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host_int_b
Author | SHA1 | Date |
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ychenfo | 1314568449 |
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@ -717,7 +717,42 @@ impl InnerResolver {
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};
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result
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}
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_ => Ok(Ok(extracted_ty)),
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_ => {
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// check integer bounds
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if unifier.unioned(extracted_ty, primitives.int32) {
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obj.extract::<i32>().map_or_else(
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|_| Ok(Err(format!("{} is not in the range of int32", obj))),
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|_| Ok(Ok(extracted_ty))
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)
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} else if unifier.unioned(extracted_ty, primitives.int64) {
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obj.extract::<i64>().map_or_else(
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|_| Ok(Err(format!("{} is not in the range of int64", obj))),
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|_| Ok(Ok(extracted_ty))
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)
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} else if unifier.unioned(extracted_ty, primitives.uint32) {
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obj.extract::<u32>().map_or_else(
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|_| Ok(Err(format!("{} is not in the range of uint32", obj))),
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|_| Ok(Ok(extracted_ty))
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)
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} else if unifier.unioned(extracted_ty, primitives.uint64) {
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obj.extract::<u64>().map_or_else(
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|_| Ok(Err(format!("{} is not in the range of uint64", obj))),
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|_| Ok(Ok(extracted_ty))
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)
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} else if unifier.unioned(extracted_ty, primitives.bool) {
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obj.extract::<bool>().map_or_else(
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|_| Ok(Err(format!("{} is not in the range of bool", obj))),
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|_| Ok(Ok(extracted_ty))
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)
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} else if unifier.unioned(extracted_ty, primitives.float) {
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obj.extract::<f64>().map_or_else(
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|_| Ok(Err(format!("{} is not in the range of float64", obj))),
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|_| Ok(Ok(extracted_ty))
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)
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} else {
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Ok(Ok(extracted_ty))
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}
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}
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}
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}
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@ -733,33 +768,27 @@ impl InnerResolver {
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self.helper.id_fn.call1(py, (self.helper.type_fn.call1(py, (obj,))?,))?.extract(py)?;
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let id: u64 = self.helper.id_fn.call1(py, (obj,))?.extract(py)?;
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if ty_id == self.primitive_ids.int || ty_id == self.primitive_ids.int32 {
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let val: i32 = obj.extract().map_err(|_| super::CompileError::new_err(
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format!("{} is not in the range of int32", obj)))?;
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let val: i32 = obj.extract().unwrap();
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self.id_to_primitive.write().insert(id, PrimitiveValue::I32(val));
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Ok(Some(ctx.ctx.i32_type().const_int(val as u64, false).into()))
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} else if ty_id == self.primitive_ids.int64 {
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let val: i64 = obj.extract().map_err(|_| super::CompileError::new_err(
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format!("{} is not in the range of int64", obj)))?;
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let val: i64 = obj.extract().unwrap();
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self.id_to_primitive.write().insert(id, PrimitiveValue::I64(val));
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Ok(Some(ctx.ctx.i64_type().const_int(val as u64, false).into()))
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} else if ty_id == self.primitive_ids.uint32 {
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let val: u32 = obj.extract().map_err(|_| super::CompileError::new_err(
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format!("{} is not in the range of uint32", obj)))?;
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let val: u32 = obj.extract().unwrap();
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self.id_to_primitive.write().insert(id, PrimitiveValue::U32(val));
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Ok(Some(ctx.ctx.i32_type().const_int(val as u64, false).into()))
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} else if ty_id == self.primitive_ids.uint64 {
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let val: u64 = obj.extract().map_err(|_| super::CompileError::new_err(
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format!("{} is not in the range of uint64", obj)))?;
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let val: u64 = obj.extract().unwrap();
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self.id_to_primitive.write().insert(id, PrimitiveValue::U64(val));
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Ok(Some(ctx.ctx.i64_type().const_int(val, false).into()))
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} else if ty_id == self.primitive_ids.bool {
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let val: bool = obj.extract().map_err(|_| super::CompileError::new_err(
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format!("{} is not in the range of bool", obj)))?;
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let val: bool = obj.extract().unwrap();
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self.id_to_primitive.write().insert(id, PrimitiveValue::Bool(val));
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Ok(Some(ctx.ctx.bool_type().const_int(val as u64, false).into()))
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} else if ty_id == self.primitive_ids.float || ty_id == self.primitive_ids.float64 {
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let val: f64 = obj.extract().map_err(|_| super::CompileError::new_err(
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format!("{} is not in the range of float64", obj)))?;
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let val: f64 = obj.extract().unwrap();
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self.id_to_primitive.write().insert(id, PrimitiveValue::F64(val));
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Ok(Some(ctx.ctx.f64_type().const_float(val).into()))
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} else if ty_id == self.primitive_ids.list {
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