use error::RequestIdFromStringError;
use serde::{ser, Deserialize, Serialize};
use sha2::{Digest, Sha256};
use std::{collections::BTreeMap, iter::Extend, str::FromStr};
pub mod error;
pub use error::RequestIdError;
type Sha256Hash = [u8; 32];
#[derive(Clone, Copy, Debug, PartialOrd, Ord, PartialEq, Eq, Deserialize, Serialize)]
pub struct RequestId(Sha256Hash);
impl RequestId {
pub fn new(from: &[u8; 32]) -> RequestId {
RequestId(*from)
}
pub fn as_slice(&self) -> &[u8] {
&self.0
}
pub(crate) fn to_vec(self) -> Vec<u8> {
self.0.to_vec()
}
}
impl FromStr for RequestId {
type Err = RequestIdFromStringError;
fn from_str(from: &str) -> Result<Self, Self::Err> {
let mut blob: [u8; 32] = [0; 32];
let vec = hex::decode(from).map_err(RequestIdFromStringError::FromHexError)?;
if vec.len() != 32 {
return Err(RequestIdFromStringError::InvalidSize(vec.len()));
}
blob.copy_from_slice(vec.as_slice());
Ok(RequestId::new(&blob))
}
}
impl From<RequestId> for String {
fn from(id: RequestId) -> String {
hex::encode(id.0)
}
}
enum Hasher {
RequestId(Sha256),
Struct {
fields: BTreeMap<Sha256Hash, Sha256Hash>,
parent: Box<Hasher>,
},
Value(Sha256),
}
impl Hasher {
fn request_id() -> Hasher {
Hasher::RequestId(Sha256::new())
}
fn fields(parent: Box<Hasher>) -> Hasher {
Hasher::Struct {
fields: BTreeMap::new(),
parent,
}
}
fn value() -> Hasher {
Hasher::Value(Sha256::new())
}
}
struct RequestIdSerializer {
element_encoder: Option<Hasher>,
}
impl RequestIdSerializer {
pub fn new() -> RequestIdSerializer {
Default::default()
}
pub fn finish(self) -> Result<RequestId, RequestIdError> {
match self.element_encoder {
Some(Hasher::RequestId(hasher)) => Ok(RequestId(hasher.finalize().into())),
_ => Err(RequestIdError::EmptySerializer),
}
}
fn hash_value<T>(&mut self, value: &T) -> Result<Sha256Hash, RequestIdError>
where
T: ?Sized + Serialize,
{
let prev_encoder = self.element_encoder.take();
self.element_encoder = Some(Hasher::value());
value.serialize(&mut *self)?;
let result = match self.element_encoder.take() {
Some(Hasher::Value(hasher)) => Ok(hasher.finalize().into()),
_ => Err(RequestIdError::InvalidState),
};
self.element_encoder = prev_encoder;
result
}
fn hash_fields(&mut self) -> Result<(), RequestIdError> {
match self.element_encoder.take() {
Some(Hasher::Struct { fields, parent }) => {
let mut keyvalues: Vec<Vec<u8>> = fields
.keys()
.zip(fields.values())
.map(|(k, v)| {
let mut x = k.to_vec();
x.extend(v);
x
})
.collect();
keyvalues.sort();
let mut parent = *parent;
match &mut parent {
Hasher::RequestId(hasher) => {
for kv in keyvalues {
hasher.update(&kv);
}
Ok(())
}
_ => Err(RequestIdError::InvalidState),
}?;
self.element_encoder = Some(parent);
Ok(())
}
_ => Err(RequestIdError::InvalidState),
}
}
}
impl Default for RequestIdSerializer {
fn default() -> RequestIdSerializer {
RequestIdSerializer {
element_encoder: Some(Hasher::request_id()),
}
}
}
impl<'a> ser::Serializer for &'a mut RequestIdSerializer {
type Ok = ();
type Error = RequestIdError;
type SerializeSeq = Self;
type SerializeTuple = Self;
type SerializeTupleStruct = Self;
type SerializeTupleVariant = Self;
type SerializeMap = Self;
type SerializeStruct = Self;
type SerializeStructVariant = Self;
fn serialize_bool(self, _v: bool) -> Result<Self::Ok, Self::Error> {
Err(RequestIdError::UnsupportedTypeBool)
}
fn serialize_i8(self, _v: i8) -> Result<Self::Ok, Self::Error> {
Err(RequestIdError::UnsupportedTypeI8)
}
fn serialize_i16(self, _v: i16) -> Result<Self::Ok, Self::Error> {
Err(RequestIdError::UnsupportedTypeI16)
}
fn serialize_i32(self, _v: i32) -> Result<Self::Ok, Self::Error> {
Err(RequestIdError::UnsupportedTypeI32)
}
fn serialize_i64(self, _v: i64) -> Result<Self::Ok, Self::Error> {
Err(RequestIdError::UnsupportedTypeI64)
}
fn serialize_u8(self, v: u8) -> Result<Self::Ok, Self::Error> {
self.serialize_u64(v as u64)
}
fn serialize_u16(self, v: u16) -> Result<Self::Ok, Self::Error> {
self.serialize_u64(v as u64)
}
fn serialize_u32(self, v: u32) -> Result<Self::Ok, Self::Error> {
self.serialize_u64(v as u64)
}
fn serialize_u64(self, v: u64) -> Result<Self::Ok, Self::Error> {
let mut buffer = [0; 10];
let mut writable = &mut buffer[..];
let n_bytes =
leb128::write::unsigned(&mut writable, v).expect("Could not serialize number.");
self.serialize_bytes(&buffer[..n_bytes])
}
fn serialize_f32(self, _v: f32) -> Result<Self::Ok, Self::Error> {
Err(RequestIdError::UnsupportedTypeF32)
}
fn serialize_f64(self, _v: f64) -> Result<Self::Ok, Self::Error> {
Err(RequestIdError::UnsupportedTypeF64)
}
fn serialize_char(self, _v: char) -> Result<Self::Ok, Self::Error> {
Err(RequestIdError::UnsupportedTypeChar)
}
fn serialize_str(self, v: &str) -> Result<Self::Ok, Self::Error> {
self.serialize_bytes(v.as_bytes())
}
fn serialize_bytes(self, v: &[u8]) -> Result<Self::Ok, Self::Error> {
match &mut self.element_encoder {
Some(Hasher::RequestId(hasher)) => {
hasher.update(v);
Ok(())
}
Some(Hasher::Value(hasher)) => {
hasher.update(v);
Ok(())
}
_ => Err(RequestIdError::InvalidState),
}
}
fn serialize_none(self) -> Result<Self::Ok, Self::Error> {
Ok(())
}
fn serialize_some<T: ?Sized>(self, value: &T) -> Result<Self::Ok, Self::Error>
where
T: Serialize,
{
value.serialize(self)
}
fn serialize_unit(self) -> Result<Self::Ok, Self::Error> {
Err(RequestIdError::UnsupportedTypeUnit)
}
fn serialize_unit_struct(self, _name: &'static str) -> Result<Self::Ok, Self::Error> {
Err(RequestIdError::UnsupportedTypePhantomData)
}
fn serialize_unit_variant(
self,
_name: &'static str,
_variant_index: u32,
_variant: &'static str,
) -> Result<Self::Ok, Self::Error> {
Err(RequestIdError::UnsupportedTypeUnitVariant)
}
fn serialize_newtype_struct<T: ?Sized>(
self,
name: &'static str,
_value: &T,
) -> Result<Self::Ok, Self::Error>
where
T: Serialize,
{
Err(RequestIdError::UnsupportedTypeNewtypeStruct(
name.to_owned(),
))
}
fn serialize_newtype_variant<T: ?Sized>(
self,
_name: &'static str,
_variant_index: u32,
_variant: &'static str,
_value: &T,
) -> Result<Self::Ok, Self::Error>
where
T: Serialize,
{
Err(RequestIdError::UnsupportedTypeNewTypeVariant)
}
fn serialize_seq(self, _len: Option<usize>) -> Result<Self::SerializeSeq, Self::Error> {
Ok(self)
}
fn serialize_tuple(self, _len: usize) -> Result<Self::SerializeTuple, Self::Error> {
Err(RequestIdError::UnsupportedTypeTuple)
}
fn serialize_tuple_struct(
self,
_name: &'static str,
_len: usize,
) -> Result<Self::SerializeTupleStruct, Self::Error> {
Err(RequestIdError::UnsupportedTypeTupleStruct)
}
fn serialize_tuple_variant(
self,
_name: &'static str,
_variant_index: u32,
_variant: &'static str,
_len: usize,
) -> Result<Self::SerializeTupleVariant, Self::Error> {
Err(RequestIdError::UnsupportedTypeTupleVariant)
}
fn serialize_map(self, _len: Option<usize>) -> Result<Self::SerializeMap, Self::Error> {
Err(RequestIdError::UnsupportedTypeMap)
}
fn serialize_struct(
self,
_name: &'static str,
_len: usize,
) -> Result<Self::SerializeStruct, Self::Error> {
let parent_encoder = self.element_encoder.take();
match &parent_encoder {
Some(Hasher::RequestId(_)) => {
self.element_encoder = Some(Hasher::fields(Box::new(parent_encoder.unwrap())));
Ok(self)
}
_ => Err(RequestIdError::UnsupportedStructInsideStruct),
}
}
fn serialize_struct_variant(
self,
_name: &'static str,
_variant_index: u32,
_variant: &'static str,
_len: usize,
) -> Result<Self::SerializeStructVariant, Self::Error> {
Err(RequestIdError::UnsupportedTypeStructVariant)
}
fn is_human_readable(&self) -> bool {
false
}
}
impl<'a> ser::SerializeSeq for &'a mut RequestIdSerializer {
type Ok = ();
type Error = RequestIdError;
fn serialize_element<T>(&mut self, value: &T) -> Result<Self::Ok, Self::Error>
where
T: ?Sized + Serialize,
{
let mut prev_encoder = self.element_encoder.take();
self.element_encoder = Some(Hasher::value());
value.serialize(&mut **self)?;
let value_encoder = self.element_encoder.take();
let hash = match value_encoder {
Some(Hasher::Value(hasher)) => Ok(hasher.finalize()),
_ => Err(RequestIdError::InvalidState),
}?;
self.element_encoder = prev_encoder.take();
match &mut self.element_encoder {
Some(Hasher::Value(hasher)) => {
hasher.update(&hash);
Ok(())
}
_ => Err(RequestIdError::InvalidState),
}
}
fn end(self) -> Result<Self::Ok, Self::Error> {
Ok(())
}
}
impl<'a> ser::SerializeTuple for &'a mut RequestIdSerializer {
type Ok = ();
type Error = RequestIdError;
fn serialize_element<T>(&mut self, _value: &T) -> Result<Self::Ok, Self::Error>
where
T: ?Sized + Serialize,
{
Err(RequestIdError::UnsupportedTypeTuple)
}
fn end(self) -> Result<Self::Ok, Self::Error> {
Ok(())
}
}
impl<'a> ser::SerializeTupleStruct for &'a mut RequestIdSerializer {
type Ok = ();
type Error = RequestIdError;
fn serialize_field<T>(&mut self, _value: &T) -> Result<Self::Ok, Self::Error>
where
T: ?Sized + Serialize,
{
Err(RequestIdError::UnsupportedTypeTupleStruct)
}
fn end(self) -> Result<Self::Ok, Self::Error> {
Ok(())
}
}
impl<'a> ser::SerializeTupleVariant for &'a mut RequestIdSerializer {
type Ok = ();
type Error = RequestIdError;
fn serialize_field<T>(&mut self, _value: &T) -> Result<Self::Ok, Self::Error>
where
T: ?Sized + Serialize,
{
Err(RequestIdError::UnsupportedTypeTupleVariant)
}
fn end(self) -> Result<Self::Ok, Self::Error> {
Ok(())
}
}
impl<'a> ser::SerializeMap for &'a mut RequestIdSerializer {
type Ok = ();
type Error = RequestIdError;
fn serialize_key<T>(&mut self, _key: &T) -> Result<Self::Ok, Self::Error>
where
T: ?Sized + Serialize,
{
Err(RequestIdError::UnsupportedTypeMap)
}
fn serialize_value<T>(&mut self, _value: &T) -> Result<Self::Ok, Self::Error>
where
T: ?Sized + Serialize,
{
Err(RequestIdError::UnsupportedTypeMap)
}
fn end(self) -> Result<Self::Ok, Self::Error> {
self.hash_fields()
}
}
impl<'a> ser::SerializeStruct for &'a mut RequestIdSerializer {
type Ok = ();
type Error = RequestIdError;
fn serialize_field<T>(&mut self, key: &'static str, value: &T) -> Result<Self::Ok, Self::Error>
where
T: ?Sized + Serialize,
{
let key_hash = self.hash_value(key)?;
let value_hash = self.hash_value(value)?;
match &mut self.element_encoder {
Some(Hasher::Struct { fields, .. }) => {
fields.insert(key_hash, value_hash);
Ok(())
}
_ => Err(RequestIdError::InvalidState),
}
}
fn end(self) -> Result<Self::Ok, Self::Error> {
self.hash_fields()
}
}
impl<'a> ser::SerializeStructVariant for &'a mut RequestIdSerializer {
type Ok = ();
type Error = RequestIdError;
fn serialize_field<T>(
&mut self,
_key: &'static str,
_value: &T,
) -> Result<Self::Ok, Self::Error>
where
T: ?Sized + Serialize,
{
Err(RequestIdError::UnsupportedTypeStructVariant)
}
fn end(self) -> Result<Self::Ok, Self::Error> {
Ok(())
}
}
pub fn to_request_id<'a, V>(value: &V) -> Result<RequestId, RequestIdError>
where
V: 'a + Serialize,
{
let mut serializer = RequestIdSerializer::new();
value.serialize(&mut serializer)?;
serializer.finish()
}
#[cfg(test)]
mod tests {
use super::*;
use crate::export::Principal;
use std::convert::TryFrom;
#[test]
fn public_spec_example() {
#[derive(Serialize)]
struct PublicSpecExampleStruct {
request_type: &'static str,
canister_id: Principal,
method_name: &'static str,
#[serde(with = "serde_bytes")]
arg: Vec<u8>,
}
let data = PublicSpecExampleStruct {
request_type: "call",
canister_id: Principal::try_from(&vec![0, 0, 0, 0, 0, 0, 0x04, 0xD2]).unwrap(), method_name: "hello",
arg: b"DIDL\x00\xFD*".to_vec(),
};
let request_id = to_request_id(&data).unwrap();
assert_eq!(
hex::encode(request_id.0),
"8781291c347db32a9d8c10eb62b710fce5a93be676474c42babc74c51858f94b"
);
}
#[test]
fn public_spec_example_api_client() {
#[derive(Serialize)]
#[serde(rename_all = "snake_case")]
#[serde(tag = "request_type")]
enum PublicSpec {
Call {
canister_id: Principal,
method_name: String,
#[serde(with = "serde_bytes")]
arg: Option<Vec<u8>>,
},
}
let data = PublicSpec::Call {
canister_id: Principal::try_from(&vec![0, 0, 0, 0, 0, 0, 0x04, 0xD2]).unwrap(), method_name: "hello".to_owned(),
arg: Some(b"DIDL\x00\xFD*".to_vec()),
};
let request_id = to_request_id(&data).unwrap();
assert_eq!(
hex::encode(request_id.0),
"8781291c347db32a9d8c10eb62b710fce5a93be676474c42babc74c51858f94b"
);
}
#[test]
#[allow(clippy::string_lit_as_bytes)]
fn array_example() {
#[derive(Serialize)]
struct NestedArraysExample {
sender: Principal,
paths: Vec<Vec<serde_bytes::ByteBuf>>,
}
let data = NestedArraysExample {
sender: Principal::try_from(&vec![0, 0, 0, 0, 0, 0, 0x04, 0xD2]).unwrap(), paths: vec![
vec![],
vec![serde_bytes::ByteBuf::from("".as_bytes())],
vec![
serde_bytes::ByteBuf::from("hello".as_bytes()),
serde_bytes::ByteBuf::from("world".as_bytes()),
],
],
};
let request_id = to_request_id(&data).unwrap();
assert_eq!(
hex::encode(request_id.0),
"97d6f297aea699aec85d3377c7643ea66db810aba5c4372fbc2082c999f452dc"
);
}
#[test]
fn array_example_empty_array() {
#[derive(Serialize)]
struct NestedArraysExample {
paths: Vec<Vec<serde_bytes::ByteBuf>>,
}
let data = NestedArraysExample { paths: vec![] };
let request_id = to_request_id(&data).unwrap();
assert_eq!(
hex::encode(request_id.0),
"99daa8c80a61e87ac1fdf9dd49e39963bfe4dafb2a45095ebf4cad72d916d5be"
);
}
#[test]
fn array_example_array_with_empty_array() {
#[derive(Serialize)]
struct NestedArraysExample {
paths: Vec<Vec<serde_bytes::ByteBuf>>,
}
let data = NestedArraysExample {
paths: vec![vec![]],
};
let request_id = to_request_id(&data).unwrap();
assert_eq!(
hex::encode(request_id.0),
"ea01a9c3d3830db108e0a87995ea0d4183dc9c6e51324e9818fced5c57aa64f5"
);
}
#[test]
fn maps_are_not_supported() {
let mut data = BTreeMap::new();
data.insert("request_type", "call");
data.insert("canister_id", "a principal / the canister id");
data.insert("method_name", "hello");
data.insert("arg", "some argument value");
let error = to_request_id(&data).unwrap_err();
assert_eq!(error, RequestIdError::UnsupportedTypeMap);
}
}