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Change definitions of classes LoadM and StoreM in preparation for adding support
for 64-bit load and store instructions. Add definitions of 64-bit memory operand and 16-bit immediate operand. llvm-svn: 141603
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@ -22,7 +22,6 @@ def HasMips64r2 : Predicate<"Subtarget.hasMips64r2()">;
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//===----------------------------------------------------------------------===//
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// Instruction operand types
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def simm16_64 : Operand<i64>;
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def shamt_64 : Operand<i64>;
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// Unsigned Operand
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@ -127,6 +127,8 @@ def HasSwap : Predicate<"Subtarget.hasSwap()">;
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def HasCondMov : Predicate<"Subtarget.hasCondMov()">;
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def HasMips32 : Predicate<"Subtarget.hasMips32()">;
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def HasMips32r2 : Predicate<"Subtarget.hasMips32r2()">;
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def IsN64 : Predicate<"Subtarget.isABI_N64()">;
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def NotN64 : Predicate<"!Subtarget.isABI_N64()">;
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//===----------------------------------------------------------------------===//
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// Mips Operand, Complex Patterns and Transformations Definitions.
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@ -136,6 +138,7 @@ def HasMips32r2 : Predicate<"Subtarget.hasMips32r2()">;
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def brtarget : Operand<OtherVT>;
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def calltarget : Operand<i32>;
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def simm16 : Operand<i32>;
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def simm16_64 : Operand<i64>;
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def shamt : Operand<i32>;
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// Unsigned Operand
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@ -149,6 +152,11 @@ def mem : Operand<i32> {
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let MIOperandInfo = (ops CPURegs, simm16);
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}
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def mem64 : Operand<i64> {
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let PrintMethod = "printMemOperand";
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let MIOperandInfo = (ops CPU64Regs, simm16_64);
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}
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def mem_ea : Operand<i32> {
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let PrintMethod = "printMemOperandEA";
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let MIOperandInfo = (ops CPURegs, simm16);
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@ -313,20 +321,58 @@ class LoadUpper<bits<6> op, string instr_asm>:
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// Memory Load/Store
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let canFoldAsLoad = 1 in
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class LoadM<bits<6> op, string instr_asm, PatFrag OpNode, bit Pseudo = 0>:
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FI<op, (outs CPURegs:$dst), (ins mem:$addr),
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class LoadM<bits<6> op, string instr_asm, PatFrag OpNode, RegisterClass RC,
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Operand MemOpnd, bit Pseudo>:
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FI<op, (outs RC:$dst), (ins MemOpnd:$addr),
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!strconcat(instr_asm, "\t$dst, $addr"),
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[(set CPURegs:$dst, (OpNode addr:$addr))], IILoad> {
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[(set RC:$dst, (OpNode addr:$addr))], IILoad> {
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let isPseudo = Pseudo;
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}
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class StoreM<bits<6> op, string instr_asm, PatFrag OpNode, bit Pseudo = 0>:
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FI<op, (outs), (ins CPURegs:$dst, mem:$addr),
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class StoreM<bits<6> op, string instr_asm, PatFrag OpNode, RegisterClass RC,
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Operand MemOpnd, bit Pseudo>:
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FI<op, (outs), (ins RC:$dst, MemOpnd:$addr),
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!strconcat(instr_asm, "\t$dst, $addr"),
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[(OpNode CPURegs:$dst, addr:$addr)], IIStore> {
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[(OpNode RC:$dst, addr:$addr)], IIStore> {
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let isPseudo = Pseudo;
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}
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// 32-bit load.
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multiclass LoadM32<bits<6> op, string instr_asm, PatFrag OpNode,
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bit Pseudo = 0> {
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def #NAME# : LoadM<op, instr_asm, OpNode, CPURegs, mem, Pseudo>,
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Requires<[NotN64]>;
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def _P8 : LoadM<op, instr_asm, OpNode, CPURegs, mem64, Pseudo>,
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Requires<[IsN64]>;
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}
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// 64-bit load.
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multiclass LoadM64<bits<6> op, string instr_asm, PatFrag OpNode,
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bit Pseudo = 0> {
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def #NAME# : LoadM<op, instr_asm, OpNode, CPU64Regs, mem, Pseudo>,
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Requires<[NotN64]>;
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def _P8 : LoadM<op, instr_asm, OpNode, CPU64Regs, mem64, Pseudo>,
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Requires<[IsN64]>;
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}
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// 32-bit store.
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multiclass StoreM32<bits<6> op, string instr_asm, PatFrag OpNode,
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bit Pseudo = 0> {
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def #NAME# : StoreM<op, instr_asm, OpNode, CPURegs, mem, Pseudo>,
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Requires<[NotN64]>;
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def _P8 : StoreM<op, instr_asm, OpNode, CPURegs, mem64, Pseudo>,
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Requires<[IsN64]>;
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}
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// 64-bit store.
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multiclass StoreM64<bits<6> op, string instr_asm, PatFrag OpNode,
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bit Pseudo = 0> {
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def #NAME# : StoreM<op, instr_asm, OpNode, CPU64Regs, mem, Pseudo>,
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Requires<[NotN64]>;
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def _P8 : StoreM<op, instr_asm, OpNode, CPU64Regs, mem64, Pseudo>,
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Requires<[IsN64]>;
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}
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// Conditional Branch
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let isBranch = 1, isTerminator=1, hasDelaySlot = 1 in {
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class CBranch<bits<6> op, string instr_asm, PatFrag cond_op>:
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@ -587,21 +633,21 @@ let Predicates = [HasMips32r2] in {
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/// Load and Store Instructions
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/// aligned
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def LB : LoadM<0x20, "lb", sextloadi8>;
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def LBu : LoadM<0x24, "lbu", zextloadi8>;
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def LH : LoadM<0x21, "lh", sextloadi16_a>;
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def LHu : LoadM<0x25, "lhu", zextloadi16_a>;
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def LW : LoadM<0x23, "lw", load_a>;
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def SB : StoreM<0x28, "sb", truncstorei8>;
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def SH : StoreM<0x29, "sh", truncstorei16_a>;
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def SW : StoreM<0x2b, "sw", store_a>;
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defm LB : LoadM32<0x20, "lb", sextloadi8>;
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defm LBu : LoadM32<0x24, "lbu", zextloadi8>;
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defm LH : LoadM32<0x21, "lh", sextloadi16_a>;
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defm LHu : LoadM32<0x25, "lhu", zextloadi16_a>;
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defm LW : LoadM32<0x23, "lw", load_a>;
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defm SB : StoreM32<0x28, "sb", truncstorei8>;
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defm SH : StoreM32<0x29, "sh", truncstorei16_a>;
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defm SW : StoreM32<0x2b, "sw", store_a>;
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/// unaligned
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def ULH : LoadM<0x21, "ulh", sextloadi16_u, 1>;
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def ULHu : LoadM<0x25, "ulhu", zextloadi16_u, 1>;
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def ULW : LoadM<0x23, "ulw", load_u, 1>;
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def USH : StoreM<0x29, "ush", truncstorei16_u, 1>;
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def USW : StoreM<0x2b, "usw", store_u, 1>;
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defm ULH : LoadM32<0x21, "ulh", sextloadi16_u, 1>;
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defm ULHu : LoadM32<0x25, "ulhu", zextloadi16_u, 1>;
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defm ULW : LoadM32<0x23, "ulw", load_u, 1>;
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defm USH : StoreM32<0x29, "ush", truncstorei16_u, 1>;
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defm USW : StoreM32<0x2b, "usw", store_u, 1>;
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let hasSideEffects = 1 in
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def SYNC : MipsInst<(outs), (ins i32imm:$stype), "sync $stype",
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