ToInt32
int32 ToInt32() const;
snprintf(buffer, sizeof(buffer), "%" B_PRId32, value.ToInt32());
return a.ToInt32() - b.ToInt32();
fRequestedLength = resultVariant.ToInt32();
status_t error = AddOption(value->Name(), value->Value().ToInt32());
SelectOptionFor(integerValue.ToInt32());
value.fPrimitive.SetTo(~fPrimitive.ToInt32());
result = lhs.fPrimitive.ToInt32() < temp.fPrimitive.ToInt32();
result = lhs.fPrimitive.ToInt32() > temp.fPrimitive.ToInt32();
result = lhs.fPrimitive.ToInt32() == temp.fPrimitive.ToInt32();
fPrimitive.SetTo(fPrimitive.ToInt32());
fPrimitive.SetTo(fPrimitive.ToInt32()
+ temp.fPrimitive.ToInt32());
fPrimitive.SetTo(fPrimitive.ToInt32()
- temp.fPrimitive.ToInt32());
fPrimitive.SetTo(fPrimitive.ToInt32()
/ temp.fPrimitive.ToInt32());
fPrimitive.SetTo(fPrimitive.ToInt32()
* temp.fPrimitive.ToInt32());
fPrimitive.SetTo(fPrimitive.ToInt32()
% temp.fPrimitive.ToInt32());
fPrimitive.SetTo(fPrimitive.ToInt32()
& temp.fPrimitive.ToInt32());
fPrimitive.SetTo(fPrimitive.ToInt32()
| temp.fPrimitive.ToInt32());
fPrimitive.SetTo(fPrimitive.ToInt32()
^ temp.fPrimitive.ToInt32());
value.fPrimitive.SetTo(-fPrimitive.ToInt32());
value.Type() == B_INT32_TYPE ? value.ToInt32() :
lowIndex = dimensionType->LowerBound().ToInt32();
highIndex = dimensionType->UpperBound().ToInt32();
fItemCount = listSize.ToInt32();