AllowVariableMask, DAG, Subtarget);
}
+/// Helper entry wrapper to combineX86ShufflesRecursively.
+static SDValue combineX86ShufflesRecursively(SDValue Op, SelectionDAG &DAG,
+ const X86Subtarget &Subtarget) {
+ return combineX86ShufflesRecursively({Op}, 0, Op, {0}, {}, /*Depth*/ 1,
+ /*HasVarMask*/ false,
+ /*AllowVarMask*/ true, DAG, Subtarget);
+}
+
/// Get the PSHUF-style mask from PSHUF node.
///
/// This is a very minor wrapper around getTargetShuffleMask to easy forming v4
// specific PSHUF instruction sequences into their minimal form so that we
// can evaluate how many specialized shuffle instructions are involved in
// a particular chain.
- if (SDValue Res = combineX86ShufflesRecursively(
- {Op}, 0, Op, {0}, {}, /*Depth*/ 1,
- /*HasVarMask*/ false, /*AllowVarMask*/ true, DAG, Subtarget))
+ if (SDValue Res = combineX86ShufflesRecursively(Op, DAG, Subtarget))
return Res;
// Simplify source operands based on shuffle mask.
// Attempt to combine as shuffle.
SDValue Op(N, 0);
- if (SDValue Res =
- combineX86ShufflesRecursively({Op}, 0, Op, {0}, {}, /*Depth*/ 1,
- /*HasVarMask*/ false,
- /*AllowVarMask*/ true, DAG, Subtarget))
+ if (SDValue Res = combineX86ShufflesRecursively(Op, DAG, Subtarget))
return Res;
return SDValue();
// We can decode 'whole byte' logical bit shifts as shuffles.
if (LogicalShift && (ShiftVal % 8) == 0) {
SDValue Op(N, 0);
- if (SDValue Res = combineX86ShufflesRecursively(
- {Op}, 0, Op, {0}, {}, /*Depth*/ 1,
- /*HasVarMask*/ false, /*AllowVarMask*/ true, DAG, Subtarget))
+ if (SDValue Res = combineX86ShufflesRecursively(Op, DAG, Subtarget))
return Res;
}
// Attempt to combine PINSRB/PINSRW patterns to a shuffle.
SDValue Op(N, 0);
- if (SDValue Res =
- combineX86ShufflesRecursively({Op}, 0, Op, {0}, {}, /*Depth*/ 1,
- /*HasVarMask*/ false,
- /*AllowVarMask*/ true, DAG, Subtarget))
+ if (SDValue Res = combineX86ShufflesRecursively(Op, DAG, Subtarget))
return Res;
return SDValue();
// Attempt to recursively combine a bitmask AND with shuffles.
if (VT.isVector() && (VT.getScalarSizeInBits() % 8) == 0) {
SDValue Op(N, 0);
- if (SDValue Res = combineX86ShufflesRecursively(
- {Op}, 0, Op, {0}, {}, /*Depth*/ 1,
- /*HasVarMask*/ false, /*AllowVarMask*/ true, DAG, Subtarget))
+ if (SDValue Res = combineX86ShufflesRecursively(Op, DAG, Subtarget))
return Res;
}
// Attempt to recursively combine an OR of shuffles.
if (VT.isVector() && (VT.getScalarSizeInBits() % 8) == 0) {
SDValue Op(N, 0);
- if (SDValue Res = combineX86ShufflesRecursively(
- {Op}, 0, Op, {0}, {}, /*Depth*/ 1,
- /*HasVarMask*/ false, /*AllowVarMask*/ true, DAG, Subtarget))
+ if (SDValue Res = combineX86ShufflesRecursively(Op, DAG, Subtarget))
return Res;
}
// Attempt to recursively combine a bitmask ANDNP with shuffles.
if (VT.isVector() && (VT.getScalarSizeInBits() % 8) == 0) {
SDValue Op(N, 0);
- if (SDValue Res = combineX86ShufflesRecursively(
- {Op}, 0, Op, {0}, {}, /*Depth*/ 1,
- /*HasVarMask*/ false, /*AllowVarMask*/ true, DAG, Subtarget))
+ if (SDValue Res = combineX86ShufflesRecursively(Op, DAG, Subtarget))
return Res;
}