use std::ptr;
use reifydb_type::value::{r#type::Type, uuid::Uuid4};
use uuid::Uuid;
use crate::encoded::{row::EncodedRow, shape::RowShape};
impl RowShape {
pub fn set_uuid4(&self, row: &mut EncodedRow, index: usize, value: Uuid4) {
let field = &self.fields()[index];
debug_assert!(row.len() >= self.total_static_size());
debug_assert_eq!(*field.constraint.get_type().inner_type(), Type::Uuid4);
row.set_valid(index, true);
unsafe {
ptr::write_unaligned(
row.make_mut().as_mut_ptr().add(field.offset as usize) as *mut [u8; 16],
*value.as_bytes(),
);
}
}
pub fn get_uuid4(&self, row: &EncodedRow, index: usize) -> Uuid4 {
let field = &self.fields()[index];
debug_assert!(row.len() >= self.total_static_size());
debug_assert_eq!(*field.constraint.get_type().inner_type(), Type::Uuid4);
unsafe {
let bytes: [u8; 16] =
ptr::read_unaligned(row.as_ptr().add(field.offset as usize) as *const [u8; 16]);
Uuid4::from(Uuid::from_bytes(bytes))
}
}
pub fn try_get_uuid4(&self, row: &EncodedRow, index: usize) -> Option<Uuid4> {
if row.is_defined(index) && self.fields()[index].constraint.get_type() == Type::Uuid4 {
Some(self.get_uuid4(row, index))
} else {
None
}
}
}
#[cfg(test)]
pub mod tests {
use reifydb_type::value::{r#type::Type, uuid::Uuid4};
use crate::encoded::shape::RowShape;
#[test]
fn test_set_get_uuid4() {
let shape = RowShape::testing(&[Type::Uuid4]);
let mut row = shape.allocate();
let uuid = Uuid4::generate();
shape.set_uuid4(&mut row, 0, uuid.clone());
assert_eq!(shape.get_uuid4(&row, 0), uuid);
}
#[test]
fn test_try_get_uuid4() {
let shape = RowShape::testing(&[Type::Uuid4]);
let mut row = shape.allocate();
assert_eq!(shape.try_get_uuid4(&row, 0), None);
let uuid = Uuid4::generate();
shape.set_uuid4(&mut row, 0, uuid.clone());
assert_eq!(shape.try_get_uuid4(&row, 0), Some(uuid));
}
#[test]
fn test_multiple_generations() {
let shape = RowShape::testing(&[Type::Uuid4]);
let mut uuids = Vec::new();
for _ in 0..10 {
let mut row = shape.allocate();
let uuid = Uuid4::generate();
shape.set_uuid4(&mut row, 0, uuid.clone());
let retrieved = shape.get_uuid4(&row, 0);
assert_eq!(retrieved, uuid);
uuids.push(uuid);
}
for i in 0..uuids.len() {
for j in (i + 1)..uuids.len() {
assert_ne!(uuids[i], uuids[j], "UUIDs should be unique");
}
}
}
#[test]
fn test_version_check() {
let shape = RowShape::testing(&[Type::Uuid4]);
let mut row = shape.allocate();
let uuid = Uuid4::generate();
shape.set_uuid4(&mut row, 0, uuid.clone());
let retrieved = shape.get_uuid4(&row, 0);
assert_eq!(retrieved.get_version_num(), 4);
}
#[test]
fn test_mixed_with_other_types() {
let shape = RowShape::testing(&[Type::Uuid4, Type::Boolean, Type::Uuid4, Type::Int4]);
let mut row = shape.allocate();
let uuid1 = Uuid4::generate();
let uuid2 = Uuid4::generate();
shape.set_uuid4(&mut row, 0, uuid1.clone());
shape.set_bool(&mut row, 1, true);
shape.set_uuid4(&mut row, 2, uuid2.clone());
shape.set_i32(&mut row, 3, 42);
assert_eq!(shape.get_uuid4(&row, 0), uuid1);
assert_eq!(shape.get_bool(&row, 1), true);
assert_eq!(shape.get_uuid4(&row, 2), uuid2);
assert_eq!(shape.get_i32(&row, 3), 42);
}
#[test]
fn test_undefined_handling() {
let shape = RowShape::testing(&[Type::Uuid4, Type::Uuid4]);
let mut row = shape.allocate();
let uuid = Uuid4::generate();
shape.set_uuid4(&mut row, 0, uuid.clone());
assert_eq!(shape.try_get_uuid4(&row, 0), Some(uuid));
assert_eq!(shape.try_get_uuid4(&row, 1), None);
shape.set_none(&mut row, 0);
assert_eq!(shape.try_get_uuid4(&row, 0), None);
}
#[test]
fn test_persistence() {
let shape = RowShape::testing(&[Type::Uuid4]);
let mut row = shape.allocate();
let uuid = Uuid4::generate();
let uuid_string = uuid.to_string();
shape.set_uuid4(&mut row, 0, uuid.clone());
let retrieved = shape.get_uuid4(&row, 0);
assert_eq!(retrieved, uuid);
assert_eq!(retrieved.to_string(), uuid_string);
assert_eq!(retrieved.as_bytes(), uuid.as_bytes());
}
#[test]
fn test_clone_consistency() {
let shape = RowShape::testing(&[Type::Uuid4]);
let mut row = shape.allocate();
let original_uuid = Uuid4::generate();
shape.set_uuid4(&mut row, 0, original_uuid.clone());
let retrieved_uuid = shape.get_uuid4(&row, 0);
assert_eq!(retrieved_uuid, original_uuid);
assert_eq!(retrieved_uuid.as_bytes(), original_uuid.as_bytes());
}
#[test]
fn test_multiple_fields() {
let shape = RowShape::testing(&[Type::Uuid4, Type::Uuid4, Type::Uuid4]);
let mut row = shape.allocate();
let uuid1 = Uuid4::generate();
let uuid2 = Uuid4::generate();
let uuid3 = Uuid4::generate();
shape.set_uuid4(&mut row, 0, uuid1.clone());
shape.set_uuid4(&mut row, 1, uuid2.clone());
shape.set_uuid4(&mut row, 2, uuid3.clone());
assert_eq!(shape.get_uuid4(&row, 0), uuid1);
assert_eq!(shape.get_uuid4(&row, 1), uuid2);
assert_eq!(shape.get_uuid4(&row, 2), uuid3);
assert_ne!(uuid1, uuid2);
assert_ne!(uuid1, uuid3);
assert_ne!(uuid2, uuid3);
}
#[test]
fn test_format_consistency() {
let shape = RowShape::testing(&[Type::Uuid4]);
let mut row = shape.allocate();
let uuid = Uuid4::generate();
let original_string = uuid.to_string();
shape.set_uuid4(&mut row, 0, uuid.clone());
let retrieved = shape.get_uuid4(&row, 0);
let retrieved_string = retrieved.to_string();
assert_eq!(original_string, retrieved_string);
assert_eq!(original_string.len(), 36);
assert_eq!(original_string.matches('-').count(), 4);
}
#[test]
fn test_byte_level_storage() {
let shape = RowShape::testing(&[Type::Uuid4]);
let mut row = shape.allocate();
let uuid = Uuid4::generate();
let original_bytes = *uuid.as_bytes();
shape.set_uuid4(&mut row, 0, uuid.clone());
let retrieved = shape.get_uuid4(&row, 0);
let retrieved_bytes = *retrieved.as_bytes();
assert_eq!(original_bytes, retrieved_bytes);
assert_eq!(original_bytes.len(), 16);
assert_eq!(retrieved_bytes.len(), 16);
}
#[test]
fn test_try_get_uuid4_wrong_type() {
let shape = RowShape::testing(&[Type::Boolean]);
let mut row = shape.allocate();
shape.set_bool(&mut row, 0, true);
assert_eq!(shape.try_get_uuid4(&row, 0), None);
}
}