reifydb_function/datetime/
add.rs1use reifydb_core::value::column::data::ColumnData;
5use reifydb_type::value::{container::temporal::TemporalContainer, date::Date, datetime::DateTime, r#type::Type};
6
7use crate::{
8 ScalarFunction, ScalarFunctionContext,
9 error::{ScalarFunctionError, ScalarFunctionResult},
10 propagate_options,
11};
12
13pub struct DateTimeAdd;
14
15impl DateTimeAdd {
16 pub fn new() -> Self {
17 Self
18 }
19}
20
21impl ScalarFunction for DateTimeAdd {
22 fn scalar(&self, ctx: ScalarFunctionContext) -> ScalarFunctionResult<ColumnData> {
23 if let Some(result) = propagate_options(self, &ctx) {
24 return result;
25 }
26 let columns = ctx.columns;
27 let row_count = ctx.row_count;
28
29 if columns.len() != 2 {
30 return Err(ScalarFunctionError::ArityMismatch {
31 function: ctx.fragment.clone(),
32 expected: 2,
33 actual: columns.len(),
34 });
35 }
36
37 let dt_col = columns.get(0).unwrap();
38 let dur_col = columns.get(1).unwrap();
39
40 match (dt_col.data(), dur_col.data()) {
41 (ColumnData::DateTime(dt_container), ColumnData::Duration(dur_container)) => {
42 let mut container = TemporalContainer::with_capacity(row_count);
43
44 for i in 0..row_count {
45 match (dt_container.get(i), dur_container.get(i)) {
46 (Some(dt), Some(dur)) => {
47 let date = dt.date();
48 let time = dt.time();
49 let mut year = date.year();
50 let mut month = date.month() as i32;
51 let mut day = date.day();
52
53 let total_months = month + dur.get_months();
55 year += (total_months - 1).div_euclid(12);
56 month = (total_months - 1).rem_euclid(12) + 1;
57
58 let max_day = days_in_month(year, month as u32);
60 if day > max_day {
61 day = max_day;
62 }
63
64 if let Some(base_date) = Date::new(year, month as u32, day) {
66 let base_days = base_date.to_days_since_epoch() as i64
67 + dur.get_days() as i64;
68 let time_nanos = time.to_nanos_since_midnight() as i64
69 + dur.get_nanos();
70
71 let total_seconds =
72 base_days * 86400 + time_nanos / 1_000_000_000;
73 let nano_part = (time_nanos % 1_000_000_000) as u32;
74
75 match DateTime::from_parts(total_seconds, nano_part) {
76 Ok(result) => container.push(result),
77 Err(_) => container.push_default(),
78 }
79 } else {
80 container.push_default();
81 }
82 }
83 _ => container.push_default(),
84 }
85 }
86
87 Ok(ColumnData::DateTime(container))
88 }
89 (ColumnData::DateTime(_), other) => Err(ScalarFunctionError::InvalidArgumentType {
90 function: ctx.fragment.clone(),
91 argument_index: 1,
92 expected: vec![Type::Duration],
93 actual: other.get_type(),
94 }),
95 (other, _) => Err(ScalarFunctionError::InvalidArgumentType {
96 function: ctx.fragment.clone(),
97 argument_index: 0,
98 expected: vec![Type::DateTime],
99 actual: other.get_type(),
100 }),
101 }
102 }
103
104 fn return_type(&self, _input_types: &[Type]) -> Type {
105 Type::DateTime
106 }
107}
108
109fn days_in_month(year: i32, month: u32) -> u32 {
110 match month {
111 1 | 3 | 5 | 7 | 8 | 10 | 12 => 31,
112 4 | 6 | 9 | 11 => 30,
113 2 => {
114 if (year % 4 == 0 && year % 100 != 0) || (year % 400 == 0) {
115 29
116 } else {
117 28
118 }
119 }
120 _ => 0,
121 }
122}