Mayukha Vadari 6015d56632 feat: Handle Smart Escrow's Bytecode, Data and Gas fields
Add the transaction handling for `EscrowCreate.Bytecode`/`Data` and
`EscrowFinish.Gas`, gated on `featureSmartEscrow`. The field and result-code
plumbing landed in #8157.

EscrowCreate:
* `Bytecode` joins `FinishAfter` and `Condition` as a way to say how an escrow
  completes, but always needs a `CancelAfter`: nothing else can free the funds
  if the contract never accepts.
* `Data` requires `Bytecode` and is capped at `kMaxWasmDataLength`.
* Bytecode is capped at the voted `BytecodeSizeLimit`, and refused outright
  when fee voting has zeroed `GasLimit` or `BytecodeSizeLimit`.
* The fee is ten base fees plus five drops per byte.
* The owner reserve is one increment per 500 bytes beyond the first 500, on
  top of the increment every escrow costs. EscrowCancel and EscrowFinish
  refund what was taken.

EscrowFinish:
* `Gas` is bounded by the voted `GasLimit` and costs `GasPrice` micro-drops
  each.
* `Gas` and the escrow's `Bytecode` must both be present or both absent
  (tefBYTECODE_NOT_INCLUDED / tefNO_BYTECODE).
* The destination and deposit-preauth checks move ahead of the condition
  check, so a contract never runs against a destination that cannot receive.

The WASM engine is not in this build, so nothing runs the bytecode: creating,
funding and cancelling a Smart Escrow works, and finishing one reports
tecFAILED_PROCESSING at the TODO where the contract would run. The gas and
return-code metadata, tecBYTECODE_REJECTED, and the `Data` a rejected contract
leaves behind all arrive with the engine. Reachable only under
`featureSmartEscrow`, which is `Supported::No`.
2026-09-10 18:05:33 -04:00
2026-09-10 14:55:08 -04:00

codecov

The XRP Ledger

The XRP Ledger is a decentralized cryptographic ledger powered by a network of peer-to-peer nodes. The XRP Ledger uses a novel Byzantine Fault Tolerant consensus algorithm to settle and record transactions in a secure distributed database without a central operator.

XRP

XRP is a public, counterparty-free crypto-asset native to the XRP Ledger, and is designed as a gas token for network services and to bridge different currencies. XRP is traded on the open-market and is available for anyone to access. The XRP Ledger was created in 2012 with a finite supply of 100 billion units of XRP.

xrpld

The server software that powers the XRP Ledger is called xrpld and is available in this repository under the permissive ISC open-source license. The xrpld server software is written primarily in C++ and runs on a variety of platforms. The xrpld server software can run in several modes depending on its configuration.

If you are interested in running an API Server (including a Full History Server), take a look at Clio. (xrpld Reporting Mode has been replaced by Clio.)

Build from Source

Key Features of the XRP Ledger

  • Censorship-Resistant Transaction Processing: No single party decides which transactions succeed or fail, and no one can "roll back" a transaction after it completes. As long as those who choose to participate in the network keep it healthy, they can settle transactions in seconds.
  • Fast, Efficient Consensus Algorithm: The XRP Ledger's consensus algorithm settles transactions in 4 to 5 seconds, processing at a throughput of up to 1500 transactions per second. These properties put XRP at least an order of magnitude ahead of other top digital assets.
  • Finite XRP Supply: When the XRP Ledger began, 100 billion XRP were created, and no more XRP will ever be created. The available supply of XRP decreases slowly over time as small amounts are destroyed to pay transaction fees.
  • Responsible Software Governance: A team of full-time developers at Ripple & other organizations maintain and continually improve the XRP Ledger's underlying software with contributions from the open-source community. Ripple acts as a steward for the technology and an advocate for its interests.
  • Secure, Adaptable Cryptography: The XRP Ledger relies on industry standard digital signature systems like ECDSA (the same scheme used by Bitcoin) but also supports modern, efficient algorithms like Ed25519. The extensible nature of the XRP Ledger's software makes it possible to add and disable algorithms as the state of the art in cryptography advances.
  • Modern Features: Features like Escrow, Checks, and Payment Channels support financial applications atop of the XRP Ledger. This toolbox of advanced features comes with safety features like a process for amending the network and separate checks against invariant constraints.
  • On-Ledger Decentralized Exchange: In addition to all the features that make XRP useful on its own, the XRP Ledger also has a fully-functional accounting system for tracking and trading obligations denominated in any way users want, and an exchange built into the protocol. The XRP Ledger can settle long, cross-currency payment paths and exchanges of multiple currencies in atomic transactions, bridging gaps of trust with XRP.

Source Code

Here are some good places to start learning the source code:

  • Read the markdown files in the source tree: src/xrpld/**/*.md.
  • Read the levelization document to get an idea of the internal dependency graph.
  • In the big picture, the main function constructs an ApplicationImp object, which implements the Application virtual interface. Almost every component in the application takes an Application& parameter in its constructor, typically named app and stored as a member variable app_. This allows most components to depend on any other component.

Repository Contents

Folder Contents
./bin Scripts and data files for XRPL developers.
./Builds Platform-specific guides for building xrpld.
./docs Source documentation files and doxygen config.
./cfg Example configuration files.
./src Source code.
./crates Rust source code.

Some of the directories under src are external repositories included using git-subtree. See those directories' README files for more details.

Additional Documentation

See Also

Description
Decentralized cryptocurrency blockchain daemon implementing the XRP Ledger protocol in C++
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