1use std::any::Any;
19use std::str::FromStr;
20use std::sync::Arc;
21
22use arrow::array::{Array, ArrayRef, Float64Array, Int32Array};
23use arrow::compute::kernels::cast_utils::IntervalUnit;
24use arrow::compute::{binary, date_part, DatePart};
25use arrow::datatypes::DataType::{
26 Date32, Date64, Duration, Interval, Time32, Time64, Timestamp,
27};
28use arrow::datatypes::TimeUnit::{Microsecond, Millisecond, Nanosecond, Second};
29use arrow::datatypes::{DataType, TimeUnit};
30use datafusion_common::types::{logical_date, NativeType};
31
32use datafusion_common::{
33 cast::{
34 as_date32_array, as_date64_array, as_int32_array, as_time32_millisecond_array,
35 as_time32_second_array, as_time64_microsecond_array, as_time64_nanosecond_array,
36 as_timestamp_microsecond_array, as_timestamp_millisecond_array,
37 as_timestamp_nanosecond_array, as_timestamp_second_array,
38 },
39 exec_err, internal_err, not_impl_err,
40 types::logical_string,
41 utils::take_function_args,
42 Result, ScalarValue,
43};
44use datafusion_expr::{
45 ColumnarValue, Documentation, ReturnInfo, ReturnTypeArgs, ScalarUDFImpl, Signature,
46 TypeSignature, Volatility,
47};
48use datafusion_expr_common::signature::{Coercion, TypeSignatureClass};
49use datafusion_macros::user_doc;
50
51#[user_doc(
52 doc_section(label = "Time and Date Functions"),
53 description = "Returns the specified part of the date as an integer.",
54 syntax_example = "date_part(part, expression)",
55 alternative_syntax = "extract(field FROM source)",
56 argument(
57 name = "part",
58 description = r#"Part of the date to return. The following date parts are supported:
59
60 - year
61 - quarter (emits value in inclusive range [1, 4] based on which quartile of the year the date is in)
62 - month
63 - week (week of the year)
64 - day (day of the month)
65 - hour
66 - minute
67 - second
68 - millisecond
69 - microsecond
70 - nanosecond
71 - dow (day of the week)
72 - doy (day of the year)
73 - epoch (seconds since Unix epoch)
74"#
75 ),
76 argument(
77 name = "expression",
78 description = "Time expression to operate on. Can be a constant, column, or function."
79 )
80)]
81#[derive(Debug)]
82pub struct DatePartFunc {
83 signature: Signature,
84 aliases: Vec<String>,
85}
86
87impl Default for DatePartFunc {
88 fn default() -> Self {
89 Self::new()
90 }
91}
92
93impl DatePartFunc {
94 pub fn new() -> Self {
95 Self {
96 signature: Signature::one_of(
97 vec![
98 TypeSignature::Coercible(vec![
99 Coercion::new_exact(TypeSignatureClass::Native(logical_string())),
100 Coercion::new_implicit(
101 TypeSignatureClass::Timestamp,
102 vec![TypeSignatureClass::Native(logical_string())],
104 NativeType::Timestamp(Nanosecond, None),
105 ),
106 ]),
107 TypeSignature::Coercible(vec![
108 Coercion::new_exact(TypeSignatureClass::Native(logical_string())),
109 Coercion::new_exact(TypeSignatureClass::Native(logical_date())),
110 ]),
111 TypeSignature::Coercible(vec![
112 Coercion::new_exact(TypeSignatureClass::Native(logical_string())),
113 Coercion::new_exact(TypeSignatureClass::Time),
114 ]),
115 TypeSignature::Coercible(vec![
116 Coercion::new_exact(TypeSignatureClass::Native(logical_string())),
117 Coercion::new_exact(TypeSignatureClass::Interval),
118 ]),
119 TypeSignature::Coercible(vec![
120 Coercion::new_exact(TypeSignatureClass::Native(logical_string())),
121 Coercion::new_exact(TypeSignatureClass::Duration),
122 ]),
123 ],
124 Volatility::Immutable,
125 ),
126 aliases: vec![String::from("datepart")],
127 }
128 }
129}
130
131impl ScalarUDFImpl for DatePartFunc {
132 fn as_any(&self) -> &dyn Any {
133 self
134 }
135
136 fn name(&self) -> &str {
137 "date_part"
138 }
139
140 fn signature(&self) -> &Signature {
141 &self.signature
142 }
143
144 fn return_type(&self, _arg_types: &[DataType]) -> Result<DataType> {
145 internal_err!("return_type_from_args should be called instead")
146 }
147
148 fn return_type_from_args(&self, args: ReturnTypeArgs) -> Result<ReturnInfo> {
149 let [field, _] = take_function_args(self.name(), args.scalar_arguments)?;
150
151 field
152 .and_then(|sv| {
153 sv.try_as_str()
154 .flatten()
155 .filter(|s| !s.is_empty())
156 .map(|part| {
157 if is_epoch(part) {
158 ReturnInfo::new_nullable(DataType::Float64)
159 } else {
160 ReturnInfo::new_nullable(DataType::Int32)
161 }
162 })
163 })
164 .map_or_else(
165 || exec_err!("{} requires non-empty constant string", self.name()),
166 Ok,
167 )
168 }
169
170 fn invoke_with_args(
171 &self,
172 args: datafusion_expr::ScalarFunctionArgs,
173 ) -> Result<ColumnarValue> {
174 let args = args.args;
175 let [part, array] = take_function_args(self.name(), args)?;
176
177 let part = if let ColumnarValue::Scalar(ScalarValue::Utf8(Some(v))) = part {
178 v
179 } else if let ColumnarValue::Scalar(ScalarValue::Utf8View(Some(v))) = part {
180 v
181 } else {
182 return exec_err!(
183 "First argument of `DATE_PART` must be non-null scalar Utf8"
184 );
185 };
186
187 let is_scalar = matches!(array, ColumnarValue::Scalar(_));
188
189 let array = match array {
190 ColumnarValue::Array(array) => Arc::clone(&array),
191 ColumnarValue::Scalar(scalar) => scalar.to_array()?,
192 };
193
194 let part_trim = part_normalization(&part);
195
196 let arr = if let Ok(interval_unit) = IntervalUnit::from_str(part_trim) {
199 match interval_unit {
200 IntervalUnit::Year => date_part(array.as_ref(), DatePart::Year)?,
201 IntervalUnit::Month => date_part(array.as_ref(), DatePart::Month)?,
202 IntervalUnit::Week => date_part(array.as_ref(), DatePart::Week)?,
203 IntervalUnit::Day => date_part(array.as_ref(), DatePart::Day)?,
204 IntervalUnit::Hour => date_part(array.as_ref(), DatePart::Hour)?,
205 IntervalUnit::Minute => date_part(array.as_ref(), DatePart::Minute)?,
206 IntervalUnit::Second => seconds_as_i32(array.as_ref(), Second)?,
207 IntervalUnit::Millisecond => seconds_as_i32(array.as_ref(), Millisecond)?,
208 IntervalUnit::Microsecond => seconds_as_i32(array.as_ref(), Microsecond)?,
209 IntervalUnit::Nanosecond => seconds_as_i32(array.as_ref(), Nanosecond)?,
210 _ => return exec_err!("Date part '{part}' not supported"),
212 }
213 } else {
214 match part_trim.to_lowercase().as_str() {
216 "qtr" | "quarter" => date_part(array.as_ref(), DatePart::Quarter)?,
217 "doy" => date_part(array.as_ref(), DatePart::DayOfYear)?,
218 "dow" => date_part(array.as_ref(), DatePart::DayOfWeekSunday0)?,
219 "epoch" => epoch(array.as_ref())?,
220 _ => return exec_err!("Date part '{part}' not supported"),
221 }
222 };
223
224 Ok(if is_scalar {
225 ColumnarValue::Scalar(ScalarValue::try_from_array(arr.as_ref(), 0)?)
226 } else {
227 ColumnarValue::Array(arr)
228 })
229 }
230
231 fn aliases(&self) -> &[String] {
232 &self.aliases
233 }
234 fn documentation(&self) -> Option<&Documentation> {
235 self.doc()
236 }
237}
238
239fn is_epoch(part: &str) -> bool {
240 let part = part_normalization(part);
241 matches!(part.to_lowercase().as_str(), "epoch")
242}
243
244fn part_normalization(part: &str) -> &str {
246 part.strip_prefix(|c| c == '\'' || c == '\"')
247 .and_then(|s| s.strip_suffix(|c| c == '\'' || c == '\"'))
248 .unwrap_or(part)
249}
250
251fn seconds_as_i32(array: &dyn Array, unit: TimeUnit) -> Result<ArrayRef> {
255 if unit == Nanosecond {
258 return not_impl_err!("Date part {unit:?} not supported");
259 }
260
261 let conversion_factor = match unit {
262 Second => 1_000_000_000,
263 Millisecond => 1_000_000,
264 Microsecond => 1_000,
265 Nanosecond => 1,
266 };
267
268 let second_factor = match unit {
269 Second => 1,
270 Millisecond => 1_000,
271 Microsecond => 1_000_000,
272 Nanosecond => 1_000_000_000,
273 };
274
275 let secs = date_part(array, DatePart::Second)?;
276 let secs = as_int32_array(secs.as_ref())?;
278 let subsecs = date_part(array, DatePart::Nanosecond)?;
279 let subsecs = as_int32_array(subsecs.as_ref())?;
280
281 if subsecs.null_count() == 0 {
283 let r: Int32Array = binary(secs, subsecs, |secs, subsecs| {
284 secs * second_factor + (subsecs % 1_000_000_000) / conversion_factor
285 })?;
286 Ok(Arc::new(r))
287 } else {
288 let r: Int32Array = secs
291 .iter()
292 .zip(subsecs)
293 .map(|(secs, subsecs)| {
294 secs.map(|secs| {
295 let subsecs = subsecs.unwrap_or(0);
296 secs * second_factor + (subsecs % 1_000_000_000) / conversion_factor
297 })
298 })
299 .collect();
300 Ok(Arc::new(r))
301 }
302}
303
304fn seconds(array: &dyn Array, unit: TimeUnit) -> Result<ArrayRef> {
310 let sf = match unit {
311 Second => 1_f64,
312 Millisecond => 1_000_f64,
313 Microsecond => 1_000_000_f64,
314 Nanosecond => 1_000_000_000_f64,
315 };
316 let secs = date_part(array, DatePart::Second)?;
317 let secs = as_int32_array(secs.as_ref())?;
319 let subsecs = date_part(array, DatePart::Nanosecond)?;
320 let subsecs = as_int32_array(subsecs.as_ref())?;
321
322 if subsecs.null_count() == 0 {
324 let r: Float64Array = binary(secs, subsecs, |secs, subsecs| {
325 (secs as f64 + ((subsecs % 1_000_000_000) as f64 / 1_000_000_000_f64)) * sf
326 })?;
327 Ok(Arc::new(r))
328 } else {
329 let r: Float64Array = secs
332 .iter()
333 .zip(subsecs)
334 .map(|(secs, subsecs)| {
335 secs.map(|secs| {
336 let subsecs = subsecs.unwrap_or(0);
337 (secs as f64 + ((subsecs % 1_000_000_000) as f64 / 1_000_000_000_f64))
338 * sf
339 })
340 })
341 .collect();
342 Ok(Arc::new(r))
343 }
344}
345
346fn epoch(array: &dyn Array) -> Result<ArrayRef> {
347 const SECONDS_IN_A_DAY: f64 = 86400_f64;
348
349 let f: Float64Array = match array.data_type() {
350 Timestamp(Second, _) => as_timestamp_second_array(array)?.unary(|x| x as f64),
351 Timestamp(Millisecond, _) => {
352 as_timestamp_millisecond_array(array)?.unary(|x| x as f64 / 1_000_f64)
353 }
354 Timestamp(Microsecond, _) => {
355 as_timestamp_microsecond_array(array)?.unary(|x| x as f64 / 1_000_000_f64)
356 }
357 Timestamp(Nanosecond, _) => {
358 as_timestamp_nanosecond_array(array)?.unary(|x| x as f64 / 1_000_000_000_f64)
359 }
360 Date32 => as_date32_array(array)?.unary(|x| x as f64 * SECONDS_IN_A_DAY),
361 Date64 => as_date64_array(array)?.unary(|x| x as f64 / 1_000_f64),
362 Time32(Second) => as_time32_second_array(array)?.unary(|x| x as f64),
363 Time32(Millisecond) => {
364 as_time32_millisecond_array(array)?.unary(|x| x as f64 / 1_000_f64)
365 }
366 Time64(Microsecond) => {
367 as_time64_microsecond_array(array)?.unary(|x| x as f64 / 1_000_000_f64)
368 }
369 Time64(Nanosecond) => {
370 as_time64_nanosecond_array(array)?.unary(|x| x as f64 / 1_000_000_000_f64)
371 }
372 Interval(_) | Duration(_) => return seconds(array, Second),
373 d => return exec_err!("Cannot convert {d:?} to epoch"),
374 };
375 Ok(Arc::new(f))
376}