Select(N->getOperand(1)));
return SDOperand(N, 0);
}
- case ISD::FMUL:
case ISD::MUL: {
unsigned Imm, Opc;
if (isIntImmediate(N->getOperand(1), Imm) && isInt16(Imm)) {
Select(N->getOperand(0)), getI32Imm(Lo16(Imm)));
return SDOperand(N, 0);
}
- switch (N->getValueType(0)) {
- default: assert(0 && "Unhandled multiply type!");
- case MVT::i32: Opc = PPC::MULLW; break;
- case MVT::f32: Opc = PPC::FMULS; break;
- case MVT::f64: Opc = PPC::FMUL; break;
- }
- CurDAG->SelectNodeTo(N, Opc, N->getValueType(0), Select(N->getOperand(0)),
+ CurDAG->SelectNodeTo(N, PPC::MULLW, MVT::i32, Select(N->getOperand(0)),
Select(N->getOperand(1)));
return SDOperand(N, 0);
}
- case ISD::SDIV:
- case ISD::FDIV: {
+ case ISD::FMUL: {
+ unsigned Opc = N->getValueType(0) == MVT::f32 ? PPC::FMULS : PPC::FMUL;
+ CurDAG->SelectNodeTo(N, Opc, N->getValueType(0), Select(N->getOperand(0)),
+ Select(N->getOperand(1)));
+ return SDOperand(N, 0);
+ }
+ case ISD::SDIV: {
unsigned Imm;
if (isIntImmediate(N->getOperand(1), Imm)) {
if ((signed)Imm > 0 && isPowerOf2_32(Imm)) {
}
}
- unsigned Opc;
- switch (N->getValueType(0)) {
- default: assert(0 && "Unknown type to ISD::SDIV");
- case MVT::i32: Opc = PPC::DIVW; break;
- case MVT::f32: Opc = PPC::FDIVS; break;
- case MVT::f64: Opc = PPC::FDIV; break;
- }
- CurDAG->SelectNodeTo(N, Opc, N->getValueType(0), Select(N->getOperand(0)),
+ CurDAG->SelectNodeTo(N, PPC::DIVW, MVT::i32, Select(N->getOperand(0)),
Select(N->getOperand(1)));
return SDOperand(N, 0);
}
+ case ISD::FDIV: {
+ unsigned Opc = N->getValueType(0) == MVT::f32 ? PPC::FDIVS : PPC::FDIV;
+ CurDAG->SelectNodeTo(N, Opc, N->getValueType(0), Select(N->getOperand(0)),
+ Select(N->getOperand(1)));
+ return SDOperand(N, 0);
+ }
+
case ISD::UDIV: {
// If this is a divide by constant, we can emit code using some magic
// constants to implement it as a multiply instead.