// Copyright 2018 Parity Technologies (UK) Ltd. // // Permission is hereby granted, free of charge, to any person obtaining a // copy of this software and associated documentation files (the "Software"), // to deal in the Software without restriction, including without limitation // the rights to use, copy, modify, merge, publish, distribute, sublicense, // and/or sell copies of the Software, and to permit persons to whom the // Software is furnished to do so, subject to the following conditions: // // The above copyright notice and this permission notice shall be included in // all copies or substantial portions of the Software. // // THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS // OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, // FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE // AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER // LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING // FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER // DEALINGS IN THE SOFTWARE. use bytes::Bytes; use futures::future::Either; use crate::{ either::{EitherOutput, EitherError, EitherFuture2}, upgrade::{InboundUpgrade, OutboundUpgrade, UpgradeInfo} }; /// A type to represent two possible upgrade types (inbound or outbound). #[derive(Debug, Clone)] pub enum EitherUpgrade { A(A), B(B) } impl UpgradeInfo for EitherUpgrade where A: UpgradeInfo, B: UpgradeInfo { type UpgradeId = Either; type NamesIter = EitherIter; fn protocol_names(&self) -> Self::NamesIter { match self { EitherUpgrade::A(a) => EitherIter::A(a.protocol_names()), EitherUpgrade::B(b) => EitherIter::B(b.protocol_names()) } } } impl InboundUpgrade for EitherUpgrade where A: InboundUpgrade, B: InboundUpgrade, { type Output = EitherOutput; type Error = EitherError; type Future = EitherFuture2; fn upgrade_inbound(self, sock: C, id: Self::UpgradeId) -> Self::Future { match (self, id) { (EitherUpgrade::A(a), Either::A(id)) => EitherFuture2::A(a.upgrade_inbound(sock, id)), (EitherUpgrade::B(b), Either::B(id)) => EitherFuture2::B(b.upgrade_inbound(sock, id)), _ => panic!("Invalid invocation of EitherUpgrade::upgrade_inbound") } } } impl OutboundUpgrade for EitherUpgrade where A: OutboundUpgrade, B: OutboundUpgrade, { type Output = EitherOutput; type Error = EitherError; type Future = EitherFuture2; fn upgrade_outbound(self, sock: C, id: Self::UpgradeId) -> Self::Future { match (self, id) { (EitherUpgrade::A(a), Either::A(id)) => EitherFuture2::A(a.upgrade_outbound(sock, id)), (EitherUpgrade::B(b), Either::B(id)) => EitherFuture2::B(b.upgrade_outbound(sock, id)), _ => panic!("Invalid invocation of EitherUpgrade::upgrade_outbound") } } } /// A type to represent two possible `Iterator` types. #[derive(Debug, Clone)] pub enum EitherIter { A(A), B(B) } impl Iterator for EitherIter where A: Iterator, B: Iterator, { type Item = (Bytes, Either); fn next(&mut self) -> Option { match self { EitherIter::A(a) => a.next().map(|(name, id)| (name, Either::A(id))), EitherIter::B(b) => b.next().map(|(name, id)| (name, Either::B(id))) } } fn size_hint(&self) -> (usize, Option) { match self { EitherIter::A(a) => a.size_hint(), EitherIter::B(b) => b.size_hint() } } }