Files
turso/core/json/mod.rs
2024-12-20 11:32:57 +01:00

270 lines
8.8 KiB
Rust

mod de;
mod error;
mod ser;
use std::rc::Rc;
pub use crate::json::de::from_str;
pub use crate::json::ser::to_string;
use crate::types::{LimboText, OwnedValue, TextSubtype};
use indexmap::IndexMap;
use serde::{Deserialize, Serialize};
#[derive(Serialize, Deserialize, Debug)]
#[serde(untagged)]
pub enum Val {
Null,
Bool(bool),
Integer(i64),
Float(f64),
String(String),
Array(Vec<Val>),
Object(IndexMap<String, Val>),
}
pub fn get_json(json_value: &OwnedValue) -> crate::Result<OwnedValue> {
match json_value {
OwnedValue::Text(ref t) => {
if t.subtype == TextSubtype::Json {
return Ok(json_value.to_owned());
}
match crate::json::from_str::<Val>(&t.value) {
Ok(json) => {
let json = crate::json::to_string(&json).unwrap();
Ok(OwnedValue::Text(LimboText::json(Rc::new(json))))
}
Err(_) => {
crate::bail_parse_error!("malformed JSON")
}
}
}
OwnedValue::Blob(b) => {
if let Ok(json) = jsonb::from_slice(b) {
Ok(OwnedValue::Text(LimboText::json(Rc::new(json.to_string()))))
} else {
crate::bail_parse_error!("malformed JSON");
}
}
_ => Ok(json_value.to_owned()),
}
}
pub fn json_array(values: Vec<&OwnedValue>) -> crate::Result<OwnedValue> {
let mut s = String::new();
s.push('[');
for (idx, value) in values.iter().enumerate() {
match value {
OwnedValue::Blob(_) => crate::bail_constraint_error!("JSON cannot hold BLOB values"),
OwnedValue::Text(t) => {
if t.subtype == TextSubtype::Json {
s.push_str(&t.value);
} else {
match crate::json::to_string(&*t.value) {
Ok(json) => s.push_str(&json),
Err(_) => crate::bail_parse_error!("malformed JSON"),
}
}
}
OwnedValue::Integer(i) => match crate::json::to_string(&i) {
Ok(json) => s.push_str(&json),
Err(_) => crate::bail_parse_error!("malformed JSON"),
},
OwnedValue::Float(f) => match crate::json::to_string(&f) {
Ok(json) => s.push_str(&json),
Err(_) => crate::bail_parse_error!("malformed JSON"),
},
OwnedValue::Null => s.push_str("null"),
_ => unreachable!(),
}
if idx < values.len() - 1 {
s.push(',');
}
}
s.push(']');
Ok(OwnedValue::Text(LimboText::json(Rc::new(s))))
}
#[cfg(test)]
mod tests {
use super::*;
use crate::types::OwnedValue;
#[test]
fn test_get_json_valid_json5() {
let input = OwnedValue::build_text(Rc::new("{ key: 'value' }".to_string()));
let result = get_json(&input).unwrap();
if let OwnedValue::Text(result_str) = result {
assert!(result_str.value.contains("\"key\":\"value\""));
assert_eq!(result_str.subtype, TextSubtype::Json);
} else {
panic!("Expected OwnedValue::Text");
}
}
#[test]
fn test_get_json_valid_json5_double_single_quotes() {
let input = OwnedValue::build_text(Rc::new("{ key: ''value'' }".to_string()));
let result = get_json(&input).unwrap();
if let OwnedValue::Text(result_str) = result {
assert!(result_str.value.contains("\"key\":\"value\""));
assert_eq!(result_str.subtype, TextSubtype::Json);
} else {
panic!("Expected OwnedValue::Text");
}
}
#[test]
fn test_get_json_valid_json5_infinity() {
let input = OwnedValue::build_text(Rc::new("{ \"key\": Infinity }".to_string()));
let result = get_json(&input).unwrap();
if let OwnedValue::Text(result_str) = result {
assert!(result_str.value.contains("{\"key\":9e999}"));
assert_eq!(result_str.subtype, TextSubtype::Json);
} else {
panic!("Expected OwnedValue::Text");
}
}
#[test]
fn test_get_json_valid_json5_negative_infinity() {
let input = OwnedValue::build_text(Rc::new("{ \"key\": -Infinity }".to_string()));
let result = get_json(&input).unwrap();
if let OwnedValue::Text(result_str) = result {
assert!(result_str.value.contains("{\"key\":-9e999}"));
assert_eq!(result_str.subtype, TextSubtype::Json);
} else {
panic!("Expected OwnedValue::Text");
}
}
#[test]
fn test_get_json_valid_json5_nan() {
let input = OwnedValue::build_text(Rc::new("{ \"key\": NaN }".to_string()));
let result = get_json(&input).unwrap();
if let OwnedValue::Text(result_str) = result {
assert!(result_str.value.contains("{\"key\":null}"));
assert_eq!(result_str.subtype, TextSubtype::Json);
} else {
panic!("Expected OwnedValue::Text");
}
}
#[test]
fn test_get_json_invalid_json5() {
let input = OwnedValue::build_text(Rc::new("{ key: value }".to_string()));
let result = get_json(&input);
match result {
Ok(_) => panic!("Expected error for malformed JSON"),
Err(e) => assert!(e.to_string().contains("malformed JSON")),
}
}
#[test]
fn test_get_json_valid_jsonb() {
let input = OwnedValue::build_text(Rc::new("{\"key\":\"value\"}".to_string()));
let result = get_json(&input).unwrap();
if let OwnedValue::Text(result_str) = result {
assert!(result_str.value.contains("\"key\":\"value\""));
assert_eq!(result_str.subtype, TextSubtype::Json);
} else {
panic!("Expected OwnedValue::Text");
}
}
#[test]
fn test_get_json_invalid_jsonb() {
let input = OwnedValue::build_text(Rc::new("{key:\"value\"".to_string()));
let result = get_json(&input);
match result {
Ok(_) => panic!("Expected error for malformed JSON"),
Err(e) => assert!(e.to_string().contains("malformed JSON")),
}
}
#[test]
fn test_get_json_blob_valid_jsonb() {
let binary_json = b"\x40\0\0\x01\x10\0\0\x03\x10\0\0\x03\x61\x73\x64\x61\x64\x66".to_vec();
let input = OwnedValue::Blob(Rc::new(binary_json));
let result = get_json(&input).unwrap();
if let OwnedValue::Text(result_str) = result {
assert!(result_str.value.contains("\"asd\":\"adf\""));
assert_eq!(result_str.subtype, TextSubtype::Json);
} else {
panic!("Expected OwnedValue::Text");
}
}
#[test]
fn test_get_json_blob_invalid_jsonb() {
let binary_json: Vec<u8> = vec![0xA2, 0x62, 0x6B, 0x31, 0x62, 0x76]; // Incomplete binary JSON
let input = OwnedValue::Blob(Rc::new(binary_json));
let result = get_json(&input);
match result {
Ok(_) => panic!("Expected error for malformed JSON"),
Err(e) => assert!(e.to_string().contains("malformed JSON")),
}
}
#[test]
fn test_get_json_non_text() {
let input = OwnedValue::Null;
let result = get_json(&input).unwrap();
if let OwnedValue::Null = result {
// Test passed
} else {
panic!("Expected OwnedValue::Null");
}
}
#[test]
fn test_json_array_simple() {
let text = OwnedValue::build_text(Rc::new("value1".to_string()));
let json = OwnedValue::Text(LimboText::json(Rc::new("\"value2\"".to_string())));
let input = vec![
&text,
&json,
&OwnedValue::Integer(1),
&OwnedValue::Float(1.1),
];
let result = json_array(input).unwrap();
if let OwnedValue::Text(res) = result {
assert_eq!(res.value.as_str(), "[\"value1\",\"value2\",1,1.1]");
assert_eq!(res.subtype, TextSubtype::Json);
} else {
panic!("Expected OwnedValue::Text");
}
}
#[test]
fn test_json_array_empty() {
let input = vec![];
let result = json_array(input).unwrap();
if let OwnedValue::Text(res) = result {
assert_eq!(res.value.as_str(), "[]");
assert_eq!(res.subtype, TextSubtype::Json);
} else {
panic!("Expected OwnedValue::Text");
}
}
#[test]
fn test_json_array_blob_invalid() {
let blob = OwnedValue::Blob(Rc::new("1".as_bytes().to_vec()));
let input = vec![&blob];
let result = json_array(input);
match result {
Ok(_) => panic!("Expected error for blob input"),
Err(e) => assert!(e.to_string().contains("JSON cannot hold BLOB values")),
}
}
}