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In Thumb2, direct branches can be encoded as either a "short" conditional branch with a null predicate, or
as a "long" direct branch. While the mnemonics are the same, they encode the branch offset differently, and the Darwin assembler appears to prefer the "long" form for direct branches. Thus, in the name of bitwise equivalence, provide encoding and fixup support for it. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@121710 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -140,11 +140,32 @@ static unsigned adjustFixupValue(unsigned Kind, uint64_t Value) {
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// These values don't encode the low two bits since they're always zero.
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// Offset by 8 just as above.
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return 0xffffff & ((Value - 8) >> 2);
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case ARM::fixup_t2_branch: {
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case ARM::fixup_t2_uncondbranch: {
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Value = Value - 4;
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Value >>= 1; // Low bit is not encoded.
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uint32_t out = 0;
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bool I = Value & 0x800000;
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bool J1 = Value & 0x400000;
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bool J2 = Value & 0x200000;
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J1 ^= I;
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J2 ^= I;
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out |= I << 26; // S bit
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out |= !J1 << 13; // J1 bit
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out |= !J2 << 11; // J2 bit
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out |= (Value & 0x1FF800) << 5; // imm6 field
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out |= (Value & 0x0007FF); // imm11 field
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uint64_t swapped = (out & 0xFFFF0000) >> 16;
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swapped |= (out & 0x0000FFFF) << 16;
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return swapped;
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}
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case ARM::fixup_t2_condbranch: {
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Value = Value - 4;
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Value >>= 1; // Low bit is not encoded.
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uint64_t out = 0;
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out |= (Value & 0x80000) << 7; // S bit
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out |= (Value & 0x40000) >> 7; // J2 bit
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out |= (Value & 0x20000) >> 4; // J1 bit
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@ -332,7 +353,8 @@ static unsigned getFixupKindNumBytes(unsigned Kind) {
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case FK_Data_4:
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case ARM::fixup_t2_ldst_pcrel_12:
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case ARM::fixup_t2_branch:
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case ARM::fixup_t2_condbranch:
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case ARM::fixup_t2_uncondbranch:
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case ARM::fixup_t2_pcrel_10:
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case ARM::fixup_arm_thumb_bl:
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case ARM::fixup_arm_thumb_blx:
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@ -183,6 +183,8 @@ namespace {
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const { return 0; }
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unsigned getBranchTargetOpValue(const MachineInstr &MI, unsigned Op)
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const { return 0; }
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unsigned getUnconditionalBranchTargetOpValue(const MachineInstr &MI,
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unsigned Op) const { return 0; }
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unsigned getCCOutOpValue(const MachineInstr &MI, unsigned Op)
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const { return 0; }
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unsigned getSOImmOpValue(const MachineInstr &MI, unsigned Op)
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@ -36,9 +36,12 @@ enum Fixups {
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// fixup_arm_branch - 24-bit PC relative relocation for direct branch
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// instructions.
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fixup_arm_branch,
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// fixup_t2_branch - 20-bit PC relative relocation for Thumb2 direct branch
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// instructions.
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fixup_t2_branch,
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// fixup_t2_condbranch - 20-bit PC relative relocation for Thumb2 direct
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// uconditional branch instructions.
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fixup_t2_condbranch,
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// fixup_t2_uncondbranch - 20-bit PC relative relocation for Thumb2 direct
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// branch unconditional branch instructions.
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fixup_t2_uncondbranch,
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// fixup_arm_thumb_br - 12-bit fixup for Thumb B instructions.
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fixup_arm_thumb_br,
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@ -293,6 +293,10 @@ def brtarget : Operand<OtherVT> {
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let EncoderMethod = "getBranchTargetOpValue";
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}
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def uncondbrtarget : Operand<OtherVT> {
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let EncoderMethod = "getUnconditionalBranchTargetOpValue";
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}
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// Call target.
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def bltarget : Operand<i32> {
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// Encoded the same as branch targets.
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@ -2961,7 +2961,7 @@ def t2LDMIA_RET: T2XIt<(outs GPR:$wb), (ins GPR:$Rn, pred:$p,
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let isBranch = 1, isTerminator = 1, isBarrier = 1 in {
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let isPredicable = 1 in
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def t2B : T2XI<(outs), (ins brtarget:$target), IIC_Br,
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def t2B : T2XI<(outs), (ins uncondbrtarget:$target), IIC_Br,
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"b.w\t$target",
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[(br bb:$target)]> {
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let Inst{31-27} = 0b11110;
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@ -57,7 +57,8 @@ public:
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MCFixupKindInfo::FKF_IsAligned},
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{ "fixup_arm_adr_pcrel_12", 1, 24, MCFixupKindInfo::FKF_IsPCRel },
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{ "fixup_arm_branch", 1, 24, MCFixupKindInfo::FKF_IsPCRel },
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{ "fixup_t2_branch", 0, 32, MCFixupKindInfo::FKF_IsPCRel },
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{ "fixup_t2_condbranch", 0, 32, MCFixupKindInfo::FKF_IsPCRel },
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{ "fixup_t2_uncondbranch", 0, 32, MCFixupKindInfo::FKF_IsPCRel },
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{ "fixup_arm_thumb_br", 0, 16, MCFixupKindInfo::FKF_IsPCRel },
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{ "fixup_arm_thumb_bl", 0, 32, MCFixupKindInfo::FKF_IsPCRel },
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{ "fixup_arm_thumb_blx", 7, 21, MCFixupKindInfo::FKF_IsPCRel },
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@ -122,6 +123,12 @@ public:
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uint32_t getBranchTargetOpValue(const MCInst &MI, unsigned OpIdx,
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SmallVectorImpl<MCFixup> &Fixups) const;
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/// getUnconditionalBranchTargetOpValue - Return encoding info for 24-bit
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/// immediate Thumb2 direct branch target.
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uint32_t getUnconditionalBranchTargetOpValue(const MCInst &MI, unsigned OpIdx,
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SmallVectorImpl<MCFixup> &Fixups) const;
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/// getAdrLabelOpValue - Return encoding info for 12-bit immediate
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/// ADR label target.
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uint32_t getAdrLabelOpValue(const MCInst &MI, unsigned OpIdx,
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@ -499,10 +506,34 @@ getBranchTargetOpValue(const MCInst &MI, unsigned OpIdx,
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// coupling between MC and TM anywhere we can help it.
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const ARMSubtarget &Subtarget = TM.getSubtarget<ARMSubtarget>();
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if (Subtarget.isThumb2())
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return ::getBranchTargetOpValue(MI, OpIdx, ARM::fixup_t2_branch, Fixups);
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return
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::getBranchTargetOpValue(MI, OpIdx, ARM::fixup_t2_condbranch, Fixups);
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return ::getBranchTargetOpValue(MI, OpIdx, ARM::fixup_arm_branch, Fixups);
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}
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/// getUnconditionalBranchTargetOpValue - Return encoding info for 24-bit
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/// immediate branch target.
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uint32_t ARMMCCodeEmitter::
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getUnconditionalBranchTargetOpValue(const MCInst &MI, unsigned OpIdx,
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SmallVectorImpl<MCFixup> &Fixups) const {
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unsigned Val =
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::getBranchTargetOpValue(MI, OpIdx, ARM::fixup_t2_uncondbranch, Fixups);
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bool I = (Val & 0x800000);
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bool J1 = (Val & 0x400000);
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bool J2 = (Val & 0x200000);
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if (I ^ J1)
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Val &= ~0x400000;
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else
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Val |= 0x400000;
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if (I ^ J2)
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Val &= ~0x200000;
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else
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Val |= 0x200000;
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return Val;
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}
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/// getAdrLabelOpValue - Return encoding info for 12-bit immediate ADR label
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/// target.
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uint32_t ARMMCCodeEmitter::
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@ -322,6 +322,7 @@ static int X86TypeFromOpName(LiteralConstantEmitter *type,
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PCR("offset32");
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PCR("offset64");
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PCR("brtarget");
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PCR("uncondbrtarget");
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PCR("bltarget");
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return 1;
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@ -587,6 +588,7 @@ static int ARMFlagFromOpName(LiteralConstantEmitter *type,
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IMM("neon_vcvt_imm32");
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MISC("brtarget", "kOperandTypeARMBranchTarget"); // ?
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MISC("uncondbrtarget", "kOperandTypeARMBranchTarget"); // ?
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MISC("t_brtarget", "kOperandTypeARMBranchTarget"); // ?
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MISC("t_bcctarget", "kOperandTypeARMBranchTarget"); // ?
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MISC("t_cbtarget", "kOperandTypeARMBranchTarget"); // ?
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@ -857,6 +857,7 @@ OperandType RecognizableInstr::typeFromString(const std::string &s,
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TYPE("i32imm_pcrel", TYPE_REL32)
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TYPE("SSECC", TYPE_IMM3)
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TYPE("brtarget", TYPE_RELv)
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TYPE("uncondbrtarget", TYPE_RELv)
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TYPE("brtarget8", TYPE_REL8)
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TYPE("f80mem", TYPE_M80FP)
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TYPE("lea32mem", TYPE_LEA)
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