989ece6dc46df59b0768184028257f913843Evan Chengstatic bool BBHasFallthrough(MachineBasicBlock *MBB) {
419a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Get the next machine basic block in the function.
420a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  MachineFunction::iterator MBBI = MBB;
4217896c9f436a4eda5ec15e882a7505ba482a2fcd0Chris Lattner  if (llvm::next(MBBI) == MBB->getParent()->end())  // Can't fall off end of function.
422a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    return false;
4238494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
4247896c9f436a4eda5ec15e882a7505ba482a2fcd0Chris Lattner  MachineBasicBlock *NextBB = llvm::next(MBBI);
425a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  for (MachineBasicBlock::succ_iterator I = MBB->succ_begin(),
426a8e2989ece6dc46df59b0768184028257f913843Evan Cheng       E = MBB->succ_end(); I != E; ++I)
427a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    if (*I == NextBB)
428a8e2989ece6dc46df59b0768184028257f913843Evan Cheng      return true;
4298494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
430a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  return false;
431a8e2989ece6dc46df59b0768184028257f913843Evan Cheng}
432a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
433c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng/// findConstPoolEntry - Given the constpool index and CONSTPOOL_ENTRY MI,
434c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng/// look up the corresponding CPEntry.
435c99ef085b90b32952b484e8843fb66ad65215b61Evan ChengARMConstantIslands::CPEntry
436c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng*ARMConstantIslands::findConstPoolEntry(unsigned CPI,
437c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng                                        const MachineInstr *CPEMI) {
438c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  std::vector<CPEntry> &CPEs = CPEntries[CPI];
439c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  // Number of entries per constpool index should be small, just do a
440c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  // linear search.
441c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  for (unsigned i = 0, e = CPEs.size(); i != e; ++i) {
442c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    if (CPEs[i].CPEMI == CPEMI)
443c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng      return &CPEs[i];
444c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  }
445c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  return NULL;
446c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng}
447c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng
44880697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach/// JumpTableFunctionScan - Do a scan of the function, building up
44980697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach/// information about the sizes of each block and the locations of all
45080697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach/// the jump tables.
45180697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbachvoid ARMConstantIslands::JumpTableFunctionScan(MachineFunction &MF) {
45280697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  for (MachineFunction::iterator MBBI = MF.begin(), E = MF.end();
45380697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach       MBBI != E; ++MBBI) {
45480697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    MachineBasicBlock &MBB = *MBBI;
45580697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach
45680697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    for (MachineBasicBlock::iterator I = MBB.begin(), E = MBB.end();
45708cbda56b6a45a2c29bdf3d9668ad614ad86cb77Jim Grosbach         I != E; ++I)
45808cbda56b6a45a2c29bdf3d9668ad614ad86cb77Jim Grosbach      if (I->getDesc().isBranch() && I->getOpcode() == ARM::t2BR_JT)
45908cbda56b6a45a2c29bdf3d9668ad614ad86cb77Jim Grosbach        T2JumpTables.push_back(I);
46080697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  }
46180697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach}
46280697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach
463a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// InitialFunctionScan - Do the initial scan of the function, building up
464a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// information about the sizes of each block, the location of all the water,
465a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// and finding all of the constant pool users.
4665657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Chengvoid ARMConstantIslands::InitialFunctionScan(MachineFunction &MF,
467e03cff6812ac41598e2bca7854985dc821a07f44Evan Cheng                                 const std::vector<MachineInstr*> &CPEMIs) {
4684d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach  // First thing, see if the function has any inline assembly in it. If so,
4694d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach  // we have to be conservative about alignment assumptions, as we don't
4704d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach  // know for sure the size of any instructions in the inline assembly.
4714d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach  for (MachineFunction::iterator MBBI = MF.begin(), E = MF.end();
4724d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach       MBBI != E; ++MBBI) {
4734d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach    MachineBasicBlock &MBB = *MBBI;
4744d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach    for (MachineBasicBlock::iterator I = MBB.begin(), E = MBB.end();
4754d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach         I != E; ++I)
4764d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach      if (I->getOpcode() == ARM::INLINEASM)
4774d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach        HasInlineAsm = true;
4784d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach  }
4794d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach
4804d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach  // Now go back through the instructions and build up our data structures
48199c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  unsigned Offset = 0;
4825657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  for (MachineFunction::iterator MBBI = MF.begin(), E = MF.end();
483a8e2989ece6dc46df59b0768184028257f913843Evan Cheng       MBBI != E; ++MBBI) {
484a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    MachineBasicBlock &MBB = *MBBI;
4858494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
486a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    // If this block doesn't fall through into the next MBB, then this is
487a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    // 'water' that a constant pool island could be placed.
488a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    if (!BBHasFallthrough(&MBB))
489a8e2989ece6dc46df59b0768184028257f913843Evan Cheng      WaterList.push_back(&MBB);
4908494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
491a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    unsigned MBBSize = 0;
492a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    for (MachineBasicBlock::iterator I = MBB.begin(), E = MBB.end();
493a8e2989ece6dc46df59b0768184028257f913843Evan Cheng         I != E; ++I) {
494a8e2989ece6dc46df59b0768184028257f913843Evan Cheng      // Add instruction size to MBBSize.
49552e724ad7e679ee590f4bd763d55280586a8f1bcNicolas Geoffray      MBBSize += TII->GetInstSizeInBytes(I);
496a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
497af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng      int Opc = I->getOpcode();
498749c6f6b5ed301c84aac562e414486549d7b98ebChris Lattner      if (I->getDesc().isBranch()) {
499af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng        bool isCond = false;
500af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng        unsigned Bits = 0;
501af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng        unsigned Scale = 1;
502af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng        int UOpc = Opc;
503af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng        switch (Opc) {
5045657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        default:
5055657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng          continue;  // Ignore other JT branches
5068593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen        case ARM::tBR_JTr:
50766ac53165e17b7c76b8c69e57bde623d44ec492eEvan Cheng          // A Thumb1 table jump may involve padding; for the offsets to
5088593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen          // be right, functions containing these must be 4-byte aligned.
5098593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen          AFI->setAlign(2U);
5104d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach          if ((Offset+MBBSize)%4 != 0 || HasInlineAsm)
5115657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng            // FIXME: Add a pseudo ALIGN instruction instead.
5128593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen            MBBSize += 2;           // padding
5138593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen          continue;   // Does not get an entry in ImmBranches
5145657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        case ARM::t2BR_JT:
5155657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng          T2JumpTables.push_back(I);
5165657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng          continue;   // Does not get an entry in ImmBranches
517af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng        case ARM::Bcc:
518af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          isCond = true;
519af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          UOpc = ARM::B;
520af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          // Fallthrough
521af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng        case ARM::B:
522af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          Bits = 24;
523af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          Scale = 4;
524af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          break;
525af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng        case ARM::tBcc:
526af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          isCond = true;
527af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          UOpc = ARM::tB;
528af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          Bits = 8;
529af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          Scale = 2;
530af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          break;
531af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng        case ARM::tB:
532af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          Bits = 11;
533af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          Scale = 2;
534af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng          break;
5355e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin        case ARM::t2Bcc:
5365e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin          isCond = true;
5375e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin          UOpc = ARM::t2B;
5385e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin          Bits = 20;
5395e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin          Scale = 2;
5405e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin          break;
5415e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin        case ARM::t2B:
5425e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin          Bits = 24;
5435e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin          Scale = 2;
5445e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin          break;
545af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng        }
546b43216ee4a418257ce5530c02601b77efe86c354Evan Cheng
547b43216ee4a418257ce5530c02601b77efe86c354Evan Cheng        // Record this immediate branch.
548bd5d3dbdbe46c7325545a7cb8c891c0347375451Evan Cheng        unsigned MaxOffs = ((1 << (Bits-1))-1) * Scale;
549b43216ee4a418257ce5530c02601b77efe86c354Evan Cheng        ImmBranches.push_back(ImmBranch(I, MaxOffs, isCond, UOpc));
550af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng      }
551af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng
552d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng      if (Opc == ARM::tPUSH || Opc == ARM::tPOP_RET)
553d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng        PushPopMIs.push_back(I);
554d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
555d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      if (Opc == ARM::CONSTPOOL_ENTRY)
556d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng        continue;
557d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng
558a8e2989ece6dc46df59b0768184028257f913843Evan Cheng      // Scan the instructions for constant pool operands.
559a8e2989ece6dc46df59b0768184028257f913843Evan Cheng      for (unsigned op = 0, e = I->getNumOperands(); op != e; ++op)
560d735b8019b0f297d7c14b55adcd887af24d8e602Dan Gohman        if (I->getOperand(op).isCPI()) {
561a8e2989ece6dc46df59b0768184028257f913843Evan Cheng          // We found one.  The addressing mode tells us the max displacement
562a8e2989ece6dc46df59b0768184028257f913843Evan Cheng          // from the PC that this instruction permits.
5638494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
564a8e2989ece6dc46df59b0768184028257f913843Evan Cheng          // Basic size info comes from the TSFlags field.
565b43216ee4a418257ce5530c02601b77efe86c354Evan Cheng          unsigned Bits = 0;
566b43216ee4a418257ce5530c02601b77efe86c354Evan Cheng          unsigned Scale = 1;
5675d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng          bool NegOk = false;
568d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          bool IsSoImm = false;
569d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng
570d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          switch (Opc) {
5718494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson          default:
572c23197a26f34f559ea9797de51e187087c039c42Torok Edwin            llvm_unreachable("Unknown addressing mode for CP reference!");
573a8e2989ece6dc46df59b0768184028257f913843Evan Cheng            break;
574d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng
575d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          // Taking the address of a CP entry.
576d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          case ARM::LEApcrel:
577d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            // This takes a SoImm, which is 8 bit immediate rotated. We'll
578d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            // pretend the maximum offset is 255 * 4. Since each instruction
579dec6de92d1425c88f319179fb4a0b0a23f781df9Jim Grosbach            // 4 byte wide, this is always correct. We'll check for other
580d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            // displacements that fits in a SoImm as well.
581d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            Bits = 8;
582d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            Scale = 4;
5835d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng            NegOk = true;
584d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            IsSoImm = true;
585a8e2989ece6dc46df59b0768184028257f913843Evan Cheng            break;
586d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          case ARM::t2LEApcrel:
587d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            Bits = 12;
5885d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng            NegOk = true;
589a8e2989ece6dc46df59b0768184028257f913843Evan Cheng            break;
590d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          case ARM::tLEApcrel:
591b43216ee4a418257ce5530c02601b77efe86c354Evan Cheng            Bits = 8;
592d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            Scale = 4;
593a8e2989ece6dc46df59b0768184028257f913843Evan Cheng            break;
594d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng
595d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          case ARM::LDR:
596d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          case ARM::LDRcp:
597d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          case ARM::t2LDRpci:
598d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            Bits = 12;  // +-offset_12
599d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            NegOk = true;
600a8e2989ece6dc46df59b0768184028257f913843Evan Cheng            break;
601d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng
602d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          case ARM::tLDRpci:
603d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          case ARM::tLDRcp:
604b43216ee4a418257ce5530c02601b77efe86c354Evan Cheng            Bits = 8;
605b43216ee4a418257ce5530c02601b77efe86c354Evan Cheng            Scale = 4;  // +(offset_8*4)
606012f2d97b78e4eb9128f1d491f2c177768dbe527Evan Cheng            break;
607d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng
608e5165490b7ba24bb2f3043399e0d60e7f3bcf8a5Jim Grosbach          case ARM::VLDRD:
609e5165490b7ba24bb2f3043399e0d60e7f3bcf8a5Jim Grosbach          case ARM::VLDRS:
610d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            Bits = 8;
611d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            Scale = 4;  // +-(offset_8*4)
612d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng            NegOk = true;
613055b0310f862b91f33699037ce67d3ab8137c20cEvan Cheng            break;
614a8e2989ece6dc46df59b0768184028257f913843Evan Cheng          }
615b43216ee4a418257ce5530c02601b77efe86c354Evan Cheng
616a8e2989ece6dc46df59b0768184028257f913843Evan Cheng          // Remember that this is a user of a CP entry.
6178aa797aa51cd4ea1ec6f46f4891a6897944b75b2Chris Lattner          unsigned CPI = I->getOperand(op).getIndex();
618c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng          MachineInstr *CPEMI = CPEMIs[CPI];
61931b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng          unsigned MaxOffs = ((1 << Bits)-1) * Scale;
620d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          CPUsers.push_back(CPUser(I, CPEMI, MaxOffs, NegOk, IsSoImm));
621c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng
622c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng          // Increment corresponding CPEntry reference count.
623c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng          CPEntry *CPE = findConstPoolEntry(CPI, CPEMI);
624c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng          assert(CPE && "Cannot find a corresponding CPEntry!");
625c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng          CPE->RefCount++;
6268494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
627a8e2989ece6dc46df59b0768184028257f913843Evan Cheng          // Instructions can only use one CP entry, don't bother scanning the
628a8e2989ece6dc46df59b0768184028257f913843Evan Cheng          // rest of the operands.
629a8e2989ece6dc46df59b0768184028257f913843Evan Cheng          break;
630a8e2989ece6dc46df59b0768184028257f913843Evan Cheng        }
631a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    }
6322021abe154e3cac523755b74fc5e62a2c9dad1fcEvan Cheng
6338593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // In thumb mode, if this block is a constpool island, we may need padding
6348593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // so it's aligned on 4 byte boundary.
635b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    if (isThumb &&
63605cc424082f797c5820b19f29f398c9cce9b9928Evan Cheng        !MBB.empty() &&
6378593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen        MBB.begin()->getOpcode() == ARM::CONSTPOOL_ENTRY &&
6384d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach        ((Offset%4) != 0 || HasInlineAsm))
6392021abe154e3cac523755b74fc5e62a2c9dad1fcEvan Cheng      MBBSize += 2;
6402021abe154e3cac523755b74fc5e62a2c9dad1fcEvan Cheng
641a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    BBSizes.push_back(MBBSize);
64299c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen    BBOffsets.push_back(Offset);
64399c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen    Offset += MBBSize;
644a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  }
645a8e2989ece6dc46df59b0768184028257f913843Evan Cheng}
646a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
647a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// GetOffsetOf - Return the current offset of the specified machine instruction
648a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// from the start of the function.  This offset changes as stuff is moved
649a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// around inside the function.
650a8e2989ece6dc46df59b0768184028257f913843Evan Chengunsigned ARMConstantIslands::GetOffsetOf(MachineInstr *MI) const {
651a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  MachineBasicBlock *MBB = MI->getParent();
6528494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
653a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // The offset is composed of two things: the sum of the sizes of all MBB's
654a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // before this instruction's block, and the offset from the start of the block
655a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // it is in.
65699c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  unsigned Offset = BBOffsets[MBB->getNumber()];
657a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
6588593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // If we're looking for a CONSTPOOL_ENTRY in Thumb, see if this block has
6598593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // alignment padding, and compensate if so.
6608494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson  if (isThumb &&
6618494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson      MI->getOpcode() == ARM::CONSTPOOL_ENTRY &&
6624d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach      (Offset%4 != 0 || HasInlineAsm))
6638593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    Offset += 2;
6648593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen
665a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Sum instructions before MI in MBB.
666a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  for (MachineBasicBlock::iterator I = MBB->begin(); ; ++I) {
667a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    assert(I != MBB->end() && "Didn't find MI in its own basic block?");
668a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    if (&*I == MI) return Offset;
66952e724ad7e679ee590f4bd763d55280586a8f1bcNicolas Geoffray    Offset += TII->GetInstSizeInBytes(I);
670a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  }
671a8e2989ece6dc46df59b0768184028257f913843Evan Cheng}
672a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
673a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// CompareMBBNumbers - Little predicate function to sort the WaterList by MBB
674a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// ID.
675a8e2989ece6dc46df59b0768184028257f913843Evan Chengstatic bool CompareMBBNumbers(const MachineBasicBlock *LHS,
676a8e2989ece6dc46df59b0768184028257f913843Evan Cheng                              const MachineBasicBlock *RHS) {
677a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  return LHS->getNumber() < RHS->getNumber();
678a8e2989ece6dc46df59b0768184028257f913843Evan Cheng}
679a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
680a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// UpdateForInsertedWaterBlock - When a block is newly inserted into the
681a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// machine function, it upsets all of the block numbers.  Renumber the blocks
682a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// and update the arrays that parallel this numbering.
683a8e2989ece6dc46df59b0768184028257f913843Evan Chengvoid ARMConstantIslands::UpdateForInsertedWaterBlock(MachineBasicBlock *NewBB) {
684a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Renumber the MBB's to keep them consequtive.
685a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  NewBB->getParent()->RenumberBlocks(NewBB);
6868494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
687a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Insert a size into BBSizes to align it properly with the (newly
688a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // renumbered) block numbers.
689a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  BBSizes.insert(BBSizes.begin()+NewBB->getNumber(), 0);
69099c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen
69199c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  // Likewise for BBOffsets.
69299c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  BBOffsets.insert(BBOffsets.begin()+NewBB->getNumber(), 0);
6938494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
6948494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson  // Next, update WaterList.  Specifically, we need to add NewMBB as having
695a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // available water after it.
696034de5f65f9139954cb01d94eaebbaefd294946eBob Wilson  water_iterator IP =
697a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    std::lower_bound(WaterList.begin(), WaterList.end(), NewBB,
698a8e2989ece6dc46df59b0768184028257f913843Evan Cheng                     CompareMBBNumbers);
699a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  WaterList.insert(IP, NewBB);
700a8e2989ece6dc46df59b0768184028257f913843Evan Cheng}
701a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
702a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
703a8e2989ece6dc46df59b0768184028257f913843Evan Cheng/// Split the basic block containing MI into two blocks, which are joined by
704b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson/// an unconditional branch.  Update data structures and renumber blocks to
7050c61584d05894a5543f690803191a8b0da05b8fcEvan Cheng/// account for this change and returns the newly created block.
7060c61584d05894a5543f690803191a8b0da05b8fcEvan ChengMachineBasicBlock *ARMConstantIslands::SplitBlockBeforeInstr(MachineInstr *MI) {
707a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  MachineBasicBlock *OrigBB = MI->getParent();
7088e5f2c6f65841542e2a7092553fe42a00048e4c7Dan Gohman  MachineFunction &MF = *OrigBB->getParent();
709a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
710a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Create a new MBB for the code after the OrigBB.
7118494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson  MachineBasicBlock *NewBB =
7128494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson    MF.CreateMachineBasicBlock(OrigBB->getBasicBlock());
713a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  MachineFunction::iterator MBBI = OrigBB; ++MBBI;
7148e5f2c6f65841542e2a7092553fe42a00048e4c7Dan Gohman  MF.insert(MBBI, NewBB);
7158494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
716a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Splice the instructions starting with MI over to NewBB.
717a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  NewBB->splice(NewBB->end(), OrigBB, MI, OrigBB->end());
7188494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
719a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Add an unconditional branch from OrigBB to NewBB.
720a9b8b8d62c67e96bc4dc2ed25298c539102f8638Evan Cheng  // Note the new unconditional branch is not being recorded.
721b67284057ee130114055309eabe0bcd1af13777dDale Johannesen  // There doesn't seem to be meaningful DebugInfo available; this doesn't
722b67284057ee130114055309eabe0bcd1af13777dDale Johannesen  // correspond to anything in the source.
72358541fd62707b6856beee3db9e254b0110607bb1Evan Cheng  unsigned Opc = isThumb ? (isThumb2 ? ARM::t2B : ARM::tB) : ARM::B;
72458541fd62707b6856beee3db9e254b0110607bb1Evan Cheng  BuildMI(OrigBB, DebugLoc::getUnknownLoc(), TII->get(Opc)).addMBB(NewBB);
725a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  NumSplit++;
7268494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
727a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Update the CFG.  All succs of OrigBB are now succs of NewBB.
728a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  while (!OrigBB->succ_empty()) {
729a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    MachineBasicBlock *Succ = *OrigBB->succ_begin();
730a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    OrigBB->removeSuccessor(Succ);
731a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    NewBB->addSuccessor(Succ);
7328494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
733a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    // This pass should be run after register allocation, so there should be no
734a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    // PHI nodes to update.
735a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    assert((Succ->empty() || Succ->begin()->getOpcode() != TargetInstrInfo::PHI)
736a8e2989ece6dc46df59b0768184028257f913843Evan Cheng           && "PHI nodes should be eliminated by now!");
737a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  }
7388494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
739a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // OrigBB branches to NewBB.
740a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  OrigBB->addSuccessor(NewBB);
7418494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
742a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Update internal data structures to account for the newly inserted MBB.
74388e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // This is almost the same as UpdateForInsertedWaterBlock, except that
74488e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // the Water goes after OrigBB, not NewBB.
7458e5f2c6f65841542e2a7092553fe42a00048e4c7Dan Gohman  MF.RenumberBlocks(NewBB);
7468494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
74788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // Insert a size into BBSizes to align it properly with the (newly
74888e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // renumbered) block numbers.
74988e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  BBSizes.insert(BBSizes.begin()+NewBB->getNumber(), 0);
7508494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
75199c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  // Likewise for BBOffsets.
75299c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  BBOffsets.insert(BBOffsets.begin()+NewBB->getNumber(), 0);
75399c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen
7548494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson  // Next, update WaterList.  Specifically, we need to add OrigMBB as having
75588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // available water after it (but not if it's already there, which happens
75688e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // when splitting before a conditional branch that is followed by an
75788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // unconditional branch - in that case we want to insert NewBB).
758034de5f65f9139954cb01d94eaebbaefd294946eBob Wilson  water_iterator IP =
75988e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    std::lower_bound(WaterList.begin(), WaterList.end(), OrigBB,
76088e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen                     CompareMBBNumbers);
76188e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  MachineBasicBlock* WaterBB = *IP;
76288e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  if (WaterBB == OrigBB)
7637896c9f436a4eda5ec15e882a7505ba482a2fcd0Chris Lattner    WaterList.insert(llvm::next(IP), NewBB);
76488e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  else
76588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    WaterList.insert(IP, OrigBB);
766b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson  NewWaterList.insert(OrigBB);
76788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
7688593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // Figure out how large the first NewMBB is.  (It cannot
7698593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // contain a constpool_entry or tablejump.)
770a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  unsigned NewBBSize = 0;
771a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  for (MachineBasicBlock::iterator I = NewBB->begin(), E = NewBB->end();
772a8e2989ece6dc46df59b0768184028257f913843Evan Cheng       I != E; ++I)
77352e724ad7e679ee590f4bd763d55280586a8f1bcNicolas Geoffray    NewBBSize += TII->GetInstSizeInBytes(I);
7748494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
77599c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  unsigned OrigBBI = OrigBB->getNumber();
77699c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  unsigned NewBBI = NewBB->getNumber();
777a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Set the size of NewBB in BBSizes.
77899c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  BBSizes[NewBBI] = NewBBSize;
7798494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
780a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // We removed instructions from UserMBB, subtract that off from its size.
781af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  // Add 2 or 4 to the block to count the unconditional branch we added to it.
78225f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng  int delta = isThumb1 ? 2 : 4;
78399c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  BBSizes[OrigBBI] -= NewBBSize - delta;
78499c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen
78599c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  // ...and adjust BBOffsets for NewBB accordingly.
78699c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  BBOffsets[NewBBI] = BBOffsets[OrigBBI] + BBSizes[OrigBBI];
78799c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen
78899c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  // All BBOffsets following these blocks must be modified.
78999c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  AdjustBBOffsetsAfter(NewBB, delta);
7900c61584d05894a5543f690803191a8b0da05b8fcEvan Cheng
7910c61584d05894a5543f690803191a8b0da05b8fcEvan Cheng  return NewBB;
792a8e2989ece6dc46df59b0768184028257f913843Evan Cheng}
793a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
7948593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen/// OffsetIsInRange - Checks whether UserOffset (the location of a constant pool
7958494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson/// reference) is within MaxDisp of TrialOffset (a proposed location of a
7968593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen/// constant pool entry).
7978494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilsonbool ARMConstantIslands::OffsetIsInRange(unsigned UserOffset,
798d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng                                         unsigned TrialOffset, unsigned MaxDisp,
799d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng                                         bool NegativeOK, bool IsSoImm) {
8008494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson  // On Thumb offsets==2 mod 4 are rounded down by the hardware for
8018494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson  // purposes of the displacement computation; compensate for that here.
8028593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // Effectively, the valid range of displacements is 2 bytes smaller for such
8038593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // references.
80431b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  unsigned TotalAdj = 0;
80531b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  if (isThumb && UserOffset%4 !=0) {
8068593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    UserOffset -= 2;
80731b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    TotalAdj = 2;
80831b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  }
8098593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // CPEs will be rounded up to a multiple of 4.
81031b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  if (isThumb && TrialOffset%4 != 0) {
8118593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    TrialOffset += 2;
81231b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    TotalAdj += 2;
81331b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  }
81431b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng
81531b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  // In Thumb2 mode, later branch adjustments can shift instructions up and
81631b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  // cause alignment change. In the worst case scenario this can cause the
81731b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  // user's effective address to be subtracted by 2 and the CPE's address to
81831b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  // be plus 2.
81931b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  if (isThumb2 && TotalAdj != 4)
82031b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    MaxDisp -= (4 - TotalAdj);
8218593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen
82299c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  if (UserOffset <= TrialOffset) {
82399c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen    // User before the Trial.
824d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    if (TrialOffset - UserOffset <= MaxDisp)
825d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      return true;
82640efc251cd7a52dd2375ec95ee38b1be4572178fEvan Cheng    // FIXME: Make use full range of soimm values.
82799c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  } else if (NegativeOK) {
828d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    if (UserOffset - TrialOffset <= MaxDisp)
829d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      return true;
83040efc251cd7a52dd2375ec95ee38b1be4572178fEvan Cheng    // FIXME: Make use full range of soimm values.
83199c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  }
83299c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  return false;
83399c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen}
83499c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen
83588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// WaterIsInRange - Returns true if a CPE placed after the specified
83688e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// Water (a basic block) will be in range for the specific MI.
83788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
83888e37ae36652546c8e409cab69a1777af63cf095Dale Johannesenbool ARMConstantIslands::WaterIsInRange(unsigned UserOffset,
8395d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng                                        MachineBasicBlock* Water, CPUser &U) {
8405d9c4b60204d741c213456e21b87e9af6a3dc627Dale Johannesen  unsigned MaxDisp = U.MaxDisp;
8418494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson  unsigned CPEOffset = BBOffsets[Water->getNumber()] +
84288e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen                       BBSizes[Water->getNumber()];
84388e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
844d959aa421a8d14fc5aad29141f816db8f4362c7fDale Johannesen  // If the CPE is to be inserted before the instruction, that will raise
845af4b7352193e4a024d4a4e87cac1ba1589e4de57Bob Wilson  // the offset of the instruction.
846d959aa421a8d14fc5aad29141f816db8f4362c7fDale Johannesen  if (CPEOffset < UserOffset)
8475d9c4b60204d741c213456e21b87e9af6a3dc627Dale Johannesen    UserOffset += U.CPEMI->getOperand(2).getImm();
848d959aa421a8d14fc5aad29141f816db8f4362c7fDale Johannesen
849d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng  return OffsetIsInRange(UserOffset, CPEOffset, MaxDisp, U.NegOk, U.IsSoImm);
85088e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen}
85188e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
85288e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// CPEIsInRange - Returns true if the distance between specific MI and
853c0dbec7e1038ee60b8525eb1e8e3eaa6a839bd5bEvan Cheng/// specific ConstPool entry instruction can fit in MI's displacement field.
85488e37ae36652546c8e409cab69a1777af63cf095Dale Johannesenbool ARMConstantIslands::CPEIsInRange(MachineInstr *MI, unsigned UserOffset,
8555d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng                                      MachineInstr *CPEMI, unsigned MaxDisp,
8565d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng                                      bool NegOk, bool DoDump) {
8578593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  unsigned CPEOffset  = GetOffsetOf(CPEMI);
8584d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach  assert((CPEOffset%4 == 0 || HasInlineAsm) && "Misaligned CPE");
8592021abe154e3cac523755b74fc5e62a2c9dad1fcEvan Cheng
86088e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  if (DoDump) {
861705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner    DEBUG(errs() << "User of CPE#" << CPEMI->getOperand(0).getImm()
862705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner                 << " max delta=" << MaxDisp
863705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner                 << " insn address=" << UserOffset
864705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner                 << " CPE address=" << CPEOffset
865705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner                 << " offset=" << int(CPEOffset-UserOffset) << "\t" << *MI);
86688e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  }
867a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
8685d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng  return OffsetIsInRange(UserOffset, CPEOffset, MaxDisp, NegOk);
869c0dbec7e1038ee60b8525eb1e8e3eaa6a839bd5bEvan Cheng}
870c0dbec7e1038ee60b8525eb1e8e3eaa6a839bd5bEvan Cheng
871d1e7d9a88b5f4fa5e9a85affc4599c650c591ffbEvan Cheng#ifndef NDEBUG
872c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng/// BBIsJumpedOver - Return true of the specified basic block's only predecessor
873c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng/// unconditionally branches to its only successor.
874c99ef085b90b32952b484e8843fb66ad65215b61Evan Chengstatic bool BBIsJumpedOver(MachineBasicBlock *MBB) {
875c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  if (MBB->pred_size() != 1 || MBB->succ_size() != 1)
876c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    return false;
877c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng
878c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  MachineBasicBlock *Succ = *MBB->succ_begin();
879c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  MachineBasicBlock *Pred = *MBB->pred_begin();
880c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  MachineInstr *PredMI = &Pred->back();
8815e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin  if (PredMI->getOpcode() == ARM::B || PredMI->getOpcode() == ARM::tB
8825e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin      || PredMI->getOpcode() == ARM::t2B)
883c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    return PredMI->getOperand(0).getMBB() == Succ;
884c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  return false;
885c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng}
886d1e7d9a88b5f4fa5e9a85affc4599c650c591ffbEvan Cheng#endif // NDEBUG
887c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng
8888494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilsonvoid ARMConstantIslands::AdjustBBOffsetsAfter(MachineBasicBlock *BB,
8898593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen                                              int delta) {
8907896c9f436a4eda5ec15e882a7505ba482a2fcd0Chris Lattner  MachineFunction::iterator MBBI = BB; MBBI = llvm::next(MBBI);
891d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng  for(unsigned i = BB->getNumber()+1, e = BB->getParent()->getNumBlockIDs();
892d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      i < e; ++i) {
89399c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen    BBOffsets[i] += delta;
8948593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // If some existing blocks have padding, adjust the padding as needed, a
8958593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // bit tricky.  delta can be negative so don't use % on that.
896d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    if (!isThumb)
897d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      continue;
898d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    MachineBasicBlock *MBB = MBBI;
8994d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach    if (!MBB->empty() && !HasInlineAsm) {
900d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      // Constant pool entries require padding.
901d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      if (MBB->begin()->getOpcode() == ARM::CONSTPOOL_ENTRY) {
9024a8ea215e69e9ca19c8acf1c236b73860188a023Evan Cheng        unsigned OldOffset = BBOffsets[i] - delta;
9034a8ea215e69e9ca19c8acf1c236b73860188a023Evan Cheng        if ((OldOffset%4) == 0 && (BBOffsets[i]%4) != 0) {
904d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          // add new padding
905d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          BBSizes[i] += 2;
906d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          delta += 2;
9074a8ea215e69e9ca19c8acf1c236b73860188a023Evan Cheng        } else if ((OldOffset%4) != 0 && (BBOffsets[i]%4) == 0) {
908d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          // remove existing padding
9094a8ea215e69e9ca19c8acf1c236b73860188a023Evan Cheng          BBSizes[i] -= 2;
910d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          delta -= 2;
9118593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen        }
912d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      }
913d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      // Thumb1 jump tables require padding.  They should be at the end;
914d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      // following unconditional branches are removed by AnalyzeBranch.
915789476240d6b6f8ad9366cadf790a82bd41bb0b3Evan Cheng      MachineInstr *ThumbJTMI = prior(MBB->end());
91666ac53165e17b7c76b8c69e57bde623d44ec492eEvan Cheng      if (ThumbJTMI->getOpcode() == ARM::tBR_JTr) {
9174a8ea215e69e9ca19c8acf1c236b73860188a023Evan Cheng        unsigned NewMIOffset = GetOffsetOf(ThumbJTMI);
9184a8ea215e69e9ca19c8acf1c236b73860188a023Evan Cheng        unsigned OldMIOffset = NewMIOffset - delta;
9194a8ea215e69e9ca19c8acf1c236b73860188a023Evan Cheng        if ((OldMIOffset%4) == 0 && (NewMIOffset%4) != 0) {
920d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          // remove existing padding
921d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          BBSizes[i] -= 2;
922d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          delta -= 2;
9234a8ea215e69e9ca19c8acf1c236b73860188a023Evan Cheng        } else if ((OldMIOffset%4) != 0 && (NewMIOffset%4) == 0) {
924d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          // add new padding
925d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          BBSizes[i] += 2;
926d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          delta += 2;
9278593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen        }
9288593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen      }
929d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      if (delta==0)
930d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng        return;
9318593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    }
9327896c9f436a4eda5ec15e882a7505ba482a2fcd0Chris Lattner    MBBI = llvm::next(MBBI);
9338593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  }
93499c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen}
93599c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen
93688e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// DecrementOldEntry - find the constant pool entry with index CPI
93788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// and instruction CPEMI, and decrement its refcount.  If the refcount
9388494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson/// becomes 0 remove the entry and instruction.  Returns true if we removed
93988e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// the entry, false if we didn't.
940b43216ee4a418257ce5530c02601b77efe86c354Evan Cheng
941ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Chengbool ARMConstantIslands::DecrementOldEntry(unsigned CPI, MachineInstr *CPEMI) {
942c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  // Find the old entry. Eliminate it if it is no longer used.
943ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  CPEntry *CPE = findConstPoolEntry(CPI, CPEMI);
944ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  assert(CPE && "Unexpected!");
945ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  if (--CPE->RefCount == 0) {
946ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng    RemoveDeadCPEMI(CPEMI);
947ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng    CPE->CPEMI = NULL;
948c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng    NumCPEs--;
94988e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    return true;
95088e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  }
95188e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  return false;
95288e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen}
95388e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
95488e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// LookForCPEntryInRange - see if the currently referenced CPE is in range;
95588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// if not, see if an in-range clone of the CPE is in range, and if so,
95688e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// change the data structures so the user references the clone.  Returns:
95788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// 0 = no existing entry found
95888e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// 1 = entry found, and there were no code insertions or deletions
95988e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// 2 = entry found, and there were code insertions or deletions
96088e37ae36652546c8e409cab69a1777af63cf095Dale Johannesenint ARMConstantIslands::LookForExistingCPEntry(CPUser& U, unsigned UserOffset)
96188e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen{
96288e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  MachineInstr *UserMI = U.MI;
96388e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  MachineInstr *CPEMI  = U.CPEMI;
96488e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
96588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // Check to see if the CPE is already in-range.
9665d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng  if (CPEIsInRange(UserMI, UserOffset, CPEMI, U.MaxDisp, U.NegOk, true)) {
967893e1c90a03a53cf13f73849324e83612688428aChris Lattner    DEBUG(errs() << "In range\n");
96888e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    return 1;
969c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  }
970c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng
97188e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // No.  Look for previously created clones of the CPE that are in range.
9728aa797aa51cd4ea1ec6f46f4891a6897944b75b2Chris Lattner  unsigned CPI = CPEMI->getOperand(1).getIndex();
97388e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  std::vector<CPEntry> &CPEs = CPEntries[CPI];
97488e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  for (unsigned i = 0, e = CPEs.size(); i != e; ++i) {
97588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    // We already tried this one
97688e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    if (CPEs[i].CPEMI == CPEMI)
97788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen      continue;
97888e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    // Removing CPEs can leave empty entries, skip
97988e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    if (CPEs[i].CPEMI == NULL)
98088e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen      continue;
9815d8f1cae76e4e424bf3b4392eddb3f4dbf38662aEvan Cheng    if (CPEIsInRange(UserMI, UserOffset, CPEs[i].CPEMI, U.MaxDisp, U.NegOk)) {
982893e1c90a03a53cf13f73849324e83612688428aChris Lattner      DEBUG(errs() << "Replacing CPE#" << CPI << " with CPE#"
983893e1c90a03a53cf13f73849324e83612688428aChris Lattner                   << CPEs[i].CPI << "\n");
98488e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen      // Point the CPUser node to the replacement
98588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen      U.CPEMI = CPEs[i].CPEMI;
98688e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen      // Change the CPI in the instruction operand to refer to the clone.
98788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen      for (unsigned j = 0, e = UserMI->getNumOperands(); j != e; ++j)
988d735b8019b0f297d7c14b55adcd887af24d8e602Dan Gohman        if (UserMI->getOperand(j).isCPI()) {
9898aa797aa51cd4ea1ec6f46f4891a6897944b75b2Chris Lattner          UserMI->getOperand(j).setIndex(CPEs[i].CPI);
99088e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen          break;
99188e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen        }
99288e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen      // Adjust the refcount of the clone...
99388e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen      CPEs[i].RefCount++;
99488e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen      // ...and the original.  If we didn't remove the old entry, none of the
99588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen      // addresses changed, so we don't need another pass.
996ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng      return DecrementOldEntry(CPI, CPEMI) ? 2 : 1;
99788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    }
99888e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  }
99988e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  return 0;
100088e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen}
100188e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
1002f1b214d3ca12f2d85f0d092b4920172bcc797bacDale Johannesen/// getUnconditionalBrDisp - Returns the maximum displacement that can fit in
1003f1b214d3ca12f2d85f0d092b4920172bcc797bacDale Johannesen/// the specific unconditional branch instruction.
1004f1b214d3ca12f2d85f0d092b4920172bcc797bacDale Johannesenstatic inline unsigned getUnconditionalBrDisp(int Opc) {
10055e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin  switch (Opc) {
10065e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin  case ARM::tB:
10075e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin    return ((1<<10)-1)*2;
10085e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin  case ARM::t2B:
10095e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin    return ((1<<23)-1)*2;
10105e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin  default:
10115e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin    break;
10125e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin  }
1013764ab52dd80310a205c9888bf166d09dab858f90Jim Grosbach
10145e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin  return ((1<<23)-1)*4;
1015f1b214d3ca12f2d85f0d092b4920172bcc797bacDale Johannesen}
1016f1b214d3ca12f2d85f0d092b4920172bcc797bacDale Johannesen
1017b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson/// LookForWater - Look for an existing entry in the WaterList in which
1018b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen/// we can place the CPE referenced from U so it's within range of U's MI.
1019b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson/// Returns true if found, false if not.  If it returns true, WaterIter
1020f98032ef64a777fe63d390539f901d7d6d4e868cBob Wilson/// is set to the WaterList entry.  For Thumb, prefer water that will not
1021f98032ef64a777fe63d390539f901d7d6d4e868cBob Wilson/// introduce padding to water that will.  To ensure that this pass
1022f98032ef64a777fe63d390539f901d7d6d4e868cBob Wilson/// terminates, the CPE location for a particular CPUser is only allowed to
1023f98032ef64a777fe63d390539f901d7d6d4e868cBob Wilson/// move to a lower address, so search backward from the end of the list and
1024f98032ef64a777fe63d390539f901d7d6d4e868cBob Wilson/// prefer the first water that is in range.
1025b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesenbool ARMConstantIslands::LookForWater(CPUser &U, unsigned UserOffset,
1026b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson                                      water_iterator &WaterIter) {
10273b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson  if (WaterList.empty())
10283b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson    return false;
10293b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson
103032c50e8f9920bb7835eb42926945c9a1e6385de5Bob Wilson  bool FoundWaterThatWouldPad = false;
103132c50e8f9920bb7835eb42926945c9a1e6385de5Bob Wilson  water_iterator IPThatWouldPad;
10323b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson  for (water_iterator IP = prior(WaterList.end()),
10333b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson         B = WaterList.begin();; --IP) {
10343b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson    MachineBasicBlock* WaterBB = *IP;
1035b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // Check if water is in range and is either at a lower address than the
1036b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // current "high water mark" or a new water block that was created since
1037b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // the previous iteration by inserting an unconditional branch.  In the
1038b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // latter case, we want to allow resetting the high water mark back to
1039b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // this new water since we haven't seen it before.  Inserting branches
1040b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // should be relatively uncommon and when it does happen, we want to be
1041b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // sure to take advantage of it for all the CPEs near that block, so that
1042b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // we don't insert more branches than necessary.
1043b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    if (WaterIsInRange(UserOffset, WaterBB, U) &&
1044b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson        (WaterBB->getNumber() < U.HighWaterMark->getNumber() ||
1045b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson         NewWaterList.count(WaterBB))) {
10463b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson      unsigned WBBId = WaterBB->getNumber();
10473b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson      if (isThumb &&
10483b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson          (BBOffsets[WBBId] + BBSizes[WBBId])%4 != 0) {
10493b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson        // This is valid Water, but would introduce padding.  Remember
10503b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson        // it in case we don't find any Water that doesn't do this.
105132c50e8f9920bb7835eb42926945c9a1e6385de5Bob Wilson        if (!FoundWaterThatWouldPad) {
105232c50e8f9920bb7835eb42926945c9a1e6385de5Bob Wilson          FoundWaterThatWouldPad = true;
10533b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson          IPThatWouldPad = IP;
1054f1b214d3ca12f2d85f0d092b4920172bcc797bacDale Johannesen        }
10553b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson      } else {
1056b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson        WaterIter = IP;
10573b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson        return true;
1058d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      }
105988e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    }
10603b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson    if (IP == B)
10613b7573517ccd0f8f9e4bc64cf1923bae68e40d3fBob Wilson      break;
106288e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  }
106332c50e8f9920bb7835eb42926945c9a1e6385de5Bob Wilson  if (FoundWaterThatWouldPad) {
1064b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    WaterIter = IPThatWouldPad;
10658593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    return true;
10668593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  }
1067b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  return false;
1068b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen}
106988e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
10708494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson/// CreateNewWater - No existing WaterList entry will work for
1071b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen/// CPUsers[CPUserIndex], so create a place to put the CPE.  The end of the
1072b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen/// block is used if in range, and the conditional branch munged so control
1073b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen/// flow is correct.  Otherwise the block is split to create a hole with an
1074757652c5ba820bbea75d8713d7bf3749e4113778Bob Wilson/// unconditional branch around it.  In either case NewMBB is set to a
1075b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen/// block following which the new island can be inserted (the WaterList
1076b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen/// is not adjusted).
10778494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilsonvoid ARMConstantIslands::CreateNewWater(unsigned CPUserIndex,
1078757652c5ba820bbea75d8713d7bf3749e4113778Bob Wilson                                        unsigned UserOffset,
1079757652c5ba820bbea75d8713d7bf3749e4113778Bob Wilson                                        MachineBasicBlock *&NewMBB) {
1080b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  CPUser &U = CPUsers[CPUserIndex];
1081b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  MachineInstr *UserMI = U.MI;
1082b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  MachineInstr *CPEMI  = U.CPEMI;
1083b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  MachineBasicBlock *UserMBB = UserMI->getParent();
10848494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson  unsigned OffsetOfNextBlock = BBOffsets[UserMBB->getNumber()] +
1085b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen                               BBSizes[UserMBB->getNumber()];
10868593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  assert(OffsetOfNextBlock== BBOffsets[UserMBB->getNumber()+1]);
1087b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen
108836fa5321bacf351f47d6193f56c464e6ab93b934Bob Wilson  // If the block does not end in an unconditional branch already, and if the
108936fa5321bacf351f47d6193f56c464e6ab93b934Bob Wilson  // end of the block is within range, make new water there.  (The addition
109036fa5321bacf351f47d6193f56c464e6ab93b934Bob Wilson  // below is for the unconditional branch we will be adding: 4 bytes on ARM +
109136fa5321bacf351f47d6193f56c464e6ab93b934Bob Wilson  // Thumb2, 2 on Thumb1.  Possible Thumb1 alignment padding is allowed for
10928593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // inside OffsetIsInRange.
109336fa5321bacf351f47d6193f56c464e6ab93b934Bob Wilson  if (BBHasFallthrough(UserMBB) &&
1094d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng      OffsetIsInRange(UserOffset, OffsetOfNextBlock + (isThumb1 ? 2: 4),
1095d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng                      U.MaxDisp, U.NegOk, U.IsSoImm)) {
1096893e1c90a03a53cf13f73849324e83612688428aChris Lattner    DEBUG(errs() << "Split at end of block\n");
1097b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    if (&UserMBB->back() == UserMI)
1098b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen      assert(BBHasFallthrough(UserMBB) && "Expected a fallthrough BB!");
10997896c9f436a4eda5ec15e882a7505ba482a2fcd0Chris Lattner    NewMBB = llvm::next(MachineFunction::iterator(UserMBB));
1100b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // Add an unconditional branch from UserMBB to fallthrough block.
1101b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // Record it for branch lengthening; this new branch will not get out of
1102b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // range, but if the preceding conditional branch is out of range, the
1103b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // targets will be exchanged, and the altered branch may be out of
1104b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // range, so the machinery has to know about it.
11055e47a9a6e46bd271eba058fb831da1a1edf8707cDavid Goodwin    int UncondBr = isThumb ? ((isThumb2) ? ARM::t2B : ARM::tB) : ARM::B;
1106b67284057ee130114055309eabe0bcd1af13777dDale Johannesen    BuildMI(UserMBB, DebugLoc::getUnknownLoc(),
1107757652c5ba820bbea75d8713d7bf3749e4113778Bob Wilson            TII->get(UncondBr)).addMBB(NewMBB);
1108b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    unsigned MaxDisp = getUnconditionalBrDisp(UncondBr);
11098494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson    ImmBranches.push_back(ImmBranch(&UserMBB->back(),
1110b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen                          MaxDisp, false, UncondBr));
1111d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    int delta = isThumb1 ? 2 : 4;
1112b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    BBSizes[UserMBB->getNumber()] += delta;
1113b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    AdjustBBOffsetsAfter(UserMBB, delta);
1114b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  } else {
1115b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // What a big block.  Find a place within the block to split it.
1116d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    // This is a little tricky on Thumb1 since instructions are 2 bytes
1117b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // and constant pool entries are 4 bytes: if instruction I references
1118b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // island CPE, and instruction I+1 references CPE', it will
1119b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // not work well to put CPE as far forward as possible, since then
1120b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // CPE' cannot immediately follow it (that location is 2 bytes
1121b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // farther away from I+1 than CPE was from I) and we'd need to create
11228593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // a new island.  So, we make a first guess, then walk through the
11238593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // instructions between the one currently being looked at and the
11248593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // possible insertion point, and make sure any other instructions
11258593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // that reference CPEs will be able to use the same island area;
11268593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // if not, we back up the insertion point.
11278593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen
1128b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // The 4 in the following is for the unconditional branch we'll be
1129d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    // inserting (allows for long branch on Thumb1).  Alignment of the
11308593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // island is handled inside OffsetIsInRange.
11318593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    unsigned BaseInsertOffset = UserOffset + U.MaxDisp -4;
1132b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // This could point off the end of the block if we've already got
1133b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // constant pool entries following this block; only the last one is
1134b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // in the water list.  Back past any possible branches (allow for a
1135b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // conditional and a maximally long unconditional).
1136b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    if (BaseInsertOffset >= BBOffsets[UserMBB->getNumber()+1])
11378494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson      BaseInsertOffset = BBOffsets[UserMBB->getNumber()+1] -
1138d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng                              (isThumb1 ? 6 : 8);
1139b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    unsigned EndInsertOffset = BaseInsertOffset +
1140b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen           CPEMI->getOperand(2).getImm();
1141b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    MachineBasicBlock::iterator MI = UserMI;
1142b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    ++MI;
1143b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    unsigned CPUIndex = CPUserIndex+1;
114452e724ad7e679ee590f4bd763d55280586a8f1bcNicolas Geoffray    for (unsigned Offset = UserOffset+TII->GetInstSizeInBytes(UserMI);
1145b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen         Offset < BaseInsertOffset;
114652e724ad7e679ee590f4bd763d55280586a8f1bcNicolas Geoffray         Offset += TII->GetInstSizeInBytes(MI),
11477896c9f436a4eda5ec15e882a7505ba482a2fcd0Chris Lattner            MI = llvm::next(MI)) {
1148b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen      if (CPUIndex < CPUsers.size() && CPUsers[CPUIndex].MI == MI) {
1149d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng        CPUser &U = CPUsers[CPUIndex];
11508494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson        if (!OffsetIsInRange(Offset, EndInsertOffset,
1151d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng                             U.MaxDisp, U.NegOk, U.IsSoImm)) {
1152d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          BaseInsertOffset -= (isThumb1 ? 2 : 4);
1153d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng          EndInsertOffset  -= (isThumb1 ? 2 : 4);
1154f1b214d3ca12f2d85f0d092b4920172bcc797bacDale Johannesen        }
1155b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen        // This is overly conservative, as we don't account for CPEMIs
1156b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen        // being reused within the block, but it doesn't matter much.
1157b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen        EndInsertOffset += CPUsers[CPUIndex].CPEMI->getOperand(2).getImm();
1158b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen        CPUIndex++;
1159f1b214d3ca12f2d85f0d092b4920172bcc797bacDale Johannesen      }
116088e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen    }
1161893e1c90a03a53cf13f73849324e83612688428aChris Lattner    DEBUG(errs() << "Split in middle of big block\n");
1162757652c5ba820bbea75d8713d7bf3749e4113778Bob Wilson    NewMBB = SplitBlockBeforeInstr(prior(MI));
1163b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  }
1164b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen}
1165b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen
1166b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen/// HandleConstantPoolUser - Analyze the specified user, checking to see if it
116739bf051ec2865cd715c41473d2a9fc34ff252534Bob Wilson/// is out-of-range.  If so, pick up the constant pool value and move it some
1168b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen/// place in-range.  Return true if we changed any addresses (thus must run
1169b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen/// another pass of branch lengthening), false otherwise.
11705657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Chengbool ARMConstantIslands::HandleConstantPoolUser(MachineFunction &MF,
11718494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson                                                unsigned CPUserIndex) {
1172b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  CPUser &U = CPUsers[CPUserIndex];
1173b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  MachineInstr *UserMI = U.MI;
1174b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  MachineInstr *CPEMI  = U.CPEMI;
11758aa797aa51cd4ea1ec6f46f4891a6897944b75b2Chris Lattner  unsigned CPI = CPEMI->getOperand(1).getIndex();
1176b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  unsigned Size = CPEMI->getOperand(2).getImm();
11778593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // Compute this only once, it's expensive.  The 4 or 8 is the value the
1178a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng  // hardware keeps in the PC.
1179b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  unsigned UserOffset = GetOffsetOf(UserMI) + (isThumb ? 4 : 8);
1180768c9f725bda048b3406b6289beb586ff6e933dfEvan Cheng
1181b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  // See if the current entry is within range, or there is a clone of it
1182b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  // in range.
1183b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  int result = LookForExistingCPEntry(U, UserOffset);
1184b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  if (result==1) return false;
1185b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  else if (result==2) return true;
1186b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen
1187b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  // No existing clone of this CPE is within range.
1188b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  // We will be generating a new clone.  Get a UID for it.
118939bf051ec2865cd715c41473d2a9fc34ff252534Bob Wilson  unsigned ID = AFI->createConstPoolEntryUId();
1190b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen
1191f98032ef64a777fe63d390539f901d7d6d4e868cBob Wilson  // Look for water where we can place this CPE.
1192b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson  MachineBasicBlock *NewIsland = MF.CreateMachineBasicBlock();
1193b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson  MachineBasicBlock *NewMBB;
1194b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson  water_iterator IP;
1195b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson  if (LookForWater(U, UserOffset, IP)) {
1196b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    DEBUG(errs() << "found water in range\n");
1197b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    MachineBasicBlock *WaterBB = *IP;
1198b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson
1199b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // If the original WaterList entry was "new water" on this iteration,
1200b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // propagate that to the new island.  This is just keeping NewWaterList
1201b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // updated to match the WaterList, which will be updated below.
1202b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    if (NewWaterList.count(WaterBB)) {
1203b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson      NewWaterList.erase(WaterBB);
1204b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson      NewWaterList.insert(NewIsland);
1205b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    }
1206b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // The new CPE goes before the following block (NewMBB).
12077896c9f436a4eda5ec15e882a7505ba482a2fcd0Chris Lattner    NewMBB = llvm::next(MachineFunction::iterator(WaterBB));
1208b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson
1209b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson  } else {
1210b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen    // No water found.
1211893e1c90a03a53cf13f73849324e83612688428aChris Lattner    DEBUG(errs() << "No water found\n");
1212757652c5ba820bbea75d8713d7bf3749e4113778Bob Wilson    CreateNewWater(CPUserIndex, UserOffset, NewMBB);
1213b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson
1214b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // SplitBlockBeforeInstr adds to WaterList, which is important when it is
1215b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // called while handling branches so that the water will be seen on the
1216b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // next iteration for constant pools, but in this context, we don't want
1217b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // it.  Check for this so it will be removed from the WaterList.
1218b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // Also remove any entry from NewWaterList.
1219b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    MachineBasicBlock *WaterBB = prior(MachineFunction::iterator(NewMBB));
1220b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    IP = std::find(WaterList.begin(), WaterList.end(), WaterBB);
1221b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    if (IP != WaterList.end())
1222b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson      NewWaterList.erase(WaterBB);
1223b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson
1224b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    // We are adding new water.  Update NewWaterList.
1225b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    NewWaterList.insert(NewIsland);
122688e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  }
122788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
1228b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson  // Remove the original WaterList entry; we want subsequent insertions in
1229b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson  // this vicinity to go after the one we're about to insert.  This
1230b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson  // considerably reduces the number of times we have to move the same CPE
1231b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson  // more than once and is also important to ensure the algorithm terminates.
1232b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson  if (IP != WaterList.end())
1233b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson    WaterList.erase(IP);
1234b923953733ee6b0f477cd767dcc16f94a0966158Bob Wilson
123588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // Okay, we know we can put an island before NewMBB now, do it!
12365657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  MF.insert(NewMBB, NewIsland);
123788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
123888e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // Update internal data structures to account for the newly inserted MBB.
123988e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  UpdateForInsertedWaterBlock(NewIsland);
124088e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
124188e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // Decrement the old entry, and remove it if refcount becomes 0.
1242ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  DecrementOldEntry(CPI, CPEMI);
124388e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen
124488e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // Now that we have an island to add the CPE to, clone the original CPE and
124588e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  // add it to the island.
1246549dda9d82a5ec0a0cbf429a18d33a8e66062424Bob Wilson  U.HighWaterMark = NewIsland;
1247b67284057ee130114055309eabe0bcd1af13777dDale Johannesen  U.CPEMI = BuildMI(NewIsland, DebugLoc::getUnknownLoc(),
1248b67284057ee130114055309eabe0bcd1af13777dDale Johannesen                    TII->get(ARM::CONSTPOOL_ENTRY))
1249a8e2989ece6dc46df59b0768184028257f913843Evan Cheng                .addImm(ID).addConstantPoolIndex(CPI).addImm(Size);
125088e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen  CPEntries[CPI].push_back(CPEntry(U.CPEMI, ID, 1));
1251c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng  NumCPEs++;
1252c99ef085b90b32952b484e8843fb66ad65215b61Evan Cheng
12538593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  BBOffsets[NewIsland->getNumber()] = BBOffsets[NewMBB->getNumber()];
1254b43216ee4a418257ce5530c02601b77efe86c354Evan Cheng  // Compensate for .align 2 in thumb mode.
12554d8e90a026a29a812616690bd77b72e0b5ae6c75Jim Grosbach  if (isThumb && (BBOffsets[NewIsland->getNumber()]%4 != 0 || HasInlineAsm))
12568593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    Size += 2;
1257a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Increase the size of the island block to account for the new entry.
1258a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  BBSizes[NewIsland->getNumber()] += Size;
125999c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  AdjustBBOffsetsAfter(NewIsland, Size);
12608494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
1261a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  // Finally, change the CPI in the instruction operand to be ID.
1262a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  for (unsigned i = 0, e = UserMI->getNumOperands(); i != e; ++i)
1263d735b8019b0f297d7c14b55adcd887af24d8e602Dan Gohman    if (UserMI->getOperand(i).isCPI()) {
12648aa797aa51cd4ea1ec6f46f4891a6897944b75b2Chris Lattner      UserMI->getOperand(i).setIndex(ID);
1265a8e2989ece6dc46df59b0768184028257f913843Evan Cheng      break;
1266a8e2989ece6dc46df59b0768184028257f913843Evan Cheng    }
12678494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
1268705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner  DEBUG(errs() << "  Moved CPE to #" << ID << " CPI=" << CPI
1269705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner           << '\t' << *UserMI);
12708494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
1271a8e2989ece6dc46df59b0768184028257f913843Evan Cheng  return true;
1272a8e2989ece6dc46df59b0768184028257f913843Evan Cheng}
1273a8e2989ece6dc46df59b0768184028257f913843Evan Cheng
1274ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng/// RemoveDeadCPEMI - Remove a dead constant pool entry instruction. Update
1275ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng/// sizes and offsets of impacted basic blocks.
1276ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Chengvoid ARMConstantIslands::RemoveDeadCPEMI(MachineInstr *CPEMI) {
1277ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  MachineBasicBlock *CPEBB = CPEMI->getParent();
12788593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  unsigned Size = CPEMI->getOperand(2).getImm();
12798593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  CPEMI->eraseFromParent();
12808593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  BBSizes[CPEBB->getNumber()] -= Size;
12818593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // All succeeding offsets have the current size value added in, fix this.
1282ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  if (CPEBB->empty()) {
1283d3d9d66dd211d1267e764c7294876d9a227f04caEvan Cheng    // In thumb1 mode, the size of island may be padded by two to compensate for
12848593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // the alignment requirement.  Then it will now be 2 when the block is
1285ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng    // empty, so fix this.
1286ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng    // All succeeding offsets have the current size value added in, fix this.
1287ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng    if (BBSizes[CPEBB->getNumber()] != 0) {
12888593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen      Size += BBSizes[CPEBB->getNumber()];
1289ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng      BBSizes[CPEBB->getNumber()] = 0;
1290ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng    }
1291ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  }
12928593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  AdjustBBOffsetsAfter(CPEBB, -Size);
12938593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // An island has only one predecessor BB and one successor BB. Check if
12948593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // this BB's predecessor jumps directly to this BB's successor. This
12958593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // shouldn't happen currently.
12968593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  assert(!BBIsJumpedOver(CPEBB) && "How did this happen?");
12978593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  // FIXME: remove the empty blocks after all the work is done?
1298ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng}
1299ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng
1300ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng/// RemoveUnusedCPEntries - Remove constant pool entries whose refcounts
1301ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng/// are zero.
1302ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Chengbool ARMConstantIslands::RemoveUnusedCPEntries() {
1303ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  unsigned MadeChange = false;
1304ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  for (unsigned i = 0, e = CPEntries.size(); i != e; ++i) {
1305ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng      std::vector<CPEntry> &CPEs = CPEntries[i];
1306ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng      for (unsigned j = 0, ee = CPEs.size(); j != ee; ++j) {
1307ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng        if (CPEs[j].RefCount == 0 && CPEs[j].CPEMI) {
1308ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng          RemoveDeadCPEMI(CPEs[j].CPEMI);
1309ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng          CPEs[j].CPEMI = NULL;
1310ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng          MadeChange = true;
1311ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng        }
1312ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng      }
13138494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson  }
1314ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng  return MadeChange;
1315ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng}
1316ed884f3a2f7225a0ea40fc18964b6f949cac3680Evan Cheng
131788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// BBIsInRange - Returns true if the distance between specific MI and
131843aeab68a69e443c528092b4424a498d813f96b7Evan Cheng/// specific BB can fit in MI's displacement field.
1319c0dbec7e1038ee60b8525eb1e8e3eaa6a839bd5bEvan Chengbool ARMConstantIslands::BBIsInRange(MachineInstr *MI,MachineBasicBlock *DestBB,
1320c0dbec7e1038ee60b8525eb1e8e3eaa6a839bd5bEvan Cheng                                     unsigned MaxDisp) {
1321b71aa2b6ca801d407c702483c412a290ab4af3b2Dale Johannesen  unsigned PCAdj      = isThumb ? 4 : 8;
1322c0dbec7e1038ee60b8525eb1e8e3eaa6a839bd5bEvan Cheng  unsigned BrOffset   = GetOffsetOf(MI) + PCAdj;
132399c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  unsigned DestOffset = BBOffsets[DestBB->getNumber()];
132443aeab68a69e443c528092b4424a498d813f96b7Evan Cheng
1325705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner  DEBUG(errs() << "Branch of destination BB#" << DestBB->getNumber()
1326705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner               << " from BB#" << MI->getParent()->getNumber()
1327705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner               << " max delta=" << MaxDisp
1328705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner               << " from " << GetOffsetOf(MI) << " to " << DestOffset
1329705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner               << " offset " << int(DestOffset-BrOffset) << "\t" << *MI);
1330c0dbec7e1038ee60b8525eb1e8e3eaa6a839bd5bEvan Cheng
13318593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  if (BrOffset <= DestOffset) {
13328593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // Branch before the Dest.
13338593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    if (DestOffset-BrOffset <= MaxDisp)
13348593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen      return true;
13358593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  } else {
13368593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    if (BrOffset-DestOffset <= MaxDisp)
13378593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen      return true;
13388593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  }
13398593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen  return false;
134043aeab68a69e443c528092b4424a498d813f96b7Evan Cheng}
134143aeab68a69e443c528092b4424a498d813f96b7Evan Cheng
1342d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng/// FixUpImmediateBr - Fix up an immediate branch whose destination is too far
1343d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng/// away to fit in its displacement field.
13445657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Chengbool ARMConstantIslands::FixUpImmediateBr(MachineFunction &MF, ImmBranch &Br) {
1345d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  MachineInstr *MI = Br.MI;
13468aa797aa51cd4ea1ec6f46f4891a6897944b75b2Chris Lattner  MachineBasicBlock *DestBB = MI->getOperand(0).getMBB();
1347d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
1348c0dbec7e1038ee60b8525eb1e8e3eaa6a839bd5bEvan Cheng  // Check to see if the DestBB is already in-range.
1349c0dbec7e1038ee60b8525eb1e8e3eaa6a839bd5bEvan Cheng  if (BBIsInRange(MI, DestBB, Br.MaxDisp))
1350d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng    return false;
1351d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
1352d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  if (!Br.isCond)
13535657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    return FixUpUnconditionalBr(MF, Br);
13545657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  return FixUpConditionalBr(MF, Br);
1355d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng}
1356d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
135788e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// FixUpUnconditionalBr - Fix up an unconditional branch whose destination is
135888e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// too far away to fit in its displacement field. If the LR register has been
1359d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng/// spilled in the epilogue, then we can use BL to implement a far jump.
136039bf051ec2865cd715c41473d2a9fc34ff252534Bob Wilson/// Otherwise, add an intermediate branch instruction to a branch.
1361d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Chengbool
13625657c01949dca6c012ac60d242d1a8d2ffdf5603Evan ChengARMConstantIslands::FixUpUnconditionalBr(MachineFunction &MF, ImmBranch &Br) {
1363d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  MachineInstr *MI = Br.MI;
1364d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  MachineBasicBlock *MBB = MI->getParent();
136553c67c0218d8420234dd71bf2d9df3388909af77Evan Cheng  if (!isThumb1)
136653c67c0218d8420234dd71bf2d9df3388909af77Evan Cheng    llvm_unreachable("FixUpUnconditionalBr is Thumb1 only!");
1367d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
1368d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  // Use BL to implement far jump.
1369d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  Br.MaxDisp = (1 << 21) * 2;
13705080f4d9919d39b367891dc51e739c571a66036cChris Lattner  MI->setDesc(TII->get(ARM::tBfar));
1371d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  BBSizes[MBB->getNumber()] += 2;
137299c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  AdjustBBOffsetsAfter(MBB, 2);
1373d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  HasFarJump = true;
1374d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  NumUBrFixed++;
1375bd5d3dbdbe46c7325545a7cb8c891c0347375451Evan Cheng
1376705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner  DEBUG(errs() << "  Changed B to long jump " << *MI);
1377bd5d3dbdbe46c7325545a7cb8c891c0347375451Evan Cheng
1378d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  return true;
1379d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng}
1380d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
138188e37ae36652546c8e409cab69a1777af63cf095Dale Johannesen/// FixUpConditionalBr - Fix up a conditional branch whose destination is too
1382d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng/// far away to fit in its displacement field. It is converted to an inverse
1383d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng/// conditional branch + an unconditional branch to the destination.
1384af5cbcb809bdbd30ebacab942994721c134d16a2Evan Chengbool
13855657c01949dca6c012ac60d242d1a8d2ffdf5603Evan ChengARMConstantIslands::FixUpConditionalBr(MachineFunction &MF, ImmBranch &Br) {
1386af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  MachineInstr *MI = Br.MI;
13878aa797aa51cd4ea1ec6f46f4891a6897944b75b2Chris Lattner  MachineBasicBlock *DestBB = MI->getOperand(0).getMBB();
1388af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng
138939bf051ec2865cd715c41473d2a9fc34ff252534Bob Wilson  // Add an unconditional branch to the destination and invert the branch
1390d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  // condition to jump over it:
1391af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  // blt L1
1392af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  // =>
1393af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  // bge L2
1394af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  // b   L1
1395af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  // L2:
13969a1ceaedc282f0cae31f2723f4d6c00c7b88fe90Chris Lattner  ARMCC::CondCodes CC = (ARMCC::CondCodes)MI->getOperand(1).getImm();
1397af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  CC = ARMCC::getOppositeCondition(CC);
13980e1d37904abbf7e8c4c478408253dd995f3040f4Evan Cheng  unsigned CCReg = MI->getOperand(2).getReg();
1399af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng
1400af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  // If the branch is at the end of its MBB and that has a fall-through block,
1401af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  // direct the updated conditional branch to the fall-through block. Otherwise,
1402af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  // split the MBB before the next instruction.
1403af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  MachineBasicBlock *MBB = MI->getParent();
1404bd5d3dbdbe46c7325545a7cb8c891c0347375451Evan Cheng  MachineInstr *BMI = &MBB->back();
1405bd5d3dbdbe46c7325545a7cb8c891c0347375451Evan Cheng  bool NeedSplit = (BMI != MI) || !BBHasFallthrough(MBB);
140643aeab68a69e443c528092b4424a498d813f96b7Evan Cheng
1407d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  NumCBrFixed++;
1408bd5d3dbdbe46c7325545a7cb8c891c0347375451Evan Cheng  if (BMI != MI) {
14097896c9f436a4eda5ec15e882a7505ba482a2fcd0Chris Lattner    if (llvm::next(MachineBasicBlock::iterator(MI)) == prior(MBB->end()) &&
1410bd5d3dbdbe46c7325545a7cb8c891c0347375451Evan Cheng        BMI->getOpcode() == Br.UncondBr) {
141139bf051ec2865cd715c41473d2a9fc34ff252534Bob Wilson      // Last MI in the BB is an unconditional branch. Can we simply invert the
141243aeab68a69e443c528092b4424a498d813f96b7Evan Cheng      // condition and swap destinations:
141343aeab68a69e443c528092b4424a498d813f96b7Evan Cheng      // beq L1
141443aeab68a69e443c528092b4424a498d813f96b7Evan Cheng      // b   L2
141543aeab68a69e443c528092b4424a498d813f96b7Evan Cheng      // =>
141643aeab68a69e443c528092b4424a498d813f96b7Evan Cheng      // bne L2
141743aeab68a69e443c528092b4424a498d813f96b7Evan Cheng      // b   L1
14188aa797aa51cd4ea1ec6f46f4891a6897944b75b2Chris Lattner      MachineBasicBlock *NewDest = BMI->getOperand(0).getMBB();
1419c0dbec7e1038ee60b8525eb1e8e3eaa6a839bd5bEvan Cheng      if (BBIsInRange(MI, NewDest, Br.MaxDisp)) {
1420705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner        DEBUG(errs() << "  Invert Bcc condition and swap its destination with "
1421705e07f578e2b3af47ddab610feb4e7f2d3063a5Chris Lattner                     << *BMI);
14228aa797aa51cd4ea1ec6f46f4891a6897944b75b2Chris Lattner        BMI->getOperand(0).setMBB(DestBB);
14238aa797aa51cd4ea1ec6f46f4891a6897944b75b2Chris Lattner        MI->getOperand(0).setMBB(NewDest);
142443aeab68a69e443c528092b4424a498d813f96b7Evan Cheng        MI->getOperand(1).setImm(CC);
142543aeab68a69e443c528092b4424a498d813f96b7Evan Cheng        return true;
142643aeab68a69e443c528092b4424a498d813f96b7Evan Cheng      }
142743aeab68a69e443c528092b4424a498d813f96b7Evan Cheng    }
142843aeab68a69e443c528092b4424a498d813f96b7Evan Cheng  }
142943aeab68a69e443c528092b4424a498d813f96b7Evan Cheng
143043aeab68a69e443c528092b4424a498d813f96b7Evan Cheng  if (NeedSplit) {
1431af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng    SplitBlockBeforeInstr(MI);
143239bf051ec2865cd715c41473d2a9fc34ff252534Bob Wilson    // No need for the branch to the next block. We're adding an unconditional
1433dd353b8ad747a8731a191848ff5db978a70bd0fbEvan Cheng    // branch to the destination.
143452e724ad7e679ee590f4bd763d55280586a8f1bcNicolas Geoffray    int delta = TII->GetInstSizeInBytes(&MBB->back());
143556c42ef3e43f8eb75c435e781d0ac8251c7588a1Dale Johannesen    BBSizes[MBB->getNumber()] -= delta;
14367896c9f436a4eda5ec15e882a7505ba482a2fcd0Chris Lattner    MachineBasicBlock* SplitBB = llvm::next(MachineFunction::iterator(MBB));
14378593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    AdjustBBOffsetsAfter(SplitBB, -delta);
1438dd353b8ad747a8731a191848ff5db978a70bd0fbEvan Cheng    MBB->back().eraseFromParent();
14398593e418555fdae21a070357fd8734b4069c17d0Dale Johannesen    // BBOffsets[SplitBB] is wrong temporarily, fixed below
1440dd353b8ad747a8731a191848ff5db978a70bd0fbEvan Cheng  }
14417896c9f436a4eda5ec15e882a7505ba482a2fcd0Chris Lattner  MachineBasicBlock *NextBB = llvm::next(MachineFunction::iterator(MBB));
14428494526a2396fd9cde027ab6ae11dd28b54ac90eBob Wilson
1443893e1c90a03a53cf13f73849324e83612688428aChris Lattner  DEBUG(errs() << "  Insert B to BB#" << DestBB->getNumber()
1444893e1c90a03a53cf13f73849324e83612688428aChris Lattner               << " also invert condition and change dest. to BB#"
1445893e1c90a03a53cf13f73849324e83612688428aChris Lattner               << NextBB->getNumber() << "\n");
1446af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng
144756c42ef3e43f8eb75c435e781d0ac8251c7588a1Dale Johannesen  // Insert a new conditional branch and a new unconditional branch.
1448af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  // Also update the ImmBranch as well as adding a new entry for the new branch.
1449b67284057ee130114055309eabe0bcd1af13777dDale Johannesen  BuildMI(MBB, DebugLoc::getUnknownLoc(),
1450b67284057ee130114055309eabe0bcd1af13777dDale Johannesen          TII->get(MI->getOpcode()))
1451b67284057ee130114055309eabe0bcd1af13777dDale Johannesen    .addMBB(NextBB).addImm(CC).addReg(CCReg);
1452af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  Br.MI = &MBB->back();
145352e724ad7e679ee590f4bd763d55280586a8f1bcNicolas Geoffray  BBSizes[MBB->getNumber()] += TII->GetInstSizeInBytes(&MBB->back());
1454b67284057ee130114055309eabe0bcd1af13777dDale Johannesen  BuildMI(MBB, DebugLoc::getUnknownLoc(), TII->get(Br.UncondBr)).addMBB(DestBB);
145552e724ad7e679ee590f4bd763d55280586a8f1bcNicolas Geoffray  BBSizes[MBB->getNumber()] += TII->GetInstSizeInBytes(&MBB->back());
1456a9b8b8d62c67e96bc4dc2ed25298c539102f8638Evan Cheng  unsigned MaxDisp = getUnconditionalBrDisp(Br.UncondBr);
1457a0bf794eb60b6795a121efcb9ff759e9e0955772Evan Cheng  ImmBranches.push_back(ImmBranch(&MBB->back(), MaxDisp, false, Br.UncondBr));
145856c42ef3e43f8eb75c435e781d0ac8251c7588a1Dale Johannesen
145956c42ef3e43f8eb75c435e781d0ac8251c7588a1Dale Johannesen  // Remove the old conditional branch.  It may or may not still be in MBB.
146052e724ad7e679ee590f4bd763d55280586a8f1bcNicolas Geoffray  BBSizes[MI->getParent()->getNumber()] -= TII->GetInstSizeInBytes(MI);
1461af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  MI->eraseFromParent();
1462af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng
146356c42ef3e43f8eb75c435e781d0ac8251c7588a1Dale Johannesen  // The net size change is an addition of one unconditional branch.
146452e724ad7e679ee590f4bd763d55280586a8f1bcNicolas Geoffray  int delta = TII->GetInstSizeInBytes(&MBB->back());
146599c49a4b94ffabdd22f55e8274c7f92892e25559Dale Johannesen  AdjustBBOffsetsAfter(MBB, delta);
1466af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng  return true;
1467af5cbcb809bdbd30ebacab942994721c134d16a2Evan Cheng}
1468d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng
1469d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng/// UndoLRSpillRestore - Remove Thumb push / pop instructions that only spills
14704b322e58b77d16f103d88a3af3a4ebd2675245a0Evan Cheng/// LR / restores LR to pc. FIXME: This is done here because it's only possible
14714b322e58b77d16f103d88a3af3a4ebd2675245a0Evan Cheng/// to do this if tBfar is not used.
1472d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Chengbool ARMConstantIslands::UndoLRSpillRestore() {
1473d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  bool MadeChange = false;
1474d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  for (unsigned i = 0, e = PushPopMIs.size(); i != e; ++i) {
1475d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng    MachineInstr *MI = PushPopMIs[i];
147610469f8e48e007989b0469e677d4000a1311ecd2Evan Cheng    // First two operands are predicates, the third is a zero since there
147710469f8e48e007989b0469e677d4000a1311ecd2Evan Cheng    // is no writeback.
147844bec52b1b7e9a3ac1efbae90db240b8c1ca2ad4Evan Cheng    if (MI->getOpcode() == ARM::tPOP_RET &&
147910469f8e48e007989b0469e677d4000a1311ecd2Evan Cheng        MI->getOperand(3).getReg() == ARM::PC &&
148010469f8e48e007989b0469e677d4000a1311ecd2Evan Cheng        MI->getNumExplicitOperands() == 4) {
1481b67284057ee130114055309eabe0bcd1af13777dDale Johannesen      BuildMI(MI->getParent(), MI->getDebugLoc(), TII->get(ARM::tBX_RET));
148244bec52b1b7e9a3ac1efbae90db240b8c1ca2ad4Evan Cheng      MI->eraseFromParent();
148344bec52b1b7e9a3ac1efbae90db240b8c1ca2ad4Evan Cheng      MadeChange = true;
1484d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng    }
1485d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  }
1486d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng  return MadeChange;
1487d1b2c1e88fe4a7728ca9739b0f1c6fd90a19c5fdEvan Cheng}
14885657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng
1489a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Chengbool ARMConstantIslands::OptimizeThumb2Instructions(MachineFunction &MF) {
1490a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng  bool MadeChange = false;
1491a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng
1492a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng  // Shrink ADR and LDR from constantpool.
1493a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng  for (unsigned i = 0, e = CPUsers.size(); i != e; ++i) {
1494a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    CPUser &U = CPUsers[i];
1495a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    unsigned Opcode = U.MI->getOpcode();
1496a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    unsigned NewOpc = 0;
1497a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    unsigned Scale = 1;
1498a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    unsigned Bits = 0;
1499a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    switch (Opcode) {
1500a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    default: break;
1501a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    case ARM::t2LEApcrel:
1502a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      if (isARMLowRegister(U.MI->getOperand(0).getReg())) {
1503a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng        NewOpc = ARM::tLEApcrel;
1504a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng        Bits = 8;
1505a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng        Scale = 4;
1506a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      }
1507a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      break;
1508a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    case ARM::t2LDRpci:
1509a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      if (isARMLowRegister(U.MI->getOperand(0).getReg())) {
1510a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng        NewOpc = ARM::tLDRpci;
1511a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng        Bits = 8;
1512a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng        Scale = 4;
1513a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      }
1514a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      break;
1515a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    }
1516a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng
1517a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    if (!NewOpc)
1518a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      continue;
1519a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng
1520a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    unsigned UserOffset = GetOffsetOf(U.MI) + 4;
1521a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    unsigned MaxOffs = ((1 << Bits) - 1) * Scale;
1522a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    // FIXME: Check if offset is multiple of scale if scale is not 4.
1523a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    if (CPEIsInRange(U.MI, UserOffset, U.CPEMI, MaxOffs, false, true)) {
1524a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      U.MI->setDesc(TII->get(NewOpc));
1525a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      MachineBasicBlock *MBB = U.MI->getParent();
1526a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      BBSizes[MBB->getNumber()] -= 2;
1527a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      AdjustBBOffsetsAfter(MBB, -2);
1528a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      ++NumT2CPShrunk;
1529a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      MadeChange = true;
1530a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng    }
1531a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng  }
1532a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng
1533a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng  MadeChange |= OptimizeThumb2Branches(MF);
153401dec0e545de18aadcd3911563a93d10a625be80Jim Grosbach  MadeChange |= OptimizeThumb2JumpTables(MF);
1535a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng  return MadeChange;
1536a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng}
1537a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng
1538a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Chengbool ARMConstantIslands::OptimizeThumb2Branches(MachineFunction &MF) {
153931b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  bool MadeChange = false;
154031b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng
154131b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  for (unsigned i = 0, e = ImmBranches.size(); i != e; ++i) {
154231b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    ImmBranch &Br = ImmBranches[i];
154331b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    unsigned Opcode = Br.MI->getOpcode();
154431b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    unsigned NewOpc = 0;
154531b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    unsigned Scale = 1;
154631b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    unsigned Bits = 0;
154731b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    switch (Opcode) {
154831b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    default: break;
154931b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    case ARM::t2B:
155031b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng      NewOpc = ARM::tB;
155131b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng      Bits = 11;
155231b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng      Scale = 2;
155331b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng      break;
1554de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    case ARM::t2Bcc: {
155531b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng      NewOpc = ARM::tBcc;
155631b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng      Bits = 8;
1557de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng      Scale = 2;
155831b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng      break;
155931b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    }
1560de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    }
1561de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    if (NewOpc) {
1562de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng      unsigned MaxOffs = ((1 << (Bits-1))-1) * Scale;
1563de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng      MachineBasicBlock *DestBB = Br.MI->getOperand(0).getMBB();
1564de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng      if (BBIsInRange(Br.MI, DestBB, MaxOffs)) {
1565de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng        Br.MI->setDesc(TII->get(NewOpc));
1566de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng        MachineBasicBlock *MBB = Br.MI->getParent();
1567de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng        BBSizes[MBB->getNumber()] -= 2;
1568de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng        AdjustBBOffsetsAfter(MBB, -2);
1569de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng        ++NumT2BrShrunk;
1570de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng        MadeChange = true;
1571de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng      }
1572de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    }
1573de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng
1574de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    Opcode = Br.MI->getOpcode();
1575de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    if (Opcode != ARM::tBcc)
157631b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng      continue;
157731b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng
1578de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    NewOpc = 0;
1579de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    unsigned PredReg = 0;
1580de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    ARMCC::CondCodes Pred = llvm::getInstrPredicate(Br.MI, PredReg);
1581de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    if (Pred == ARMCC::EQ)
1582de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng      NewOpc = ARM::tCBZ;
1583de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    else if (Pred == ARMCC::NE)
1584de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng      NewOpc = ARM::tCBNZ;
1585de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    if (!NewOpc)
1586de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng      continue;
158731b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    MachineBasicBlock *DestBB = Br.MI->getOperand(0).getMBB();
1588de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    // Check if the distance is within 126. Subtract starting offset by 2
1589de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    // because the cmp will be eliminated.
1590de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    unsigned BrOffset = GetOffsetOf(Br.MI) + 4 - 2;
1591de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    unsigned DestOffset = BBOffsets[DestBB->getNumber()];
1592de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng    if (BrOffset < DestOffset && (DestOffset - BrOffset) <= 126) {
1593de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng      MachineBasicBlock::iterator CmpMI = Br.MI; --CmpMI;
1594de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng      if (CmpMI->getOpcode() == ARM::tCMPzi8) {
1595de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng        unsigned Reg = CmpMI->getOperand(0).getReg();
1596de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng        Pred = llvm::getInstrPredicate(CmpMI, PredReg);
1597de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng        if (Pred == ARMCC::AL &&
1598de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng            CmpMI->getOperand(1).getImm() == 0 &&
1599de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng            isARMLowRegister(Reg)) {
1600de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng          MachineBasicBlock *MBB = Br.MI->getParent();
1601de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng          MachineInstr *NewBR =
1602de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng            BuildMI(*MBB, CmpMI, Br.MI->getDebugLoc(), TII->get(NewOpc))
1603de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng            .addReg(Reg).addMBB(DestBB, Br.MI->getOperand(0).getTargetFlags());
1604de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng          CmpMI->eraseFromParent();
1605de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng          Br.MI->eraseFromParent();
1606de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng          Br.MI = NewBR;
1607de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng          BBSizes[MBB->getNumber()] -= 2;
1608de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng          AdjustBBOffsetsAfter(MBB, -2);
1609de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng          ++NumCBZ;
1610de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng          MadeChange = true;
1611de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng        }
1612de17fb6e4dd8f169f707d58d4e124c8d4d2c7dbaEvan Cheng      }
161331b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng    }
161431b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  }
161531b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng
161631b99dd76035067b1c3cc6c7e9d663b7b0210938Evan Cheng  return MadeChange;
1617a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng}
1618a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng
1619a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng/// OptimizeThumb2JumpTables - Use tbb / tbh instructions to generate smaller
1620a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng/// jumptables when it's possible.
16215657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Chengbool ARMConstantIslands::OptimizeThumb2JumpTables(MachineFunction &MF) {
16225657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  bool MadeChange = false;
16235657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng
16245657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  // FIXME: After the tables are shrunk, can we get rid some of the
16255657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  // constantpool tables?
16261fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  MachineJumpTableInfo *MJTI = MF.getJumpTableInfo();
1627b1e803985d3378538ae9cff7eed4102c002d1e22Chris Lattner  if (MJTI == 0) return false;
1628b1e803985d3378538ae9cff7eed4102c002d1e22Chris Lattner
16295657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  const std::vector<MachineJumpTableEntry> &JT = MJTI->getJumpTables();
16305657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  for (unsigned i = 0, e = T2JumpTables.size(); i != e; ++i) {
16315657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    MachineInstr *MI = T2JumpTables[i];
16325657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    const TargetInstrDesc &TID = MI->getDesc();
16335657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    unsigned NumOps = TID.getNumOperands();
16345657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    unsigned JTOpIdx = NumOps - (TID.isPredicable() ? 3 : 2);
16355657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    MachineOperand JTOP = MI->getOperand(JTOpIdx);
16365657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    unsigned JTI = JTOP.getIndex();
16375657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    assert(JTI < JT.size());
16385657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng
16391fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach    bool ByteOk = true;
16401fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach    bool HalfWordOk = true;
164180697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    unsigned JTOffset = GetOffsetOf(MI) + 4;
164280697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    const std::vector<MachineBasicBlock*> &JTBBs = JT[JTI].MBBs;
16435657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    for (unsigned j = 0, ee = JTBBs.size(); j != ee; ++j) {
16445657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      MachineBasicBlock *MBB = JTBBs[j];
16455657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      unsigned DstOffset = BBOffsets[MBB->getNumber()];
16468770f747a98194056805f1b7cbcb0b75a7633b87Evan Cheng      // Negative offset is not ok. FIXME: We should change BB layout to make
16478770f747a98194056805f1b7cbcb0b75a7633b87Evan Cheng      // sure all the branches are forward.
1648d26b14c34cbcee1448b86b524578fc51cc979023Evan Cheng      if (ByteOk && (DstOffset - JTOffset) > ((1<<8)-1)*2)
16495657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        ByteOk = false;
165025f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      unsigned TBHLimit = ((1<<16)-1)*2;
165125f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      if (HalfWordOk && (DstOffset - JTOffset) > TBHLimit)
16525657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        HalfWordOk = false;
16535657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      if (!ByteOk && !HalfWordOk)
16545657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        break;
16555657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    }
16565657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng
16575657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    if (ByteOk || HalfWordOk) {
16585657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      MachineBasicBlock *MBB = MI->getParent();
16595657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      unsigned BaseReg = MI->getOperand(0).getReg();
16605657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      bool BaseRegKill = MI->getOperand(0).isKill();
16615657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      if (!BaseRegKill)
16625657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        continue;
16635657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      unsigned IdxReg = MI->getOperand(1).getReg();
16645657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      bool IdxRegKill = MI->getOperand(1).isKill();
16655657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      MachineBasicBlock::iterator PrevI = MI;
16665657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      if (PrevI == MBB->begin())
16675657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        continue;
16685657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng
16695657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      MachineInstr *AddrMI = --PrevI;
16705657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      bool OptOk = true;
16715657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      // Examine the instruction that calculate the jumptable entry address.
16725657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      // If it's not the one just before the t2BR_JT, we won't delete it, then
16735657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      // it's not worth doing the optimization.
16745657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      for (unsigned k = 0, eee = AddrMI->getNumOperands(); k != eee; ++k) {
16755657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        const MachineOperand &MO = AddrMI->getOperand(k);
16765657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        if (!MO.isReg() || !MO.getReg())
16775657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng          continue;
16785657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        if (MO.isDef() && MO.getReg() != BaseReg) {
16795657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng          OptOk = false;
16805657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng          break;
16815657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        }
16825657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        if (MO.isUse() && !MO.isKill() && MO.getReg() != IdxReg) {
16835657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng          OptOk = false;
16845657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng          break;
16855657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        }
16865657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      }
16875657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      if (!OptOk)
16885657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng        continue;
16895657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng
1690a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      // The previous instruction should be a tLEApcrel or t2LEApcrelJT, we want
1691a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      // to delete it as well.
16925657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng      MachineInstr *LeaMI = --PrevI;
1693a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng      if ((LeaMI->getOpcode() != ARM::tLEApcrelJT &&
1694a1efbbdbf3217598f334a6f39dab84ca06f5de41Evan Cheng           LeaMI->getOpcode() != ARM::t2LEApcrelJT) ||
16955657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng          LeaMI->getOperand(0).getReg() != BaseReg)
169625f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng        OptOk = false;
169725f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng
169825f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      if (!OptOk)
169925f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng        continue;
170025f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng
170125f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      unsigned Opc = ByteOk ? ARM::t2TBB : ARM::t2TBH;
170225f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      MachineInstr *NewJTMI = BuildMI(MBB, MI->getDebugLoc(), TII->get(Opc))
170325f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng        .addReg(IdxReg, getKillRegState(IdxRegKill))
170425f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng        .addJumpTableIndex(JTI, JTOP.getTargetFlags())
170525f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng        .addImm(MI->getOperand(JTOpIdx+1).getImm());
170625f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      // FIXME: Insert an "ALIGN" instruction to ensure the next instruction
170725f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      // is 2-byte aligned. For now, asm printer will fix it up.
170825f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      unsigned NewSize = TII->GetInstSizeInBytes(NewJTMI);
170925f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      unsigned OrigSize = TII->GetInstSizeInBytes(AddrMI);
171025f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      OrigSize += TII->GetInstSizeInBytes(LeaMI);
171125f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      OrigSize += TII->GetInstSizeInBytes(MI);
171225f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng
171325f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      AddrMI->eraseFromParent();
171425f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      LeaMI->eraseFromParent();
171525f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      MI->eraseFromParent();
171625f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng
171725f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      int delta = OrigSize - NewSize;
171825f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      BBSizes[MBB->getNumber()] -= delta;
171925f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      AdjustBBOffsetsAfter(MBB, -delta);
172025f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng
172125f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      ++NumTBs;
172225f7cfc3cccba6f569f29f79ea533bae960b93c0Evan Cheng      MadeChange = true;
17235657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng    }
17245657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  }
17255657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng
17265657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng  return MadeChange;
17275657c01949dca6c012ac60d242d1a8d2ffdf5603Evan Cheng}
17281fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach
17299249efe4c7451e83fb4c904fd7fcc8edfe08d815Jim Grosbach/// ReorderThumb2JumpTables - Adjust the function's block layout to ensure that
17309249efe4c7451e83fb4c904fd7fcc8edfe08d815Jim Grosbach/// jump tables always branch forwards, since that's what tbb and tbh need.
173180697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbachbool ARMConstantIslands::ReorderThumb2JumpTables(MachineFunction &MF) {
173280697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  bool MadeChange = false;
173380697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach
173480697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  MachineJumpTableInfo *MJTI = MF.getJumpTableInfo();
1735b1e803985d3378538ae9cff7eed4102c002d1e22Chris Lattner  if (MJTI == 0) return false;
1736b1e803985d3378538ae9cff7eed4102c002d1e22Chris Lattner
173780697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  const std::vector<MachineJumpTableEntry> &JT = MJTI->getJumpTables();
173880697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  for (unsigned i = 0, e = T2JumpTables.size(); i != e; ++i) {
173980697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    MachineInstr *MI = T2JumpTables[i];
174080697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    const TargetInstrDesc &TID = MI->getDesc();
174180697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    unsigned NumOps = TID.getNumOperands();
174280697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    unsigned JTOpIdx = NumOps - (TID.isPredicable() ? 3 : 2);
174380697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    MachineOperand JTOP = MI->getOperand(JTOpIdx);
174480697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    unsigned JTI = JTOP.getIndex();
174580697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    assert(JTI < JT.size());
174680697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach
174780697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    // We prefer if target blocks for the jump table come after the jump
174880697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    // instruction so we can use TB[BH]. Loop through the target blocks
174980697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    // and try to adjust them such that that's true.
175008cbda56b6a45a2c29bdf3d9668ad614ad86cb77Jim Grosbach    int JTNumber = MI->getParent()->getNumber();
175180697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    const std::vector<MachineBasicBlock*> &JTBBs = JT[JTI].MBBs;
175280697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    for (unsigned j = 0, ee = JTBBs.size(); j != ee; ++j) {
175380697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach      MachineBasicBlock *MBB = JTBBs[j];
175408cbda56b6a45a2c29bdf3d9668ad614ad86cb77Jim Grosbach      int DTNumber = MBB->getNumber();
175580697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach
175608cbda56b6a45a2c29bdf3d9668ad614ad86cb77Jim Grosbach      if (DTNumber < JTNumber) {
175780697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach        // The destination precedes the switch. Try to move the block forward
175880697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach        // so we have a positive offset.
175980697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach        MachineBasicBlock *NewBB =
176080697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach          AdjustJTTargetBlockForward(MBB, MI->getParent());
176180697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach        if (NewBB)
176200a6a1f0225b01229134ecee7a853be638703c36Jim Grosbach          MJTI->ReplaceMBBInJumpTable(JTI, JTBBs[j], NewBB);
176380697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach        MadeChange = true;
176480697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach      }
176580697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    }
176680697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  }
176780697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach
176880697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  return MadeChange;
176980697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach}
177080697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach
17711fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim GrosbachMachineBasicBlock *ARMConstantIslands::
17721fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim GrosbachAdjustJTTargetBlockForward(MachineBasicBlock *BB, MachineBasicBlock *JTBB)
17731fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach{
17741fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  MachineFunction &MF = *BB->getParent();
17751fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach
177608cbda56b6a45a2c29bdf3d9668ad614ad86cb77Jim Grosbach  // If it's the destination block is terminated by an unconditional branch,
177780697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  // try to move it; otherwise, create a new block following the jump
177808cbda56b6a45a2c29bdf3d9668ad614ad86cb77Jim Grosbach  // table that branches back to the actual target. This is a very simple
177908cbda56b6a45a2c29bdf3d9668ad614ad86cb77Jim Grosbach  // heuristic. FIXME: We can definitely improve it.
178080697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  MachineBasicBlock *TBB = 0, *FBB = 0;
178180697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  SmallVector<MachineOperand, 4> Cond;
1782a0a95a3c1cea79757854cf39ba07734b39e2b0e9Jim Grosbach  SmallVector<MachineOperand, 4> CondPrior;
1783a0a95a3c1cea79757854cf39ba07734b39e2b0e9Jim Grosbach  MachineFunction::iterator BBi = BB;
1784a0a95a3c1cea79757854cf39ba07734b39e2b0e9Jim Grosbach  MachineFunction::iterator OldPrior = prior(BBi);
178500a6a1f0225b01229134ecee7a853be638703c36Jim Grosbach
1786ca215e7804ca5d85e19e31850c3ba3d155624e89Jim Grosbach  // If the block terminator isn't analyzable, don't try to move the block
1787a0a95a3c1cea79757854cf39ba07734b39e2b0e9Jim Grosbach  bool B = TII->AnalyzeBranch(*BB, TBB, FBB, Cond);
1788ca215e7804ca5d85e19e31850c3ba3d155624e89Jim Grosbach
1789a0a95a3c1cea79757854cf39ba07734b39e2b0e9Jim Grosbach  // If the block ends in an unconditional branch, move it. The prior block
1790a0a95a3c1cea79757854cf39ba07734b39e2b0e9Jim Grosbach  // has to have an analyzable terminator for us to move this one. Be paranoid
179108cbda56b6a45a2c29bdf3d9668ad614ad86cb77Jim Grosbach  // and make sure we're not trying to move the entry block of the function.
1792a0a95a3c1cea79757854cf39ba07734b39e2b0e9Jim Grosbach  if (!B && Cond.empty() && BB != MF.begin() &&
1793a0a95a3c1cea79757854cf39ba07734b39e2b0e9Jim Grosbach      !TII->AnalyzeBranch(*OldPrior, TBB, FBB, CondPrior)) {
179480697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    BB->moveAfter(JTBB);
179580697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    OldPrior->updateTerminator();
179600a6a1f0225b01229134ecee7a853be638703c36Jim Grosbach    BB->updateTerminator();
179708cbda56b6a45a2c29bdf3d9668ad614ad86cb77Jim Grosbach    // Update numbering to account for the block being moved.
1798a0a95a3c1cea79757854cf39ba07734b39e2b0e9Jim Grosbach    MF.RenumberBlocks();
179980697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    ++NumJTMoved;
180080697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach    return NULL;
180180697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  }
18021fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach
18031fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  // Create a new MBB for the code after the jump BB.
18041fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  MachineBasicBlock *NewBB =
18051fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach    MF.CreateMachineBasicBlock(JTBB->getBasicBlock());
18061fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  MachineFunction::iterator MBBI = JTBB; ++MBBI;
18071fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  MF.insert(MBBI, NewBB);
18081fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach
18091fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  // Add an unconditional branch from NewBB to BB.
18101fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  // There doesn't seem to be meaningful DebugInfo available; this doesn't
18111fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  // correspond directly to anything in the source.
18121fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  assert (isThumb2 && "Adjusting for TB[BH] but not in Thumb2?");
18131fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  BuildMI(NewBB, DebugLoc::getUnknownLoc(), TII->get(ARM::t2B)).addMBB(BB);
18141fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach
181500a6a1f0225b01229134ecee7a853be638703c36Jim Grosbach  // Update internal data structures to account for the newly inserted MBB.
181600a6a1f0225b01229134ecee7a853be638703c36Jim Grosbach  MF.RenumberBlocks(NewBB);
181700a6a1f0225b01229134ecee7a853be638703c36Jim Grosbach
18181fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  // Update the CFG.
18191fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  NewBB->addSuccessor(BB);
18201fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  JTBB->removeSuccessor(BB);
18211fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  JTBB->addSuccessor(NewBB);
18221fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach
182380697d1b266cd3cd3b92edd424d66d573db6b4b1Jim Grosbach  ++NumJTInserted;
18241fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach  return NewBB;
18251fc7d715aa35703fcc4a87ece718a8c447e8ee72Jim Grosbach}
1826