reifydb_core/value/encoded/
datetime.rs1use std::ptr;
5
6use reifydb_type::{DateTime, Type};
7
8use crate::value::encoded::{EncodedValues, EncodedValuesLayout};
9
10impl EncodedValuesLayout {
11 pub fn set_datetime(&self, row: &mut EncodedValues, index: usize, value: DateTime) {
12 let field = &self.fields[index];
13 debug_assert!(row.len() >= self.total_static_size());
14 debug_assert_eq!(field.r#type, Type::DateTime);
15 row.set_valid(index, true);
16
17 let (seconds, nanos) = value.to_parts();
18 unsafe {
19 ptr::write_unaligned(row.make_mut().as_mut_ptr().add(field.offset) as *mut i64, seconds);
21 ptr::write_unaligned(row.make_mut().as_mut_ptr().add(field.offset + 8) as *mut u32, nanos);
23 }
24 }
25
26 pub fn get_datetime(&self, row: &EncodedValues, index: usize) -> DateTime {
27 let field = &self.fields[index];
28 debug_assert!(row.len() >= self.total_static_size());
29 debug_assert_eq!(field.r#type, Type::DateTime);
30 unsafe {
31 let seconds = (row.as_ptr().add(field.offset) as *const i64).read_unaligned();
33 let nanos = (row.as_ptr().add(field.offset + 8) as *const u32).read_unaligned();
35 DateTime::from_parts(seconds, nanos).unwrap()
36 }
37 }
38
39 pub fn try_get_datetime(&self, row: &EncodedValues, index: usize) -> Option<DateTime> {
40 if row.is_defined(index) {
41 Some(self.get_datetime(row, index))
42 } else {
43 None
44 }
45 }
46}
47
48#[cfg(test)]
49mod tests {
50 use reifydb_type::{DateTime, Type};
51
52 use crate::value::encoded::EncodedValuesLayout;
53
54 #[test]
55 fn test_set_get_datetime() {
56 let layout = EncodedValuesLayout::new(&[Type::DateTime]);
57 let mut row = layout.allocate();
58
59 let value = DateTime::new(2024, 9, 9, 08, 17, 0, 1234).unwrap();
60 layout.set_datetime(&mut row, 0, value.clone());
61 assert_eq!(layout.get_datetime(&row, 0), value);
62 }
63
64 #[test]
65 fn test_try_get_datetime() {
66 let layout = EncodedValuesLayout::new(&[Type::DateTime]);
67 let mut row = layout.allocate();
68
69 assert_eq!(layout.try_get_datetime(&row, 0), None);
70
71 let test_datetime = DateTime::from_timestamp(1642694400).unwrap();
72 layout.set_datetime(&mut row, 0, test_datetime.clone());
73 assert_eq!(layout.try_get_datetime(&row, 0), Some(test_datetime));
74 }
75
76 #[test]
77 fn test_epoch() {
78 let layout = EncodedValuesLayout::new(&[Type::DateTime]);
79 let mut row = layout.allocate();
80
81 let epoch = DateTime::default(); layout.set_datetime(&mut row, 0, epoch.clone());
83 assert_eq!(layout.get_datetime(&row, 0), epoch);
84 }
85
86 #[test]
87 fn test_with_nanoseconds() {
88 let layout = EncodedValuesLayout::new(&[Type::DateTime]);
89 let mut row = layout.allocate();
90
91 let precise_datetime = DateTime::new(2024, 12, 25, 15, 30, 45, 123456789).unwrap();
93 layout.set_datetime(&mut row, 0, precise_datetime.clone());
94 assert_eq!(layout.get_datetime(&row, 0), precise_datetime);
95 }
96
97 #[test]
98 fn test_various_timestamps() {
99 let layout = EncodedValuesLayout::new(&[Type::DateTime]);
100
101 let test_datetimes = [
102 DateTime::from_timestamp(0).unwrap(), DateTime::from_timestamp(946684800).unwrap(), DateTime::from_timestamp(1640995200).unwrap(), DateTime::from_timestamp(1735689600).unwrap(), ];
107
108 for datetime in test_datetimes {
109 let mut row = layout.allocate();
110 layout.set_datetime(&mut row, 0, datetime.clone());
111 assert_eq!(layout.get_datetime(&row, 0), datetime);
112 }
113 }
114
115 #[test]
116 fn test_negative_timestamps() {
117 let layout = EncodedValuesLayout::new(&[Type::DateTime]);
118
119 let pre_epoch_datetimes = [
121 DateTime::from_timestamp(-86400).unwrap(), DateTime::from_timestamp(-31536000).unwrap(), ];
124
125 for datetime in pre_epoch_datetimes {
126 let mut row = layout.allocate();
127 layout.set_datetime(&mut row, 0, datetime.clone());
128 assert_eq!(layout.get_datetime(&row, 0), datetime);
129 }
130 }
131
132 #[test]
133 fn test_mixed_with_other_types() {
134 let layout = EncodedValuesLayout::new(&[Type::DateTime, Type::Boolean, Type::DateTime, Type::Int8]);
135 let mut row = layout.allocate();
136
137 let datetime1 = DateTime::new(2025, 6, 15, 12, 0, 0, 0).unwrap();
138 let datetime2 = DateTime::new(1995, 3, 22, 18, 30, 45, 500000000).unwrap();
139
140 layout.set_datetime(&mut row, 0, datetime1.clone());
141 layout.set_bool(&mut row, 1, true);
142 layout.set_datetime(&mut row, 2, datetime2.clone());
143 layout.set_i64(&mut row, 3, 1234567890);
144
145 assert_eq!(layout.get_datetime(&row, 0), datetime1);
146 assert_eq!(layout.get_bool(&row, 1), true);
147 assert_eq!(layout.get_datetime(&row, 2), datetime2);
148 assert_eq!(layout.get_i64(&row, 3), 1234567890);
149 }
150
151 #[test]
152 fn test_undefined_handling() {
153 let layout = EncodedValuesLayout::new(&[Type::DateTime, Type::DateTime]);
154 let mut row = layout.allocate();
155
156 let datetime = DateTime::new(2025, 7, 4, 16, 20, 15, 750000000).unwrap();
157 layout.set_datetime(&mut row, 0, datetime.clone());
158
159 assert_eq!(layout.try_get_datetime(&row, 0), Some(datetime));
160 assert_eq!(layout.try_get_datetime(&row, 1), None);
161
162 layout.set_undefined(&mut row, 0);
163 assert_eq!(layout.try_get_datetime(&row, 0), None);
164 }
165
166 #[test]
167 fn test_precision_preservation() {
168 let layout = EncodedValuesLayout::new(&[Type::DateTime]);
169 let mut row = layout.allocate();
170
171 let high_precision = DateTime::new(2024, 1, 1, 0, 0, 0, 999999999).unwrap();
173 layout.set_datetime(&mut row, 0, high_precision.clone());
174
175 let retrieved = layout.get_datetime(&row, 0);
176 assert_eq!(retrieved, high_precision);
177
178 let (orig_sec, orig_nanos) = high_precision.to_parts();
179 let (ret_sec, ret_nanos) = retrieved.to_parts();
180 assert_eq!(orig_sec, ret_sec);
181 assert_eq!(orig_nanos, ret_nanos);
182 }
183
184 #[test]
185 fn test_year_2038_problem() {
186 let layout = EncodedValuesLayout::new(&[Type::DateTime]);
187 let mut row = layout.allocate();
188
189 let post_2038 = DateTime::from_timestamp(2147483648).unwrap(); layout.set_datetime(&mut row, 0, post_2038.clone());
192 assert_eq!(layout.get_datetime(&row, 0), post_2038);
193 }
194
195 #[test]
196 fn test_far_future() {
197 let layout = EncodedValuesLayout::new(&[Type::DateTime]);
198 let mut row = layout.allocate();
199
200 let far_future = DateTime::from_timestamp(4102444800).unwrap(); layout.set_datetime(&mut row, 0, far_future.clone());
203 assert_eq!(layout.get_datetime(&row, 0), far_future);
204 }
205
206 #[test]
207 fn test_microsecond_precision() {
208 let layout = EncodedValuesLayout::new(&[Type::DateTime]);
209 let mut row = layout.allocate();
210
211 let microsecond_precision = DateTime::new(2024, 6, 15, 14, 30, 25, 123456000).unwrap();
213 layout.set_datetime(&mut row, 0, microsecond_precision.clone());
214 assert_eq!(layout.get_datetime(&row, 0), microsecond_precision);
215 }
216}