// Transform a float, returning the high 16 bits shifted down, as if
// the float was really an unsigned integer:
def HI16_f32 : SDNodeXForm<fpimm, [{
- const APFloat &apf = N->getValueAPF();
- float fval = apf.convertToFloat();
- unsigned val = *((unsigned *) &fval);
- return getI32Imm(val >> 16);
+ float fval = N->getValueAPF().convertToFloat();
+ return getI32Imm(FloatToBits(fval) >> 16);
}]>;
// Transformation function on floats: get the low 16 bits as if the float was
// an unsigned integer.
def LO16_f32 : SDNodeXForm<fpimm, [{
- const APFloat &apf = N->getValueAPF();
- float fval = apf.convertToFloat();
- unsigned val = *((unsigned *) &fval);
- return getI32Imm(val & 0xffff);
+ float fval = N->getValueAPF().convertToFloat();
+ return getI32Imm(FloatToBits(fval) & 0xffff);
}]>;
def FPimm_sext16 : SDNodeXForm<fpimm, [{
- const APFloat &apf = N->getValueAPF();
- float fval = apf.convertToFloat();
- unsigned val = *((unsigned *) &fval);
- return getI32Imm((int) ((val << 16) >> 16));
+ float fval = N->getValueAPF().convertToFloat();
+ return getI32Imm((int) ((FloatToBits(fval) << 16) >> 16));
}]>;
def FPimm_u18 : SDNodeXForm<fpimm, [{
- const APFloat &apf = N->getValueAPF();
- float fval = apf.convertToFloat();
- unsigned val = *((unsigned *) &fval);
- return getI32Imm(val & ((1 << 19) - 1));
+ float fval = N->getValueAPF().convertToFloat();
+ return getI32Imm(FloatToBits(fval) & ((1 << 19) - 1));
}]>;
def fpimmSExt16 : PatLeaf<(fpimm), [{
// Does the SFP constant only have upp 16 bits set?
def hi16_f32 : PatLeaf<(fpimm), [{
if (N->getValueType(0) == MVT::f32) {
- const APFloat &apf = N->getValueAPF();
- float fval = apf.convertToFloat();
- uint32_t val = *((unsigned *) &fval);
+ uint32_t val = FloatToBits(N->getValueAPF().convertToFloat());
return ((val & 0xffff0000) == val);
}
// Does the SFP constant fit into 18 bits?
def fpimm18 : PatLeaf<(fpimm), [{
if (N->getValueType(0) == MVT::f32) {
- const APFloat &apf = N->getValueAPF();
- float fval = apf.convertToFloat();
- uint32_t Value = *((uint32_t *) &fval);
+ uint32_t Value = FloatToBits(N->getValueAPF().convertToFloat());
return ((Value & ((1 << 19) - 1)) == Value);
}