Go to file
Ethan Buchman 791f95bac3
Merge pull request #215 from tendermint/bucky/fees-gas
comment some fields in ResponseCheck/DeliverTx. closes #214
2018-03-14 18:47:26 +01:00
client Quit method was added to Service/BaseService 2018-02-12 12:22:32 +04:00
cmd/abci-cli rename dummy*.go files to kvstore*.go 2018-02-19 20:40:33 +00:00
example bring back dummy for backwards compatibility ... 2018-03-03 20:40:43 -05:00
scripts fix a get_tools 2018-01-05 22:22:55 -05:00
server fix grpc version; add log_level and some logging 2017-11-30 17:20:36 -05:00
tests Fix string formatting error for go1.10 (#201) 2018-02-27 16:03:21 +04:00
types comment some fields in ResponseCheck/DeliverTx. closes #214 2018-03-13 13:40:41 +01:00
version changelog and version bump 2018-02-19 17:44:49 -05:00
.editorconfig add proto section to .editorconfig 2017-11-20 16:56:57 -06:00
.gitignore GasWanted and GasUsed for Check & Deliver 2017-12-26 05:29:33 -08:00
CHANGELOG.md update CHANGELOG, README, spec for v0.10. Fixes #205 2018-03-01 19:52:01 -05:00
Dockerfile.develop fix Dockerfile.develop 2018-02-27 17:54:25 +04:00
Gopkg.lock Move the tmlibs dependency to develop 2018-03-04 20:00:42 -08:00
Gopkg.toml Move the tmlibs dependency to develop 2018-03-04 20:00:42 -08:00
LICENSE TMSP -> ABCI 2017-01-12 16:04:32 -05:00
Makefile Switch dependency management to dep from glide (#202) 2018-02-27 17:24:09 +04:00
README.md Merge branch 'master' into develop 2018-03-01 23:55:14 -05:00
circle.yml Merge branch 'develop' into sdk2 2018-01-05 21:45:48 -05:00
specification.rst update spec formatting for docs 2018-03-05 10:46:51 +08:00
test.sh move comment 2017-11-27 16:28:34 -06:00

README.md

Application BlockChain Interface (ABCI)

CircleCI

Blockchains are systems for multi-master state machine replication. ABCI is an interface that defines the boundary between the replication engine (the blockchain), and the state machine (the application). By using a socket protocol, we enable a consensus engine running in one process to manage an application state running in another.

For background information on ABCI, motivations, and tendermint, please visit the documentation. The two guides to focus on are the Application Development Guide and Using ABCI-CLI.

Previously, the ABCI was referred to as TMSP.

The community has provided a number of addtional implementations, see the Tendermint Ecosystem

Specification

The primary specification is made using Protocol Buffers. To build it, run

make protoc

See protoc --help and the Protocol Buffers site for details on compiling for other languages. Note we also include a GRPC service definition.

For the specification as an interface in Go, see the types/application.go file.

See the spec file for a detailed description of the message types.

Install

go get github.com/tendermint/abci
cd $GOPATH/src/github.com/tendermint/abci
make get_vendor_deps
make install

Implementation

We provide three implementations of the ABCI in Go:

  • Golang in-process
  • ABCI-socket
  • GRPC

Note the GRPC version is maintained primarily to simplify onboarding and prototyping and is not receiving the same attention to security and performance as the others

In Process

The simplest implementation just uses function calls within Go. This means ABCI applications written in Golang can be compiled with TendermintCore and run as a single binary.

See the examples below for more information.

Socket (TSP)

ABCI is best implemented as a streaming protocol. The socket implementation provides for asynchronous, ordered message passing over unix or tcp. Messages are serialized using Protobuf3 and length-prefixed with a signed Varint

For example, if the Protobuf3 encoded ABCI message is 0xDEADBEEF (4 bytes), the length-prefixed message is 0x08DEADBEEF, since 0x08 is the signed varint encoding of 4. If the Protobuf3 encoded ABCI message is 65535 bytes long, the length-prefixed message would be like 0xFEFF07....

Note the benefit of using this varint encoding over the old version (where integers were encoded as <len of len><big endian len> is that it is the standard way to encode integers in Protobuf. It is also generally shorter.

GRPC

GRPC is an rpc framework native to Protocol Buffers with support in many languages. Implementing the ABCI using GRPC can allow for faster prototyping, but is expected to be much slower than the ordered, asynchronous socket protocol. The implementation has also not received as much testing or review.

Note the length-prefixing used in the socket implementation does not apply for GRPC.

Usage

The abci-cli tool wraps an ABCI client and can be used for probing/testing an ABCI server. For instance, abci-cli test will run a test sequence against a listening server running the Counter application (see below). It can also be used to run some example applications. See the documentation for more details.

Examples

Check out the variety of example applications in the example directory. It also contains the code refered to by the counter and kvstore apps; these apps come built into the abci-cli binary.

Counter

The abci-cli counter application illustrates nonce checking in transactions. It's code looks like:

func cmdCounter(cmd *cobra.Command, args []string) error {

	app := counter.NewCounterApplication(flagSerial)

	logger := log.NewTMLogger(log.NewSyncWriter(os.Stdout))

	// Start the listener
	srv, err := server.NewServer(flagAddrC, flagAbci, app)
	if err != nil {
		return err
	}
	srv.SetLogger(logger.With("module", "abci-server"))
	if err := srv.Start(); err != nil {
		return err
	}

	// Wait forever
	cmn.TrapSignal(func() {
		// Cleanup
		srv.Stop()
	})
	return nil
}

and can be found in this file.

kvstore

The abci-cli kvstore application, which illustrates a simple key-value Merkle tree

func cmdKVStore(cmd *cobra.Command, args []string) error {
	logger := log.NewTMLogger(log.NewSyncWriter(os.Stdout))

	// Create the application - in memory or persisted to disk
	var app types.Application
	if flagPersist == "" {
		app = kvstore.NewKVStoreApplication()
	} else {
		app = kvstore.NewPersistentKVStoreApplication(flagPersist)
		app.(*kvstore.PersistentKVStoreApplication).SetLogger(logger.With("module", "kvstore"))
	}

	// Start the listener
	srv, err := server.NewServer(flagAddrD, flagAbci, app)
	if err != nil {
		return err
	}
	srv.SetLogger(logger.With("module", "abci-server"))
	if err := srv.Start(); err != nil {
		return err
	}

	// Wait forever
	cmn.TrapSignal(func() {
		// Cleanup
		srv.Stop()
	})
	return nil
}