Files
regorus/src/value.rs
Anand Krishnamoorthi cb0b3a1790 Code from github.com/anakrish/rego-rs
Authored by anakrish and mingweishih

Signed-off-by: Anand Krishnamoorthi <anakrish@microsoft.com>
2023-02-09 10:56:54 -08:00

326 lines
8.6 KiB
Rust

// Copyright (c) Rego-Rs Authors.
// Licensed under the Apache 2.0 license.
use core::fmt;
use std::collections::{BTreeMap, BTreeSet};
use std::ops;
use std::rc::Rc;
use anyhow::{anyhow, Result};
use ordered_float::OrderedFloat;
use serde::de::{self, Deserializer};
use serde::ser::{SerializeMap, Serializer};
use serde::{Deserialize, Serialize};
// TODO: rego uses BigNum which has arbitrary precision. But there seems
// to be some bugs with it e.g ((a + b) -a) == b doesn't return true for large
// values of a and b.
// Json doesn't specify a limit on precision, but in practice double (f64) seems
// to be enough to support most use cases and portability too.
// See discussions in jq's repository.
// For now we use OrderedFloat<f64>. We can't use f64 directly since it doesn't
// implement Ord trait.
#[derive(Debug, Clone, PartialEq, Eq, PartialOrd, Ord)]
pub struct Number(pub OrderedFloat<f64>);
impl Serialize for Number {
fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
where
S: Serializer,
{
let n_f64 = self.0 .0;
let n_i64 = n_f64 as i64;
let n_u64 = n_f64 as u64;
if n_u64 as f64 == n_f64 {
serializer.serialize_u64(n_u64)
} else if n_i64 as f64 == n_f64 {
serializer.serialize_i64(n_i64)
} else {
serializer.serialize_f64(n_f64)
}
}
}
struct NumberVisitor;
impl<'de> de::Visitor<'de> for NumberVisitor {
type Value = Number;
fn expecting(&self, formatter: &mut fmt::Formatter) -> fmt::Result {
write!(formatter, "a json number")
}
fn visit_f64<E>(self, v: f64) -> Result<Self::Value, E> {
Ok(Number(OrderedFloat(v)))
}
fn visit_u64<E>(self, v: u64) -> Result<Self::Value, E> {
Ok(Number(OrderedFloat(v as f64)))
}
fn visit_i64<E>(self, v: i64) -> Result<Self::Value, E> {
Ok(Number(OrderedFloat(v as f64)))
}
}
impl<'de> Deserialize<'de> for Number {
fn deserialize<D>(deserializer: D) -> Result<Number, D::Error>
where
D: Deserializer<'de>,
{
deserializer.deserialize_f64(NumberVisitor)
}
}
impl fmt::Display for Number {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
write!(f, "{}", self.0)
}
}
// We cannot use serde_json::Value because Rego has set type and object's key can be
// other rego values.
// BTree is more efficient that a hast table. Another alternative is a sorted vector.
#[derive(Debug, Clone, PartialEq, Eq, PartialOrd, Ord, Deserialize)]
#[serde(untagged)]
pub enum Value {
// Json data types. serde will automatically map json to these variants.
Null,
Bool(bool),
String(String),
Number(Number),
Array(Rc<Vec<Value>>),
Object(Rc<BTreeMap<Value, Value>>),
// Extra rego data type
Set(Rc<BTreeSet<Value>>),
// Indicate that a value is undefined
Undefined,
}
impl Serialize for Value {
fn serialize<S>(&self, serializer: S) -> Result<S::Ok, S::Error>
where
S: Serializer,
{
use serde::ser::Error;
match self {
Value::Null => serializer.serialize_none(),
Value::Bool(b) => serializer.serialize_bool(*b),
Value::String(s) => serializer.serialize_str(s.as_str()),
Value::Number(n) => n.serialize(serializer),
Value::Array(a) => a.serialize(serializer),
Value::Object(fields) => {
let mut map = serializer.serialize_map(Some(fields.len()))?;
for (k, v) in fields.iter() {
match k {
Value::String(_) => map.serialize_entry(k, v)?,
_ => {
let key_str = serde_json::to_string(k).map_err(Error::custom)?;
map.serialize_entry(&key_str, v)?
}
}
}
map.end()
}
// display set as an array
Value::Set(s) => s.serialize(serializer),
// display undefined as a special string
Value::Undefined => serializer.serialize_str("<undefined>"),
}
}
}
impl fmt::Display for Value {
fn fmt(&self, f: &mut fmt::Formatter) -> fmt::Result {
match serde_json::to_string(self) {
Ok(s) => write!(f, "{}", s),
Err(_e) => Err(std::fmt::Error),
}
}
}
impl Value {
pub fn new_object() -> Value {
Value::from_map(BTreeMap::new())
}
pub fn new_set() -> Value {
Value::from_set(BTreeSet::new())
}
pub fn new_array() -> Value {
Value::from_array(vec![])
}
pub fn from_json_str(json: &str) -> Result<Value> {
Ok(serde_json::from_str(json)?)
}
pub fn to_json_str(&self) -> Result<String> {
Ok(serde_json::to_string_pretty(self)?)
}
}
impl Value {
pub fn from_f64(v: f64) -> Value {
Value::Number(Number(OrderedFloat(v)))
}
pub fn from_array(a: Vec<Value>) -> Value {
Value::Array(Rc::new(a))
}
pub fn from_set(s: BTreeSet<Value>) -> Value {
Value::Set(Rc::new(s))
}
pub fn from_map(m: BTreeMap<Value, Value>) -> Value {
Value::Object(Rc::new(m))
}
pub fn is_null(&self) -> bool {
matches!(self, Value::Null)
}
pub fn is_undefined(&self) -> bool {
matches!(self, Value::Null)
}
pub fn as_bool(&self) -> Result<&bool> {
match self {
Value::Bool(b) => Ok(b),
_ => Err(anyhow!("not a bool")),
}
}
pub fn as_bool_mut(&mut self) -> Result<&mut bool> {
match self {
Value::Bool(b) => Ok(b),
_ => Err(anyhow!("not a bool")),
}
}
pub fn as_string(&self) -> Result<&String> {
match self {
Value::String(s) => Ok(s),
_ => Err(anyhow!("not a string")),
}
}
pub fn as_string_mut(&mut self) -> Result<&mut String> {
match self {
Value::String(s) => Ok(s),
_ => Err(anyhow!("not a string")),
}
}
pub fn as_number(&self) -> Result<&Number> {
match self {
Value::Number(n) => Ok(n),
_ => Err(anyhow!("not a number")),
}
}
pub fn as_number_mut(&mut self) -> Result<&mut Number> {
match self {
Value::Number(n) => Ok(n),
_ => Err(anyhow!("not a number")),
}
}
pub fn as_array(&self) -> Result<&Vec<Value>> {
match self {
Value::Array(a) => Ok(a),
_ => Err(anyhow!("not an array")),
}
}
pub fn as_array_mut(&mut self) -> Result<&mut Vec<Value>> {
match self {
Value::Array(a) => Ok(Rc::make_mut(a)),
_ => Err(anyhow!("not an array")),
}
}
pub fn as_set(&self) -> Result<&BTreeSet<Value>> {
match self {
Value::Set(s) => Ok(s),
_ => Err(anyhow!("not a set")),
}
}
pub fn as_set_mut(&mut self) -> Result<&mut BTreeSet<Value>> {
match self {
Value::Set(s) => Ok(Rc::make_mut(s)),
_ => Err(anyhow!("not a set")),
}
}
pub fn as_object(&self) -> Result<&BTreeMap<Value, Value>> {
match self {
Value::Object(m) => Ok(m),
_ => Err(anyhow!("not an object")),
}
}
pub fn as_object_mut(&mut self) -> Result<&mut BTreeMap<Value, Value>> {
match self {
Value::Object(m) => Ok(Rc::make_mut(m)),
_ => Err(anyhow!("not an object")),
}
}
}
impl ops::Index<usize> for Value {
type Output = Value;
fn index(&self, index: usize) -> &Self::Output {
match self.as_array() {
Ok(a) if index < a.len() => &a[index],
_ => &Value::Undefined,
}
}
}
impl ops::Index<&str> for Value {
type Output = Value;
fn index(&self, key: &str) -> &Self::Output {
&self[&Value::String(key.to_owned())]
}
}
impl ops::Index<&String> for Value {
type Output = Value;
fn index(&self, key: &String) -> &Self::Output {
&self[&Value::String(key.clone())]
}
}
impl ops::Index<&Value> for Value {
type Output = Value;
fn index(&self, key: &Value) -> &Self::Output {
match (self, &key) {
(Value::Object(o), _) => match &o.get(key) {
Some(v) => v,
_ => &Value::Undefined,
},
(Value::Array(a), Value::Number(n)) => {
let index = n.0 .0 as usize;
if index < a.len() {
&a[index]
} else {
&Value::Undefined
}
}
_ => &Value::Undefined,
}
}
}