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# ADR 073: Adopt LibP2P |
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## Changelog |
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- 2021-11-02: Initial Draft (@tychoish) |
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## Status |
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Proposed. |
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## Context |
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As part of the 0.35 development cycle, the Tendermint team completed |
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the first phase of the work described in ADRs 61 and 62, which included a |
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large scale refactoring of the reactors and the p2p message |
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routing. This replaced the switch and many of the other legacy |
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components without breaking protocol or network-level |
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interoperability and left the legacy connection/socket handling code. |
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Following the release, the team has reexamined the state of the code |
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and the design, as well as Tendermint's requirements. The notes |
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from that process are available in the [P2P Roadmap |
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RFC][rfc]. |
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This ADR supersedes the decisions made in ADRs 60 and 61, but |
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builds on the completed portions of this work. Previously, the |
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boundaries of peer management, message handling, and the higher level |
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business logic (e.g., "the reactors") were intermingled, and core |
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elements of the p2p system were responsible for the orchestration of |
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higher-level business logic. Refactoring the legacy components |
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made it more obvious that this entanglement of responsibilities |
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had outsized influence on the entire implementation, making |
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it difficult to iterate within the current abstractions. |
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It would not be viable to maintain interoperability with legacy |
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systems while also achieving many of our broader objectives. |
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LibP2P is a thoroughly-specified implementation of a peer-to-peer |
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networking stack, designed specifically for systems such as |
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ours. Adopting LibP2P as the basis of Tendermint will allow the |
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Tendermint team to focus more of their time on other differentiating |
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aspects of the system, and make it possible for the ecosystem as a |
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whole to take advantage of tooling and efforts of the LibP2P |
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platform. |
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## Alternative Approaches |
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As discussed in the [P2P Roadmap RFC][rfc], the primary alternative would be to |
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continue development of Tendermint's home-grown peer-to-peer |
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layer. While that would give the Tendermint team maximal control |
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over the peer system, the current design is unexceptional on its |
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own merits, and the prospective maintenance burden for this system |
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exceeds our tolerances for the medium term. |
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Tendermint can and should differentiate itself not on the basis of |
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its networking implementation or peer management tools, but providing |
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a consistent operator experience, a battle-tested consensus algorithm, |
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and an ergonomic user experience. |
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## Decision |
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Tendermint will adopt libp2p during the 0.37 development cycle, |
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replacing the bespoke Tendermint P2P stack. This will remove the |
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`Endpoint`, `Transport`, `Connection`, and `PeerManager` abstractions |
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and leave the reactors, `p2p.Router` and `p2p.Channel` |
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abstractions. |
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LibP2P may obviate the need for a dedicated peer exchange (PEX) |
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reactor, which would also in turn obviate the need for a dedicated |
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seed mode. If this is the case, then all of this functionality would |
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be removed. |
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If it turns out (based on the advice of Protocol Labs) that it makes |
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sense to maintain separate pubsub or gossipsub topics |
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per-message-type, then the `Router` abstraction could also |
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be entirely subsumed. |
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## Detailed Design |
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### Implementation Changes |
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The seams in the P2P implementation between the higher level |
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constructs (reactors), the routing layer (`Router`) and the lower |
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level connection and peer management code make this operation |
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relatively straightforward to implement. A key |
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goal in this design is to minimize the impact on the reactors |
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(potentially entirely,) and completely remove the lower level |
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components (e.g., `Transport`, `Connection` and `PeerManager`) using the |
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separation afforded by the `Router` layer. The current state of the |
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code makes these changes relatively surgical, and limited to a small |
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number of methods: |
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- `p2p.Router.OpenChannel` will still return a `Channel` structure |
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which will continue to serve as a pipe between the reactors and the |
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`Router`. The implementation will no longer need the queue |
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implementation, and will instead start goroutines that |
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are responsible for routing the messages from the channel to libp2p |
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fundamentals, replacing the current `p2p.Router.routeChannel`. |
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- The current `p2p.Router.dialPeers` and `p2p.Router.acceptPeers`, |
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are responsible for establishing outbound and inbound connections, |
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respectively. These methods will be removed, along with |
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`p2p.Router.openConnection`, and the libp2p connection manager will |
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be responsible for maintaining network connectivity. |
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- The `p2p.Channel` interface will change to replace Go |
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channels with a more functional interface for sending messages. |
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New methods on this object will take contexts to support safe |
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cancellation, and return errors, and will block rather than |
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running asynchronously. The `Out` channel through which |
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reactors send messages to Peers, will be replaced by a `Send` |
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method, and the Error channel will be replaced by an `Error` |
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method. |
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- Reactors will be passed an interface that will allow them to |
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access Peer information from libp2p. This will supplant the |
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`p2p.PeerUpdates` subscription. |
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- Add some kind of heartbeat message at the application level |
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(e.g. with a reactor,) potentially connected to libp2p's DHT to be |
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used by reactors for service discovery, message targeting, or other |
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features. |
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- Replace the existing/legacy handshake protocol with [Noise](http://www.noiseprotocol.org/noise.html). |
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This project will initially use the TCP-based transport protocols within |
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libp2p. QUIC is also available as an option that we may implement later. |
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We will not support mixed networks in the initial release, but will |
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revisit that possibility later if there is a demonstrated need. |
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### Upgrade and Compatibility |
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Because the routers and all current P2P libraries are `internal` |
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packages and not part of the public API, the only changes to the public |
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API surface area of Tendermint will be different configuration |
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file options, replacing the current P2P options with options relevant |
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to libp2p. |
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However, it will not be possible to run a network with both networking |
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stacks active at once, so the upgrade to the version of Tendermint |
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will need to be coordinated between all nodes of the network. This is |
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consistent with the expectations around upgrades for Tendermint moving |
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forward, and will help manage both the complexity of the project and |
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the implementation timeline. |
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## Open Questions |
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- What is the role of Protocol Labs in the implementation of libp2p in |
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tendermint, both during the initial implementation and on an ongoing |
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basis thereafter? |
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- Should all P2P traffic for a given node be pushed to a single topic, |
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so that a topic maps to a specific ChainID, or should |
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each reactor (or type of message) have its own topic? How many |
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topics can a libp2p network support? Is there testing that validates |
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the capabilities? |
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- Tendermint presently provides a very coarse QoS-like functionality |
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using priorities based on message-type. |
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This intuitively/theoretically ensures that evidence and consensus |
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messages don't get starved by blocksync/statesync messages. It's |
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unclear if we can or should attempt to replicate this with libp2p. |
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- What kind of QoS functionality does libp2p provide and what kind of |
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metrics does libp2p provide about it's QoS functionality? |
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- Is it possible to store additional (and potentially arbitrary) |
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information into the DHT as part of the heartbeats between nodes, |
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such as the latest height, and then access that in the |
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reactors. How frequently can the DHT be updated? |
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- Does it make sense to have reactors continue to consume inbound |
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messages from a Channel (`In`) or is there another interface or |
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pattern that we should consider? |
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- We should avoid exposing Go channels when possible, and likely |
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some kind of alternate iterator likely makes sense for processing |
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messages within the reactors. |
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- What are the security and protocol implications of tracking |
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information from peer heartbeats and exposing that to reactors? |
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- How much (or how little) configuration can Tendermint provide for |
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libp2p, particularly on the first release? |
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- In general, we should not support byo-functionality for libp2p |
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components within Tendermint, and reduce the configuration surface |
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area, as much as possible. |
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- What are the best ways to provide request/response semantics for |
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reactors on top of libp2p? Will it be possible to add |
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request/response semantics in a future release or is there |
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anticipatory work that needs to be done as part of the initial |
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release? |
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## Consequences |
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### Positive |
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- Reduce the maintenance burden for the Tendermint Core team by |
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removing a large swath of legacy code that has proven to be |
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difficult to modify safely. |
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- Remove the responsibility for maintaining and developing the entire |
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peer management system (p2p) and stack. |
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- Provide users with a more stable peer and networking system, |
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Tendermint can improve operator experience and network stability. |
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### Negative |
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- By deferring to library implementations for peer management and |
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networking, Tendermint loses some flexibility for innovating at the |
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peer and networking level. However, Tendermint should be innovating |
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primarily at the consensus layer, and libp2p does not preclude |
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optimization or development in the peer layer. |
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- Libp2p is a large dependency and Tendermint would become dependent |
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upon Protocol Labs' release cycle and prioritization for bug |
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fixes. If this proves onerous, it's possible to maintain a vendor |
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fork of relevant components as needed. |
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### Neutral |
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- N/A |
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## References |
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- [ADR 61: P2P Refactor Scope][adr61] |
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- [ADR 62: P2P Architecture][adr62] |
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- [P2P Roadmap RFC][rfc] |
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[adr61]: ./adr-061-p2p-refactor-scope.md |
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[adr62]: ./adr-062-p2p-architecture.md |
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[rfc]: ../rfc/rfc-000-p2p.rst |