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InstSelectSimple.cpp: (visitReturnInst) Add return instructions with return
values. X86InstrInfo.def: add LEAVE instruction. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@4691 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -326,14 +326,69 @@ ISel::visitSetCondInst (SetCondInst & I)
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/// ret long, ulong : Move value into EAX/EDX (?) and return
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/// ret float/double : ? Top of FP stack? XMM0?
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///
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void ISel::visitReturnInst(ReturnInst &I) {
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if (I.getNumOperands() != 0) { // Not 'ret void'?
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// Move result into a hard register... then emit a ret
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visitInstruction(I); // abort
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void
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ISel::visitReturnInst (ReturnInst & I)
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{
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if (I.getNumOperands () == 1)
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{
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unsigned val = getReg (I.getOperand (0));
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unsigned operandSize =
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I.getOperand (0)->getType ()->getPrimitiveSize ();
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bool isFP = I.getOperand (0)->getType ()->isFloatingPoint ();
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if (isFP)
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{
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// ret float/double: top of FP stack
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// FLD <val>
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switch (operandSize)
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{
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case 4:
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BuildMI (BB, X86::FLDr4, 1, X86::NoReg).addReg (val);
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break;
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case 8:
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BuildMI (BB, X86::FLDr8, 1, X86::NoReg).addReg (val);
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break;
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default:
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visitInstruction (I);
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break;
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}
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// Emit a simple 'ret' instruction... appending it to the end of the basic
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// block
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}
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else
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{
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switch (operandSize)
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{
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case 1:
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// ret sbyte, ubyte: Extend value into EAX and return
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// MOV AL, <val>
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// CBW
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BuildMI (BB, X86::MOVrr8, 1, X86::AL).addReg (val);
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BuildMI (BB, X86::CBW, 0);
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break;
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case 2:
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// ret short, ushort: Extend value into EAX and return
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// MOV AX, <val>
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// CWDE
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BuildMI (BB, X86::MOVrr16, 1, X86::AX).addReg (val);
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BuildMI (BB, X86::CWDE, 0);
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break;
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case 4:
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// ret int, uint, ptr: Move value into EAX and return
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// MOV EAX, <val>
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BuildMI (BB, X86::MOVrr32, 1, X86::EAX).addReg (val);
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break;
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case 8:
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// ret long: use EAX(least significant 32 bits)/EDX (most
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// significant 32)...uh, I think so Brain, but how do i call
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// up the two parts of the value from inside this mouse
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// cage? *zort*
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default:
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// abort
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visitInstruction (I);
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break;
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}
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}
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}
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// Emit a 'leave' and a 'ret'
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BuildMI (BB, X86::LEAVE, 0);
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BuildMI (BB, X86::RET, 0);
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}
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@ -326,14 +326,69 @@ ISel::visitSetCondInst (SetCondInst & I)
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/// ret long, ulong : Move value into EAX/EDX (?) and return
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/// ret float/double : ? Top of FP stack? XMM0?
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///
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void ISel::visitReturnInst(ReturnInst &I) {
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if (I.getNumOperands() != 0) { // Not 'ret void'?
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// Move result into a hard register... then emit a ret
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visitInstruction(I); // abort
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void
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ISel::visitReturnInst (ReturnInst & I)
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{
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if (I.getNumOperands () == 1)
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{
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unsigned val = getReg (I.getOperand (0));
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unsigned operandSize =
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I.getOperand (0)->getType ()->getPrimitiveSize ();
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bool isFP = I.getOperand (0)->getType ()->isFloatingPoint ();
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if (isFP)
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{
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// ret float/double: top of FP stack
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// FLD <val>
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switch (operandSize)
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{
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case 4:
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BuildMI (BB, X86::FLDr4, 1, X86::NoReg).addReg (val);
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break;
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case 8:
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BuildMI (BB, X86::FLDr8, 1, X86::NoReg).addReg (val);
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break;
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default:
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visitInstruction (I);
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break;
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}
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// Emit a simple 'ret' instruction... appending it to the end of the basic
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// block
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}
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else
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{
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switch (operandSize)
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{
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case 1:
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// ret sbyte, ubyte: Extend value into EAX and return
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// MOV AL, <val>
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// CBW
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BuildMI (BB, X86::MOVrr8, 1, X86::AL).addReg (val);
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BuildMI (BB, X86::CBW, 0);
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break;
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case 2:
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// ret short, ushort: Extend value into EAX and return
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// MOV AX, <val>
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// CWDE
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BuildMI (BB, X86::MOVrr16, 1, X86::AX).addReg (val);
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BuildMI (BB, X86::CWDE, 0);
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break;
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case 4:
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// ret int, uint, ptr: Move value into EAX and return
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// MOV EAX, <val>
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BuildMI (BB, X86::MOVrr32, 1, X86::EAX).addReg (val);
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break;
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case 8:
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// ret long: use EAX(least significant 32 bits)/EDX (most
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// significant 32)...uh, I think so Brain, but how do i call
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// up the two parts of the value from inside this mouse
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// cage? *zort*
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default:
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// abort
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visitInstruction (I);
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break;
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}
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}
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}
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// Emit a 'leave' and a 'ret'
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BuildMI (BB, X86::LEAVE, 0);
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BuildMI (BB, X86::RET, 0);
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}
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@ -44,6 +44,7 @@ I(MOVrr32 , "movl", 0, 0) // R32 = R32 89/r
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I(MOVir8 , "movb", 0, 0) // R8 = imm8 B0+ rb
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I(MOVir16 , "movw", 0, 0) // R16 = imm16 B8+ rw
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I(MOVir32 , "movl", 0, 0) // R32 = imm32 B8+ rd
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I(LEAVE , "leave", 0, 0) // leave C9
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// Arithmetic instructions
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I(ADDrr8 , "addb", 0, 0) // R8 += R8 00/r
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