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Add the necessary support to the ISel to allow targets to codegen the new
alignment information appropriately. Includes code for PowerPC to support fixed-size allocas with alignment larger than the stack. Support for arbitrarily aligned dynamic allocas coming soon. git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@24224 91177308-0d34-0410-b5e6-96231b3b80d8
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@ -85,6 +85,13 @@ class MachineFrameInfo {
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/// to be allocated on entry to the function.
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///
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unsigned StackSize;
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/// MaxAlignment - The prolog/epilog code inserter may process objects
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/// that require greater alignment than the default alignment the target
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/// provides. In these cases, MaxAlignment is set to the new alignment
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/// necessary to easily calculate fixed offsets for each stack object.
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///
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unsigned MaxAlignment;
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/// HasCalls - Set to true if this function has any function calls. This is
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/// only valid during and after prolog/epilog code insertion.
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@ -99,7 +106,7 @@ class MachineFrameInfo {
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unsigned MaxCallFrameSize;
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public:
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MachineFrameInfo() {
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NumFixedObjects = StackSize = 0;
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NumFixedObjects = StackSize = MaxAlignment = 0;
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HasVarSizedObjects = false;
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HasCalls = false;
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MaxCallFrameSize = 0;
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@ -163,6 +170,16 @@ public:
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///
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void setStackSize(unsigned Size) { StackSize = Size; }
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/// getMaxAlignment - Return the alignment in bytes that this function must be
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/// aligned to, which is greater than the default stack alignment provided by
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/// the target.
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///
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unsigned getMaxAlignment() const { return MaxAlignment; }
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/// setMaxAlignment - Set the preferred alignment.
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///
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void setMaxAlignment(unsigned Align) { MaxAlignment = Align; }
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/// hasCalls - Return true if the current function has no function calls.
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/// This is only valid during or after prolog/epilog code emission.
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///
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@ -258,6 +258,7 @@ void PEI::calculateFrameObjectOffsets(MachineFunction &Fn) {
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MachineFrameInfo *FFI = Fn.getFrameInfo();
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unsigned StackAlignment = TFI.getStackAlignment();
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unsigned MaxAlign = StackAlignment;
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// Start at the beginning of the local area.
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// The Offset is the distance from the stack top in the direction
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@ -295,9 +296,11 @@ void PEI::calculateFrameObjectOffsets(MachineFunction &Fn) {
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Offset += FFI->getObjectSize(i);
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unsigned Align = FFI->getObjectAlignment(i);
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assert(Align <= StackAlignment && "Cannot align stack object to higher "
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"alignment boundary than the stack itself!");
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Offset = (Offset+Align-1)/Align*Align; // Adjust to Alignment boundary...
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// If the alignment of this object is greater than that of the stack, then
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// increase the stack alignment to match.
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MaxAlign = std::max(MaxAlign, Align);
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// Adjust to alignment boundary
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Offset = (Offset+Align-1)/Align*Align;
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if (StackGrowsDown) {
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FFI->setObjectOffset(i, -Offset); // Set the computed offset
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@ -315,6 +318,11 @@ void PEI::calculateFrameObjectOffsets(MachineFunction &Fn) {
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// Set the final value of the stack pointer...
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FFI->setStackSize(Offset+TFI.getOffsetOfLocalArea());
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// If we have a new stack alignment, set the preferred stack alignment so that
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// the targets can do the appropriate thing to properly align the stack above
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// the default alignment.
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if (MaxAlign > StackAlignment)
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FFI->setMaxAlignment(MaxAlign);
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}
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@ -147,7 +147,9 @@ FunctionLoweringInfo::FunctionLoweringInfo(TargetLowering &tli,
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if (ConstantUInt *CUI = dyn_cast<ConstantUInt>(AI->getArraySize())) {
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const Type *Ty = AI->getAllocatedType();
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uint64_t TySize = TLI.getTargetData().getTypeSize(Ty);
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unsigned Align = TLI.getTargetData().getTypeAlignment(Ty);
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unsigned Align =
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std::max((unsigned)TLI.getTargetData().getTypeAlignment(Ty),
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AI->getAlignment());
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// If the alignment of the value is smaller than the size of the value,
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// and if the size of the value is particularly small (<= 8 bytes),
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@ -636,7 +638,8 @@ void SelectionDAGLowering::visitAlloca(AllocaInst &I) {
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const Type *Ty = I.getAllocatedType();
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uint64_t TySize = TLI.getTargetData().getTypeSize(Ty);
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unsigned Align = TLI.getTargetData().getTypeAlignment(Ty);
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unsigned Align = std::max((unsigned)TLI.getTargetData().getTypeAlignment(Ty),
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I.getAlignment());
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SDOperand AllocSize = getValue(I.getArraySize());
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MVT::ValueType IntPtr = TLI.getPointerTy();
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@ -26,6 +26,7 @@
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#include "llvm/Target/TargetOptions.h"
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#include "llvm/Support/CommandLine.h"
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#include "llvm/Support/Debug.h"
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#include "llvm/Support/MathExtras.h"
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#include "llvm/ADT/STLExtras.h"
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#include <cstdlib>
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#include <iostream>
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@ -294,6 +295,11 @@ void PPCRegisterInfo::emitPrologue(MachineFunction &MF) const {
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// Get the number of bytes to allocate from the FrameInfo
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unsigned NumBytes = MFI->getStackSize();
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// Get the alignments provided by the target, and the maximum alignment
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// (if any) of the fixed frame objects.
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unsigned TargetAlign = MF.getTarget().getFrameInfo()->getStackAlignment();
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unsigned MaxAlign = MFI->getMaxAlignment();
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// If we have calls, we cannot use the red zone to store callee save registers
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// and we must set up a stack frame, so calculate the necessary size here.
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@ -307,14 +313,15 @@ void PPCRegisterInfo::emitPrologue(MachineFunction &MF) const {
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// If we are a leaf function, and use up to 224 bytes of stack space,
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// and don't have a frame pointer, then we do not need to adjust the stack
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// pointer (we fit in the Red Zone).
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if ((NumBytes == 0) || (NumBytes <= 224 && !hasFP(MF) && !MFI->hasCalls())) {
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if ((NumBytes == 0) || (NumBytes <= 224 && !hasFP(MF) && !MFI->hasCalls() &&
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MaxAlign <= TargetAlign)) {
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MFI->setStackSize(0);
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return;
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}
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// Add the size of R1 to NumBytes size for the store of R1 to the bottom
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// of the stack and round the size to a multiple of the alignment.
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unsigned Align = MF.getTarget().getFrameInfo()->getStackAlignment();
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unsigned Align = std::max(TargetAlign, MaxAlign);
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unsigned GPRSize = 4;
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unsigned Size = hasFP(MF) ? GPRSize + GPRSize : GPRSize;
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NumBytes = (NumBytes+Size+Align-1)/Align*Align;
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@ -336,7 +343,23 @@ void PPCRegisterInfo::emitPrologue(MachineFunction &MF) const {
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MI = BuildMI(PPC::STWUX, 3).addReg(PPC::R1).addReg(PPC::R1).addReg(PPC::R0);
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MBB.insert(MBBI, MI);
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}
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// If there is a preferred stack alignment, align R1 now
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// FIXME: If this ever matters, this could be made more efficient by folding
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// this into the code above, so that we don't issue two store+update
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// instructions.
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if (MaxAlign > TargetAlign) {
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assert(isPowerOf2_32(MaxAlign) && MaxAlign < 32767 && "Invalid alignment!");
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MI = BuildMI(PPC::RLWINM, 4, PPC::R0).addReg(PPC::R1).addImm(0)
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.addImm(32-Log2_32(MaxAlign)).addImm(31);
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MBB.insert(MBBI, MI);
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MI = BuildMI(PPC::SUBFIC, 2, PPC::R0).addReg(PPC::R0).addImm(MaxAlign);
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MBB.insert(MBBI, MI);
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MI = BuildMI(PPC::STWUX, 3).addReg(PPC::R1).addReg(PPC::R1).addReg(PPC::R0);
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MBB.insert(MBBI, MI);
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}
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// If there is a frame pointer, copy R1 (SP) into R31 (FP)
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if (hasFP(MF)) {
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MI = BuildMI(PPC::STW, 3).addReg(PPC::R31).addSImm(GPRSize).addReg(PPC::R1);
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MBB.insert(MBBI, MI);
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