Go implementation of two dimensional Reed-Solomon Merkle tree data availability scheme.
package main
import (
    "bytes"
    "github.com/celestiaorg/rsmt2d"
)
func main() {
    // shareSize is the size of each share (in bytes).
    shareSize := 512
    // Init new codec
    codec := rsmt2d.NewLeoRSCodec()
    ones := bytes.Repeat([]byte{1}, shareSize)
    twos := bytes.Repeat([]byte{2}, shareSize)
    threes := bytes.Repeat([]byte{3}, shareSize)
    fours := bytes.Repeat([]byte{4}, shareSize)
    // Compute parity shares
    eds, err := rsmt2d.ComputeExtendedDataSquare(
        [][]byte{
            ones, twos,
            threes, fours,
        },
        codec,
        rsmt2d.NewDefaultTree,
    )
    if err != nil {
        // ComputeExtendedDataSquare failed
    }
    rowRoots, err := eds.RowRoots()
    if err != nil {
    // RowRoots failed
    }
    colRoots, err := eds.ColRoots()
    if err != nil {
    // ColRoots failed
    }
    flattened := eds.Flattened()
    // Delete some shares, just enough so that repairing is possible.
    flattened[0], flattened[2], flattened[3] = nil, nil, nil
    flattened[4], flattened[5], flattened[6], flattened[7] = nil, nil, nil, nil
    flattened[8], flattened[9], flattened[10] = nil, nil, nil
    flattened[12], flattened[13] = nil, nil
    // Re-import the data square.
    eds, err = rsmt2d.ImportExtendedDataSquare(flattened, codec, rsmt2d.NewDefaultTree)
    if err != nil {
        // ImportExtendedDataSquare failed
    }
    // Repair square.
    err = eds.Repair(
        rowRoots,
        colRoots,
    )
    if err != nil {
        // err contains information to construct a fraud proof
        // See extendeddatacrossword_test.go
    }
}# Build the project
make build
# Run unit tests
make test
# Run benchmarks
make bench
# Run linter
make lintInformal Systems audited rsmt2d v0.9.0 in Q2 of 2023. See informal-systems.pdf.