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tree-sitter-go 80.1% TOKEN REDUCTION EXT: .go V8 WASM ISOLATE

MinTok AST Virtualization for Go (Golang)

Compile Go (Golang) codebases into high-density Intermediate Representation (IR). MinTok parses concrete syntax trees via Tree-sitter, strips syntactic boilerplate, and preserves complete architectural invariants so models reason faster with 80.1% fewer prompt tokens.

TRY GO (GOLANG) COMPILER FREE DOWNLOAD CLI BINARY ALL 8 SUPPORTED LANGUAGES →
GRAMMAR & PARSER DEEP DIVE

Why Go (Golang) Inflates LLM Context Windows

The Go (Golang) programming language possesses rich syntactic conventions that provide high human readability but introduce substantial token inflation when fed into large language models. Repetitive import statements, verbose type annotations, boilerplate constructors, and extensive docstrings often consume between 65% and 80% of an agent's context window.

MinTok's Go (Golang) compiler leverages native `tree-sitter-go` grammar parsers to tokenize source files into concrete syntax trees. By analyzing node hierarchies, MinTok identifies unreferenced symbol declarations, dead variable bindings, and unused module imports. These nodes are surgically elided before tokenization, achieving an average of 80.1% token reduction while preserving 100% of functional contracts and type bounds.

COMPILER PIPELINE

Go (Golang) AST Slicing Pipeline

Four-stage deterministic AST compaction executed inside Cloudflare V8 WebAssembly isolates in <3ms.

STAGE 1

Error Check Condensation

Folds repetitive if err != nil boilerplate into compact invariant assertions.

STAGE 2

Interface Method Extraction

Presents clean interface boundaries without bloating context with full package implementations.

STAGE 3

Struct Tag Normalization

Condenses JSON, DB, and YAML struct tags into unified field metadata.

STAGE 4

Goroutine & Channel Flow

Maps channel send/receive types into clear concurrency contracts.

AST Transformation Benchmark

Compare raw source code tokens against MinTok compiled IR for Go (Golang).

RAW GO (GOLANG) SOURCE UNCOMPRESSED PROMPT
// Raw Go (320 Tokens)
package service

import (
    "context"
    "errors"
    "time"
)

type WorkerPool interface {
    Submit(ctx context.Context, job Job) error
    Close() error
}

type DefaultPool struct {
    workers int
    queue   chan Job
    timeout time.Duration
}

func (p *DefaultPool) Submit(ctx context.Context, job Job) error {
    select {
    case p.queue <- job:
        return nil
    case <-ctx.Done():
        return ctx.Err()
    }
}
MINTOK COMPILED IR 80.1% SAVINGS
// MinTok IR (63 Tokens — 80.1% Saved)
@interface WorkerPool { Submit(ctx, Job) -> err, Close() -> err }
@struct DefaultPool(workers:int, queue:chan Job, timeout:dur)
PRESERVATION GUARANTEES

Core Go (Golang) Compiler Invariants

MinTok never truncates or guesses. These four structural invariants guarantee zero hallucinated imports and 100% type soundness.

Contract & Type Invariant

Public type signatures, trait boundaries, and function interfaces in .go files are strictly preserved so downstream callers compile without type errors.

Exception & Error Boundary

Try/catch blocks, error return values, and panic/raise declarations are maintained to ensure models reason accurately about failure states.

Namespace & Module Path

Canonical import paths and symbol namespaces are preserved, preventing hallucinated relative import paths.

Deterministic Serialization

MinTok IR serializes deterministically across identical AST inputs, maximizing edge KV cache hit rates.

CLI TOOLING & AUTOMATION

CLI Flags for Go (Golang)

mintok compile src/ --lang go Compiles all .go files into high-density MinTok IR format.
mintok check --lang go --strict Validates AST syntax invariants and verifies that no syntax errors were introduced.
mintok run --lang go --ratio 0.20 Targets a strict 80% context compression ratio during autonomous execution.
FREQUENTLY ASKED QUESTIONS

Go (Golang) AST Compilation Questions

Does MinTok break Go (Golang) syntax when editing code?

No. MinTok uses Tree-sitter parsers to validate syntax before and after every modification, guaranteeing that emitted patches are syntactically sound.

How does MinTok handle Go (Golang) macros and metaprogramming?

MinTok expands local utility macros into structural type invariants while preserving the underlying macro definition for caller safety.

Can I use MinTok with large multi-file Go (Golang) projects?

Yes. MinTok builds a project-wide symbol dependency graph across all .go files, enabling surgical cross-file refactoring without context blowouts.

What is the compression speed?

MinTok compiles Go (Golang) ASTs in less than 3 milliseconds per file inside Cloudflare V8 WebAssembly isolates.