Support XOR and AND optimization with no return value.
Finishes off rdar://8470697
git-svn-id: https://llvm.org/svn/llvm-project/llvm/trunk@131458 91177308-0d34-0410-b5e6-96231b3b80d8
diff --git a/lib/Target/X86/X86ISelDAGToDAG.cpp b/lib/Target/X86/X86ISelDAGToDAG.cpp
index d63af3c..13f7cda 100644
--- a/lib/Target/X86/X86ISelDAGToDAG.cpp
+++ b/lib/Target/X86/X86ISelDAGToDAG.cpp
@@ -189,7 +189,7 @@
SDNode *Select(SDNode *N);
SDNode *SelectAtomic64(SDNode *Node, unsigned Opc);
SDNode *SelectAtomicLoadAdd(SDNode *Node, EVT NVT);
- SDNode *SelectAtomicLoadOr(SDNode *Node, EVT NVT);
+ SDNode *SelectAtomicLoadArith(SDNode *Node, EVT NVT);
bool MatchLoadInAddress(LoadSDNode *N, X86ISelAddressMode &AM);
bool MatchWrapper(SDValue N, X86ISelAddressMode &AM);
@@ -1484,6 +1484,8 @@
enum AtomicOpc {
OR,
+ AND,
+ XOR,
AtomicOpcEnd
};
@@ -1515,10 +1517,36 @@
X86::LOCK_OR64mi8,
X86::LOCK_OR64mi32,
X86::LOCK_OR64mr
+ },
+ {
+ X86::LOCK_AND8mi,
+ X86::LOCK_AND8mr,
+ X86::LOCK_AND16mi8,
+ X86::LOCK_AND16mi,
+ X86::LOCK_AND16mr,
+ X86::LOCK_AND32mi8,
+ X86::LOCK_AND32mi,
+ X86::LOCK_AND32mr,
+ X86::LOCK_AND64mi8,
+ X86::LOCK_AND64mi32,
+ X86::LOCK_AND64mr
+ },
+ {
+ X86::LOCK_XOR8mi,
+ X86::LOCK_XOR8mr,
+ X86::LOCK_XOR16mi8,
+ X86::LOCK_XOR16mi,
+ X86::LOCK_XOR16mr,
+ X86::LOCK_XOR32mi8,
+ X86::LOCK_XOR32mi,
+ X86::LOCK_XOR32mr,
+ X86::LOCK_XOR64mi8,
+ X86::LOCK_XOR64mi32,
+ X86::LOCK_XOR64mr
}
};
-SDNode *X86DAGToDAGISel::SelectAtomicLoadOr(SDNode *Node, EVT NVT) {
+SDNode *X86DAGToDAGISel::SelectAtomicLoadArith(SDNode *Node, EVT NVT) {
if (Node->hasAnyUseOfValue(0))
return 0;
@@ -1533,6 +1561,22 @@
if (!SelectAddr(Node, Ptr, Tmp0, Tmp1, Tmp2, Tmp3, Tmp4))
return 0;
+ // Which index into the table.
+ enum AtomicOpc Op;
+ switch (Node->getOpcode()) {
+ case ISD::ATOMIC_LOAD_OR:
+ Op = OR;
+ break;
+ case ISD::ATOMIC_LOAD_AND:
+ Op = AND;
+ break;
+ case ISD::ATOMIC_LOAD_XOR:
+ Op = XOR;
+ break;
+ default:
+ return 0;
+ }
+
bool isCN = false;
ConstantSDNode *CN = dyn_cast<ConstantSDNode>(Val);
if (CN) {
@@ -1540,8 +1584,6 @@
Val = CurDAG->getTargetConstant(CN->getSExtValue(), NVT);
}
- // Which index into the table.
- enum AtomicOpc Op = OR;
unsigned Opc = 0;
switch (NVT.getSimpleVT().SimpleTy) {
default: return 0;
@@ -1693,8 +1735,10 @@
return RetVal;
break;
}
+ case ISD::ATOMIC_LOAD_XOR:
+ case ISD::ATOMIC_LOAD_AND:
case ISD::ATOMIC_LOAD_OR: {
- SDNode *RetVal = SelectAtomicLoadOr(Node, NVT);
+ SDNode *RetVal = SelectAtomicLoadArith(Node, NVT);
if (RetVal)
return RetVal;
break;