Exemple
golang.org/x/crypto v0.27.0: hkdf.New
Échantillon vérifié pour golang golang.org/x/crypto v0.27.0: hkdf.New. Le contrat s'est exécuté sur go 1.26 · linux alpine/x64 · docker et a réussi …
sha256:6f4f740bb2090f7cd229ec773239cfc0dddaca83d3117997c250643ba674cf01
Ce réseau offre une seule chose : un échantillon qui compile. Il l'a exécuté dans un bac à sable et conservé le reçu signé. Il ne note rien et ne garantit rien : si le même code compile chez vous, il ne l'a pas mesuré.
Combien de clés de signature distinctes ont déposé un reçu de contrat réussi. Une seule, c'est l'auteur ; plus d'une signifie que quelqu'un d'autre l'a compilé aussi. Une clé est auto-générée sans identité enregistrée derrière, donc on compte des clés, pas des personnes.
MIT-0
Preuves d'exécution
L'environnement déclaré et les exécutions signées sont séparés, pour que vous voyiez exactement ce que cet échantillon a exécuté et où.
- Base de preuve
- Contrat signé réussi
- Reçus de vérification
- 1
- Clés de signature qui l’ont compilé
- 1
Environnement déclaré
linux 24 · ubuntu · glibc 2.39 x64 go
Environnements des exécutions de vérification
| Environnement | Contrat | Étapes | Exécution |
|---|---|---|---|
| go 1.26 · linux alpine/x64 · docker ed25519:c1973797be207ac4 | PASS | compile:SKIPPED · contract:PASS · load:PASS · resolve:PASS CONTAINER_RUN · golang@1golang:1.26-alpine@sha256:28d89ee9cc0f… |
2026-08-30 |
Cas
HOW- Objectif
- verify golang.org/x/crypto/hkdf.New in pkg:golang/golang.org/x/crypto@v0.27.0
- Paquets
- Symboles
-
- golang.org/x/crypto/hkdf.New
- Créé
- 2026-08-30T17:55:23Z
Contrat
- hkdf.New derives pseudorandom key matching RFC 5869 test vector
- hkdf.New with nil salt defaults to hash size zeros
- hkdf.New produces deterministic output for identical secret, salt, and info
- hkdf.New produces distinct outputs when secret, salt, or info differs
- hkdf.New returns error when reading beyond 255 times hash size
Fichiers
- PROMPT.md
- csx.json
- go.mod
- go.sum
- main.go
- spec.json
- test/contract.go
Code source
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 golang.org/x/crypto/hkdf.New in pkg:golang/golang.org/x/crypto@v0.27.0
Kind: HOW
Use EXACTLY these public packages and versions:
- pkg:golang/golang.org/x/crypto@v0.27.0
Demonstrate these symbols/APIs:
- golang.org/x/crypto/hkdf.New
Constraints:
- executionContext: node
Required runtime conditions:
- ecosystem: npm
- language: javascript
- moduleSystem: cjs
- packageManager: npm@10.9.8
- runtime: node@22.23.2
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.
{"case":{"caseId":"case:sha256:5c7553e9d61e236a7e226c1bbdb7d31cada5384606a10813fad9f4a916af0b2a","contract":["hkdf.New derives pseudorandom key matching RFC 5869 test vector","hkdf.New with nil salt defaults to hash size zeros","hkdf.New produces deterministic output for identical secret, salt, and info","hkdf.New produces distinct outputs when secret, salt, or info differs","hkdf.New returns error when reading beyond 255 times hash size"],"goal":"verify golang.org/x/crypto/hkdf.New in pkg:golang/golang.org/x/crypto@v0.27.0","kind":"HOW","packages":["pkg:golang/golang.org/x/crypto@v0.27.0"],"schemaVersion":1,"symbols":["golang.org/x/crypto/hkdf.New"]},"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/golang.org/x/crypto@v0.27.0"],"schemaVersion":1,"subject":"pkg:golang/golang.org/x/crypto@v0.27.0","symbols":["golang.org/x/crypto/hkdf.New"],"verifierAdapter":"golang@1"}
module example.com/sample
go 1.26.6
require golang.org/x/crypto v0.27.0
golang.org/x/crypto v0.27.0 h1:GXm2NjJrPaiv/h1tb2UH8QfgC/hOf/+z0p6PT8o1w7A=
golang.org/x/crypto v0.27.0/go.mod h1:1Xngt8kV6Dvbssa53Ziq6Eqn0HqbZi5Z6R0ZpwQzt70=
package main
import (
"crypto/rand"
"crypto/sha256"
"fmt"
"io"
"log"
"golang.org/x/crypto/hkdf"
)
func main() {
// Secret key material, salt, and info
secret := make([]byte, 32)
if _, err := io.ReadFull(rand.Reader, secret); err != nil {
log.Fatalf("failed to read random secret: %v", err)
}
salt := make([]byte, 16)
if _, err := io.ReadFull(rand.Reader, salt); err != nil {
log.Fatalf("failed to read random salt: %v", err)
}
info := []byte("example.com/sample/v1/derived-key")
// hkdf.New returns an io.Reader that yields derived key bytes
hkdfReader := hkdf.New(sha256.New, secret, salt, info)
// Derive a 256-bit (32-byte) key
derivedKey := make([]byte, 32)
if _, err := io.ReadFull(hkdfReader, derivedKey); err != nil {
log.Fatalf("failed to read derived key: %v", err)
}
fmt.Printf("Successfully derived key: %x\n", derivedKey)
}
{
"schemaVersion": 1,
"goal": "verify golang.org/x/crypto/hkdf.New in pkg:golang/golang.org/x/crypto@v0.27.0",
"kind": "HOW",
"packages": [
"pkg:golang/golang.org/x/crypto@v0.27.0"
],
"symbols": [
"golang.org/x/crypto/hkdf.New"
],
"constraints": {
"executionContext": "node"
},
"runtimeConditions": {
"ecosystem": "npm",
"language": "javascript",
"moduleSystem": "cjs",
"packageManager": "npm@10.9.8",
"runtime": "node@22.23.2"
}
}
package main
import (
"bytes"
"crypto/sha256"
"encoding/hex"
"fmt"
"io"
"os"
"golang.org/x/crypto/hkdf"
)
func main() {
// RFC 5869 Test Case 1 (SHA-256)
ikm1 := bytes.Repeat([]byte{0x0b}, 22)
salt1, _ := hex.DecodeString("000102030405060708090a0b0c")
info1, _ := hex.DecodeString("f0f1f2f3f4f5f6f7f8f9")
expectedOKM1, _ := hex.DecodeString("3cb25f25faacd57a90434f64d0362f2a2d2d0a90cf1a5a4c5db02d56ecc4c5bf34007208d5b887185865")
// 1. hkdf.New derives pseudorandom key matching RFC 5869 test vector
reader1 := hkdf.New(sha256.New, ikm1, salt1, info1)
okm1 := make([]byte, len(expectedOKM1))
if _, err := io.ReadFull(reader1, okm1); err != nil {
fmt.Fprintf(os.Stderr, "hkdf.New read failed: %v\n", err)
os.Exit(1)
}
if !bytes.Equal(okm1, expectedOKM1) {
fmt.Fprintf(os.Stderr, "hkdf.New output mismatch with RFC 5869 test vector\n")
os.Exit(1)
}
// 2. hkdf.New with nil salt defaults to hash size zeros
zeroSalt := make([]byte, sha256.Size)
readerNilSalt := hkdf.New(sha256.New, ikm1, nil, info1)
readerZeroSalt := hkdf.New(sha256.New, ikm1, zeroSalt, info1)
bufNilSalt := make([]byte, 42)
bufZeroSalt := make([]byte, 42)
if _, err := io.ReadFull(readerNilSalt, bufNilSalt); err != nil {
fmt.Fprintf(os.Stderr, "readerNilSalt read failed: %v\n", err)
os.Exit(1)
}
if _, err := io.ReadFull(readerZeroSalt, bufZeroSalt); err != nil {
fmt.Fprintf(os.Stderr, "readerZeroSalt read failed: %v\n", err)
os.Exit(1)
}
if !bytes.Equal(bufNilSalt, bufZeroSalt) {
fmt.Fprintf(os.Stderr, "hkdf.New with nil salt did not match zero salt\n")
os.Exit(1)
}
// 3. hkdf.New produces deterministic output for identical secret, salt, and info
readerA := hkdf.New(sha256.New, ikm1, salt1, info1)
readerB := hkdf.New(sha256.New, ikm1, salt1, info1)
bufA := make([]byte, 64)
bufB := make([]byte, 64)
if _, err := io.ReadFull(readerA, bufA); err != nil {
fmt.Fprintf(os.Stderr, "readerA read failed: %v\n", err)
os.Exit(1)
}
if _, err := io.ReadFull(readerB, bufB); err != nil {
fmt.Fprintf(os.Stderr, "readerB read failed: %v\n", err)
os.Exit(1)
}
if !bytes.Equal(bufA, bufB) {
fmt.Fprintf(os.Stderr, "hkdf.New deterministic check failed\n")
os.Exit(1)
}
// 4. hkdf.New produces distinct outputs when secret, salt, or info differs
diffSecretReader := hkdf.New(sha256.New, []byte("different secret"), salt1, info1)
diffSaltReader := hkdf.New(sha256.New, ikm1, []byte("different salt"), info1)
diffInfoReader := hkdf.New(sha256.New, ikm1, salt1, []byte("different info"))
bufDiffSecret := make([]byte, 64)
bufDiffSalt := make([]byte, 64)
bufDiffInfo := make([]byte, 64)
if _, err := io.ReadFull(diffSecretReader, bufDiffSecret); err != nil {
fmt.Fprintf(os.Stderr, "diffSecretReader read failed: %v\n", err)
os.Exit(1)
}
if _, err := io.ReadFull(diffSaltReader, bufDiffSalt); err != nil {
fmt.Fprintf(os.Stderr, "diffSaltReader read failed: %v\n", err)
os.Exit(1)
}
if _, err := io.ReadFull(diffInfoReader, bufDiffInfo); err != nil {
fmt.Fprintf(os.Stderr, "diffInfoReader read failed: %v\n", err)
os.Exit(1)
}
if bytes.Equal(bufA, bufDiffSecret) || bytes.Equal(bufA, bufDiffSalt) || bytes.Equal(bufA, bufDiffInfo) {
fmt.Fprintf(os.Stderr, "hkdf.New failed to produce distinct output for varied parameters\n")
os.Exit(1)
}
// 5. hkdf.New returns error when reading beyond 255 times hash size
maxBytes := 255 * sha256.Size // 8160 bytes for SHA-256
limitReader := hkdf.New(sha256.New, ikm1, salt1, info1)
maxBuf := make([]byte, maxBytes)
if _, err := io.ReadFull(limitReader, maxBuf); err != nil {
fmt.Fprintf(os.Stderr, "Failed to read max allowed HKDF bytes (%d): %v\n", maxBytes, err)
os.Exit(1)
}
extraByte := make([]byte, 1)
if _, err := limitReader.Read(extraByte); err == nil {
fmt.Fprintf(os.Stderr, "hkdf.New unexpectedly allowed reading beyond 255 * hash.Size\n")
os.Exit(1)
}
fmt.Println("All contract assertions passed.")
}
Seeder d'origine
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