use super::basic::{sha384, utf8_or_binary_to_binary_type};
use arrow::datatypes::DataType;
use datafusion_common::{
types::{logical_binary, logical_string, NativeType},
Result,
};
use datafusion_expr::{
ColumnarValue, Documentation, ScalarFunctionArgs, ScalarUDFImpl, Signature,
TypeSignature, Volatility,
};
use datafusion_expr_common::signature::{Coercion, TypeSignatureClass};
use datafusion_macros::user_doc;
use std::any::Any;
#[user_doc(
doc_section(label = "Hashing Functions"),
description = "Computes the SHA-384 hash of a binary string.",
syntax_example = "sha384(expression)",
sql_example = r#"```sql
> select sha384('foo');
+-----------------------------------------+
| sha384(Utf8("foo")) |
+-----------------------------------------+
| <sha384_hash_result> |
+-----------------------------------------+
```"#,
standard_argument(name = "expression", prefix = "String")
)]
#[derive(Debug)]
pub struct SHA384Func {
signature: Signature,
}
impl Default for SHA384Func {
fn default() -> Self {
Self::new()
}
}
impl SHA384Func {
pub fn new() -> Self {
Self {
signature: Signature::one_of(
vec![
TypeSignature::Coercible(vec![Coercion::new_implicit(
TypeSignatureClass::Native(logical_binary()),
vec![TypeSignatureClass::Native(logical_string())],
NativeType::String,
)]),
TypeSignature::Coercible(vec![Coercion::new_implicit(
TypeSignatureClass::Native(logical_binary()),
vec![TypeSignatureClass::Native(logical_binary())],
NativeType::Binary,
)]),
],
Volatility::Immutable,
),
}
}
}
impl ScalarUDFImpl for SHA384Func {
fn as_any(&self) -> &dyn Any {
self
}
fn name(&self) -> &str {
"sha384"
}
fn signature(&self) -> &Signature {
&self.signature
}
fn return_type(&self, arg_types: &[DataType]) -> Result<DataType> {
utf8_or_binary_to_binary_type(&arg_types[0], self.name())
}
fn invoke_with_args(&self, args: ScalarFunctionArgs) -> Result<ColumnarValue> {
sha384(&args.args)
}
fn documentation(&self) -> Option<&Documentation> {
self.doc()
}
}