datafusion_functions/unicode/
translate.rsuse std::any::Any;
use std::sync::{Arc, OnceLock};
use arrow::array::{
ArrayAccessor, ArrayIter, ArrayRef, AsArray, GenericStringArray, OffsetSizeTrait,
};
use arrow::datatypes::DataType;
use hashbrown::HashMap;
use unicode_segmentation::UnicodeSegmentation;
use crate::utils::{make_scalar_function, utf8_to_str_type};
use datafusion_common::{exec_err, Result};
use datafusion_expr::scalar_doc_sections::DOC_SECTION_STRING;
use datafusion_expr::TypeSignature::Exact;
use datafusion_expr::{
ColumnarValue, Documentation, ScalarUDFImpl, Signature, Volatility,
};
#[derive(Debug)]
pub struct TranslateFunc {
signature: Signature,
}
impl Default for TranslateFunc {
fn default() -> Self {
Self::new()
}
}
impl TranslateFunc {
pub fn new() -> Self {
use DataType::*;
Self {
signature: Signature::one_of(
vec![
Exact(vec![Utf8View, Utf8, Utf8]),
Exact(vec![Utf8, Utf8, Utf8]),
],
Volatility::Immutable,
),
}
}
}
impl ScalarUDFImpl for TranslateFunc {
fn as_any(&self) -> &dyn Any {
self
}
fn name(&self) -> &str {
"translate"
}
fn signature(&self) -> &Signature {
&self.signature
}
fn return_type(&self, arg_types: &[DataType]) -> Result<DataType> {
utf8_to_str_type(&arg_types[0], "translate")
}
fn invoke(&self, args: &[ColumnarValue]) -> Result<ColumnarValue> {
make_scalar_function(invoke_translate, vec![])(args)
}
fn documentation(&self) -> Option<&Documentation> {
Some(get_translate_doc())
}
}
static DOCUMENTATION: OnceLock<Documentation> = OnceLock::new();
fn get_translate_doc() -> &'static Documentation {
DOCUMENTATION.get_or_init(|| {
Documentation::builder()
.with_doc_section(DOC_SECTION_STRING)
.with_description("Translates characters in a string to specified translation characters.")
.with_syntax_example("translate(str, chars, translation)")
.with_sql_example(r#"```sql
> select translate('twice', 'wic', 'her');
+--------------------------------------------------+
| translate(Utf8("twice"),Utf8("wic"),Utf8("her")) |
+--------------------------------------------------+
| there |
+--------------------------------------------------+
```"#)
.with_standard_argument("str", Some("String"))
.with_argument("chars", "Characters to translate.")
.with_argument("translation", "Translation characters. Translation characters replace only characters at the same position in the **chars** string.")
.build()
.unwrap()
})
}
fn invoke_translate(args: &[ArrayRef]) -> Result<ArrayRef> {
match args[0].data_type() {
DataType::Utf8View => {
let string_array = args[0].as_string_view();
let from_array = args[1].as_string::<i32>();
let to_array = args[2].as_string::<i32>();
translate::<i32, _, _>(string_array, from_array, to_array)
}
DataType::Utf8 => {
let string_array = args[0].as_string::<i32>();
let from_array = args[1].as_string::<i32>();
let to_array = args[2].as_string::<i32>();
translate::<i32, _, _>(string_array, from_array, to_array)
}
DataType::LargeUtf8 => {
let string_array = args[0].as_string::<i64>();
let from_array = args[1].as_string::<i64>();
let to_array = args[2].as_string::<i64>();
translate::<i64, _, _>(string_array, from_array, to_array)
}
other => {
exec_err!("Unsupported data type {other:?} for function translate")
}
}
}
fn translate<'a, T: OffsetSizeTrait, V, B>(
string_array: V,
from_array: B,
to_array: B,
) -> Result<ArrayRef>
where
V: ArrayAccessor<Item = &'a str>,
B: ArrayAccessor<Item = &'a str>,
{
let string_array_iter = ArrayIter::new(string_array);
let from_array_iter = ArrayIter::new(from_array);
let to_array_iter = ArrayIter::new(to_array);
let result = string_array_iter
.zip(from_array_iter)
.zip(to_array_iter)
.map(|((string, from), to)| match (string, from, to) {
(Some(string), Some(from), Some(to)) => {
let from_map: HashMap<&str, usize> = from
.graphemes(true)
.collect::<Vec<&str>>()
.iter()
.enumerate()
.map(|(index, c)| (c.to_owned(), index))
.collect();
let to = to.graphemes(true).collect::<Vec<&str>>();
Some(
string
.graphemes(true)
.collect::<Vec<&str>>()
.iter()
.flat_map(|c| match from_map.get(*c) {
Some(n) => to.get(*n).copied(),
None => Some(*c),
})
.collect::<Vec<&str>>()
.concat(),
)
}
_ => None,
})
.collect::<GenericStringArray<T>>();
Ok(Arc::new(result) as ArrayRef)
}
#[cfg(test)]
mod tests {
use arrow::array::{Array, StringArray};
use arrow::datatypes::DataType::Utf8;
use datafusion_common::{Result, ScalarValue};
use datafusion_expr::{ColumnarValue, ScalarUDFImpl};
use crate::unicode::translate::TranslateFunc;
use crate::utils::test::test_function;
#[test]
fn test_functions() -> Result<()> {
test_function!(
TranslateFunc::new(),
&[
ColumnarValue::Scalar(ScalarValue::from("12345")),
ColumnarValue::Scalar(ScalarValue::from("143")),
ColumnarValue::Scalar(ScalarValue::from("ax"))
],
Ok(Some("a2x5")),
&str,
Utf8,
StringArray
);
test_function!(
TranslateFunc::new(),
&[
ColumnarValue::Scalar(ScalarValue::Utf8(None)),
ColumnarValue::Scalar(ScalarValue::from("143")),
ColumnarValue::Scalar(ScalarValue::from("ax"))
],
Ok(None),
&str,
Utf8,
StringArray
);
test_function!(
TranslateFunc::new(),
&[
ColumnarValue::Scalar(ScalarValue::from("12345")),
ColumnarValue::Scalar(ScalarValue::Utf8(None)),
ColumnarValue::Scalar(ScalarValue::from("ax"))
],
Ok(None),
&str,
Utf8,
StringArray
);
test_function!(
TranslateFunc::new(),
&[
ColumnarValue::Scalar(ScalarValue::from("12345")),
ColumnarValue::Scalar(ScalarValue::from("143")),
ColumnarValue::Scalar(ScalarValue::Utf8(None))
],
Ok(None),
&str,
Utf8,
StringArray
);
test_function!(
TranslateFunc::new(),
&[
ColumnarValue::Scalar(ScalarValue::from("é2íñ5")),
ColumnarValue::Scalar(ScalarValue::from("éñí")),
ColumnarValue::Scalar(ScalarValue::from("óü")),
],
Ok(Some("ó2ü5")),
&str,
Utf8,
StringArray
);
#[cfg(not(feature = "unicode_expressions"))]
test_function!(
TranslateFunc::new(),
&[
ColumnarValue::Scalar(ScalarValue::from("12345")),
ColumnarValue::Scalar(ScalarValue::from("143")),
ColumnarValue::Scalar(ScalarValue::from("ax")),
],
internal_err!(
"function translate requires compilation with feature flag: unicode_expressions."
),
&str,
Utf8,
StringArray
);
Ok(())
}
}