mirror of
https://github.com/pezkuwichain/pezkuwi-subxt.git
synced 2026-04-26 15:47:58 +00:00
f7ff339ebd
* Expose instancing in metadata - Introduces metadata v7 - If a module is using instancing, the storage exposes the instance in metadata - Metadata module name is now the upper case one given to `construct_runtime!` * Remove obsolete macro * Just expose one prefix * Bump spec * Fix prefix generation
507 lines
16 KiB
Rust
507 lines
16 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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#![recursion_limit="128"]
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use runtime_io::{with_externalities, Blake2Hasher};
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use srml_support::{
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Parameter, traits::Get, parameter_types,
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runtime_primitives::{generic, BuildStorage, traits::{BlakeTwo256, Block as _, Verify}},
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metadata::{
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DecodeDifferent, StorageMetadata, StorageEntryModifier, StorageEntryType, DefaultByteGetter,
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StorageEntryMetadata, StorageHasher
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},
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};
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use inherents::{
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ProvideInherent, InherentData, InherentIdentifier, RuntimeString, MakeFatalError
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};
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use srml_support::{StorageValue, StorageMap, StorageDoubleMap};
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use primitives::{H256, sr25519};
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mod system;
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pub trait Currency {}
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// Test for:
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// * No default instance
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// * Custom InstantiableTrait
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// * Origin, Inherent, Event
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mod module1 {
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use super::*;
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pub trait Trait<I>: system::Trait where <Self as system::Trait>::BlockNumber: From<u32> {
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type Event: From<Event<Self, I>> + Into<<Self as system::Trait>::Event>;
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type Origin: From<Origin<Self, I>>;
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type SomeParameter: Get<u32>;
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type GenericType: Default + Clone + parity_codec::Codec;
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}
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srml_support::decl_module! {
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pub struct Module<T: Trait<I>, I: InstantiableThing> for enum Call where
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origin: <T as system::Trait>::Origin,
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T::BlockNumber: From<u32>
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{
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fn offchain_worker() {}
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fn deposit_event<T, I>() = default;
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fn one(origin) {
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system::ensure_root(origin)?;
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Self::deposit_event(RawEvent::AnotherVariant(3));
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}
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}
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}
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srml_support::decl_storage! {
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trait Store for Module<T: Trait<I>, I: InstantiableThing> as Module1 where
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T::BlockNumber: From<u32> + std::fmt::Display
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{
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pub Value config(value): T::GenericType;
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pub Map: map u32 => u64;
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pub LinkedMap: linked_map u32 => u64;
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}
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add_extra_genesis {
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config(test) : T::BlockNumber;
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build(|_, _, config: &Self| {
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println!("{}", config.test);
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});
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}
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}
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srml_support::decl_event! {
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pub enum Event<T, I> where Phantom = std::marker::PhantomData<T> {
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_Phantom(Phantom),
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AnotherVariant(u32),
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}
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}
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#[derive(PartialEq, Eq, Clone)]
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#[cfg_attr(feature = "std", derive(Debug))]
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pub enum Origin<T: Trait<I>, I> where T::BlockNumber: From<u32> {
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Members(u32),
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_Phantom(std::marker::PhantomData<(T, I)>),
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}
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pub const INHERENT_IDENTIFIER: InherentIdentifier = *b"12345678";
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impl<T: Trait<I>, I: InstantiableThing> ProvideInherent for Module<T, I> where
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T::BlockNumber: From<u32>
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{
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type Call = Call<T, I>;
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type Error = MakeFatalError<RuntimeString>;
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const INHERENT_IDENTIFIER: InherentIdentifier = INHERENT_IDENTIFIER;
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fn create_inherent(_data: &InherentData) -> Option<Self::Call> {
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unimplemented!();
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}
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fn check_inherent(_: &Self::Call, _: &InherentData) -> std::result::Result<(), Self::Error> {
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unimplemented!();
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}
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}
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}
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// Test for:
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// * default instance
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// * use of no_genesis_config_phantom_data
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mod module2 {
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use super::*;
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pub trait Trait<I=DefaultInstance>: system::Trait {
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type Amount: Parameter + Default;
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type Event: From<Event<Self, I>> + Into<<Self as system::Trait>::Event>;
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type Origin: From<Origin<Self, I>>;
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}
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impl<T: Trait<I>, I: Instance> Currency for Module<T, I> {}
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srml_support::decl_module! {
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pub struct Module<T: Trait<I>, I: Instance=DefaultInstance> for enum Call where
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origin: <T as system::Trait>::Origin
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{
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fn deposit_event<T, I>() = default;
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}
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}
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srml_support::decl_storage! {
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trait Store for Module<T: Trait<I>, I: Instance=DefaultInstance> as Module2 {
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pub Value config(value): T::Amount;
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pub Map config(map): map u64 => u64;
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pub LinkedMap config(linked_map): linked_map u64 => u64;
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pub DoubleMap config(double_map): double_map u64, blake2_256(u64) => u64;
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}
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}
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srml_support::decl_event! {
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pub enum Event<T, I=DefaultInstance> where Amount = <T as Trait<I>>::Amount {
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Variant(Amount),
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}
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}
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#[derive(PartialEq, Eq, Clone)]
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#[cfg_attr(feature = "std", derive(Debug))]
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pub enum Origin<T: Trait<I>, I=DefaultInstance> {
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Members(u32),
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_Phantom(std::marker::PhantomData<(T, I)>),
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}
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pub const INHERENT_IDENTIFIER: InherentIdentifier = *b"12345678";
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impl<T: Trait<I>, I: Instance> ProvideInherent for Module<T, I> {
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type Call = Call<T, I>;
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type Error = MakeFatalError<RuntimeString>;
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const INHERENT_IDENTIFIER: InherentIdentifier = INHERENT_IDENTIFIER;
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fn create_inherent(_data: &InherentData) -> Option<Self::Call> {
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unimplemented!();
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}
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fn check_inherent(_call: &Self::Call, _data: &InherentData) -> std::result::Result<(), Self::Error> {
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unimplemented!();
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}
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}
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}
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// Test for:
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// * Depends on multiple instances of a module with instances
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mod module3 {
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use super::*;
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pub trait Trait: module2::Trait + module2::Trait<module2::Instance1> + system::Trait {
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type Currency: Currency;
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type Currency2: Currency;
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}
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srml_support::decl_module! {
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pub struct Module<T: Trait> for enum Call where origin: <T as system::Trait>::Origin {}
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}
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}
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parameter_types! {
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pub const SomeValue: u32 = 100;
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}
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impl module1::Trait<module1::Instance1> for Runtime {
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type Event = Event;
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type Origin = Origin;
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type SomeParameter = SomeValue;
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type GenericType = u32;
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}
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impl module1::Trait<module1::Instance2> for Runtime {
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type Event = Event;
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type Origin = Origin;
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type SomeParameter = SomeValue;
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type GenericType = u32;
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}
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impl module2::Trait for Runtime {
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type Amount = u16;
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type Event = Event;
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type Origin = Origin;
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}
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impl module2::Trait<module2::Instance1> for Runtime {
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type Amount = u32;
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type Event = Event;
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type Origin = Origin;
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}
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impl module2::Trait<module2::Instance2> for Runtime {
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type Amount = u32;
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type Event = Event;
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type Origin = Origin;
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}
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impl module2::Trait<module2::Instance3> for Runtime {
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type Amount = u64;
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type Event = Event;
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type Origin = Origin;
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}
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impl module3::Trait for Runtime {
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type Currency = Module2_2;
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type Currency2 = Module2_3;
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}
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pub type Signature = sr25519::Signature;
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pub type AccountId = <Signature as Verify>::Signer;
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pub type BlockNumber = u64;
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pub type Index = u64;
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impl system::Trait for Runtime {
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type Hash = H256;
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type Origin = Origin;
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type BlockNumber = BlockNumber;
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type AccountId = AccountId;
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type Event = Event;
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}
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srml_support::construct_runtime!(
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pub enum Runtime where
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Block = Block,
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NodeBlock = Block,
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UncheckedExtrinsic = UncheckedExtrinsic
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{
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System: system::{Module, Call, Event},
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Module1_1: module1::<Instance1>::{
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Module, Call, Storage, Event<T>, Config<T>, Origin<T>, Inherent
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},
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Module1_2: module1::<Instance2>::{
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Module, Call, Storage, Event<T>, Config<T>, Origin<T>, Inherent
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},
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Module2: module2::{Module, Call, Storage, Event<T>, Config<T>, Origin<T>, Inherent},
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Module2_1: module2::<Instance1>::{
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Module, Call, Storage, Event<T>, Config<T>, Origin<T>, Inherent
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},
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Module2_2: module2::<Instance2>::{
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Module, Call, Storage, Event<T>, Config<T>, Origin<T>, Inherent
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},
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Module2_3: module2::<Instance3>::{
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Module, Call, Storage, Event<T>, Config<T>, Origin<T>, Inherent
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},
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Module3: module3::{Module, Call},
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}
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);
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pub type Header = generic::Header<BlockNumber, BlakeTwo256>;
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pub type Block = generic::Block<Header, UncheckedExtrinsic>;
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pub type UncheckedExtrinsic = generic::UncheckedExtrinsic<u32, Call, Signature, ()>;
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fn new_test_ext() -> runtime_io::TestExternalities<Blake2Hasher> {
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GenesisConfig{
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module1_Instance1: Some(module1::GenesisConfig {
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value: 3,
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test: 2,
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}),
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module1_Instance2: Some(module1::GenesisConfig {
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value: 4,
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test: 5,
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}),
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module2: Some(module2::GenesisConfig {
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value: 4,
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map: vec![(0, 0)],
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linked_map: vec![(0, 0)],
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double_map: vec![(0, 0, 0)],
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}),
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module2_Instance1: Some(module2::GenesisConfig {
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value: 4,
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map: vec![(0, 0)],
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linked_map: vec![(0, 0)],
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double_map: vec![(0, 0, 0)],
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}),
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module2_Instance2: None,
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module2_Instance3: None,
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}.build_storage().unwrap().0.into()
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}
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#[test]
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fn storage_instance_independance() {
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with_externalities(&mut new_test_ext(), || {
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let mut map = std::collections::btree_map::BTreeMap::new();
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for key in [
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module2::Value::<Runtime>::key().to_vec(),
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module2::Value::<Runtime, module2::Instance1>::key().to_vec(),
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module2::Value::<Runtime, module2::Instance2>::key().to_vec(),
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module2::Value::<Runtime, module2::Instance3>::key().to_vec(),
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module2::Map::<module2::DefaultInstance>::prefix().to_vec(),
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module2::Map::<module2::Instance1>::prefix().to_vec(),
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module2::Map::<module2::Instance2>::prefix().to_vec(),
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module2::Map::<module2::Instance3>::prefix().to_vec(),
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module2::LinkedMap::<module2::DefaultInstance>::prefix().to_vec(),
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module2::LinkedMap::<module2::Instance1>::prefix().to_vec(),
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module2::LinkedMap::<module2::Instance2>::prefix().to_vec(),
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module2::LinkedMap::<module2::Instance3>::prefix().to_vec(),
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module2::DoubleMap::<module2::DefaultInstance>::prefix().to_vec(),
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module2::DoubleMap::<module2::Instance1>::prefix().to_vec(),
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module2::DoubleMap::<module2::Instance2>::prefix().to_vec(),
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module2::DoubleMap::<module2::Instance3>::prefix().to_vec(),
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module2::Map::<module2::DefaultInstance>::key_for(0),
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module2::Map::<module2::Instance1>::key_for(0).to_vec(),
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module2::Map::<module2::Instance2>::key_for(0).to_vec(),
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module2::Map::<module2::Instance3>::key_for(0).to_vec(),
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module2::LinkedMap::<module2::DefaultInstance>::key_for(0),
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module2::LinkedMap::<module2::Instance1>::key_for(0).to_vec(),
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module2::LinkedMap::<module2::Instance2>::key_for(0).to_vec(),
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module2::LinkedMap::<module2::Instance3>::key_for(0).to_vec(),
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module2::Map::<module2::DefaultInstance>::key_for(1),
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module2::Map::<module2::Instance1>::key_for(1).to_vec(),
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module2::Map::<module2::Instance2>::key_for(1).to_vec(),
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module2::Map::<module2::Instance3>::key_for(1).to_vec(),
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module2::LinkedMap::<module2::DefaultInstance>::key_for(1),
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module2::LinkedMap::<module2::Instance1>::key_for(1).to_vec(),
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module2::LinkedMap::<module2::Instance2>::key_for(1).to_vec(),
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module2::LinkedMap::<module2::Instance3>::key_for(1).to_vec(),
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module2::DoubleMap::<module2::DefaultInstance>::prefix_for(&1),
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module2::DoubleMap::<module2::Instance1>::prefix_for(&1).to_vec(),
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module2::DoubleMap::<module2::Instance2>::prefix_for(&1).to_vec(),
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module2::DoubleMap::<module2::Instance3>::prefix_for(&1).to_vec(),
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module2::DoubleMap::<module2::DefaultInstance>::key_for(&1, &1),
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module2::DoubleMap::<module2::Instance1>::key_for(&1, &1).to_vec(),
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module2::DoubleMap::<module2::Instance2>::key_for(&1, &1).to_vec(),
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module2::DoubleMap::<module2::Instance3>::key_for(&1, &1).to_vec(),
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].iter() {
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assert!(map.insert(key, ()).is_none())
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}
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});
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}
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#[test]
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fn storage_with_instance_basic_operation() {
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with_externalities(&mut new_test_ext(), || {
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type Value = module2::Value<Runtime, module2::Instance1>;
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type Map = module2::Map<module2::Instance1>;
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type LinkedMap = module2::LinkedMap<module2::Instance1>;
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type DoubleMap = module2::DoubleMap<module2::Instance1>;
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assert_eq!(Value::exists(), true);
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assert_eq!(Value::get(), 4);
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Value::put(1);
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assert_eq!(Value::get(), 1);
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assert_eq!(Value::take(), 1);
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assert_eq!(Value::get(), 0);
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Value::mutate(|a| *a=2);
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assert_eq!(Value::get(), 2);
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Value::kill();
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assert_eq!(Value::exists(), false);
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assert_eq!(Value::get(), 0);
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let key = 1;
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assert_eq!(Map::exists(0), true);
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assert_eq!(Map::exists(key), false);
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Map::insert(key, 1);
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assert_eq!(Map::get(key), 1);
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assert_eq!(Map::take(key), 1);
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assert_eq!(Map::get(key), 0);
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Map::mutate(key, |a| *a=2);
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assert_eq!(Map::get(key), 2);
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Map::remove(key);
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assert_eq!(Map::exists(key), false);
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assert_eq!(Map::get(key), 0);
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assert_eq!(LinkedMap::exists(0), true);
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assert_eq!(LinkedMap::exists(key), false);
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LinkedMap::insert(key, 1);
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assert_eq!(LinkedMap::get(key), 1);
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assert_eq!(LinkedMap::take(key), 1);
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assert_eq!(LinkedMap::get(key), 0);
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LinkedMap::mutate(key, |a| *a=2);
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assert_eq!(LinkedMap::get(key), 2);
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LinkedMap::remove(key);
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assert_eq!(LinkedMap::exists(key), false);
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assert_eq!(LinkedMap::get(key), 0);
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let key1 = 1;
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let key2 = 1;
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assert_eq!(DoubleMap::exists(&0, &0), true);
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assert_eq!(DoubleMap::exists(&key1, &key2), false);
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DoubleMap::insert(&key1, &key2, &1);
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assert_eq!(DoubleMap::get(&key1, &key2), 1);
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assert_eq!(DoubleMap::take(&key1, &key2), 1);
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assert_eq!(DoubleMap::get(&key1, &key2), 0);
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DoubleMap::mutate(&key1, &key2, |a| *a=2);
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assert_eq!(DoubleMap::get(&key1, &key2), 2);
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DoubleMap::remove(&key1, &key2);
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assert_eq!(DoubleMap::get(&key1, &key2), 0);
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});
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}
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const EXPECTED_METADATA: StorageMetadata = StorageMetadata {
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prefix: DecodeDifferent::Encode("Instance2Module2"),
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entries: DecodeDifferent::Encode(
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&[
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StorageEntryMetadata {
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name: DecodeDifferent::Encode("Value"),
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modifier: StorageEntryModifier::Default,
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ty: StorageEntryType::Plain(DecodeDifferent::Encode("T::Amount")),
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default: DecodeDifferent::Encode(
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DefaultByteGetter(
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&module2::__GetByteStructValue(
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std::marker::PhantomData::<(Runtime, module2::Instance2)>
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)
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)
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),
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documentation: DecodeDifferent::Encode(&[]),
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},
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StorageEntryMetadata {
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name: DecodeDifferent::Encode("Map"),
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modifier: StorageEntryModifier::Default,
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ty: StorageEntryType::Map {
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hasher: StorageHasher::Blake2_256,
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key: DecodeDifferent::Encode("u64"),
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value: DecodeDifferent::Encode("u64"),
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is_linked: false,
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},
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default: DecodeDifferent::Encode(
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DefaultByteGetter(
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&module2::__GetByteStructMap(
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std::marker::PhantomData::<(Runtime, module2::Instance2)>
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)
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)
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),
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documentation: DecodeDifferent::Encode(&[]),
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},
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StorageEntryMetadata {
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name: DecodeDifferent::Encode("LinkedMap"),
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modifier: StorageEntryModifier::Default,
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ty: StorageEntryType::Map {
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hasher: StorageHasher::Blake2_256,
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key: DecodeDifferent::Encode("u64"),
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value: DecodeDifferent::Encode("u64"),
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is_linked: true,
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},
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default: DecodeDifferent::Encode(
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DefaultByteGetter(
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&module2::__GetByteStructLinkedMap(
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std::marker::PhantomData::<(Runtime, module2::Instance2)>
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)
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)
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),
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documentation: DecodeDifferent::Encode(&[]),
|
|
},
|
|
StorageEntryMetadata {
|
|
name: DecodeDifferent::Encode("DoubleMap"),
|
|
modifier: StorageEntryModifier::Default,
|
|
ty: StorageEntryType::DoubleMap {
|
|
hasher: StorageHasher::Blake2_256,
|
|
key2_hasher: StorageHasher::Blake2_256,
|
|
key1: DecodeDifferent::Encode("u64"),
|
|
key2: DecodeDifferent::Encode("u64"),
|
|
value: DecodeDifferent::Encode("u64"),
|
|
},
|
|
default: DecodeDifferent::Encode(
|
|
DefaultByteGetter(
|
|
&module2::__GetByteStructDoubleMap(
|
|
std::marker::PhantomData::<(Runtime, module2::Instance2)>
|
|
)
|
|
)
|
|
),
|
|
documentation: DecodeDifferent::Encode(&[]),
|
|
}
|
|
]
|
|
)
|
|
};
|
|
|
|
#[test]
|
|
fn test_instance_storage_metadata() {
|
|
let metadata = Module2_2::storage_metadata();
|
|
pretty_assertions::assert_eq!(EXPECTED_METADATA, metadata);
|
|
}
|
|
|
|
#[test]
|
|
fn instance_prefix_is_prefix_of_entries() {
|
|
use module2::Instance;
|
|
|
|
let prefix = module2::Instance2::PREFIX;
|
|
assert!(module2::Instance2::PREFIX_FOR_Value.starts_with(prefix));
|
|
assert!(module2::Instance2::PREFIX_FOR_Map.starts_with(prefix));
|
|
assert!(module2::Instance2::PREFIX_FOR_LinkedMap.starts_with(prefix));
|
|
assert!(module2::Instance2::PREFIX_FOR_DoubleMap.starts_with(prefix));
|
|
} |