Files
wickra/bindings/go
kingchenc 2ae76bb90e feat(data): native Binance REST kline fetcher in 9 languages (#315)
Adds `BinanceRest::fetch_klines` to `wickra-data`: a blocking historical kline
downloader (`GET /api/v3/klines`) and the historical counterpart to the F4 live
`BinanceFeed`. It is the last native data-layer primitive needed to drop
third-party HTTP/JSON download helpers (`jackson`, `jsonlite`, `urllib`, …) from
the examples.

## What

- **Core** (`wickra-data`): `fetch_klines(symbol, interval, limit, start?, end?)`
  built on `ureq` with native-tls — sharing the exact same TLS backend
  (native-tls 0.2 / SChannel) as the existing tokio-tungstenite live feed, so the
  two pull one TLS stack, not two. Parses Binance's 12-element array rows via the
  existing serde infrastructure into validated `Candle`s. Blocking by design (a
  one-shot request needs no async runtime; the FFI boundary is synchronous
  anyway). Nine mock-HTTP-server tests cover parse / empty / limit / transport /
  JSON / invariant-violation paths.
- **C ABI**: `wickra_binance_fetch_klines(...)` (blocking drain into a caller
  buffer, `-1` on error) + regenerated cbindgen header and its vendored Go copy.
- **Bindings**: native Node `fetchBinanceKlines` / Python `fetch_binance_klines`;
  generated Go `FetchBinanceKlines` / C# `BinanceFeed.FetchKlines` / Java
  `BinanceFeed.fetchKlines` / R `fetch_binance_klines`. C / C++ call the C ABI
  directly. **WASM is excluded** (browsers use the host `fetch`).

The four C-ABI bindings are regenerated from the ScriptHelpers generators (not
hand-edited); the regen diff is exactly the new wrapper in each.

## Verification

All ten toolchains green locally: Rust (`cargo test`/`clippy`/`fmt`), Node, Python,
Go, C#, Java, R (`R CMD INSTALL` + smoke), WASM (`cargo check`, confirmed `ureq`
is not pulled). Each binding has an error-path smoke test; the parse/HTTP success
path is covered by the Rust mock-server tests.

No release in this PR — ships with the data-layer + numpy bundle later.
2026-06-17 01:48:24 +02:00
..

Wickra — Go

CI codecov Go module License: MIT OR Apache-2.0

Streaming-first technical indicators for Go, over the Wickra C ABI hub via cgo.

Wickra is a multi-language technical-analysis library with a Rust core and bindings for Python, Node.js and WASM, plus a C ABI for C, C++, C#, Go, Java, R and any other C-capable language. Every indicator is an O(1) streaming state machine, so live trading bots and historical backtests share the exact same implementation. This package is the Go binding; it consumes the C ABI hub through cgo and exposes all 514 streaming-first indicators as idiomatic types.

Install

Use the published wickra-go module, which bundles the prebuilt C ABI library for every platform, so go get + go build works with no extra steps (a C compiler is still required, as the binding uses cgo):

go get github.com/wickra-lib/wickra-go
import wickra "github.com/wickra-lib/wickra-go"

wickra-go is generated from this directory by the release pipeline: it mirrors the Go sources, the vendored C ABI header (include/wickra.h) and the prebuilt libraries under lib/<goos>_<goarch>/. On Linux/macOS the library path is baked in via rpath; on Windows the DLL must be discoverable at run time (next to the executable or on PATH).

Building from this repository (contributors)

This bindings/go directory is the development source. To build it directly, compile the C ABI and stage the library into the per-platform directory cgo links against:

cargo build -p wickra-c --release
mkdir -p bindings/go/lib/linux_amd64                 # match your GOOS_GOARCH
cp target/release/libwickra.so    bindings/go/lib/linux_amd64/    # Linux
cp target/release/libwickra.dylib bindings/go/lib/darwin_arm64/   # macOS (arm64)
cp target/release/wickra.dll      bindings/go/lib/windows_amd64/  # Windows

Quick start

package main

import (
	"fmt"

	wickra "github.com/wickra-lib/wickra/bindings/go"
)

func main() {
	// Batch: run an indicator over a whole series (NaN at warmup positions).
	prices := make([]float64, 1000)
	for i := range prices {
		prices[i] = 100.0 + float64(i)*0.1
	}
	sma, _ := wickra.NewSma(20)
	defer sma.Close()
	values := sma.Batch(prices)

	// Streaming: the same indicator, fed tick by tick in O(1).
	rsi, _ := wickra.NewRsi(14)
	defer rsi.Close()
	for _, price := range prices {
		value := rsi.Update(price) // NaN during warmup, no recomputation
		if value > 70 {
			fmt.Println("overbought")
		}
	}
	_ = values
}

Batch(prices) and feeding the same prices through Update() produce identical values — the equivalence is enforced by the test suite. Multi-output indicators (MACD, Bollinger, ADX, …) return (Output, bool), with false while warming up. Every indicator owns a native handle freed by Close(); a finalizer is wired as a backstop, but call Close() (e.g. with defer) to release memory promptly.

Benchmark

benchmarks/throughput.go reports streaming and batch updates-per-second for SMA, ATR and MACD. It measures this binding's FFI overhead, not a cross-library ratio (the same Rust core runs under every binding) — see the repository BENCHMARKS.md §3.

cd benchmarks && go run .

Documentation

The full indicator catalogue, guides, quickstarts, and API reference live in the main repository and documentation site:

Wickra ships native bindings for Python, Node.js, WASM and Rust, plus a C ABI hub that any C-capable language (C, C++, C#, Go, Java, R) links against — all exposing the same indicators from the shared, unsafe-forbidden Rust core.

Security

Found a security issue? Please don't open a public issue. Report it privately via the affected repository's Security tab ("Report a vulnerability") or email support@wickra.org with a subject line starting [wickra security]. Full policy: https://github.com/wickra-lib/wickra/blob/main/SECURITY.md.

Disclaimer

Wickra is an indicator toolkit, not a trading system. The values it computes are deterministic transforms of the input data — they are not financial advice and do not predict the market. Any use in a live trading context is at your own risk. The library is provided as is, without warranty of any kind.

License

Licensed under either of Apache-2.0 or MIT at your option.