OxiCode
A modern binary serialization library for Rust - the successor to bincode.
Requires Rust 1.81.0 or later.
MSRV note: 1.81.0 is the MSRV for the core library surface (default features, plus
alloc/std/derive/serde/checksum/simd/async-tokioindividually). The optionalcompression-lz4andcompression-zstdfeatures transitively depend onoxiarc-core, which requires Cargo'sedition2024support and therefore needs Rust 1.85 or later to build; the same applies to some heavier dev-dependencies used only for benches/tests (not the published library). See the CI workflow'smsrvjob for the exact feature combinations verified at 1.81.0.
About
OxiCode is a compact encoder/decoder pair that uses a binary zero-fluff encoding scheme. The size of the encoded object will be the same or smaller than the size that the object takes up in memory in a running Rust program.
This project serves as the spiritual successor to bincode, maintaining binary compatibility for its verified core types (see Known compatibility caveats) while introducing modern improvements and advanced features that make it 150% better.
Features
Core Features (Bincode Compatible — see caveats)
- Compact encoding: Efficient binary serialization with compact varint encoding
- Fast: Optimized for performance with zero-copy operations where possible
- Flexible: Support for various encoding configurations
- Safe: Strict no-unwrap policy, comprehensive error handling
- Modern: Built with latest Rust practices and 2021 edition features
- no_std support: Works in embedded and resource-constrained environments (with
allocfeature) - Bincode compatibility: Wire-format compatible with bincode 1.x default via
config::legacy()(equivalent to bincode 2.0'sconfig::legacy()preset) - BorrowDecode: Zero-copy decoding via the
BorrowDecodetrait — decode into borrowed slices without allocation; genericBorrowDecode<'de> for &'de [T]supported foru16,u32,u64,i16,i32,i64,f32,f64viaBorrowableSliceElement - encoded_size API: Pre-calculate exact encoded byte length without allocating via
encoded_size/encoded_size_with_config - Fixed-array encoding:
encode_to_fixed_array::<N, _>(&value)— encode directly into a stack-allocated[u8; N] - Sequence API:
encode_seq_to_vec/decode_iter_from_slicefor streaming multi-item buffers - Checksum API:
encode_with_checksum/decode_with_checksum— CRC32 integrity protection (optional feature) - Hex display:
encode_to_display/EncodedBytes— display encoded bytes as hex without allocating aString
150% Enhancement Features (Beyond Bincode)
- ⚡ SIMD Array Codec: Opt-in, hardware-accelerated bulk array encode/decode (
oxicode::simd) — real AVX2/SSE2/NEON kernels, its own framing, not used byencode_to_vec/derive (see SIMD-Accelerated Arrays) - 🗜️ Compression: LZ4 (fast) and Zstd (better ratio) support
- 📦 Schema Evolution: Version tracking and automatic migration
- 🌊 Streaming: Chunked encoding/decoding for large datasets
- ⏱️ Async Streaming: Non-blocking async I/O with tokio
- ✅ Validation: Constraint-based validation middleware
See Feature Comparison below for detailed breakdown.
Why OxiCode?
While bincode has served the Rust community well, OxiCode brings:
- Binary Compatibility: Drop-in replacement with an identical binary format for verified core types (see Known compatibility caveats)
- Modern Rust practices: Built from the ground up with Rust 2021 edition
- Safety first: Strict no-unwrap policy throughout the codebase
- Better error handling: More informative error messages and comprehensive error types
- Advanced features: an opt-in SIMD array codec, compression, streaming, async, validation - features bincode lacks
- Active maintenance: Dedicated to long-term support and evolution
Installation
Add this to your Cargo.toml:
[]
= "0.2"
# With serde support (for serde::Serialize/Deserialize types)
= { = "0.2", = ["serde"] }
# Optional features
= { = "0.2", = ["simd", "compression", "async-tokio"] }
Feature Flags
This block matches Cargo.toml exactly:
= ["std", "derive", "validation", "versioning"]
= ["alloc", "serde?/std"] # Standard library support
= ["serde?/alloc"] # Heap allocations (for no_std + alloc)
= ["oxicode_derive"] # Derive macros for Encode/Decode/BorrowDecode
= ["dep:serde", "alloc"] # Serde integration (optional)
= [] # Opt-in vectorized array codec (oxicode::simd) — see below
= ["alloc", "oxiarc-lz4"] # LZ4 compression (pure Rust, fast)
= ["alloc", "oxiarc-zstd"] # Zstd compression (pure Rust via oxiarc-zstd)
= ["compression-lz4"] # Convenience alias enabling LZ4 by default
= ["std", "tokio"] # Async streaming with Tokio
= ["dep:crc32fast"] # CRC32 integrity checking for encoded data
= [] # Gates the oxicode::validation post-decode constraint module (on by default)
= [] # Gates the oxicode::versioning schema-version-header module (on by default)
Note on validation/versioning: these flags gate the real oxicode::validation
(post-decode constraint checking) and oxicode::versioning (schema-version-header) public
modules — both are on by default. Building with --no-default-features and not re-enabling
them removes access to oxicode::validation/oxicode::versioning.
Quick Start
use ;
Derive Macros
OxiCode provides first-class derive macro support for Encode, Decode, and BorrowDecode.
use ;
// A struct with a borrowed field can only derive `BorrowDecode`, not `Decode` —
// there is no way for an owned `Decode::decode` call to hand back data borrowed
// from the input buffer with an arbitrary caller-chosen lifetime `'a`.
Field Attributes
| Attribute | Description |
|---|---|
#[oxicode(skip)] |
Skip this field during encode/decode (uses Default::default() on decode) |
#[oxicode(default)] |
Use Default::default() if field is missing during decode |
#[oxicode(flatten)] |
Inline the fields of a nested struct |
#[oxicode(bytes)] |
Encode Vec<u8> or &[u8] as raw bytes without a length prefix |
#[oxicode(with = "module")] |
Use custom encode/decode functions from module |
#[oxicode(encode_with = "fn")] |
Use a custom encode function |
#[oxicode(decode_with = "fn")] |
Use a custom decode function |
#[oxicode(rename = "name")] |
Accepted for serde-migration source compatibility; no-op on the wire — oxicode's binary format is positional (fields carry no names), so this never changes the encoded bytes |
#[oxicode(seq_len = "u8"|"u16"|"u32"|"u64")] |
Use a fixed-width length prefix for a Vec<T> field instead of the default u64 length. Wire-incompatible with bincode |
Container Attributes
| Attribute | Description |
|---|---|
#[oxicode(bound = "T: Trait")] |
Override the trait bounds on the generated impl |
#[oxicode(rename_all = "camelCase")] |
Accepted without error for serde-migration compatibility; no-op on the wire (fields are positional, so no naming convention affects the encoded bytes) |
#[oxicode(crate = "path")] |
Specify a custom path to the oxicode crate |
#[oxicode(transparent)] |
Treat a single-field struct as its inner type (no wrapper) |
#[oxicode(tag_type = "u8"|"u16"|"u32"|"u64")] |
Set the integer type used for enum discriminants (default u32, bincode-compatible). Non-default widths are wire-incompatible with bincode |
Variant Attributes
| Attribute | Description |
|---|---|
#[oxicode(variant = 5)] |
Assign a custom discriminant value to this variant. Native Rust explicit discriminants (enum E { A = 5 }) are ignored by the derive — use this attribute instead |
#[oxicode(rename = "name")] |
Accepted for serde-migration source compatibility; no-op on the wire (variants are positional in the binary format) |
#[oxicode(skip)] (variant-level) |
Exclude the variant from the discriminant space; on encode it aliases the next non-skipped variant's discriminant. A skipped variant with no following non-skipped variant is a compile error |
Supported Types (120+)
OxiCode provides built-in Encode/Decode implementations for 120+ types:
Primitives & Core
bool, u8–u128, i8–i128, f32, f64, usize, isize, char, str, String
Option & Result
Option<T>, Result<T, E>
Collections
Vec<T>, HashMap<K,V>, HashSet<T>, BTreeMap<K,V>, BTreeSet<T>, BinaryHeap<T>, LinkedList<T>, VecDeque<T>
Smart Pointers & Slices
Box<T>, Arc<T>, Rc<T>, Box<[T]>, Arc<[T]>, Arc<str>, Cow<'_, T>
Network & Time
IpAddr, Ipv4Addr, Ipv6Addr, SocketAddr, SocketAddrV4, SocketAddrV6, Duration, SystemTime
Core Types
Range<T>, RangeInclusive<T>, Bound<T>, Cell<T>, RefCell<T>, Wrapping<T>
Atomic Types
AtomicBool, AtomicI8–AtomicI64, AtomicU8–AtomicU64, AtomicIsize, AtomicUsize
OS & Path
OsStr, OsString, Path, PathBuf
Miscellaneous
Ordering, Infallible, ControlFlow<B,C>, NonZeroU8–NonZeroU128, NonZeroI8–NonZeroI128, ManuallyDrop<T>, PhantomData<T>, tuples (up to 12 elements), arrays [T; N]
API Highlights
use ;
// Basic encode/decode
let bytes: = encode_to_vec?;
let : = decode_from_slice?;
// File I/O
encode_to_file?;
let decoded: T = decode_from_file?;
// Pre-calculate size without allocating
let size: usize = encoded_size?;
// Encode into a fixed-size stack array
let : = encode_to_fixed_array?; // N inferred from the `[u8; 32]` annotation
// Sequence encoding — encode multiple items into one buffer
let bytes = encode_seq_to_vec?;
let items: = ?.?;
// Hex display without allocating a String
use EncodedBytes;
println!; // prints hex (space-separated bytes)
println!; // prints a compact hex run
Using with Serde
OxiCode provides optional serde integration for types that implement serde::Serialize and serde::Deserialize:
use ;
Enable serde feature in Cargo.toml:
[]
= { = "0.2", = ["serde"] }
= { = "1.0", = ["derive"] }
Configuration
OxiCode supports various encoding configurations:
use config;
// Standard configuration (default): little-endian + varint
let cfg = standard;
// Legacy bincode 1.0-compatible: little-endian + fixed-int
let cfg = legacy;
// Custom configuration
let cfg = standard
.with_big_endian
.with_fixed_int_encoding
.; // 1MB limit
// Use with encoding/decoding
let bytes = encode_to_vec_with_config?;
let = decode_from_slice_with_config?;
Advanced Features
Checksum (CRC32 Integrity)
Protect data against corruption with built-in CRC32 checksums:
use ;
let data = MyStruct ;
// Encode with CRC32 checksum appended
let bytes = encode_with_checksum?;
// Decode and verify checksum automatically — returns Err if checksum does not match
let : = decode_with_checksum?;
Enable with features = ["checksum"].
SIMD-Accelerated Arrays
oxicode::simd is a small, explicit opt-in codec for contiguous arrays of
f32/f64/i32/i64/u8. It is not wired into encode_to_vec, the
derive macro, or the Encode/Decode traits — a Vec<f64> field in a
derived struct is encoded by the ordinary varint path whether or not the
simd feature is enabled. To use the vectorized path, call the module's
functions directly; the result has its own framing (an 8-byte little-endian
element count followed by little-endian element bytes) and is a different
byte layout from encode_to_vec's output for the same data — the two are
not interchangeable.
use ;
let readings: = vec!;
let encoded = encode_simd_array?; // oxicode::simd's own framing
let decoded: = decode_simd_array?;
assert_eq!;
On little-endian targets this dispatches, at runtime, to a real vectorized
bulk-copy kernel (AVX2 or the SSE2 baseline on x86_64, NEON on aarch64) via
oxicode::simd::detect_capability(); on big-endian targets it falls back to
a scalar per-element byte swap. Because the operation is a memory copy, it
is bandwidth-bound: measured on one x86_64/AVX2 machine in a release build,
the vectorized path was ~1.26x faster than a naive per-element loop for
Vec<f64> encoding and ~1.44x for the allocation-free into-buffer path —
useful, but nowhere near a fixed multiplier, and results vary by CPU and
array size. Enable with features = ["simd"]; see examples/simd_arrays.rs,
which measures the ratio on your own machine instead of printing a canned
number.
Compression
Reduce size with LZ4 or Zstd compression. This is a standalone byte-level
API — it is not wired into encode_to_vec/decode_from_slice or any
Config; you call it explicitly as a second pass over already-encoded
bytes:
use ;
let encoded = encode_to_vec?;
// LZ4 - fast compression
let compressed = compress?;
// Zstd - better compression ratio (also: Compression::ZstdLevel(n) for 1-22)
let compressed = compress?;
// decompress() caps the regenerated size at 256 MiB by default (bomb
// protection); use decompress_with_limit(data, max_output) to override it.
let decompressed = decompress?;
let : = decode_from_slice?;
Enable with features = ["compression-lz4"] and/or features = ["compression-zstd"] (features = ["compression"] is a convenience alias
for compression-lz4). See examples/compression.rs for detailed usage,
including compress_with_stats for ratio/savings reporting.
Streaming Serialization
Process large datasets incrementally. Streaming output uses oxicode's own
chunked container framing (a small header per chunk) — it is not the
same byte layout as encode_to_vec/decode_from_slice and is not
decodable by them (or by bincode); always read a streamed payload back with
a matching StreamingDecoder/BufferStreamingDecoder.
use ;
// Encode items one at a time (constructors are infallible; no `?` needed)
let mut encoder = new;
for item in large_dataset
encoder.finish?;
// Decode items incrementally
let mut decoder = new;
while let Some = decoder.?
Use StreamingEncoder::with_config(writer, streaming_config) to customize
chunk/buffer sizing, or new_with_config/new_with_configs to also select a
non-default codec Config (it must match on both ends). See
examples/streaming.rs for detailed usage, including the in-memory
BufferStreamingEncoder/BufferStreamingDecoder variants.
Async Streaming
Non-blocking async I/O with tokio, mirroring the sync streaming API and
sharing the same chunked framing (also not encode_to_vec-compatible):
use AsyncStreamingEncoder;
// Async encoding (constructor is infallible; no `?` needed)
let mut encoder = new;
for item in dataset
let writer = encoder.finish.await?;
AsyncStreamingDecoder::new(reader) is the matching decoder; read_item
returns Ok(None) only on a clean end-of-stream, so truncated input is
reported as an error rather than silently stopping. Cooperative cancellation
is available via CancellationToken + CancellableAsyncEncoder/
CancellableAsyncDecoder. Enable with features = ["async-tokio"]; see
examples/async_streaming.rs for a full round-trip and cancellation demo.
Validation Middleware
Validate data during decoding. Validator<T> applies one or more
constraints to values of a single type T — construct one Validator per
field type you want to check, rather than mixing field names of different
types on a single validator:
use ;
// A validator over `String`, used to check the `name` field
let mut name_validator: = new;
name_validator.add_constraint;
// A separate validator over `u8`, used to check the `age` field
let mut age_validator: = new;
age_validator.add_constraint;
// Each returns Result<(), Vec<ValidationError>> — collects every failing
// constraint rather than stopping at the first (unless `fail_fast` is set
// via `ValidationConfig`).
name_validator.validate?;
age_validator.validate?;
See examples/validation.rs for detailed usage, including
StringValidator/NumericValidator/CollectionValidator convenience
wrappers and ValidationConfig (fail-fast mode, max recursion depth).
Schema Evolution
Version your data formats and check compatibility on decode:
use ;
let version = new;
let payload = encode_to_vec?;
// Stamp a version header onto already-encoded bytes
let encoder = new;
let versioned_bytes = encoder.encode?;
// Decode and (optionally) enforce a minimum compatible version
let decoder = new.expect_version;
let = decoder.decode?;
let : = decode_from_slice?;
encode_versioned/decode_versioned/decode_versioned_with_check (and the
top-level encode_versioned_value/decode_versioned_value convenience
functions) are the underlying free-function API that VersionedEncoder/
VersionedDecoder wrap. See examples/versioning.rs for detailed usage.
Migration from bincode
For matching configurations, oxicode and bincode 2.x produce byte-for-byte
identical output for the types verified by the oxicode_compatibility test
suite (primitives, strings, collections, tuples, options, derived structs
and enums, and the varint/zigzag boundary cases) — see
Known compatibility caveats below for the
specific standard-library types that currently diverge. Migration is
otherwise straightforward:
// Before (bincode 2.0)
use ;
let bytes = encode_to_vec?;
let = decode_from_slice?;
// After (oxicode) — same shape; the 2-arg config form is *_with_config
use ;
let bytes = encode_to_vec_with_config?;
let = decode_from_slice_with_config?;
Binary data is compatible when both sides use matching configs and avoid the caveat types below — you can mix libraries:
- Data encoded with bincode can be decoded with oxicode ✓ (see caveats)
- Data encoded with oxicode can be decoded with bincode ✓ (see caveats)
For detailed migration guide, see MIGRATION.md.
Comparison with bincode
OxiCode is the spiritual successor to bincode. In legacy mode (config::legacy()), oxicode produces byte-for-byte identical output to the bincode 1.x default wire format (little-endian, fixed-int) — the same format targeted by bincode 2.0's config::legacy() preset — for the types verified in the compatibility test suite, making it a true drop-in replacement for those types. config::standard() is likewise verified byte-identical to bincode 2.x's config::standard() for the same set of types.
Wire Format Compatibility
| Mode | Endianness | Int Encoding | Compatible with bincode? |
|---|---|---|---|
config::legacy() |
Little-endian | Fixed-width | Yes — byte-identical for verified types (see caveats) |
config::standard() |
Little-endian | Varint | Yes — byte-identical for verified types (see caveats); more compact than legacy() |
Known compatibility caveats
A handful of standard-library types are known to encode differently from
bincode 2.0.1 (the pinned reference implementation). Each divergence below was
confirmed byte-for-byte against bincode's registry sources in the 2026-07
compatibility audit. They are deliberately left as-is for now: closing them
would change the wire bytes oxicode already produces for existing (valid)
data, which is a breaking change reserved for a future wire-format-breaking
release (0.3.0) with its own migration notes. Until then, treat this table as
the authoritative list of known bincode wire-format divergences. An executable
specification of each divergence exists as #[ignore]d cross-library tests
plus self-roundtrip golden vectors in the oxicode_compatibility crate and
tests/hardening_m1_*; the non-ignored parts of the oxicode_compatibility
suite are the executable definition of what is verified compatible today.
(A versioned SPEC.md covering every primitive's byte layout for both
configs remains a deferred follow-up.)
| Type | Known divergence from bincode 2.0.1 |
|---|---|
SystemTime |
oxicode encodes signed (zigzag) i64 seconds + u32 nanos relative to UNIX_EPOCH (pre-epoch values allowed); bincode encodes it as a Duration since UNIX_EPOCH (u64 seconds + u32 nanos) and errors on pre-epoch times. Diverges in every config |
SocketAddrV6 |
oxicode always encodes ip + port + flowinfo(u32) + scope_id(u32); bincode encodes only ip + port. Diverges in every config |
IpAddr, SocketAddr |
oxicode tags the enum variant with a u8; bincode uses a u32 tag. Byte-level divergence manifests in fixed-int configs (legacy()); varint standard() happens to coincide for these small tag values |
Bound<T> |
oxicode tags Unbounded/Included/Excluded with a u8; bincode uses a u32 tag — same fixed-int-config divergence as above |
Path / PathBuf |
oxicode encodes raw platform bytes on Unix and UTF-16 code units on Windows; bincode encodes a UTF-8 string (erroring on non-UTF-8 paths). Incompatible with bincode on both platforms, and the two oxicode platforms are not cross-compatible with each other |
Ordering |
oxicode's native codec encodes a signed i8 (-1/0/1); bincode's derive-style enum uses a u32 tag (0/1/2) — which is also what oxicode's own serde path emits, so the native and serde paths disagree with each other |
Duration |
decode-leniency difference (not byte layout): oxicode's decoder rejects subsec_nanos >= 1_000_000_000; bincode normalizes such values |
One further API-level (not wire-level) parity gap is tracked under the
same deferral: bincode 2's context API surface (*_with_context entry
points, derive support for a non-() Context, and serde-module
borrow/writer/reader entry points) is not yet mirrored.
If your data crosses the bincode/oxicode boundary and contains any of the
types above, pin both sides to the same library (or add your own
byte-level regression test) until these are formally reconciled in 0.3.0.
The full item-by-item deferral record lives in TODO.md (tagged
⏸ DEFERRED 2026-07-17).
Feature Delta
| Capability | bincode | oxicode |
|---|---|---|
| Supported types | ~60 | 120+ |
BorrowDecode / zero-copy |
No | Yes |
| Derive field attributes | Limited | 9 attributes |
| Container/variant attributes | No | Yes |
| Checksums (CRC32) | No | Yes (checksum feature) |
| Compression | No | Yes (LZ4, Zstd, pure-Rust Zstd) |
| Async streaming | No | Yes (async-tokio feature) |
| Validation middleware | No | Yes |
| Schema versioning | No | Yes |
encoded_size |
No | Yes |
encode_to_fixed_array |
No | Yes |
encode_seq_to_vec / decode_iter_from_slice |
No | Yes |
no_std |
Yes | Yes |
| Opt-in SIMD array codec (separate framing, not used by derive) | No | Yes (simd feature) |
Feature Comparison
| Feature | bincode | rkyv | postcard | borsh | oxicode |
|---|---|---|---|---|---|
| Binary Compatibility | ✓ | ✗ | ✗ | ✗ | ✓* |
| Zero-copy | ✗ | ✓ | ✗ | ✗ | ✓ |
| no_std | ✓ | ✓ | ✓ | ✓ | ✓ |
| Opt-in SIMD array codec | ✗ | ✗ | ✗ | ✗ | ✓ |
| Compression | ✗ | ✗ | ✗ | ✗ | ✓ |
| Async Streaming | ✗ | ✗ | ✗ | ✗ | ✓ |
| Validation | ✗ | ✗ | ✗ | ✗ | ✓ |
| Schema Evolution | ✗ | ✗ | ✗ | ✗ | ✓ |
| Varint Encoding | ✓ | ✗ | ✓ | ✗ | ✓ |
* For the verified type set; known divergences are listed in Known compatibility caveats.
Project Status
Version 0.2.5 - Production Ready
All core features and enhancements complete. See CHANGELOG.md for details.
Statistics (as of the 0.2.5 release; see CHANGELOG.md for details):
- Lines of Code: 523,697 (Rust source lines across 1,043 files)
- Files: 1,043 Rust files
- Test Coverage: 20,126 tests passing under
--all-features(100% pass rate, 0 failed, 9 skipped); 15,539 under default featuresoxicode_compatibilitycrate: 29 dedicated cross-library tests verifying byte-for-byte identical output against bincode 2.0.1 for the covered type set- 20,097+ feature, integration, property-based, and stress tests
- Type Coverage: 120+ types with full Encode/Decode support
- Binary Compatibility: verified through cross-library testing for the covered type set — known divergences are documented in Known compatibility caveats
- Code Quality: ✓ Zero unwrap(), ✓ Zero warnings, ✓ All files < 2000 lines
Project Structure
This is a workspace with the following crates:
oxicode: Main library crateoxicode_derive: Procedural macros for deriving Encode/Decodeoxicode_compatibility: Compatibility tests and bincode interop
Development Principles
OxiCode follows strict development principles:
- No warnings policy: All code must compile without warnings
- No unwrap policy: All error cases must be properly handled
- Latest crates policy: Use latest versions of dependencies
- Workspace policy: Proper workspace structure with shared dependencies
- Refactoring policy: Keep individual files under 2000 lines
Performance
OxiCode is designed for performance:
- Opt-in SIMD array codec:
oxicode::simd(with thesimdfeature) uses real vectorized bulk-copy kernels; measured ~1.2-1.4x over a naive scalar loop in one release-build benchmark — see SIMD-Accelerated Arrays for the honest scope of this claim. It is not used byencode_to_vecor derive. - Zero-copy deserialization: Where possible
- Efficient varint encoding: For integers
- Minimal allocations: During encoding/decoding
- Benchmark suite: Included in
benches/
Run benchmarks:
Testing
# Run all tests
# Run specific feature tests
# Run with no-std
Examples
The examples/ directory contains comprehensive examples (all 11 files):
basic_usage.rs- Simple encoding/decodingbinary_format.rs- Inspecting the binary wire format via hex dumps (EncodedBytes)configuration.rs- Configuration optionsderive_attrs.rs- Derive field/container/variant attributeszero_copy.rs- Zero-copy deserializationsimd_arrays.rs- Opt-in SIMD array codec (measures its own speedup on your machine)compression.rs- LZ4 and Zstd compressionstreaming.rs- Chunked streamingasync_streaming.rs- Async tokio streaming, including cancellationvalidation.rs- Validation middlewareversioning.rs- Schema evolution
Run examples:
Fuzzing
OxiCode ships with cargo-fuzz targets in the fuzz/ directory.
# Install cargo-fuzz
# Run the decode-slice fuzzer
# Run roundtrip fuzzer
Targets:
fuzz_decode_slice— decode arbitrary bytes as multiple types (no panics)fuzz_roundtrip— encode + decode must be identity on structured datafuzz_streaming— streaming decoder on arbitrary bytesfuzz_versioned— versioned decode on arbitrary bytes
Contributing
Contributions are welcome! Please feel free to submit a Pull Request.
Sponsorship
OxiCode is developed and maintained by COOLJAPAN OU (Team Kitasan).
If you find OxiCode useful, please consider sponsoring the project to support continued development of the Pure Rust ecosystem.
https://github.com/sponsors/cool-japan
Your sponsorship helps us:
- Maintain and improve the COOLJAPAN ecosystem
- Keep the entire ecosystem (OxiBLAS, OxiFFT, SciRS2, etc.) 100% Pure Rust
- Provide long-term support and security updates
License
Licensed under the Apache License, Version 2.0. See LICENSE for details.
Acknowledgments
This project builds upon the excellent work done by the bincode team and community. We're grateful for their contributions to the Rust ecosystem.