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https://github.com/pezkuwichain/pezkuwi-subxt.git
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927e13c13a
* Adding script for rename, could be applicable for nodes on top of it, too * add stderr and gitlab ci features * apply script * fix now minor details in expected stderr * Update the Cargo.lock * fix name: sc-transaction -> sc-tracing * fix rename in script, too
274 lines
7.4 KiB
Rust
274 lines
7.4 KiB
Rust
// Copyright 2019 Parity Technologies (UK) Ltd.
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// This file is part of Substrate.
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// Substrate is free software: you can redistribute it and/or modify
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// it under the terms of the GNU General Public License as published by
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// the Free Software Foundation, either version 3 of the License, or
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// (at your option) any later version.
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// Substrate is distributed in the hope that it will be useful,
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// but WITHOUT ANY WARRANTY; without even the implied warranty of
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// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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// GNU General Public License for more details.
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// You should have received a copy of the GNU General Public License
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// along with Substrate. If not, see <http://www.gnu.org/licenses/>.
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//! Types that should only be used for testing!
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#[cfg(feature = "std")]
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use crate::{ed25519, sr25519, crypto::{Public, Pair}};
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use crate::crypto::KeyTypeId;
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/// Key type for generic Ed25519 key.
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pub const ED25519: KeyTypeId = KeyTypeId(*b"ed25");
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/// Key type for generic Sr 25519 key.
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pub const SR25519: KeyTypeId = KeyTypeId(*b"sr25");
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/// A keystore implementation usable in tests.
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#[cfg(feature = "std")]
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#[derive(Default)]
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pub struct KeyStore {
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/// `KeyTypeId` maps to public keys and public keys map to private keys.
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keys: std::collections::HashMap<KeyTypeId, std::collections::HashMap<Vec<u8>, String>>,
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}
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#[cfg(feature = "std")]
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impl KeyStore {
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/// Creates a new instance of `Self`.
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pub fn new() -> crate::traits::BareCryptoStorePtr {
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std::sync::Arc::new(parking_lot::RwLock::new(Self::default()))
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}
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}
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#[cfg(feature = "std")]
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impl crate::traits::BareCryptoStore for KeyStore {
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fn sr25519_public_keys(&self, id: KeyTypeId) -> Vec<sr25519::Public> {
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self.keys.get(&id)
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.map(|keys|
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keys.values()
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.map(|s| sr25519::Pair::from_string(s, None).expect("`sr25519` seed slice is valid"))
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.map(|p| p.public())
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.collect()
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)
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.unwrap_or_default()
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}
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fn sr25519_generate_new(
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&mut self,
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id: KeyTypeId,
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seed: Option<&str>,
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) -> Result<sr25519::Public, String> {
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match seed {
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Some(seed) => {
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let pair = sr25519::Pair::from_string(seed, None).expect("Generates an `sr25519` pair.");
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self.keys.entry(id).or_default().insert(pair.public().to_raw_vec(), seed.into());
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Ok(pair.public())
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},
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None => {
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let (pair, phrase, _) = sr25519::Pair::generate_with_phrase(None);
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self.keys.entry(id).or_default().insert(pair.public().to_raw_vec(), phrase);
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Ok(pair.public())
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}
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}
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}
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fn sr25519_key_pair(&self, id: KeyTypeId, pub_key: &sr25519::Public) -> Option<sr25519::Pair> {
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self.keys.get(&id)
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.and_then(|inner|
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inner.get(pub_key.as_slice())
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.map(|s| sr25519::Pair::from_string(s, None).expect("`sr25519` seed slice is valid"))
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)
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}
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fn ed25519_public_keys(&self, id: KeyTypeId) -> Vec<ed25519::Public> {
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self.keys.get(&id)
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.map(|keys|
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keys.values()
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.map(|s| ed25519::Pair::from_string(s, None).expect("`ed25519` seed slice is valid"))
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.map(|p| p.public())
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.collect()
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)
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.unwrap_or_default()
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}
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fn ed25519_generate_new(
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&mut self,
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id: KeyTypeId,
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seed: Option<&str>,
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) -> Result<ed25519::Public, String> {
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match seed {
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Some(seed) => {
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let pair = ed25519::Pair::from_string(seed, None).expect("Generates an `ed25519` pair.");
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self.keys.entry(id).or_default().insert(pair.public().to_raw_vec(), seed.into());
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Ok(pair.public())
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},
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None => {
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let (pair, phrase, _) = ed25519::Pair::generate_with_phrase(None);
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self.keys.entry(id).or_default().insert(pair.public().to_raw_vec(), phrase);
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Ok(pair.public())
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}
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}
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}
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fn ed25519_key_pair(&self, id: KeyTypeId, pub_key: &ed25519::Public) -> Option<ed25519::Pair> {
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self.keys.get(&id)
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.and_then(|inner|
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inner.get(pub_key.as_slice())
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.map(|s| ed25519::Pair::from_string(s, None).expect("`ed25519` seed slice is valid"))
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)
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}
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fn insert_unknown(&mut self, id: KeyTypeId, suri: &str, public: &[u8]) -> Result<(), ()> {
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self.keys.entry(id).or_default().insert(public.to_owned(), suri.to_string());
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Ok(())
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}
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fn password(&self) -> Option<&str> {
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None
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}
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}
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/// Macro for exporting functions from wasm in with the expected signature for using it with the
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/// wasm executor. This is useful for tests where you need to call a function in wasm.
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///
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/// The input parameters are expected to be SCALE encoded and will be automatically decoded for you.
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/// The output value is also SCALE encoded when returned back to the host.
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///
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/// The functions are feature-gated with `#[cfg(not(feature = "std"))]`, so they are only available
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/// from within wasm.
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///
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/// # Example
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///
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/// ```
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/// # use sp_core::wasm_export_functions;
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///
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/// wasm_export_functions! {
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/// fn test_in_wasm(value: bool, another_value: Vec<u8>) -> bool {
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/// value && another_value.is_empty()
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/// }
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///
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/// fn without_return_value() {
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/// // do something
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/// }
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/// }
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/// ```
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#[macro_export]
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macro_rules! wasm_export_functions {
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(
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$(
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fn $name:ident (
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$( $arg_name:ident: $arg_ty:ty ),* $(,)?
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) $( -> $ret_ty:ty )? { $( $fn_impl:tt )* }
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)*
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) => {
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$(
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$crate::wasm_export_functions! {
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@IMPL
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fn $name (
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$( $arg_name: $arg_ty ),*
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) $( -> $ret_ty )? { $( $fn_impl )* }
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}
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)*
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};
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(@IMPL
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fn $name:ident (
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$( $arg_name:ident: $arg_ty:ty ),*
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) { $( $fn_impl:tt )* }
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) => {
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#[no_mangle]
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#[allow(unreachable_code)]
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#[cfg(not(feature = "std"))]
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pub fn $name(input_data: *mut u8, input_len: usize) -> u64 {
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let input: &[u8] = if input_len == 0 {
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&[0u8; 0]
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} else {
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unsafe {
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$crate::rstd::slice::from_raw_parts(input_data, input_len)
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}
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};
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{
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let ($( $arg_name ),*) : ($( $arg_ty ),*) = $crate::Decode::decode(
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&mut &input[..],
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).expect("Input data is correctly encoded");
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$( $fn_impl )*
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}
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$crate::to_substrate_wasm_fn_return_value(&())
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}
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};
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(@IMPL
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fn $name:ident (
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$( $arg_name:ident: $arg_ty:ty ),*
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) $( -> $ret_ty:ty )? { $( $fn_impl:tt )* }
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) => {
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#[no_mangle]
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#[allow(unreachable_code)]
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#[cfg(not(feature = "std"))]
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pub fn $name(input_data: *mut u8, input_len: usize) -> u64 {
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let input: &[u8] = if input_len == 0 {
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&[0u8; 0]
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} else {
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unsafe {
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$crate::rstd::slice::from_raw_parts(input_data, input_len)
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}
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};
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let output $( : $ret_ty )? = {
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let ($( $arg_name ),*) : ($( $arg_ty ),*) = $crate::Decode::decode(
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&mut &input[..],
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).expect("Input data is correctly encoded");
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$( $fn_impl )*
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};
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$crate::to_substrate_wasm_fn_return_value(&output)
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}
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};
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}
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#[cfg(test)]
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mod tests {
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use super::*;
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use crate::sr25519;
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use crate::testing::{ED25519, SR25519};
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#[test]
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fn store_key_and_extract() {
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let store = KeyStore::new();
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let public = store.write()
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.ed25519_generate_new(ED25519, None)
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.expect("Genrates key");
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let store_key_pair = store.read()
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.ed25519_key_pair(ED25519, &public)
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.expect("Key should exists in store");
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assert_eq!(public, store_key_pair.public());
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}
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#[test]
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fn store_unknown_and_extract_it() {
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let store = KeyStore::new();
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let secret_uri = "//Alice";
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let key_pair = sr25519::Pair::from_string(secret_uri, None).expect("Generates key pair");
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store.write().insert_unknown(
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SR25519,
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secret_uri,
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key_pair.public().as_ref(),
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).expect("Inserts unknown key");
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let store_key_pair = store.read().sr25519_key_pair(
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SR25519,
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&key_pair.public(),
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).expect("Gets key pair from keystore");
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assert_eq!(key_pair.public(), store_key_pair.public());
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}
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}
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