276 lines
8.2 KiB
Go
276 lines
8.2 KiB
Go
package auth
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import (
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"crypto/rand"
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"crypto/sha256"
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"crypto/subtle"
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"encoding/base64"
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"fmt"
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"strings"
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"golang.org/x/crypto/argon2"
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)
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// Default Argon2id parameters
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const (
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DefaultArgonTime = 3 // iterations
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DefaultArgonMemory = 64 * 1024 // 64 MB
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DefaultArgonThreads = 4
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DefaultArgonSaltLen = 16
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DefaultArgonKeyLen = 32
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MaxPasswordLen = 1024
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// upper bounds for untrusted PHC input
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MaxArgonSaltLen = 64
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MaxArgonKeyLen = 64
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MaxPHCHashLen = 256
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)
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// Execution budget for KDF parameters taken from an encoded record.
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// parsePHC accepts the full PHC range (m <= 4 GiB, t <= 1000, p <= 255) because
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// those values are well-formed; running them is a different decision. One
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// crafted record would otherwise allocate 4 GiB. Applies to any Argon2 run
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// whose parameters were chosen by a peer rather than by this process.
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const (
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MaxVerifyArgonMemory = 256 * 1024 // KiB
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MaxVerifyArgonTime = 16
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MaxVerifyArgonThreads = 16
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)
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// argonParams holds configurable Argon2id parameters
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type argonParams struct {
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time uint32
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memory uint32
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threads uint8
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keyLen uint32
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saltLen uint32
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}
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// Option configures Argon2id hashing parameters
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type Option func(*argonParams)
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// WithTime sets Argon2 iterations
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func WithTime(t uint32) Option {
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return func(p *argonParams) {
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if t > 0 {
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p.time = t
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}
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}
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}
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// WithMemory sets Argon2 memory in KiB
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func WithMemory(m uint32) Option {
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return func(p *argonParams) {
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if m > 0 {
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p.memory = m
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}
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}
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}
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// WithThreads sets Argon2 parallelism
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func WithThreads(t uint8) Option {
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return func(p *argonParams) {
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if t > 0 {
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p.threads = t
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}
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}
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}
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// HashPassword creates Argon2id PHC-format hash (standalone)
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func HashPassword(password string, opts ...Option) (string, error) {
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if len(password) < 8 {
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return "", ErrWeakPassword
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}
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if len(password) > MaxPasswordLen {
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return "", ErrPasswordTooLong
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}
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params := &argonParams{
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time: DefaultArgonTime,
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memory: DefaultArgonMemory,
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threads: DefaultArgonThreads,
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keyLen: DefaultArgonKeyLen,
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saltLen: DefaultArgonSaltLen,
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}
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for _, opt := range opts {
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opt(params)
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}
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salt := make([]byte, params.saltLen)
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rand.Read(salt) // cryptographically secure random bytes
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hash := argon2.IDKey([]byte(password), salt, params.time, params.memory, params.threads, params.keyLen)
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saltB64 := base64.RawStdEncoding.EncodeToString(salt)
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hashB64 := base64.RawStdEncoding.EncodeToString(hash)
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return fmt.Sprintf("$argon2id$v=%d$m=%d,t=%d,p=%d$%s$%s",
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argon2.Version, params.memory, params.time, params.threads, saltB64, hashB64), nil
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}
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// VerifyPassword checks password against PHC-format hash (standalone)
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func VerifyPassword(password, phcHash string) error {
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_, err := verifyPHC(password, phcHash)
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return err
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}
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// MigrateFromPHC converts PHC hash to SCRAM credential
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func MigrateFromPHC(username, password, phcHash string) (*Credential, error) {
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r, err := verifyPHC(password, phcHash)
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if err != nil {
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return nil, err
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}
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if len(r.derived) == DefaultArgonKeyLen {
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return credentialFromSaltedPassword(username, r.derived, r.salt, r.time, r.memory, r.threads), nil
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}
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// Non-standard digest length: derive at the required key length.
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return DeriveCredential(username, password, r.salt, r.time, r.memory, r.threads)
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}
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// key derivation split from the KDF so callers holding a salted
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// password can build a credential without re-running Argon2.
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func credentialFromSaltedPassword(username string, saltedPassword, salt []byte, time, memory uint32, threads uint8) *Credential {
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clientKey := computeHMAC(saltedPassword, []byte("Client Key"))
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serverKey := computeHMAC(saltedPassword, []byte("Server Key"))
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storedKey := sha256.Sum256(clientKey)
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return &Credential{
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Username: username,
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Salt: salt,
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ArgonTime: time,
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ArgonMemory: memory,
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ArgonThreads: threads,
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StoredKey: storedKey[:],
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ServerKey: serverKey,
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}
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}
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// ValidatePHCHashFormat checks if a hash string has a valid and complete
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// PHC format for Argon2id. It validates structure, parameters, and encoding,
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// but does not verify a password against the hash.
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func ValidatePHCHashFormat(phcHash string) error {
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_, err := parsePHC(phcHash)
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return err
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}
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// parsed + verified PHC material, reused to avoid a second KDF pass
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type phcResult struct {
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derived []byte
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expectedHash []byte
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salt []byte
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time uint32
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memory uint32
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threads uint8
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}
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// verifyPHC validates format, bounds the password, runs the KDF once,
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// and constant-time compares against the encoded digest.
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func parsePHC(phcHash string) (*phcResult, error) {
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if len(phcHash) > MaxPHCHashLen {
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return nil, fmt.Errorf("%w: encoded hash exceeds %d bytes", ErrPHCInvalidFormat, MaxPHCHashLen)
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}
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parts := strings.Split(phcHash, "$")
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if len(parts) != 6 {
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return nil, fmt.Errorf("%w: expected 6 parts, got %d", ErrPHCInvalidFormat, len(parts))
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}
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if parts[0] != "" {
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return nil, fmt.Errorf("%w: hash must start with $", ErrPHCInvalidFormat)
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}
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if parts[1] != "argon2id" {
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return nil, fmt.Errorf("%w: unsupported algorithm %q, expected argon2id", ErrPHCInvalidFormat, parts[1])
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}
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var version int
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if _, err := fmt.Sscanf(parts[2], "v=%d", &version); err != nil || parts[2] != fmt.Sprintf("v=%d", version) {
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return nil, fmt.Errorf("%w: invalid version format", ErrPHCInvalidFormat)
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}
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if version != argon2.Version {
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return nil, fmt.Errorf("%w: unsupported version %d, expected %d", ErrPHCInvalidFormat, version, argon2.Version)
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}
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var memory, time uint32
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var threads uint8
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if _, err := fmt.Sscanf(parts[3], "m=%d,t=%d,p=%d", &memory, &time, &threads); err != nil || parts[3] != fmt.Sprintf("m=%d,t=%d,p=%d", memory, time, threads) {
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return nil, fmt.Errorf("%w: failed to parse parameters", ErrPHCInvalidFormat)
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}
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if time == 0 || memory == 0 || threads == 0 {
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return nil, fmt.Errorf("%w: parameters must be non-zero", ErrPHCInvalidFormat)
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}
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if memory > 4*1024*1024 {
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return nil, fmt.Errorf("%w: memory parameter exceeds maximum (4GB)", ErrPHCInvalidFormat)
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}
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if time > 1000 {
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return nil, fmt.Errorf("%w: time parameter exceeds maximum (1000)", ErrPHCInvalidFormat)
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}
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if threads > 255 {
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return nil, fmt.Errorf("%w: threads parameter exceeds maximum (255)", ErrPHCInvalidFormat)
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}
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salt, err := base64.RawStdEncoding.DecodeString(parts[4])
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if err != nil {
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return nil, fmt.Errorf("%w: %v", ErrPHCInvalidSalt, err)
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}
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if len(salt) < 8 {
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return nil, fmt.Errorf("%w: salt too short (%d bytes)", ErrPHCInvalidSalt, len(salt))
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}
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if len(salt) > MaxArgonSaltLen {
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return nil, fmt.Errorf("%w: salt too long (%d bytes)", ErrPHCInvalidSalt, len(salt))
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}
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hash, err := base64.RawStdEncoding.DecodeString(parts[5])
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if err != nil {
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return nil, fmt.Errorf("%w: %v", ErrPHCInvalidHash, err)
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}
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if len(hash) < 16 {
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return nil, fmt.Errorf("%w: hash too short (%d bytes)", ErrPHCInvalidHash, len(hash))
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}
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if len(hash) > MaxArgonKeyLen {
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return nil, fmt.Errorf("%w: hash too long (%d bytes)", ErrPHCInvalidHash, len(hash))
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}
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return &phcResult{
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expectedHash: hash,
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salt: salt,
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time: time,
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memory: memory,
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threads: threads,
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}, nil
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}
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// verifyPHC validates format, bounds the password, runs the KDF once, and
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// constant-time compares against the encoded digest.
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func verifyPHC(password, phcHash string) (*phcResult, error) {
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if len(password) > MaxPasswordLen {
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return nil, ErrPasswordTooLong
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}
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r, err := parsePHC(phcHash)
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if err != nil {
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return nil, err
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}
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// Bound the KDF before it runs; the record is untrusted input
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if err := checkArgonCost(r.memory, r.time, r.threads); err != nil {
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return nil, err
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}
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r.derived = argon2.IDKey([]byte(password), r.salt, r.time, r.memory, r.threads, uint32(len(r.expectedHash)))
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if subtle.ConstantTimeCompare(r.derived, r.expectedHash) != 1 {
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return nil, ErrInvalidCredentials
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}
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return r, nil
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}
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func checkArgonCost(memory, time uint32, threads uint8) error {
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switch {
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case memory > MaxVerifyArgonMemory:
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return fmt.Errorf("%w: memory %d KiB exceeds %d", ErrPHCCostTooHigh, memory, MaxVerifyArgonMemory)
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case time > MaxVerifyArgonTime:
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return fmt.Errorf("%w: time %d exceeds %d", ErrPHCCostTooHigh, time, MaxVerifyArgonTime)
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case threads > MaxVerifyArgonThreads:
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return fmt.Errorf("%w: threads %d exceeds %d", ErrPHCCostTooHigh, threads, MaxVerifyArgonThreads)
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}
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return nil
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}
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