package auth import ( "crypto/rand" "crypto/subtle" "encoding/base64" "fmt" "strings" "golang.org/x/crypto/argon2" ) // Argon2id 参数(OWASP 推荐基线) const ( argonTime = 1 argonMemory = 64 * 1024 argonThreads = 4 argonKeyLen = 32 saltLen = 16 ) // HashPassword 生成 $argon2id$v=19$m=65536,t=1,p=4$salt$hash func HashPassword(password string) (string, error) { salt := make([]byte, saltLen) if _, err := rand.Read(salt); err != nil { return "", err } hash := argon2.IDKey([]byte(password), salt, argonTime, argonMemory, argonThreads, argonKeyLen) b64Salt := base64.RawStdEncoding.EncodeToString(salt) b64Hash := base64.RawStdEncoding.EncodeToString(hash) return fmt.Sprintf("$argon2id$v=19$m=%d,t=%d,p=%d$%s$%s", argonMemory, argonTime, argonThreads, b64Salt, b64Hash), nil } // VerifyPassword 校验密码(常数时间比较) func VerifyPassword(password, encoded string) (bool, error) { parts := strings.Split(encoded, "$") if len(parts) != 6 { return false, fmt.Errorf("invalid hash format") } var memory uint32 var timeCost uint32 var threads uint8 if _, err := fmt.Sscanf(parts[3], "m=%d,t=%d,p=%d", &memory, &timeCost, &threads); err != nil { return false, err } salt, err := base64.RawStdEncoding.DecodeString(parts[4]) if err != nil { return false, err } want, err := base64.RawStdEncoding.DecodeString(parts[5]) if err != nil { return false, err } got := argon2.IDKey([]byte(password), salt, timeCost, memory, threads, uint32(len(want))) return subtle.ConstantTimeCompare(got, want) == 1, nil }