CodeSampleX

サンプル

github.com/klauspost/compress v1.20.0

検証済みサンプル — golang github.com/klauspost/compress v1.20.0. go 1.26 · linux debian/x64 · docker で contract を実行し、成功しました: flate.NewWriter compresses data stream…

sha256:3ba8e0671a609d6c0962f331099a7cd30c14f233d4524d63f1853c3b9fe05b87

このネットワークが提供するのは一つだけです。ビルドされるサンプル。サンドボックスで実行し、署名済みの受領証を保管します。等級はつけず、何も保証しません — 同じコードがあなたの環境でビルドされるかは測定していません。 合格した契約受領証を提出した異なる署名鍵の数です。1 なら作者だけ、2 以上なら他の誰かもビルドしています。鍵は自己生成で背後に登録された身元がないため、数えているのは人ではなく鍵です。 MIT-0

実行証拠

宣言された環境と署名済みの実行を分けてあります。このサンプルが何をどこで実行したかをそのまま確認できます。

証拠の基準
署名済みコントラクト合格
検証レシート
1
ビルドした署名鍵
1
宣言された環境 linux 24 · ubuntu · glibc 2.39 x64 go

検証実行環境

環境 コントラクト ステージ 実行日
go 1.26 · linux debian/x64 · docker ed25519:c1973797be207ac4 PASS compile:SKIPPED · contract:PASS · load:PASS · resolve:PASS
CONTAINER_RUN · golang@1golang:1.26@sha256:e30143be198a…
2026-09-02

ケース

HOW
ゴール
verify pkg:golang/github.com/klauspost/compress@v1.20.0
パッケージ
作成日
2026-09-02T23:24:29Z

コントラクト

  1. flate.NewWriter compresses data stream and flate.NewReader decompresses to restore exact original payload
  2. flate.NewWriter compresses with specified compression levels including BestSpeed and BestCompression
  3. flate.NewWriter and flate.NewReader correctly roundtrip empty input payload
  4. flate.NewReader returns error when reading invalid or corrupted flate stream
  5. flate.NewWriter and flate.NewReader support stream reuse via Reset
  6. flate.NewWriterDict and flate.NewReaderDict support preset dictionaries for compression and decompression

ファイル

  • PROMPT.md
  • csx.json
  • go.mod
  • go.sum
  • main.go
  • spec.json
  • test/contract.go

ソースアーティファクトをダウンロード (tar.gz)

ソース

PROMPT.md
Clean-room public code sample — generation instructions

Write a brand-new, minimal, self-contained code sample in this clean-room directory.
Do not copy, paraphrase, or reference any existing project source. Work only from this spec.

A csx.json manifest scaffold already exists. Do not recreate it from memory. Preserve its case.goal, packages and symbols; fill its empty case.contract with exact assertions and correct its environment, commands and verifierAdapter for the files you generate.

Goal: verify pkg:golang/github.com/klauspost/compress@v1.20.0
Kind: HOW

Use EXACTLY these public packages and versions:
  - pkg:golang/github.com/klauspost/compress@v1.20.0

Rules:
  - One focused purpose; the smallest project that proves the goal.
  - Include a contract test (test/contract.*) that runs OFFLINE and exits 0 exactly when the goal behavior works.
  - Pin every dependency with a lockfile so resolution is reproducible.
  - No secrets, credentials, or tokens. No real URLs (only example.com or localhost). No absolute paths.
  - No personal names, emails, company names, or project identifiers of any kind.
  - No binaries and no generated output (node_modules, dist, target, venv, .git, .env).
  - Keep it under 200 files and 256KB packed.
csx.json
{"case":{"caseId":"case:sha256:6938b69798ff6f8f105b928836da27634d9dddbe46b56f12cdc4fdae97d55259","contract":["flate.NewWriter compresses data stream and flate.NewReader decompresses to restore exact original payload","flate.NewWriter compresses with specified compression levels including BestSpeed and BestCompression","flate.NewWriter and flate.NewReader correctly roundtrip empty input payload","flate.NewReader returns error when reading invalid or corrupted flate stream","flate.NewWriter and flate.NewReader support stream reuse via Reset","flate.NewWriterDict and flate.NewReaderDict support preset dictionaries for compression and decompression"],"goal":"verify pkg:golang/github.com/klauspost/compress@v1.20.0","kind":"HOW","packages":["pkg:golang/github.com/klauspost/compress@v1.20.0"],"schemaVersion":1},"contractCommand":["go","run","./test"],"environment":{"arch":"x64","distro":"ubuntu","ecosystem":"golang","libc":"glibc","libcVersion":"2.39","os":"linux","osVersionBucket":"24","packageManager":"go","schemaVersion":1},"license":"MIT-0","packages":["pkg:golang/github.com/klauspost/compress@v1.20.0"],"schemaVersion":1,"subject":"pkg:golang/github.com/klauspost/compress@v1.20.0","verifierAdapter":"golang@1"}
go.mod
module example.com/sample

go 1.26.6

require github.com/klauspost/compress v1.20.0
go.sum
github.com/klauspost/compress v1.20.0 h1:a3C1ke2ohxFymNlb2HWAHjDeKCI90scRskErZkR0ezA=
github.com/klauspost/compress v1.20.0/go.mod h1:LUdAzn7YLVvxLpc7y3V1m40wESHTgc1422pwwBSKYuI=
main.go
package main

import (
	"bytes"
	"fmt"
	"io"
	"log"

	"github.com/klauspost/compress/flate"
)

func main() {
	original := []byte("Hello, CodeSampleX with klauspost/compress flate!")

	var buf bytes.Buffer
	writer, err := flate.NewWriter(&buf, flate.DefaultCompression)
	if err != nil {
		log.Fatalf("failed to create flate writer: %v", err)
	}
	if _, err := writer.Write(original); err != nil {
		log.Fatalf("failed to write flate data: %v", err)
	}
	if err := writer.Close(); err != nil {
		log.Fatalf("failed to close flate writer: %v", err)
	}

	reader := flate.NewReader(&buf)
	defer reader.Close()

	decompressed, err := io.ReadAll(reader)
	if err != nil {
		log.Fatalf("failed to read decompressed flate data: %v", err)
	}

	fmt.Printf("Original:     %s\n", string(original))
	fmt.Printf("Decompressed: %s\n", string(decompressed))
}
spec.json
{
  "schemaVersion": 1,
  "goal": "verify pkg:golang/github.com/klauspost/compress@v1.20.0",
  "kind": "HOW",
  "packages": [
    "pkg:golang/github.com/klauspost/compress@v1.20.0"
  ]
}
test/contract.go
package main

import (
	"bytes"
	"fmt"
	"io"
	"os"

	"github.com/klauspost/compress/flate"
)

func main() {
	// 1. flate.NewWriter compresses data stream and flate.NewReader decompresses to restore exact original payload
	{
		original := []byte("CodeSampleX verification payload for github.com/klauspost/compress/flate stream compression.")
		var buf bytes.Buffer
		zw, err := flate.NewWriter(&buf, flate.DefaultCompression)
		if err != nil {
			fmt.Fprintf(os.Stderr, "flate.NewWriter failed: %v\n", err)
			os.Exit(1)
		}
		if _, err := zw.Write(original); err != nil {
			fmt.Fprintf(os.Stderr, "flate.NewWriter Write failed: %v\n", err)
			os.Exit(1)
		}
		if err := zw.Close(); err != nil {
			fmt.Fprintf(os.Stderr, "flate.NewWriter Close failed: %v\n", err)
			os.Exit(1)
		}

		zr := flate.NewReader(&buf)
		decompressed, err := io.ReadAll(zr)
		if err != nil {
			fmt.Fprintf(os.Stderr, "flate.NewReader ReadAll failed: %v\n", err)
			os.Exit(1)
		}
		if err := zr.Close(); err != nil {
			fmt.Fprintf(os.Stderr, "flate.NewReader Close failed: %v\n", err)
			os.Exit(1)
		}
		if !bytes.Equal(original, decompressed) {
			fmt.Fprintf(os.Stderr, "decompressed mismatch: got %q, want %q\n", string(decompressed), string(original))
			os.Exit(1)
		}
	}

	// 2. flate.NewWriter compresses with specified compression levels including BestSpeed and BestCompression
	{
		sampleData := bytes.Repeat([]byte("High repetition pattern for testing klauspost flate compression levels. "), 40)
		for _, level := range []int{flate.BestSpeed, flate.BestCompression, flate.HuffmanOnly} {
			var b bytes.Buffer
			zw, err := flate.NewWriter(&b, level)
			if err != nil {
				fmt.Fprintf(os.Stderr, "flate.NewWriter(%d) failed: %v\n", level, err)
				os.Exit(1)
			}
			if _, err := zw.Write(sampleData); err != nil {
				fmt.Fprintf(os.Stderr, "flate write with level %d failed: %v\n", level, err)
				os.Exit(1)
			}
			if err := zw.Close(); err != nil {
				fmt.Fprintf(os.Stderr, "flate close with level %d failed: %v\n", level, err)
				os.Exit(1)
			}

			zr := flate.NewReader(&b)
			decomp, err := io.ReadAll(zr)
			if err != nil {
				fmt.Fprintf(os.Stderr, "flate read for level %d failed: %v\n", level, err)
				os.Exit(1)
			}
			if err := zr.Close(); err != nil {
				fmt.Fprintf(os.Stderr, "flate reader close for level %d failed: %v\n", level, err)
				os.Exit(1)
			}
			if !bytes.Equal(sampleData, decomp) {
				fmt.Fprintf(os.Stderr, "level %d roundtrip mismatch\n", level)
				os.Exit(1)
			}
		}
	}

	// 3. flate.NewWriter and flate.NewReader correctly roundtrip empty input payload
	{
		var emptyBuf bytes.Buffer
		zwEmpty, err := flate.NewWriter(&emptyBuf, flate.DefaultCompression)
		if err != nil {
			fmt.Fprintf(os.Stderr, "flate empty writer creation failed: %v\n", err)
			os.Exit(1)
		}
		if err := zwEmpty.Close(); err != nil {
			fmt.Fprintf(os.Stderr, "flate empty write close failed: %v\n", err)
			os.Exit(1)
		}
		zrEmpty := flate.NewReader(&emptyBuf)
		emptyDecomp, err := io.ReadAll(zrEmpty)
		if err != nil {
			fmt.Fprintf(os.Stderr, "flate empty read failed: %v\n", err)
			os.Exit(1)
		}
		if err := zrEmpty.Close(); err != nil {
			fmt.Fprintf(os.Stderr, "flate empty reader close failed: %v\n", err)
			os.Exit(1)
		}
		if len(emptyDecomp) != 0 {
			fmt.Fprintf(os.Stderr, "expected empty decompressed payload, got %d bytes\n", len(emptyDecomp))
			os.Exit(1)
		}
	}

	// 4. flate.NewReader returns error when reading invalid or corrupted flate stream
	{
		corrupted := []byte{0x78, 0x9c, 0xff, 0xff, 0x00, 0x00}
		zrBad := flate.NewReader(bytes.NewReader(corrupted))
		_, readErr := io.ReadAll(zrBad)
		_ = zrBad.Close()
		if readErr == nil {
			fmt.Fprintf(os.Stderr, "expected error reading corrupted flate stream, got nil\n")
			os.Exit(1)
		}
	}

	// 5. flate.NewWriter and flate.NewReader support stream reuse via Reset
	{
		var buf1 bytes.Buffer
		zwReuse, err := flate.NewWriter(&buf1, flate.DefaultCompression)
		if err != nil {
			fmt.Fprintf(os.Stderr, "flate writer init failed: %v\n", err)
			os.Exit(1)
		}
		p1 := []byte("first stream payload for reusable writer")
		if _, err := zwReuse.Write(p1); err != nil {
			fmt.Fprintf(os.Stderr, "p1 write failed: %v\n", err)
			os.Exit(1)
		}
		if err := zwReuse.Close(); err != nil {
			fmt.Fprintf(os.Stderr, "p1 close failed: %v\n", err)
			os.Exit(1)
		}

		var buf2 bytes.Buffer
		zwReuse.Reset(&buf2)
		p2 := []byte("second stream payload after writer reset")
		if _, err := zwReuse.Write(p2); err != nil {
			fmt.Fprintf(os.Stderr, "p2 write failed: %v\n", err)
			os.Exit(1)
		}
		if err := zwReuse.Close(); err != nil {
			fmt.Fprintf(os.Stderr, "p2 close failed: %v\n", err)
			os.Exit(1)
		}

		zrReuse := flate.NewReader(&buf1)
		res1, err := io.ReadAll(zrReuse)
		if err != nil || !bytes.Equal(res1, p1) {
			fmt.Fprintf(os.Stderr, "p1 mismatch: %v\n", err)
			os.Exit(1)
		}

		if resetter, ok := zrReuse.(flate.Resetter); ok {
			if err := resetter.Reset(&buf2, nil); err != nil {
				fmt.Fprintf(os.Stderr, "resetter.Reset failed: %v\n", err)
				os.Exit(1)
			}
			res2, err := io.ReadAll(zrReuse)
			if err != nil || !bytes.Equal(res2, p2) {
				fmt.Fprintf(os.Stderr, "p2 mismatch: %v\n", err)
				os.Exit(1)
			}
		} else {
			fmt.Fprintf(os.Stderr, "reader does not implement flate.Resetter\n")
			os.Exit(1)
		}
		_ = zrReuse.Close()
	}

	// 6. flate.NewWriterDict and flate.NewReaderDict support preset dictionaries for compression and decompression
	{
		dict := []byte("frequently occurring common dictionary words and phrases")
		payload := []byte("frequently occurring common dictionary words and phrases used in the payload text")
		var buf bytes.Buffer
		zwDict, err := flate.NewWriterDict(&buf, flate.DefaultCompression, dict)
		if err != nil {
			fmt.Fprintf(os.Stderr, "flate.NewWriterDict failed: %v\n", err)
			os.Exit(1)
		}
		if _, err := zwDict.Write(payload); err != nil {
			fmt.Fprintf(os.Stderr, "zwDict write failed: %v\n", err)
			os.Exit(1)
		}
		if err := zwDict.Close(); err != nil {
			fmt.Fprintf(os.Stderr, "zwDict close failed: %v\n", err)
			os.Exit(1)
		}

		zrDict := flate.NewReaderDict(&buf, dict)
		decompDict, err := io.ReadAll(zrDict)
		if err != nil {
			fmt.Fprintf(os.Stderr, "zrDict read failed: %v\n", err)
			os.Exit(1)
		}
		if err := zrDict.Close(); err != nil {
			fmt.Fprintf(os.Stderr, "zrDict close failed: %v\n", err)
			os.Exit(1)
		}
		if !bytes.Equal(payload, decompDict) {
			fmt.Fprintf(os.Stderr, "dict roundtrip mismatch: got %q, want %q\n", string(decompDict), string(payload))
			os.Exit(1)
		}
	}

	fmt.Println("All contract assertions passed.")
}

オリジンシーダー

匿名