java-1_8_0-openjdk/JDK-8076190.patch

3136 lines
146 KiB
Diff

--- openjdk/jdk/src/share/classes/com/sun/crypto/provider/PBES2Parameters.java 2022-02-08 18:39:48.000000000 +0300
+++ openjdk/jdk/src/share/classes/com/sun/crypto/provider/PBES2Parameters.java 2022-02-08 18:39:47.000000000 +0300
@@ -312,41 +312,48 @@
+ "not an ASN.1 OCTET STRING tag");
}
iCount = pBKDF2_params.data.getInteger();
+
+ DerValue prf = null;
// keyLength INTEGER (1..MAX) OPTIONAL,
if (pBKDF2_params.data.available() > 0) {
DerValue keyLength = pBKDF2_params.data.getDerValue();
if (keyLength.tag == DerValue.tag_Integer) {
keysize = keyLength.getInteger() * 8; // keysize (in bits)
+ } else {
+ // Should be the prf
+ prf = keyLength;
}
}
// prf AlgorithmIdentifier {{PBKDF2-PRFs}} DEFAULT algid-hmacWithSHA1
String kdfAlgo = "HmacSHA1";
- if (pBKDF2_params.data.available() > 0) {
- if (pBKDF2_params.tag == DerValue.tag_Sequence) {
- DerValue prf = pBKDF2_params.data.getDerValue();
- kdfAlgo_OID = prf.data.getOID();
- if (hmacWithSHA1_OID.equals(kdfAlgo_OID)) {
- kdfAlgo = "HmacSHA1";
- } else if (hmacWithSHA224_OID.equals(kdfAlgo_OID)) {
- kdfAlgo = "HmacSHA224";
- } else if (hmacWithSHA256_OID.equals(kdfAlgo_OID)) {
- kdfAlgo = "HmacSHA256";
- } else if (hmacWithSHA384_OID.equals(kdfAlgo_OID)) {
- kdfAlgo = "HmacSHA384";
- } else if (hmacWithSHA512_OID.equals(kdfAlgo_OID)) {
- kdfAlgo = "HmacSHA512";
- } else {
+ if (prf == null) {
+ if (pBKDF2_params.data.available() > 0) {
+ prf = pBKDF2_params.data.getDerValue();
+ }
+ }
+ if (prf != null) {
+ kdfAlgo_OID = prf.data.getOID();
+ if (hmacWithSHA1_OID.equals(kdfAlgo_OID)) {
+ kdfAlgo = "HmacSHA1";
+ } else if (hmacWithSHA224_OID.equals(kdfAlgo_OID)) {
+ kdfAlgo = "HmacSHA224";
+ } else if (hmacWithSHA256_OID.equals(kdfAlgo_OID)) {
+ kdfAlgo = "HmacSHA256";
+ } else if (hmacWithSHA384_OID.equals(kdfAlgo_OID)) {
+ kdfAlgo = "HmacSHA384";
+ } else if (hmacWithSHA512_OID.equals(kdfAlgo_OID)) {
+ kdfAlgo = "HmacSHA512";
+ } else {
+ throw new IOException("PBE parameter parsing error: "
+ + "expecting the object identifier for a HmacSHA key "
+ + "derivation function");
+ }
+ if (prf.data.available() != 0) {
+ // parameter is 'NULL' for all HmacSHA KDFs
+ DerValue parameter = prf.data.getDerValue();
+ if (parameter.tag != DerValue.tag_Null) {
throw new IOException("PBE parameter parsing error: "
- + "expecting the object identifier for a HmacSHA key "
- + "derivation function");
- }
- if (prf.data.available() != 0) {
- // parameter is 'NULL' for all HmacSHA KDFs
- DerValue parameter = prf.data.getDerValue();
- if (parameter.tag != DerValue.tag_Null) {
- throw new IOException("PBE parameter parsing error: "
- + "not an ASN.1 NULL tag");
- }
+ + "not an ASN.1 NULL tag");
}
}
}
--- openjdk/jdk/src/share/classes/com/sun/crypto/provider/SunJCE.java 2022-02-08 18:39:48.000000000 +0300
+++ openjdk/jdk/src/share/classes/com/sun/crypto/provider/SunJCE.java 2022-02-08 18:39:48.000000000 +0300
@@ -707,7 +707,19 @@
put("Alg.Alias.Mac.1.2.840.113549.2.11", "HmacSHA512");
put("Mac.HmacPBESHA1",
- "com.sun.crypto.provider.HmacPKCS12PBESHA1");
+ "com.sun.crypto.provider.HmacPKCS12PBECore$HmacPKCS12PBE_SHA1");
+ put("Mac.HmacPBESHA224",
+ "com.sun.crypto.provider.HmacPKCS12PBECore$HmacPKCS12PBE_SHA224");
+ put("Mac.HmacPBESHA256",
+ "com.sun.crypto.provider.HmacPKCS12PBECore$HmacPKCS12PBE_SHA256");
+ put("Mac.HmacPBESHA384",
+ "com.sun.crypto.provider.HmacPKCS12PBECore$HmacPKCS12PBE_SHA384");
+ put("Mac.HmacPBESHA512",
+ "com.sun.crypto.provider.HmacPKCS12PBECore$HmacPKCS12PBE_SHA512");
+ put("Mac.HmacPBESHA512/224",
+ "com.sun.crypto.provider.HmacPKCS12PBECore$HmacPKCS12PBE_SHA512_224");
+ put("Mac.HmacPBESHA512/256",
+ "com.sun.crypto.provider.HmacPKCS12PBECore$HmacPKCS12PBE_SHA512_256");
// PBMAC1
@@ -734,6 +746,12 @@
put("Mac.HmacSHA384 SupportedKeyFormats", "RAW");
put("Mac.HmacSHA512 SupportedKeyFormats", "RAW");
put("Mac.HmacPBESHA1 SupportedKeyFormats", "RAW");
+ put("Mac.HmacPBESHA224 SupportedKeyFormats", "RAW");
+ put("Mac.HmacPBESHA256 SupportedKeyFormats", "RAW");
+ put("Mac.HmacPBESHA384 SupportedKeyFormats", "RAW");
+ put("Mac.HmacPBESHA512 SupportedKeyFormats", "RAW");
+ put("Mac.HmacPBESHA512/224 SupportedKeyFormats", "RAW");
+ put("Mac.HmacPBESHA512/256 SupportedKeyFormats", "RAW");
put("Mac.PBEWithHmacSHA1 SupportedKeyFormatS", "RAW");
put("Mac.PBEWithHmacSHA224 SupportedKeyFormats", "RAW");
put("Mac.PBEWithHmacSHA256 SupportedKeyFormats", "RAW");
--- openjdk/jdk/src/share/classes/sun/security/pkcs12/PKCS12KeyStore.java 2022-02-08 18:39:49.000000000 +0300
+++ openjdk/jdk/src/share/classes/sun/security/pkcs12/PKCS12KeyStore.java 2022-02-08 18:39:49.000000000 +0300
@@ -69,6 +69,7 @@
import sun.security.util.DerValue;
import sun.security.util.ObjectIdentifier;
import sun.security.pkcs.ContentInfo;
+import sun.security.util.SecurityProperties;
import sun.security.x509.AlgorithmId;
import sun.security.pkcs.EncryptedPrivateKeyInfo;
@@ -78,9 +79,11 @@
* Implements the PKCS#12 PFX protected using the Password privacy mode.
* The contents are protected using Password integrity mode.
*
- * Currently we support following PBE algorithms:
- * - pbeWithSHAAnd3KeyTripleDESCBC to encrypt private keys
- * - pbeWithSHAAnd40BitRC2CBC to encrypt certificates
+ * Currently these PBE algorithms are used by default:
+ * - PBEWithSHA1AndDESede to encrypt private keys, iteration count 50000.
+ * - PBEWithSHA1AndRC2_40 to encrypt certificates, iteration count 50000.
+ *
+ * The default Mac algorithm is HmacPBESHA1, iteration count 100000.
*
* Supported encryption of various implementations :
*
@@ -123,24 +126,13 @@
* @author Jeff Nisewanger
* @author Jan Luehe
*
- * @see KeyProtector
* @see java.security.KeyStoreSpi
- * @see KeyTool
- *
- *
*/
public final class PKCS12KeyStore extends KeyStoreSpi {
public static final int VERSION_3 = 3;
- private static final String[] KEY_PROTECTION_ALGORITHM = {
- "keystore.pkcs12.keyProtectionAlgorithm",
- "keystore.PKCS12.keyProtectionAlgorithm"
- };
-
private static final int MAX_ITERATION_COUNT = 5000000;
- private static final int PBE_ITERATION_COUNT = 50000; // default
- private static final int MAC_ITERATION_COUNT = 100000; // default
private static final int SALT_LEN = 20;
// friendlyName, localKeyId, trustedKeyUsage
@@ -161,10 +153,6 @@
private static final int pkcs9certType[] = {1, 2, 840, 113549, 1, 9, 22, 1};
- private static final int pbeWithSHAAnd40BitRC2CBC[] =
- {1, 2, 840, 113549, 1, 12, 1, 6};
- private static final int pbeWithSHAAnd3KeyTripleDESCBC[] =
- {1, 2, 840, 113549, 1, 12, 1, 3};
private static final int pbes2[] = {1, 2, 840, 113549, 1, 5, 13};
// TODO: temporary Oracle OID
/*
@@ -175,17 +163,15 @@
{2, 16, 840, 1, 113894, 746875, 1, 1};
private static final int AnyExtendedKeyUsage[] = {2, 5, 29, 37, 0};
- private static ObjectIdentifier PKCS8ShroudedKeyBag_OID;
- private static ObjectIdentifier CertBag_OID;
- private static ObjectIdentifier SecretBag_OID;
- private static ObjectIdentifier PKCS9FriendlyName_OID;
- private static ObjectIdentifier PKCS9LocalKeyId_OID;
- private static ObjectIdentifier PKCS9CertType_OID;
- private static ObjectIdentifier pbeWithSHAAnd40BitRC2CBC_OID;
- private static ObjectIdentifier pbeWithSHAAnd3KeyTripleDESCBC_OID;
- private static ObjectIdentifier pbes2_OID;
- private static ObjectIdentifier TrustedKeyUsage_OID;
- private static ObjectIdentifier[] AnyUsage;
+ private static final ObjectIdentifier PKCS8ShroudedKeyBag_OID;
+ private static final ObjectIdentifier CertBag_OID;
+ private static final ObjectIdentifier SecretBag_OID;
+ private static final ObjectIdentifier PKCS9FriendlyName_OID;
+ private static final ObjectIdentifier PKCS9LocalKeyId_OID;
+ private static final ObjectIdentifier PKCS9CertType_OID;
+ private static final ObjectIdentifier pbes2_OID;
+ private static final ObjectIdentifier TrustedKeyUsage_OID;
+ private static final ObjectIdentifier[] AnyUsage;
private int counter = 0;
@@ -200,6 +186,17 @@
// certificate count
private int certificateCount = 0;
+ // Alg/params used for *this* keystore. Initialized as -1 for ic and
+ // null for algorithm names. When an existing file is read, they will be
+ // assigned inside engineLoad() so storing an existing keystore uses the
+ // old alg/params. This makes sure if a keystore is created password-less
+ // it will be password-less forever. Otherwise, engineStore() will read
+ // the default values. These fields are always reset when load() is called.
+ private String certProtectionAlgorithm = null;
+ private int certPbeIterationCount = -1;
+ private String macAlgorithm = null;
+ private int macIterationCount = -1;
+
// the source of randomness
private SecureRandom random;
@@ -211,16 +208,12 @@
PKCS9FriendlyName_OID = new ObjectIdentifier(pkcs9Name);
PKCS9LocalKeyId_OID = new ObjectIdentifier(pkcs9KeyId);
PKCS9CertType_OID = new ObjectIdentifier(pkcs9certType);
- pbeWithSHAAnd40BitRC2CBC_OID =
- new ObjectIdentifier(pbeWithSHAAnd40BitRC2CBC);
- pbeWithSHAAnd3KeyTripleDESCBC_OID =
- new ObjectIdentifier(pbeWithSHAAnd3KeyTripleDESCBC);
pbes2_OID = new ObjectIdentifier(pbes2);
TrustedKeyUsage_OID = new ObjectIdentifier(TrustedKeyUsage);
AnyUsage = new ObjectIdentifier[]{
new ObjectIdentifier(AnyExtendedKeyUsage)};
} catch (IOException ioe) {
- // should not happen
+ throw new AssertionError("OID not initialized", ioe);
}
}
@@ -381,7 +374,7 @@
ic = pbeSpec.getIterationCount();
if (ic > MAX_ITERATION_COUNT) {
- throw new IOException("PBE iteration count too large");
+ throw new IOException("key PBE iteration count too large");
}
} else {
ic = 0;
@@ -417,7 +410,7 @@
if (debug != null) {
debug.println("Retrieved a protected private key at alias" +
" '" + alias + "' (" +
- new AlgorithmId(algOid).getName() +
+ mapPBEParamsToAlgorithm(algOid, algParams) +
" iterations: " + ic + ")");
}
return tmp;
@@ -442,7 +435,7 @@
if (debug != null) {
debug.println("Retrieved a protected secret key at alias " +
"'" + alias + "' (" +
- new AlgorithmId(algOid).getName() +
+ mapPBEParamsToAlgorithm(algOid, algParams) +
" iterations: " + ic + ")");
}
return tmp;
@@ -691,7 +684,7 @@
entries.put(alias.toLowerCase(Locale.ENGLISH), entry);
} catch (Exception nsae) {
- throw new KeyStoreException("Key protection " +
+ throw new KeyStoreException("Key protection" +
" algorithm not found: " + nsae, nsae);
}
}
@@ -788,14 +781,13 @@
/*
* Generate PBE Algorithm Parameters
*/
- private AlgorithmParameters getPBEAlgorithmParameters(String algorithm)
- throws IOException
- {
+ private AlgorithmParameters getPBEAlgorithmParameters(
+ String algorithm, int iterationCount) throws IOException {
AlgorithmParameters algParams = null;
// create PBE parameters from salt and iteration count
PBEParameterSpec paramSpec =
- new PBEParameterSpec(getSalt(), PBE_ITERATION_COUNT);
+ new PBEParameterSpec(getSalt(), iterationCount);
try {
algParams = AlgorithmParameters.getInstance(algorithm);
algParams.init(paramSpec);
@@ -858,13 +850,14 @@
}
/*
- * Encrypt private key using Password-based encryption (PBE)
+ * Encrypt private key or secret key using Password-based encryption (PBE)
* as defined in PKCS#5.
*
* NOTE: By default, pbeWithSHAAnd3-KeyTripleDES-CBC algorithmID is
* used to derive the key and IV.
*
- * @return encrypted private key encoded as EncryptedPrivateKeyInfo
+ * @return encrypted private key or secret key encoded as
+ * EncryptedPrivateKeyInfo
*/
private byte[] encryptPrivateKey(byte[] data,
KeyStore.PasswordProtection passwordProtection)
@@ -886,27 +879,14 @@
algParams = AlgorithmParameters.getInstance(algorithm);
algParams.init(algParamSpec);
} else {
- algParams = getPBEAlgorithmParameters(algorithm);
+ algParams = getPBEAlgorithmParameters(algorithm,
+ defaultKeyPbeIterationCount());
}
} else {
// Check default key protection algorithm for PKCS12 keystores
- algorithm = AccessController.doPrivileged(
- new PrivilegedAction<String>() {
- public String run() {
- String prop =
- Security.getProperty(
- KEY_PROTECTION_ALGORITHM[0]);
- if (prop == null) {
- prop = Security.getProperty(
- KEY_PROTECTION_ALGORITHM[1]);
- }
- return prop;
- }
- });
- if (algorithm == null || algorithm.isEmpty()) {
- algorithm = "PBEWithSHA1AndDESede";
- }
- algParams = getPBEAlgorithmParameters(algorithm);
+ algorithm = defaultKeyProtectionAlgorithm();
+ algParams = getPBEAlgorithmParameters(algorithm,
+ defaultKeyPbeIterationCount());
}
ObjectIdentifier pbeOID = mapPBEAlgorithmToOID(algorithm);
@@ -964,7 +944,7 @@
if (algorithm.equals((Object)pbes2_OID) && algParams != null) {
return algParams.toString();
}
- return algorithm.toString();
+ return new AlgorithmId(algorithm).getName();
}
/**
@@ -1189,10 +1169,6 @@
public synchronized void engineStore(OutputStream stream, char[] password)
throws IOException, NoSuchAlgorithmException, CertificateException
{
- // password is mandatory when storing
- if (password == null) {
- throw new IllegalArgumentException("password can't be null");
- }
// -- Create PFX
DerOutputStream pfx = new DerOutputStream();
@@ -1225,16 +1201,28 @@
// -- create EncryptedContentInfo
if (certificateCount > 0) {
+ if (certProtectionAlgorithm == null) {
+ certProtectionAlgorithm = defaultCertProtectionAlgorithm();
+ }
+ if (certPbeIterationCount < 0) {
+ certPbeIterationCount = defaultCertPbeIterationCount();
+ }
+
if (debug != null) {
debug.println("Storing " + certificateCount +
" certificate(s) in a PKCS#7 encryptedData");
}
byte[] encrData = createEncryptedData(password);
- ContentInfo encrContentInfo =
- new ContentInfo(ContentInfo.ENCRYPTED_DATA_OID,
+ if (!certProtectionAlgorithm.equalsIgnoreCase("NONE")) {
+ ContentInfo encrContentInfo =
+ new ContentInfo(ContentInfo.ENCRYPTED_DATA_OID,
new DerValue(encrData));
- encrContentInfo.encode(authSafeContentInfo);
+ encrContentInfo.encode(authSafeContentInfo);
+ } else {
+ ContentInfo dataContentInfo = new ContentInfo(encrData);
+ dataContentInfo.encode(authSafeContentInfo);
+ }
}
// wrap as SequenceOf ContentInfos
@@ -1249,9 +1237,16 @@
pfx.write(authSafeData);
// -- MAC
- byte[] macData = calculateMac(password, authenticatedSafe);
- pfx.write(macData);
-
+ if (macAlgorithm == null) {
+ macAlgorithm = defaultMacAlgorithm();
+ }
+ if (macIterationCount < 0) {
+ macIterationCount = defaultMacIterationCount();
+ }
+ if (!macAlgorithm.equalsIgnoreCase("NONE")) {
+ byte[] macData = calculateMac(password, authenticatedSafe);
+ pfx.write(macData);
+ }
// write PFX to output stream
DerOutputStream pfxout = new DerOutputStream();
pfxout.write(DerValue.tag_Sequence, pfx);
@@ -1462,24 +1457,6 @@
}
/*
- * Generate Hash.
- */
- private byte[] generateHash(byte[] data) throws IOException
- {
- byte[] digest = null;
-
- try {
- MessageDigest md = MessageDigest.getInstance("SHA1");
- md.update(data);
- digest = md.digest();
- } catch (Exception e) {
- throw new IOException("generateHash failed: " + e, e);
- }
- return digest;
- }
-
-
- /*
* Calculate MAC using HMAC algorithm (required for password integrity)
*
* Hash-based MAC algorithm combines secret key with message digest to
@@ -1489,16 +1466,16 @@
throws IOException
{
byte[] mData = null;
- String algName = "SHA1";
+ String algName = macAlgorithm.substring(7);
try {
// Generate a random salt.
byte[] salt = getSalt();
// generate MAC (MAC key is generated within JCE)
- Mac m = Mac.getInstance("HmacPBESHA1");
+ Mac m = Mac.getInstance(macAlgorithm);
PBEParameterSpec params =
- new PBEParameterSpec(salt, MAC_ITERATION_COUNT);
+ new PBEParameterSpec(salt, macIterationCount);
SecretKey key = getPBEKey(passwd);
m.init(key, params);
m.update(data);
@@ -1506,7 +1483,7 @@
// encode as MacData
MacData macData = new MacData(algName, macResult, salt,
- MAC_ITERATION_COUNT);
+ macIterationCount);
DerOutputStream bytes = new DerOutputStream();
bytes.write(macData.getEncoded());
mData = bytes.toByteArray();
@@ -1764,15 +1741,19 @@
byte[] safeBagData = safeBagValue.toByteArray();
// encrypt the content (EncryptedContentInfo)
- byte[] encrContentInfo = encryptContent(safeBagData, password);
+ if (!certProtectionAlgorithm.equalsIgnoreCase("NONE")) {
+ byte[] encrContentInfo = encryptContent(safeBagData, password);
- // -- SEQUENCE of EncryptedData
- DerOutputStream encrData = new DerOutputStream();
- DerOutputStream encrDataContent = new DerOutputStream();
- encrData.putInteger(0);
- encrData.write(encrContentInfo);
- encrDataContent.write(DerValue.tag_Sequence, encrData);
- return encrDataContent.toByteArray();
+ // -- SEQUENCE of EncryptedData
+ DerOutputStream encrData = new DerOutputStream();
+ DerOutputStream encrDataContent = new DerOutputStream();
+ encrData.putInteger(0);
+ encrData.write(encrContentInfo);
+ encrDataContent.write(DerValue.tag_Sequence, encrData);
+ return encrDataContent.toByteArray();
+ } else {
+ return safeBagData;
+ }
}
/*
@@ -1881,47 +1862,52 @@
byte[] encryptedData = null;
- // create AlgorithmParameters
- AlgorithmParameters algParams =
- getPBEAlgorithmParameters("PBEWithSHA1AndRC2_40");
- DerOutputStream bytes = new DerOutputStream();
- AlgorithmId algId =
- new AlgorithmId(pbeWithSHAAnd40BitRC2CBC_OID, algParams);
- algId.encode(bytes);
- byte[] encodedAlgId = bytes.toByteArray();
try {
+ // create AlgorithmParameters
+ AlgorithmParameters algParams = getPBEAlgorithmParameters(
+ certProtectionAlgorithm, certPbeIterationCount);
+ DerOutputStream bytes = new DerOutputStream();
+
// Use JCE
SecretKey skey = getPBEKey(password);
- Cipher cipher = Cipher.getInstance("PBEWithSHA1AndRC2_40");
+ Cipher cipher = Cipher.getInstance(certProtectionAlgorithm);
cipher.init(Cipher.ENCRYPT_MODE, skey, algParams);
encryptedData = cipher.doFinal(data);
+ AlgorithmId algId = new AlgorithmId(
+ mapPBEAlgorithmToOID(certProtectionAlgorithm),
+ cipher.getParameters());
+ // cipher.getParameters() now has IV
+ algId.encode(bytes);
+ byte[] encodedAlgId = bytes.toByteArray();
+
if (debug != null) {
debug.println(" (Cipher algorithm: " + cipher.getAlgorithm() +
- ")");
+ ")");
}
+ // create EncryptedContentInfo
+ DerOutputStream bytes2 = new DerOutputStream();
+ bytes2.putOID(ContentInfo.DATA_OID);
+ bytes2.write(encodedAlgId);
+
+ // Wrap encrypted data in a context-specific tag.
+ DerOutputStream tmpout2 = new DerOutputStream();
+ tmpout2.putOctetString(encryptedData);
+ bytes2.writeImplicit(DerValue.createTag(DerValue.TAG_CONTEXT,
+ false, (byte) 0), tmpout2);
+
+ // wrap EncryptedContentInfo in a Sequence
+ DerOutputStream out = new DerOutputStream();
+ out.write(DerValue.tag_Sequence, bytes2);
+ return out.toByteArray();
+ } catch (IOException ioe) {
+ throw ioe;
} catch (Exception e) {
throw new IOException("Failed to encrypt" +
" safe contents entry: " + e, e);
}
-
- // create EncryptedContentInfo
- DerOutputStream bytes2 = new DerOutputStream();
- bytes2.putOID(ContentInfo.DATA_OID);
- bytes2.write(encodedAlgId);
-
- // Wrap encrypted data in a context-specific tag.
- DerOutputStream tmpout2 = new DerOutputStream();
- tmpout2.putOctetString(encryptedData);
- bytes2.writeImplicit(DerValue.createTag(DerValue.TAG_CONTEXT,
- false, (byte)0), tmpout2);
-
- // wrap EncryptedContentInfo in a Sequence
- DerOutputStream out = new DerOutputStream();
- out.write(DerValue.tag_Sequence, bytes2);
- return out.toByteArray();
}
/**
@@ -1944,10 +1930,12 @@
public synchronized void engineLoad(InputStream stream, char[] password)
throws IOException, NoSuchAlgorithmException, CertificateException
{
- DataInputStream dis;
- CertificateFactory cf = null;
- ByteArrayInputStream bais = null;
- byte[] encoded = null;
+
+ // Reset config when loading a different keystore.
+ certProtectionAlgorithm = null;
+ certPbeIterationCount = -1;
+ macAlgorithm = null;
+ macIterationCount = -1;
if (stream == null)
return;
@@ -1987,6 +1975,8 @@
secretKeyCount = 0;
certificateCount = 0;
+ boolean seeEncBag = false;
+
/*
* Spin over the ContentInfos.
*/
@@ -2012,6 +2002,21 @@
debug.println("Warning: skipping PKCS#7 encryptedData" +
" - no password was supplied");
}
+ // No password to decrypt ENCRYPTED_DATA_OID. *Skip it*.
+ // This means user will see a PrivateKeyEntry without
+ // certificates and a whole TrustedCertificateEntry will
+ // be lost. This is not a perfect solution but alternative
+ // solutions are more disruptive:
+ //
+ // We cannot just fail, since KeyStore.load(is, null)
+ // has been known to never fail because of a null password.
+ //
+ // We cannot just throw away the whole PrivateKeyEntry,
+ // this is too silent and no one will notice anything.
+ //
+ // We also cannot fail when getCertificate() on such a
+ // PrivateKeyEntry is called, since the method has not
+ // specified this behavior.
continue;
}
@@ -2055,13 +2060,18 @@
ic = pbeSpec.getIterationCount();
if (ic > MAX_ITERATION_COUNT) {
- throw new IOException("PBE iteration count too large");
+ throw new IOException("cert PBE iteration count too large");
}
+
+ certProtectionAlgorithm
+ = mapPBEParamsToAlgorithm(algOid, algParams);
+ certPbeIterationCount = ic;
+ seeEncBag = true;
}
if (debug != null) {
debug.println("Loading PKCS#7 encryptedData " +
- "(" + new AlgorithmId(algOid).getName() +
+ "(" + mapPBEParamsToAlgorithm(algOid, algParams) +
" iterations: " + ic + ")");
}
@@ -2086,48 +2096,62 @@
}
}
+ // No ENCRYPTED_DATA_OID but see certificate. Must be passwordless.
+ if (!seeEncBag && certificateCount > 0) {
+ certProtectionAlgorithm = "NONE";
+ }
+
// The MacData is optional.
- if (password != null && s.available() > 0) {
- MacData macData = new MacData(s);
- int ic = macData.getIterations();
+ if (s.available() > 0) {
+ // If there is no password, we cannot fail. KeyStore.load(is, null)
+ // has been known to never fail because of a null password.
+ if (password != null) {
+ MacData macData = new MacData(s);
+ int ic = macData.getIterations();
- try {
- if (ic > MAX_ITERATION_COUNT) {
- throw new InvalidAlgorithmParameterException(
- "MAC iteration count too large: " + ic);
- }
+ try {
+ if (ic > MAX_ITERATION_COUNT) {
+ throw new InvalidAlgorithmParameterException(
+ "MAC iteration count too large: " + ic);
+ }
- String algName =
- macData.getDigestAlgName().toUpperCase(Locale.ENGLISH);
+ String algName =
+ macData.getDigestAlgName().toUpperCase(Locale.ENGLISH);
- // Change SHA-1 to SHA1
- algName = algName.replace("-", "");
-
- // generate MAC (MAC key is created within JCE)
- Mac m = Mac.getInstance("HmacPBE" + algName);
- PBEParameterSpec params =
- new PBEParameterSpec(macData.getSalt(), ic);
-
- RetryWithZero.run(pass -> {
- SecretKey key = getPBEKey(pass);
- m.init(key, params);
- m.update(authSafeData);
- byte[] macResult = m.doFinal();
+ // Change SHA-1 to SHA1
+ algName = algName.replace("-", "");
- if (debug != null) {
- debug.println("Checking keystore integrity " +
- "(" + m.getAlgorithm() + " iterations: " + ic + ")");
- }
+ macAlgorithm = "HmacPBE" + algName;
+ macIterationCount = ic;
- if (!MessageDigest.isEqual(macData.getDigest(), macResult)) {
- throw new UnrecoverableKeyException("Failed PKCS12" +
- " integrity checking");
- }
- return (Void)null;
- }, password);
- } catch (Exception e) {
- throw new IOException("Integrity check failed: " + e, e);
+ // generate MAC (MAC key is created within JCE)
+ Mac m = Mac.getInstance(macAlgorithm);
+ PBEParameterSpec params =
+ new PBEParameterSpec(macData.getSalt(), ic);
+
+ RetryWithZero.run(pass -> {
+ SecretKey key = getPBEKey(pass);
+ m.init(key, params);
+ m.update(authSafeData);
+ byte[] macResult = m.doFinal();
+
+ if (debug != null) {
+ debug.println("Checking keystore integrity " +
+ "(" + m.getAlgorithm() + " iterations: " + ic + ")");
+ }
+
+ if (!MessageDigest.isEqual(macData.getDigest(), macResult)) {
+ throw new UnrecoverableKeyException("Failed PKCS12" +
+ " integrity checking");
+ }
+ return (Void) null;
+ }, password);
+ } catch (Exception e) {
+ throw new IOException("Integrity check failed: " + e, e);
+ }
}
+ } else {
+ macAlgorithm = "NONE";
}
/*
@@ -2167,8 +2191,14 @@
cert = certsMap.get(issuerDN);
}
/* Update existing KeyEntry in entries table */
- if (chain.size() > 0)
+ if (chain.size() > 0) {
entry.chain = chain.toArray(new Certificate[chain.size()]);
+ } else {
+ // Remove private key entries where there is no associated
+ // certs. Most likely the keystore is loaded with a null
+ // password.
+ entries.remove(entry);
+ }
}
}
@@ -2184,6 +2214,46 @@
}
/**
+ * Returns if a pkcs12 file is password-less. This means no cert is
+ * encrypted and there is no Mac. Please note that the private key
+ * can be encrypted.
+ *
+ * This is a simplified version of {@link #engineLoad} that only looks
+ * at the ContentInfo types.
+ *
+ * @param f the pkcs12 file
+ * @return if it's password-less
+ * @throws IOException
+ */
+ public static boolean isPasswordless(File f) throws IOException {
+
+ try (FileInputStream stream = new FileInputStream(f)) {
+ DerValue val = new DerValue(stream);
+ DerInputStream s = val.toDerInputStream();
+
+ s.getInteger(); // skip version
+
+ ContentInfo authSafe = new ContentInfo(s);
+ DerInputStream as = new DerInputStream(authSafe.getData());
+ for (DerValue seq : as.getSequence(2)) {
+ DerInputStream sci = new DerInputStream(seq.toByteArray());
+ ContentInfo safeContents = new ContentInfo(sci);
+ if (safeContents.getContentType()
+ .equals(ContentInfo.ENCRYPTED_DATA_OID)) {
+ // Certificate encrypted
+ return false;
+ }
+ }
+
+ if (s.available() > 0) {
+ // The MacData exists.
+ return false;
+ }
+ }
+ return true;
+ }
+
+ /**
* Locates a matched CertEntry from certEntries, and returns its cert.
* @param entry the KeyEntry to match
* @return a certificate, null if not found
@@ -2339,8 +2409,8 @@
if (bagItem instanceof KeyEntry) {
KeyEntry entry = (KeyEntry)bagItem;
- if (bagItem instanceof PrivateKeyEntry) {
- if (keyId == null) {
+ if (keyId == null) {
+ if (bagItem instanceof PrivateKeyEntry) {
// Insert a localKeyID for the privateKey
// Note: This is a workaround to allow null localKeyID
// attribute in pkcs12 with one private key entry and
@@ -2350,6 +2420,9 @@
} else {
continue;
}
+ } else {
+ // keyId in a SecretKeyEntry is not significant
+ keyId = "00".getBytes("UTF8");
}
}
entry.keyId = keyId;
@@ -2420,4 +2493,83 @@
counter++;
return (String.valueOf(counter));
}
+
+ // 8076190: Customizing the generation of a PKCS12 keystore
+
+ private static String defaultCertProtectionAlgorithm() {
+ String result = SecurityProperties.privilegedGetOverridable(
+ "keystore.pkcs12.certProtectionAlgorithm");
+ return (result != null && !result.isEmpty())
+ ? result : "PBEWithSHA1AndRC2_40";
+ }
+
+ private static int defaultCertPbeIterationCount() {
+ String result = SecurityProperties.privilegedGetOverridable(
+ "keystore.pkcs12.certPbeIterationCount");
+ return (result != null && !result.isEmpty())
+ ? string2IC("certPbeIterationCount", result) : 50000;
+ }
+
+ // Read both "keystore.pkcs12.keyProtectionAlgorithm" and
+ // "keystore.PKCS12.keyProtectionAlgorithm" for compatibility.
+ private static String defaultKeyProtectionAlgorithm() {
+ String result = AccessController.doPrivileged(new PrivilegedAction<String>() {
+ public String run() {
+ String result;
+ String name1 = "keystore.pkcs12.keyProtectionAlgorithm";
+ String name2 = "keystore.PKCS12.keyProtectionAlgorithm";
+ result = System.getProperty(name1);
+ if (result != null) {
+ return result;
+ }
+ result = System.getProperty(name2);
+ if (result != null) {
+ return result;
+ }
+ result = Security.getProperty(name1);
+ if (result != null) {
+ return result;
+ }
+ return Security.getProperty(name2);
+ }
+ });
+ return (result != null && !result.isEmpty())
+ ? result : "PBEWithSHA1AndDESede";
+ }
+
+ private static int defaultKeyPbeIterationCount() {
+ String result = SecurityProperties.privilegedGetOverridable(
+ "keystore.pkcs12.keyPbeIterationCount");
+ return (result != null && !result.isEmpty())
+ ? string2IC("keyPbeIterationCount", result) : 50000;
+ }
+
+ private static String defaultMacAlgorithm() {
+ String result = SecurityProperties.privilegedGetOverridable(
+ "keystore.pkcs12.macAlgorithm");
+ return (result != null && !result.isEmpty())
+ ? result : "HmacPBESHA1";
+ }
+
+ private static int defaultMacIterationCount() {
+ String result = SecurityProperties.privilegedGetOverridable(
+ "keystore.pkcs12.macIterationCount");
+ return (result != null && !result.isEmpty())
+ ? string2IC("macIterationCount", result) : 100000;
+ }
+
+ private static int string2IC(String type, String value) {
+ int number;
+ try {
+ number = Integer.parseInt(value);
+ } catch (NumberFormatException e) {
+ throw new IllegalArgumentException("keystore.pkcs12." + type
+ + " is not a number: " + value);
+ }
+ if (number <= 0 || number > MAX_ITERATION_COUNT) {
+ throw new IllegalArgumentException("Invalid keystore.pkcs12."
+ + type + ": " + value);
+ }
+ return number;
+ }
}
--- openjdk/jdk/src/share/classes/sun/security/tools/keytool/Main.java 2022-02-08 18:39:50.000000000 +0300
+++ openjdk/jdk/src/share/classes/sun/security/tools/keytool/Main.java 2022-02-08 18:39:50.000000000 +0300
@@ -77,9 +77,11 @@
import sun.security.util.ObjectIdentifier;
import sun.security.pkcs10.PKCS10;
import sun.security.pkcs10.PKCS10Attribute;
+import sun.security.pkcs12.PKCS12KeyStore;
import sun.security.provider.X509Factory;
import sun.security.provider.certpath.CertStoreHelper;
import sun.security.util.Password;
+import sun.security.util.SecurityProperties;
import sun.security.util.SecurityProviderConstants;
import sun.security.util.SignatureUtil;
import javax.crypto.KeyGenerator;
@@ -190,6 +192,7 @@
private static final Set<CryptoPrimitive> SIG_PRIMITIVE_SET = Collections
.unmodifiableSet(EnumSet.of(CryptoPrimitive.SIGNATURE));
+ private boolean isPasswordlessKeyStore = false;
enum Command {
CERTREQ("Generates.a.certificate.request",
@@ -835,6 +838,24 @@
ksStream.close();
}
}
+ if (keyStore.getProvider().getName().equals("SunJSSE") &&
+ storetype.equalsIgnoreCase(P12KEYSTORE)) {
+ if (ksfile != null && ksStream != null) {
+ try {
+ isPasswordlessKeyStore = PKCS12KeyStore.isPasswordless(ksfile);
+ } catch(IOException ioe) {
+ // This must be a JKS keystore that's opened as a PKCS12
+ }
+ } else {
+ // When creating a new pkcs12 file, Do not prompt for storepass
+ // if certProtectionAlgorithm and macAlgorithm are both NONE.
+ isPasswordlessKeyStore =
+ "NONE".equals(SecurityProperties.privilegedGetOverridable(
+ "keystore.pkcs12.certProtectionAlgorithm"))
+ && "NONE".equals(SecurityProperties.privilegedGetOverridable(
+ "keystore.pkcs12.macAlgorithm"));
+ }
+ }
if (P12KEYSTORE.equalsIgnoreCase(storetype) && command == KEYPASSWD) {
throw new UnsupportedOperationException(rb.getString
@@ -854,11 +875,10 @@
("Keystore.password.must.be.at.least.6.characters"));
}
} else if (storePass == null) {
-
- // only prompt if (protectedPath == false)
-
- if (!protectedPath && !KeyStoreUtil.isWindowsKeyStore(storetype) &&
- (command == CERTREQ ||
+ if (!protectedPath && !KeyStoreUtil.isWindowsKeyStore(storetype)
+ && isKeyStoreRelated(command)
+ && !isPasswordlessKeyStore) {
+ if (command == CERTREQ ||
command == DELETE ||
command == GENKEYPAIR ||
command == GENSECKEY ||
@@ -870,59 +890,58 @@
command == SELFCERT ||
command == STOREPASSWD ||
command == KEYPASSWD ||
- command == IDENTITYDB)) {
- int count = 0;
- do {
- if (command == IMPORTKEYSTORE) {
- System.err.print
- (rb.getString("Enter.destination.keystore.password."));
- } else {
- System.err.print
- (rb.getString("Enter.keystore.password."));
- }
- System.err.flush();
- storePass = Password.readPassword(System.in);
- passwords.add(storePass);
-
- // If we are creating a new non nullStream-based keystore,
- // insist that the password be at least 6 characters
- if (!nullStream && (storePass == null || storePass.length < 6)) {
- System.err.println(rb.getString
- ("Keystore.password.is.too.short.must.be.at.least.6.characters"));
- storePass = null;
- }
-
- // If the keystore file does not exist and needs to be
- // created, the storepass should be prompted twice.
- if (storePass != null && !nullStream && ksStream == null) {
- System.err.print(rb.getString("Re.enter.new.password."));
- char[] storePassAgain = Password.readPassword(System.in);
- passwords.add(storePassAgain);
- if (!Arrays.equals(storePass, storePassAgain)) {
- System.err.println
- (rb.getString("They.don.t.match.Try.again"));
+ command == IDENTITYDB) {
+ int count = 0;
+ do {
+ if (command == IMPORTKEYSTORE) {
+ System.err.print
+ (rb.getString("Enter.destination.keystore.password."));
+ } else {
+ System.err.print
+ (rb.getString("Enter.keystore.password."));
+ }
+ System.err.flush();
+ storePass = Password.readPassword(System.in);
+ passwords.add(storePass);
+
+ // If we are creating a new non nullStream-based keystore,
+ // insist that the password be at least 6 characters
+ if (!nullStream && (storePass == null || storePass.length < 6)) {
+ System.err.println(rb.getString
+ ("Keystore.password.is.too.short.must.be.at.least.6.characters"));
storePass = null;
}
- }
- count++;
- } while ((storePass == null) && count < 3);
+ // If the keystore file does not exist and needs to be
+ // created, the storepass should be prompted twice.
+ if (storePass != null && !nullStream && ksStream == null) {
+ System.err.print(rb.getString("Re.enter.new.password."));
+ char[] storePassAgain = Password.readPassword(System.in);
+ passwords.add(storePassAgain);
+ if (!Arrays.equals(storePass, storePassAgain)) {
+ System.err.println
+ (rb.getString("They.don.t.match.Try.again"));
+ storePass = null;
+ }
+ }
+ count++;
+ } while ((storePass == null) && count < 3);
- if (storePass == null) {
- System.err.println
- (rb.getString("Too.many.failures.try.later"));
- return;
- }
- } else if (!protectedPath
- && !KeyStoreUtil.isWindowsKeyStore(storetype)
- && isKeyStoreRelated(command)) {
- // here we have EXPORTCERT and LIST (info valid until STOREPASSWD)
- if (command != PRINTCRL) {
- System.err.print(rb.getString("Enter.keystore.password."));
- System.err.flush();
- storePass = Password.readPassword(System.in);
- passwords.add(storePass);
+
+ if (storePass == null) {
+ System.err.println
+ (rb.getString("Too.many.failures.try.later"));
+ return;
+ }
+ } else {
+ // here we have EXPORTCERT and LIST (info valid until STOREPASSWD)
+ if (command != PRINTCRL) {
+ System.err.print(rb.getString("Enter.keystore.password."));
+ System.err.flush();
+ storePass = Password.readPassword(System.in);
+ passwords.add(storePass);
+ }
}
}
@@ -1115,7 +1134,8 @@
kssave = true;
} else if (command == LIST) {
if (storePass == null
- && !KeyStoreUtil.isWindowsKeyStore(storetype)) {
+ && !KeyStoreUtil.isWindowsKeyStore(storetype)
+ && !isPasswordlessKeyStore) {
printNoIntegrityWarning();
}
@@ -1493,7 +1513,8 @@
throws Exception
{
if (storePass == null
- && !KeyStoreUtil.isWindowsKeyStore(storetype)) {
+ && !KeyStoreUtil.isWindowsKeyStore(storetype)
+ && !isPasswordlessKeyStore) {
printNoIntegrityWarning();
}
if (alias == null) {
@@ -1524,7 +1545,7 @@
* @param origPass the password to copy from if user press ENTER
*/
private char[] promptForKeyPass(String alias, String orig, char[] origPass) throws Exception{
- if (P12KEYSTORE.equalsIgnoreCase(storetype)) {
+ if (origPass != null && P12KEYSTORE.equalsIgnoreCase(storetype)) {
return origPass;
} else if (!token && !protectedPath) {
// Prompt for key password
@@ -1533,22 +1554,25 @@
MessageFormat form = new MessageFormat(rb.getString
("Enter.key.password.for.alias."));
Object[] source = {alias};
- System.err.println(form.format(source));
- if (orig == null) {
- System.err.print(rb.getString
- (".RETURN.if.same.as.keystore.password."));
- } else {
- form = new MessageFormat(rb.getString
- (".RETURN.if.same.as.for.otherAlias."));
- Object[] src = {orig};
- System.err.print(form.format(src));
+ System.err.print(form.format(source));
+ if (origPass != null) {
+ System.err.println();
+ if (orig == null) {
+ System.err.print(rb.getString
+ (".RETURN.if.same.as.keystore.password."));
+ } else {
+ form = new MessageFormat(rb.getString
+ (".RETURN.if.same.as.for.otherAlias."));
+ Object[] src = {orig};
+ System.err.print(form.format(src));
+ }
}
System.err.flush();
char[] entered = Password.readPassword(System.in);
passwords.add(entered);
- if (entered == null) {
+ if (entered == null && origPass != null) {
return origPass;
- } else if (entered.length >= 6) {
+ } else if (entered != null && entered.length >= 6) {
System.err.print(rb.getString("Re.enter.new.password."));
char[] passAgain = Password.readPassword(System.in);
passwords.add(passAgain);
@@ -1941,6 +1965,9 @@
getCertFingerPrint("SHA-256", chain[0]));
checkWeak(label, chain[0]);
}
+ } else {
+ out.println(rb.getString
+ ("Certificate.chain.length.") + 0);
}
} else if (keyStore.entryInstanceOf(alias,
KeyStore.TrustedCertificateEntry.class)) {
@@ -2005,6 +2032,7 @@
InputStream is = null;
File srcksfile = null;
+ boolean srcIsPasswordless = false;
if (P11KEYSTORE.equalsIgnoreCase(srcstoretype) ||
KeyStoreUtil.isWindowsKeyStore(srcstoretype)) {
@@ -2029,10 +2057,20 @@
} else {
store = KeyStore.getInstance(srcstoretype, srcProviderName);
}
+ if (store.getProvider().getName().equals("SunJSSE") &&
+ srcstoretype.equalsIgnoreCase(P12KEYSTORE) &&
+ srcksfile != null && is != null) {
+ try {
+ srcIsPasswordless = PKCS12KeyStore.isPasswordless(srcksfile);
+ } catch(IOException ioe) {
+ // This must be a JKS keystore that's opened as a PKCS12
+ }
+ }
if (srcstorePass == null
&& !srcprotectedPath
- && !KeyStoreUtil.isWindowsKeyStore(srcstoretype)) {
+ && !KeyStoreUtil.isWindowsKeyStore(srcstoretype)
+ && !srcIsPasswordless) {
System.err.print(rb.getString("Enter.source.keystore.password."));
System.err.flush();
srcstorePass = Password.readPassword(System.in);
@@ -2059,6 +2097,7 @@
}
if (srcstorePass == null
+ && !srcIsPasswordless
&& !KeyStoreUtil.isWindowsKeyStore(srcstoretype)) {
// anti refactoring, copied from printNoIntegrityWarning(),
// but change 2 lines
@@ -3372,25 +3411,25 @@
if (keyPass == null) {
// Try to recover the key using the keystore password
- try {
- key = keyStore.getKey(alias, storePass);
-
- keyPass = storePass;
- passwords.add(keyPass);
- } catch (UnrecoverableKeyException e) {
- // Did not work out, so prompt user for key password
- if (!token) {
- keyPass = getKeyPasswd(alias, null, null);
- key = keyStore.getKey(alias, keyPass);
- } else {
- throw e;
+ if (storePass != null) {
+ try {
+ key = keyStore.getKey(alias, storePass);
+ passwords.add(storePass);
+ return Pair.of(key, storePass);
+ } catch (UnrecoverableKeyException e) {
+ if (token) {
+ throw e;
+ }
}
}
+ // prompt user for key password
+ keyPass = getKeyPasswd(alias, null, null);
+ key = keyStore.getKey(alias, keyPass);
+ return Pair.of(key, keyPass);
} else {
key = keyStore.getKey(alias, keyPass);
+ return Pair.of(key, keyPass);
}
-
- return Pair.of(key, keyPass);
}
/**
@@ -3404,69 +3443,58 @@
String alias,
char[] pstore,
char[] pkey) throws Exception {
-
- if (ks.containsAlias(alias) == false) {
- MessageFormat form = new MessageFormat
- (rb.getString("Alias.alias.does.not.exist"));
+ if (!ks.containsAlias(alias)) {
+ MessageFormat form = new MessageFormat(
+ rb.getString("Alias.alias.does.not.exist"));
Object[] source = {alias};
throw new Exception(form.format(source));
}
- PasswordProtection pp = null;
- Entry entry;
-
+ // Step 1: First attempt to access entry without key password
+ // (PKCS11 entry or trusted certificate entry, for example).
+ // If fail, go next.
try {
- // First attempt to access entry without key password
- // (PKCS11 entry or trusted certificate entry, for example)
-
- entry = ks.getEntry(alias, pp);
- pkey = null;
+ Entry entry = ks.getEntry(alias, null);
+ return Pair.of(entry, null);
} catch (UnrecoverableEntryException une) {
-
if(P11KEYSTORE.equalsIgnoreCase(ks.getType()) ||
- KeyStoreUtil.isWindowsKeyStore(ks.getType())) {
+ KeyStoreUtil.isWindowsKeyStore(ks.getType())) {
// should not happen, but a possibility
throw une;
}
+ }
- // entry is protected
-
- if (pkey != null) {
-
- // try provided key password
-
- pp = new PasswordProtection(pkey);
- entry = ks.getEntry(alias, pp);
-
- } else {
-
- // try store pass
-
- try {
- pp = new PasswordProtection(pstore);
- entry = ks.getEntry(alias, pp);
- pkey = pstore;
- } catch (UnrecoverableEntryException une2) {
- if (P12KEYSTORE.equalsIgnoreCase(ks.getType())) {
-
- // P12 keystore currently does not support separate
- // store and entry passwords
-
- throw une2;
- } else {
-
- // prompt for entry password
+ // entry is protected
+ // Step 2: try pkey if not null. If fail, fail.
+ if (pkey != null) {
+ PasswordProtection pp = new PasswordProtection(pkey);
+ Entry entry = ks.getEntry(alias, pp);
+ return Pair.of(entry, pkey);
+ }
- pkey = getKeyPasswd(alias, null, null);
- pp = new PasswordProtection(pkey);
- entry = ks.getEntry(alias, pp);
- }
+ // Step 3: try pstore if not null. If fail, go next.
+ if (pstore != null) {
+ try {
+ PasswordProtection pp = new PasswordProtection(pstore);
+ Entry entry = ks.getEntry(alias, pp);
+ return Pair.of(entry, pstore);
+ } catch (UnrecoverableEntryException une) {
+ if (P12KEYSTORE.equalsIgnoreCase(ks.getType())) {
+ // P12 keystore currently does not support separate
+ // store and entry passwords. We will not prompt for
+ // entry password.
+ throw une;
}
}
}
+ // Step 4: prompt for entry password
+ pkey = getKeyPasswd(alias, null, null);
+ PasswordProtection pp = new PasswordProtection(pkey);
+ Entry entry = ks.getEntry(alias, pp);
return Pair.of(entry, pkey);
}
+
/**
* Gets the requested finger print of the certificate.
*/
--- openjdk/jdk/src/share/classes/sun/security/x509/AlgorithmId.java 2022-02-08 18:39:51.000000000 +0300
+++ openjdk/jdk/src/share/classes/sun/security/x509/AlgorithmId.java 2022-02-08 18:39:51.000000000 +0300
@@ -821,8 +821,14 @@
ObjectIdentifier.newInternal(new int[] {1, 2, 840, 113549, 1, 5, 10});
public static final ObjectIdentifier pbeWithSHA1AndRC2_oid =
ObjectIdentifier.newInternal(new int[] {1, 2, 840, 113549, 1, 5, 11});
+ public static ObjectIdentifier pbeWithSHA1AndRC4_128_oid =
+ ObjectIdentifier.newInternal(new int[] {1, 2, 840, 113549, 1, 12, 1, 1});
+ public static ObjectIdentifier pbeWithSHA1AndRC4_40_oid =
+ ObjectIdentifier.newInternal(new int[] {1, 2, 840, 113549, 1, 12, 1, 2});
public static ObjectIdentifier pbeWithSHA1AndDESede_oid =
ObjectIdentifier.newInternal(new int[] {1, 2, 840, 113549, 1, 12, 1, 3});
+ public static ObjectIdentifier pbeWithSHA1AndRC2_128_oid =
+ ObjectIdentifier.newInternal(new int[] {1, 2, 840, 113549, 1, 12, 1, 5});
public static ObjectIdentifier pbeWithSHA1AndRC2_40_oid =
ObjectIdentifier.newInternal(new int[] {1, 2, 840, 113549, 1, 12, 1, 6});
@@ -1011,7 +1017,10 @@
nameTable.put(pbeWithMD5AndRC2_oid, "PBEWithMD5AndRC2");
nameTable.put(pbeWithSHA1AndDES_oid, "PBEWithSHA1AndDES");
nameTable.put(pbeWithSHA1AndRC2_oid, "PBEWithSHA1AndRC2");
+ nameTable.put(pbeWithSHA1AndRC4_128_oid, "PBEWithSHA1AndRC4_128");
+ nameTable.put(pbeWithSHA1AndRC4_40_oid, "PBEWithSHA1AndRC4_40");
nameTable.put(pbeWithSHA1AndDESede_oid, "PBEWithSHA1AndDESede");
+ nameTable.put(pbeWithSHA1AndRC2_128_oid, "PBEWithSHA1AndRC2_128");
nameTable.put(pbeWithSHA1AndRC2_40_oid, "PBEWithSHA1AndRC2_40");
}
--- openjdk/jdk/src/share/lib/security/java.security-aix 2022-02-08 18:39:52.000000000 +0300
+++ openjdk/jdk/src/share/lib/security/java.security-aix 2022-02-08 18:39:51.000000000 +0300
@@ -1092,6 +1092,77 @@
jceks.key.serialFilter = java.lang.Enum;java.security.KeyRep;\
java.security.KeyRep$Type;javax.crypto.spec.SecretKeySpec;!*
+#
+# PKCS12 KeyStore properties
+#
+# The following properties, if configured, are used by the PKCS12 KeyStore
+# implementation during the creation of a new keystore. Several of the
+# properties may also be used when modifying an existing keystore. The
+# properties can be overridden by a KeyStore API that specifies its own
+# algorithms and parameters.
+#
+# If an existing PKCS12 keystore is loaded and then stored, the algorithm and
+# parameter used to generate the existing Mac will be reused. If the existing
+# keystore does not have a Mac, no Mac will be created while storing. If there
+# is at least one certificate in the existing keystore, the algorithm and
+# parameters used to encrypt the last certificate in the existing keystore will
+# be reused to encrypt all certificates while storing. If the last certificate
+# in the existing keystore is not encrypted, all certificates will be stored
+# unencrypted. If there is no certificate in the existing keystore, any newly
+# added certificate will be encrypted (or stored unencrypted if algorithm
+# value is "NONE") using the "keystore.pkcs12.certProtectionAlgorithm" and
+# "keystore.pkcs12.certPbeIterationCount" values defined here. Existing private
+# and secret key(s) are not changed. Newly set private and secret key(s) will
+# be encrypted using the "keystore.pkcs12.keyProtectionAlgorithm" and
+# "keystore.pkcs12.keyPbeIterationCount" values defined here.
+#
+# In order to apply new algorithms and parameters to all entries in an
+# existing keystore, one can create a new keystore and add entries in the
+# existing keystore into the new keystore. This can be achieved by calling the
+# "keytool -importkeystore" command.
+#
+# If a system property of the same name is also specified, it supersedes the
+# security property value defined here.
+#
+# If the property is set to an illegal value,
+# an iteration count that is not a positive integer, or an unknown algorithm
+# name, an exception will be thrown when the property is used.
+# If the property is not set or empty, a default value will be used.
+#
+# Note: These properties are currently used by the JDK Reference implementation.
+# They are not guaranteed to be examined and used by other implementations.
+
+# The algorithm used to encrypt a certificate. This can be any non-Hmac PBE
+# algorithm defined in the Cipher section of the Java Security Standard
+# Algorithm Names Specification. When set to "NONE", the certificate
+# is not encrypted. The default value is "PBEWithSHA1AndRC2_40".
+#keystore.pkcs12.certProtectionAlgorithm = PBEWithSHA1AndRC2_40
+
+# The iteration count used by the PBE algorithm when encrypting a certificate.
+# This value must be a positive integer. The default value is 50000.
+#keystore.pkcs12.certPbeIterationCount = 50000
+
+# The algorithm used to encrypt a private key or secret key. This can be
+# any non-Hmac PBE algorithm defined in the Cipher section of the Java
+# Security Standard Algorithm Names Specification. The value must not be "NONE".
+# The default value is "PBEWithSHA1AndDESede".
+#keystore.pkcs12.keyProtectionAlgorithm = PBEWithSHA1AndDESede
+
+# The iteration count used by the PBE algorithm when encrypting a private key
+# or a secret key. This value must be a positive integer. The default value
+# is 50000.
+#keystore.pkcs12.keyPbeIterationCount = 50000
+
+# The algorithm used to calculate the optional MacData at the end of a PKCS12
+# file. This can be any HmacPBE algorithm defined in the Mac section of the
+# Java Security Standard Algorithm Names Specification. When set to "NONE",
+# no Mac is generated. The default value is "HmacPBESHA1".
+#keystore.pkcs12.macAlgorithm = HmacPBESHA1
+
+# The iteration count used by the MacData algorithm. This value must be a
+# positive integer. The default value is 100000.
+#keystore.pkcs12.macIterationCount = 100000
+
# The iteration count used for password-based encryption (PBE) in JCEKS
# keystores. Values in the range 10000 to 5000000 are considered valid.
# If the value is out of this range, or is not a number, or is unspecified;
--- openjdk/jdk/src/share/lib/security/java.security-linux 2022-02-08 18:39:52.000000000 +0300
+++ openjdk/jdk/src/share/lib/security/java.security-linux 2022-02-08 18:39:52.000000000 +0300
@@ -1098,6 +1098,77 @@
jceks.key.serialFilter = java.lang.Enum;java.security.KeyRep;\
java.security.KeyRep$Type;javax.crypto.spec.SecretKeySpec;!*
+#
+# PKCS12 KeyStore properties
+#
+# The following properties, if configured, are used by the PKCS12 KeyStore
+# implementation during the creation of a new keystore. Several of the
+# properties may also be used when modifying an existing keystore. The
+# properties can be overridden by a KeyStore API that specifies its own
+# algorithms and parameters.
+#
+# If an existing PKCS12 keystore is loaded and then stored, the algorithm and
+# parameter used to generate the existing Mac will be reused. If the existing
+# keystore does not have a Mac, no Mac will be created while storing. If there
+# is at least one certificate in the existing keystore, the algorithm and
+# parameters used to encrypt the last certificate in the existing keystore will
+# be reused to encrypt all certificates while storing. If the last certificate
+# in the existing keystore is not encrypted, all certificates will be stored
+# unencrypted. If there is no certificate in the existing keystore, any newly
+# added certificate will be encrypted (or stored unencrypted if algorithm
+# value is "NONE") using the "keystore.pkcs12.certProtectionAlgorithm" and
+# "keystore.pkcs12.certPbeIterationCount" values defined here. Existing private
+# and secret key(s) are not changed. Newly set private and secret key(s) will
+# be encrypted using the "keystore.pkcs12.keyProtectionAlgorithm" and
+# "keystore.pkcs12.keyPbeIterationCount" values defined here.
+#
+# In order to apply new algorithms and parameters to all entries in an
+# existing keystore, one can create a new keystore and add entries in the
+# existing keystore into the new keystore. This can be achieved by calling the
+# "keytool -importkeystore" command.
+#
+# If a system property of the same name is also specified, it supersedes the
+# security property value defined here.
+#
+# If the property is set to an illegal value,
+# an iteration count that is not a positive integer, or an unknown algorithm
+# name, an exception will be thrown when the property is used.
+# If the property is not set or empty, a default value will be used.
+#
+# Note: These properties are currently used by the JDK Reference implementation.
+# They are not guaranteed to be examined and used by other implementations.
+
+# The algorithm used to encrypt a certificate. This can be any non-Hmac PBE
+# algorithm defined in the Cipher section of the Java Security Standard
+# Algorithm Names Specification. When set to "NONE", the certificate
+# is not encrypted. The default value is "PBEWithSHA1AndRC2_40".
+#keystore.pkcs12.certProtectionAlgorithm = PBEWithSHA1AndRC2_40
+
+# The iteration count used by the PBE algorithm when encrypting a certificate.
+# This value must be a positive integer. The default value is 50000.
+#keystore.pkcs12.certPbeIterationCount = 50000
+
+# The algorithm used to encrypt a private key or secret key. This can be
+# any non-Hmac PBE algorithm defined in the Cipher section of the Java
+# Security Standard Algorithm Names Specification. The value must not be "NONE".
+# The default value is "PBEWithSHA1AndDESede".
+#keystore.pkcs12.keyProtectionAlgorithm = PBEWithSHA1AndDESede
+
+# The iteration count used by the PBE algorithm when encrypting a private key
+# or a secret key. This value must be a positive integer. The default value
+# is 50000.
+#keystore.pkcs12.keyPbeIterationCount = 50000
+
+# The algorithm used to calculate the optional MacData at the end of a PKCS12
+# file. This can be any HmacPBE algorithm defined in the Mac section of the
+# Java Security Standard Algorithm Names Specification. When set to "NONE",
+# no Mac is generated. The default value is "HmacPBESHA1".
+#keystore.pkcs12.macAlgorithm = HmacPBESHA1
+
+# The iteration count used by the MacData algorithm. This value must be a
+# positive integer. The default value is 100000.
+#keystore.pkcs12.macIterationCount = 100000
+
# The iteration count used for password-based encryption (PBE) in JCEKS
# keystores. Values in the range 10000 to 5000000 are considered valid.
# If the value is out of this range, or is not a number, or is unspecified;
--- openjdk/jdk/src/share/lib/security/java.security-macosx 2022-02-08 18:39:53.000000000 +0300
+++ openjdk/jdk/src/share/lib/security/java.security-macosx 2022-02-08 18:39:53.000000000 +0300
@@ -1096,6 +1096,77 @@
jceks.key.serialFilter = java.lang.Enum;java.security.KeyRep;\
java.security.KeyRep$Type;javax.crypto.spec.SecretKeySpec;!*
+#
+# PKCS12 KeyStore properties
+#
+# The following properties, if configured, are used by the PKCS12 KeyStore
+# implementation during the creation of a new keystore. Several of the
+# properties may also be used when modifying an existing keystore. The
+# properties can be overridden by a KeyStore API that specifies its own
+# algorithms and parameters.
+#
+# If an existing PKCS12 keystore is loaded and then stored, the algorithm and
+# parameter used to generate the existing Mac will be reused. If the existing
+# keystore does not have a Mac, no Mac will be created while storing. If there
+# is at least one certificate in the existing keystore, the algorithm and
+# parameters used to encrypt the last certificate in the existing keystore will
+# be reused to encrypt all certificates while storing. If the last certificate
+# in the existing keystore is not encrypted, all certificates will be stored
+# unencrypted. If there is no certificate in the existing keystore, any newly
+# added certificate will be encrypted (or stored unencrypted if algorithm
+# value is "NONE") using the "keystore.pkcs12.certProtectionAlgorithm" and
+# "keystore.pkcs12.certPbeIterationCount" values defined here. Existing private
+# and secret key(s) are not changed. Newly set private and secret key(s) will
+# be encrypted using the "keystore.pkcs12.keyProtectionAlgorithm" and
+# "keystore.pkcs12.keyPbeIterationCount" values defined here.
+#
+# In order to apply new algorithms and parameters to all entries in an
+# existing keystore, one can create a new keystore and add entries in the
+# existing keystore into the new keystore. This can be achieved by calling the
+# "keytool -importkeystore" command.
+#
+# If a system property of the same name is also specified, it supersedes the
+# security property value defined here.
+#
+# If the property is set to an illegal value,
+# an iteration count that is not a positive integer, or an unknown algorithm
+# name, an exception will be thrown when the property is used.
+# If the property is not set or empty, a default value will be used.
+#
+# Note: These properties are currently used by the JDK Reference implementation.
+# They are not guaranteed to be examined and used by other implementations.
+
+# The algorithm used to encrypt a certificate. This can be any non-Hmac PBE
+# algorithm defined in the Cipher section of the Java Security Standard
+# Algorithm Names Specification. When set to "NONE", the certificate
+# is not encrypted. The default value is "PBEWithSHA1AndRC2_40".
+#keystore.pkcs12.certProtectionAlgorithm = PBEWithSHA1AndRC2_40
+
+# The iteration count used by the PBE algorithm when encrypting a certificate.
+# This value must be a positive integer. The default value is 50000.
+#keystore.pkcs12.certPbeIterationCount = 50000
+
+# The algorithm used to encrypt a private key or secret key. This can be
+# any non-Hmac PBE algorithm defined in the Cipher section of the Java
+# Security Standard Algorithm Names Specification. The value must not be "NONE".
+# The default value is "PBEWithSHA1AndDESede".
+#keystore.pkcs12.keyProtectionAlgorithm = PBEWithSHA1AndDESede
+
+# The iteration count used by the PBE algorithm when encrypting a private key
+# or a secret key. This value must be a positive integer. The default value
+# is 50000.
+#keystore.pkcs12.keyPbeIterationCount = 50000
+
+# The algorithm used to calculate the optional MacData at the end of a PKCS12
+# file. This can be any HmacPBE algorithm defined in the Mac section of the
+# Java Security Standard Algorithm Names Specification. When set to "NONE",
+# no Mac is generated. The default value is "HmacPBESHA1".
+#keystore.pkcs12.macAlgorithm = HmacPBESHA1
+
+# The iteration count used by the MacData algorithm. This value must be a
+# positive integer. The default value is 100000.
+#keystore.pkcs12.macIterationCount = 100000
+
# The iteration count used for password-based encryption (PBE) in JCEKS
# keystores. Values in the range 10000 to 5000000 are considered valid.
# If the value is out of this range, or is not a number, or is unspecified;
--- openjdk/jdk/src/share/lib/security/java.security-solaris 2022-02-08 18:39:54.000000000 +0300
+++ openjdk/jdk/src/share/lib/security/java.security-solaris 2022-02-08 18:39:54.000000000 +0300
@@ -1094,6 +1094,77 @@
jceks.key.serialFilter = java.lang.Enum;java.security.KeyRep;\
java.security.KeyRep$Type;javax.crypto.spec.SecretKeySpec;!*
+#
+# PKCS12 KeyStore properties
+#
+# The following properties, if configured, are used by the PKCS12 KeyStore
+# implementation during the creation of a new keystore. Several of the
+# properties may also be used when modifying an existing keystore. The
+# properties can be overridden by a KeyStore API that specifies its own
+# algorithms and parameters.
+#
+# If an existing PKCS12 keystore is loaded and then stored, the algorithm and
+# parameter used to generate the existing Mac will be reused. If the existing
+# keystore does not have a Mac, no Mac will be created while storing. If there
+# is at least one certificate in the existing keystore, the algorithm and
+# parameters used to encrypt the last certificate in the existing keystore will
+# be reused to encrypt all certificates while storing. If the last certificate
+# in the existing keystore is not encrypted, all certificates will be stored
+# unencrypted. If there is no certificate in the existing keystore, any newly
+# added certificate will be encrypted (or stored unencrypted if algorithm
+# value is "NONE") using the "keystore.pkcs12.certProtectionAlgorithm" and
+# "keystore.pkcs12.certPbeIterationCount" values defined here. Existing private
+# and secret key(s) are not changed. Newly set private and secret key(s) will
+# be encrypted using the "keystore.pkcs12.keyProtectionAlgorithm" and
+# "keystore.pkcs12.keyPbeIterationCount" values defined here.
+#
+# In order to apply new algorithms and parameters to all entries in an
+# existing keystore, one can create a new keystore and add entries in the
+# existing keystore into the new keystore. This can be achieved by calling the
+# "keytool -importkeystore" command.
+#
+# If a system property of the same name is also specified, it supersedes the
+# security property value defined here.
+#
+# If the property is set to an illegal value,
+# an iteration count that is not a positive integer, or an unknown algorithm
+# name, an exception will be thrown when the property is used.
+# If the property is not set or empty, a default value will be used.
+#
+# Note: These properties are currently used by the JDK Reference implementation.
+# They are not guaranteed to be examined and used by other implementations.
+
+# The algorithm used to encrypt a certificate. This can be any non-Hmac PBE
+# algorithm defined in the Cipher section of the Java Security Standard
+# Algorithm Names Specification. When set to "NONE", the certificate
+# is not encrypted. The default value is "PBEWithSHA1AndRC2_40".
+#keystore.pkcs12.certProtectionAlgorithm = PBEWithSHA1AndRC2_40
+
+# The iteration count used by the PBE algorithm when encrypting a certificate.
+# This value must be a positive integer. The default value is 50000.
+#keystore.pkcs12.certPbeIterationCount = 50000
+
+# The algorithm used to encrypt a private key or secret key. This can be
+# any non-Hmac PBE algorithm defined in the Cipher section of the Java
+# Security Standard Algorithm Names Specification. The value must not be "NONE".
+# The default value is "PBEWithSHA1AndDESede".
+#keystore.pkcs12.keyProtectionAlgorithm = PBEWithSHA1AndDESede
+
+# The iteration count used by the PBE algorithm when encrypting a private key
+# or a secret key. This value must be a positive integer. The default value
+# is 50000.
+#keystore.pkcs12.keyPbeIterationCount = 50000
+
+# The algorithm used to calculate the optional MacData at the end of a PKCS12
+# file. This can be any HmacPBE algorithm defined in the Mac section of the
+# Java Security Standard Algorithm Names Specification. When set to "NONE",
+# no Mac is generated. The default value is "HmacPBESHA1".
+#keystore.pkcs12.macAlgorithm = HmacPBESHA1
+
+# The iteration count used by the MacData algorithm. This value must be a
+# positive integer. The default value is 100000.
+#keystore.pkcs12.macIterationCount = 100000
+
# The iteration count used for password-based encryption (PBE) in JCEKS
# keystores. Values in the range 10000 to 5000000 are considered valid.
# If the value is out of this range, or is not a number, or is unspecified;
--- openjdk/jdk/src/share/lib/security/java.security-windows 2022-02-08 18:39:55.000000000 +0300
+++ openjdk/jdk/src/share/lib/security/java.security-windows 2022-02-08 18:39:55.000000000 +0300
@@ -1096,6 +1096,77 @@
jceks.key.serialFilter = java.lang.Enum;java.security.KeyRep;\
java.security.KeyRep$Type;javax.crypto.spec.SecretKeySpec;!*
+#
+# PKCS12 KeyStore properties
+#
+# The following properties, if configured, are used by the PKCS12 KeyStore
+# implementation during the creation of a new keystore. Several of the
+# properties may also be used when modifying an existing keystore. The
+# properties can be overridden by a KeyStore API that specifies its own
+# algorithms and parameters.
+#
+# If an existing PKCS12 keystore is loaded and then stored, the algorithm and
+# parameter used to generate the existing Mac will be reused. If the existing
+# keystore does not have a Mac, no Mac will be created while storing. If there
+# is at least one certificate in the existing keystore, the algorithm and
+# parameters used to encrypt the last certificate in the existing keystore will
+# be reused to encrypt all certificates while storing. If the last certificate
+# in the existing keystore is not encrypted, all certificates will be stored
+# unencrypted. If there is no certificate in the existing keystore, any newly
+# added certificate will be encrypted (or stored unencrypted if algorithm
+# value is "NONE") using the "keystore.pkcs12.certProtectionAlgorithm" and
+# "keystore.pkcs12.certPbeIterationCount" values defined here. Existing private
+# and secret key(s) are not changed. Newly set private and secret key(s) will
+# be encrypted using the "keystore.pkcs12.keyProtectionAlgorithm" and
+# "keystore.pkcs12.keyPbeIterationCount" values defined here.
+#
+# In order to apply new algorithms and parameters to all entries in an
+# existing keystore, one can create a new keystore and add entries in the
+# existing keystore into the new keystore. This can be achieved by calling the
+# "keytool -importkeystore" command.
+#
+# If a system property of the same name is also specified, it supersedes the
+# security property value defined here.
+#
+# If the property is set to an illegal value,
+# an iteration count that is not a positive integer, or an unknown algorithm
+# name, an exception will be thrown when the property is used.
+# If the property is not set or empty, a default value will be used.
+#
+# Note: These properties are currently used by the JDK Reference implementation.
+# They are not guaranteed to be examined and used by other implementations.
+
+# The algorithm used to encrypt a certificate. This can be any non-Hmac PBE
+# algorithm defined in the Cipher section of the Java Security Standard
+# Algorithm Names Specification. When set to "NONE", the certificate
+# is not encrypted. The default value is "PBEWithSHA1AndRC2_40".
+#keystore.pkcs12.certProtectionAlgorithm = PBEWithSHA1AndRC2_40
+
+# The iteration count used by the PBE algorithm when encrypting a certificate.
+# This value must be a positive integer. The default value is 50000.
+#keystore.pkcs12.certPbeIterationCount = 50000
+
+# The algorithm used to encrypt a private key or secret key. This can be
+# any non-Hmac PBE algorithm defined in the Cipher section of the Java
+# Security Standard Algorithm Names Specification. The value must not be "NONE".
+# The default value is "PBEWithSHA1AndDESede".
+#keystore.pkcs12.keyProtectionAlgorithm = PBEWithSHA1AndDESede
+
+# The iteration count used by the PBE algorithm when encrypting a private key
+# or a secret key. This value must be a positive integer. The default value
+# is 50000.
+#keystore.pkcs12.keyPbeIterationCount = 50000
+
+# The algorithm used to calculate the optional MacData at the end of a PKCS12
+# file. This can be any HmacPBE algorithm defined in the Mac section of the
+# Java Security Standard Algorithm Names Specification. When set to "NONE",
+# no Mac is generated. The default value is "HmacPBESHA1".
+#keystore.pkcs12.macAlgorithm = HmacPBESHA1
+
+# The iteration count used by the MacData algorithm. This value must be a
+# positive integer. The default value is 100000.
+#keystore.pkcs12.macIterationCount = 100000
+
# The iteration count used for password-based encryption (PBE) in JCEKS
# keystores. Values in the range 10000 to 5000000 are considered valid.
# If the value is out of this range, or is not a number, or is unspecified;
--- /dev/null 2022-02-08 18:39:56.000000000 +0300
+++ openjdk/jdk/src/share/classes/com/sun/crypto/provider/HmacPKCS12PBECore.java 2022-02-08 18:39:55.000000000 +0300
@@ -0,0 +1,188 @@
+/*
+ * Copyright (c) 2003, 2018, Oracle and/or its affiliates. All rights reserved.
+ * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
+ *
+ * This code is free software; you can redistribute it and/or modify it
+ * under the terms of the GNU General Public License version 2 only, as
+ * published by the Free Software Foundation. Oracle designates this
+ * particular file as subject to the "Classpath" exception as provided
+ * by Oracle in the LICENSE file that accompanied this code.
+ *
+ * This code is distributed in the hope that it will be useful, but WITHOUT
+ * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
+ * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
+ * version 2 for more details (a copy is included in the LICENSE file that
+ * accompanied this code).
+ *
+ * You should have received a copy of the GNU General Public License version
+ * 2 along with this work; if not, write to the Free Software Foundation,
+ * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
+ *
+ * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
+ * or visit www.oracle.com if you need additional information or have any
+ * questions.
+ */
+
+package com.sun.crypto.provider;
+
+import java.util.Arrays;
+
+import javax.crypto.SecretKey;
+import javax.crypto.spec.SecretKeySpec;
+import javax.crypto.spec.PBEParameterSpec;
+import java.security.*;
+import java.security.spec.*;
+
+/**
+ * This is an implementation of the HMAC algorithms as defined
+ * in PKCS#12 v1.1 standard (see RFC 7292 Appendix B.4).
+ *
+ * @author Valerie Peng
+ */
+abstract class HmacPKCS12PBECore extends HmacCore {
+
+ public static final class HmacPKCS12PBE_SHA1 extends HmacPKCS12PBECore {
+ public HmacPKCS12PBE_SHA1() throws NoSuchAlgorithmException {
+ super("SHA1", 64);
+ }
+ }
+
+ public static final class HmacPKCS12PBE_SHA224 extends HmacPKCS12PBECore {
+ public HmacPKCS12PBE_SHA224() throws NoSuchAlgorithmException {
+ super("SHA-224", 64);
+ }
+ }
+
+ public static final class HmacPKCS12PBE_SHA256 extends HmacPKCS12PBECore {
+ public HmacPKCS12PBE_SHA256() throws NoSuchAlgorithmException {
+ super("SHA-256", 64);
+ }
+ }
+
+ public static final class HmacPKCS12PBE_SHA384 extends HmacPKCS12PBECore {
+ public HmacPKCS12PBE_SHA384() throws NoSuchAlgorithmException {
+ super("SHA-384", 128);
+ }
+ }
+
+ public static final class HmacPKCS12PBE_SHA512 extends HmacPKCS12PBECore {
+ public HmacPKCS12PBE_SHA512() throws NoSuchAlgorithmException {
+ super("SHA-512", 128);
+ }
+ }
+
+ public static final class HmacPKCS12PBE_SHA512_224 extends HmacPKCS12PBECore {
+ public HmacPKCS12PBE_SHA512_224() throws NoSuchAlgorithmException {
+ super("SHA-512/224", 128);
+ }
+ }
+
+ public static final class HmacPKCS12PBE_SHA512_256 extends HmacPKCS12PBECore {
+ public HmacPKCS12PBE_SHA512_256() throws NoSuchAlgorithmException {
+ super("SHA-512/256", 128);
+ }
+ }
+
+ private final String algorithm;
+ private final int bl;
+
+ /**
+ * Standard constructor, creates a new HmacSHA1 instance.
+ */
+ public HmacPKCS12PBECore(String algorithm, int bl) throws NoSuchAlgorithmException {
+ super(algorithm, bl);
+ this.algorithm = algorithm;
+ this.bl = bl;
+ }
+
+ /**
+ * Initializes the HMAC with the given secret key and algorithm parameters.
+ *
+ * @param key the secret key.
+ * @param params the algorithm parameters.
+ *
+ * @exception InvalidKeyException if the given key is inappropriate for
+ * initializing this MAC.
+ * @exception InvalidAlgorithmParameterException if the given algorithm
+ * parameters are inappropriate for this MAC.
+ */
+ protected void engineInit(Key key, AlgorithmParameterSpec params)
+ throws InvalidKeyException, InvalidAlgorithmParameterException {
+ char[] passwdChars;
+ byte[] salt = null;
+ int iCount = 0;
+ if (key instanceof javax.crypto.interfaces.PBEKey) {
+ javax.crypto.interfaces.PBEKey pbeKey =
+ (javax.crypto.interfaces.PBEKey) key;
+ passwdChars = pbeKey.getPassword();
+ salt = pbeKey.getSalt(); // maybe null if unspecified
+ iCount = pbeKey.getIterationCount(); // maybe 0 if unspecified
+ } else if (key instanceof SecretKey) {
+ byte[] passwdBytes;
+ if (!(key.getAlgorithm().regionMatches(true, 0, "PBE", 0, 3)) ||
+ (passwdBytes = key.getEncoded()) == null) {
+ throw new InvalidKeyException("Missing password");
+ }
+ passwdChars = new char[passwdBytes.length];
+ for (int i=0; i<passwdChars.length; i++) {
+ passwdChars[i] = (char) (passwdBytes[i] & 0x7f);
+ }
+ Arrays.fill(passwdBytes, (byte)0x00);
+ } else {
+ throw new InvalidKeyException("SecretKey of PBE type required");
+ }
+
+ byte[] derivedKey;
+ try {
+ if (params == null) {
+ // should not auto-generate default values since current
+ // javax.crypto.Mac api does not have any method for caller to
+ // retrieve the generated defaults.
+ if ((salt == null) || (iCount == 0)) {
+ throw new InvalidAlgorithmParameterException
+ ("PBEParameterSpec required for salt and iteration count");
+ }
+ } else if (!(params instanceof PBEParameterSpec)) {
+ throw new InvalidAlgorithmParameterException
+ ("PBEParameterSpec type required");
+ } else {
+ PBEParameterSpec pbeParams = (PBEParameterSpec) params;
+ // make sure the parameter values are consistent
+ if (salt != null) {
+ if (!Arrays.equals(salt, pbeParams.getSalt())) {
+ throw new InvalidAlgorithmParameterException
+ ("Inconsistent value of salt between key and params");
+ }
+ } else {
+ salt = pbeParams.getSalt();
+ }
+ if (iCount != 0) {
+ if (iCount != pbeParams.getIterationCount()) {
+ throw new InvalidAlgorithmParameterException
+ ("Different iteration count between key and params");
+ }
+ } else {
+ iCount = pbeParams.getIterationCount();
+ }
+ }
+ // For security purpose, we need to enforce a minimum length
+ // for salt; just require the minimum salt length to be 8-byte
+ // which is what PKCS#5 recommends and openssl does.
+ if (salt.length < 8) {
+ throw new InvalidAlgorithmParameterException
+ ("Salt must be at least 8 bytes long");
+ }
+ if (iCount <= 0) {
+ throw new InvalidAlgorithmParameterException
+ ("IterationCount must be a positive number");
+ }
+ derivedKey = PKCS12PBECipherCore.derive(passwdChars, salt,
+ iCount, engineGetMacLength(), PKCS12PBECipherCore.MAC_KEY,
+ algorithm, bl);
+ } finally {
+ Arrays.fill(passwdChars, '\0');
+ }
+ SecretKey cipherKey = new SecretKeySpec(derivedKey, "HmacSHA1");
+ super.engineInit(cipherKey, null);
+ }
+}
--- /dev/null 2022-02-08 18:39:56.000000000 +0300
+++ openjdk/jdk/test/sun/security/pkcs12/ParamsPreferences.java 2022-02-08 18:39:56.000000000 +0300
@@ -0,0 +1,235 @@
+/*
+ * Copyright (c) 2018, Oracle and/or its affiliates. All rights reserved.
+ * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
+ *
+ * This code is free software; you can redistribute it and/or modify it
+ * under the terms of the GNU General Public License version 2 only, as
+ * published by the Free Software Foundation.
+ *
+ * This code is distributed in the hope that it will be useful, but WITHOUT
+ * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
+ * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
+ * version 2 for more details (a copy is included in the LICENSE file that
+ * accompanied this code).
+ *
+ * You should have received a copy of the GNU General Public License version
+ * 2 along with this work; if not, write to the Free Software Foundation,
+ * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
+ *
+ * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
+ * or visit www.oracle.com if you need additional information or have any
+ * questions.
+ */
+
+import jdk.testlibrary.SecurityTools;
+import sun.security.util.ObjectIdentifier;
+
+import java.nio.file.Files;
+import java.nio.file.Path;
+import java.nio.file.Paths;
+import java.util.ArrayList;
+import java.util.List;
+
+import static jdk.testlibrary.security.DerUtils.*;
+import static sun.security.pkcs.ContentInfo.DATA_OID;
+import static sun.security.pkcs.ContentInfo.ENCRYPTED_DATA_OID;
+import static sun.security.x509.AlgorithmId.*;
+
+/*
+ * @test
+ * @bug 8076190
+ * @library /lib/testlibrary /lib
+ * @modules java.base/sun.security.pkcs
+ * java.base/sun.security.x509
+ * java.base/sun.security.util
+ * @summary Checks the preferences order of pkcs12 params
+ */
+public class ParamsPreferences {
+
+ public static final void main(String[] args) throws Exception {
+ int c = 0;
+
+ // with storepass
+ test(c++, "-", "-",
+ pbeWithSHA1AndRC2_40_oid, 50000,
+ pbeWithSHA1AndDESede_oid, 50000,
+ SHA_oid, 100000);
+
+ // password-less with system property
+ test(c++, "keystore.pkcs12.certProtectionAlgorithm", "NONE",
+ "keystore.pkcs12.macAlgorithm", "NONE",
+ "-", "-",
+ null, 0,
+ pbeWithSHA1AndDESede_oid, 50000,
+ null, 0);
+
+ // password-less with security property
+ test(c++, "-",
+ "keystore.pkcs12.certProtectionAlgorithm", "NONE",
+ "keystore.pkcs12.macAlgorithm", "NONE",
+ "-",
+ null, 0,
+ pbeWithSHA1AndDESede_oid, 50000,
+ null, 0);
+
+ // back to with storepass by overriding security property with system property
+ test(c++, "keystore.pkcs12.certProtectionAlgorithm", "PBEWithSHA1AndDESede",
+ "keystore.pkcs12.macAlgorithm", "HmacPBESHA256",
+ "-",
+ "keystore.pkcs12.certProtectionAlgorithm", "NONE",
+ "keystore.pkcs12.macAlgorithm", "NONE",
+ "-",
+ pbeWithSHA1AndDESede_oid, 50000,
+ pbeWithSHA1AndDESede_oid, 50000,
+ SHA256_oid, 100000);
+
+ // back to with storepass by using "" to force hardcoded default
+ test(c++, "keystore.pkcs12.certProtectionAlgorithm", "",
+ "keystore.pkcs12.keyProtectionAlgorithm", "",
+ "keystore.pkcs12.macAlgorithm", "",
+ "-",
+ "keystore.pkcs12.certProtectionAlgorithm", "NONE",
+ "keystore.pkcs12.keyProtectionAlgorithm", "PBEWithSHA1AndRC2_40",
+ "keystore.pkcs12.macAlgorithm", "NONE",
+ "-",
+ pbeWithSHA1AndRC2_40_oid, 50000,
+ pbeWithSHA1AndDESede_oid, 50000,
+ SHA_oid, 100000);
+
+ // change everything with system property
+ test(c++, "keystore.pkcs12.certProtectionAlgorithm", "PBEWithSHA1AndDESede",
+ "keystore.pkcs12.certPbeIterationCount", 3000,
+ "keystore.pkcs12.keyProtectionAlgorithm", "PBEWithSHA1AndRC2_40",
+ "keystore.pkcs12.keyPbeIterationCount", 4000,
+ "keystore.pkcs12.macAlgorithm", "HmacPBESHA256",
+ "keystore.pkcs12.macIterationCount", 2000,
+ "-", "-",
+ pbeWithSHA1AndDESede_oid, 3000,
+ pbeWithSHA1AndRC2_40_oid, 4000,
+ SHA256_oid, 2000);
+
+ // change everything with security property
+ test(c++, "-",
+ "keystore.pkcs12.certProtectionAlgorithm", "PBEWithSHA1AndDESede",
+ "keystore.pkcs12.certPbeIterationCount", 3000,
+ "keystore.pkcs12.keyProtectionAlgorithm", "PBEWithSHA1AndRC2_40",
+ "keystore.pkcs12.keyPbeIterationCount", 4000,
+ "keystore.pkcs12.macAlgorithm", "HmacPBESHA256",
+ "keystore.pkcs12.macIterationCount", 2000,
+ "-",
+ pbeWithSHA1AndDESede_oid, 3000,
+ pbeWithSHA1AndRC2_40_oid, 4000,
+ SHA256_oid, 2000);
+
+ // override security property with system property
+ test(c++, "keystore.pkcs12.certProtectionAlgorithm", "PBEWithSHA1AndDESede",
+ "keystore.pkcs12.certPbeIterationCount", 13000,
+ "keystore.pkcs12.keyProtectionAlgorithm", "PBEWithSHA1AndRC2_40",
+ "keystore.pkcs12.keyPbeIterationCount", 14000,
+ "keystore.pkcs12.macAlgorithm", "HmacPBESHA256",
+ "keystore.pkcs12.macIterationCount", 12000,
+ "-",
+ "keystore.pkcs12.certProtectionAlgorithm", "PBEWithSHA1AndRC2_40",
+ "keystore.pkcs12.certPbeIterationCount", 3000,
+ "keystore.pkcs12.keyProtectionAlgorithm", "PBEWithSHA1AndDESede",
+ "keystore.pkcs12.keyPbeIterationCount", 4000,
+ "keystore.pkcs12.macAlgorithm", "HmacPBESHA1",
+ "keystore.pkcs12.macIterationCount", 2000,
+ "-",
+ pbeWithSHA1AndDESede_oid, 13000,
+ pbeWithSHA1AndRC2_40_oid, 14000,
+ SHA256_oid, 12000);
+
+ // check keyProtectionAlgorithm old behavior. Preferences of
+ // 4 different settings.
+
+ test(c++, "-",
+ "keystore.PKCS12.keyProtectionAlgorithm", "PBEWithSHA1AndRC2_128",
+ "-",
+ pbeWithSHA1AndRC2_40_oid, 50000,
+ pbeWithSHA1AndRC2_128_oid, 50000,
+ SHA_oid, 100000);
+ test(c++, "-",
+ "keystore.PKCS12.keyProtectionAlgorithm", "PBEWithSHA1AndRC2_128",
+ "keystore.pkcs12.keyProtectionAlgorithm", "PBEWithSHA1AndRC2_40",
+ "-",
+ pbeWithSHA1AndRC2_40_oid, 50000,
+ pbeWithSHA1AndRC2_40_oid, 50000,
+ SHA_oid, 100000);
+ test(c++,
+ "keystore.PKCS12.keyProtectionAlgorithm", "PBEWithSHA1AndRC4_128",
+ "-",
+ "keystore.PKCS12.keyProtectionAlgorithm", "PBEWithSHA1AndRC2_128",
+ "keystore.pkcs12.keyProtectionAlgorithm", "PBEWithSHA1AndRC2_40",
+ "-",
+ pbeWithSHA1AndRC2_40_oid, 50000,
+ pbeWithSHA1AndRC4_128_oid, 50000,
+ SHA_oid, 100000);
+ test(c++,
+ "keystore.PKCS12.keyProtectionAlgorithm", "PBEWithSHA1AndRC4_128",
+ "keystore.pkcs12.keyProtectionAlgorithm", "PBEWithSHA1AndRC4_40",
+ "-",
+ "keystore.PKCS12.keyProtectionAlgorithm", "PBEWithSHA1AndRC2_128",
+ "keystore.pkcs12.keyProtectionAlgorithm", "PBEWithSHA1AndRC2_40",
+ "-",
+ pbeWithSHA1AndRC2_40_oid, 50000,
+ pbeWithSHA1AndRC4_40_oid, 50000,
+ SHA_oid, 100000);
+ }
+
+ /**
+ * Run once.
+ *
+ * @param args an array containing system properties and values, "-",
+ * security properties and values, "-", expected certPbeAlg,
+ * certPbeIC, keyPbeAlg, keyPbeIc, macAlg, macIC.
+ */
+ static void test(int n, Object... args) throws Exception {
+ boolean isSysProp = true;
+ String cmd = "-keystore ks" + n + " -storetype PKCS12 -genkeypair -keyalg EC "
+ + "-alias a -dname CN=A -storepass changeit "
+ + "-J-Djava.security.properties=" + n + ".conf";
+ List<String> jsConf = new ArrayList<>();
+ for (int i = 0; i < args.length; i++) {
+ if (isSysProp) {
+ if (args[i].equals("-")) {
+ isSysProp = false;
+ } else {
+ cmd += " -J-D" + args[i] + "=" + args[++i];
+ }
+ } else {
+ if (args[i] == "-") {
+ Files.write(Paths.get(n + ".conf"), jsConf);
+ System.out.println("--------- test starts ----------");
+ System.out.println(jsConf);
+ SecurityTools.keytool(cmd).shouldHaveExitValue(0);
+
+ byte[] data = Files.readAllBytes(Paths.get("ks" + n));
+
+ // cert pbe alg + ic
+ if (args[i+1] == null) {
+ checkAlg(data, "110c10", DATA_OID);
+ } else {
+ checkAlg(data, "110c10", ENCRYPTED_DATA_OID);
+ checkAlg(data, "110c110110", (ObjectIdentifier)args[i+1]);
+ checkInt(data, "110c1101111", (int)args[i+2]);
+ }
+
+ // key pbe alg + ic
+ checkAlg(data, "110c010c01000", (ObjectIdentifier)args[i+3]);
+ checkInt(data, "110c010c010011", (int)args[i+4]);
+
+ // mac alg + ic
+ if (args[i+5] == null) {
+ shouldNotExist(data, "2");
+ } else {
+ checkAlg(data, "2000", (ObjectIdentifier)args[i+5]);
+ checkInt(data, "22", (int)args[i+6]);
+ }
+ } else {
+ jsConf.add(args[i] + "=" + args[++i]);
+ }
+ }
+ }
+ }
+}
--- /dev/null 2022-02-08 18:39:57.000000000 +0300
+++ openjdk/jdk/test/sun/security/pkcs12/ParamsTest.java 2022-02-08 18:39:57.000000000 +0300
@@ -0,0 +1,442 @@
+/*
+ * Copyright (c) 2018, Oracle and/or its affiliates. All rights reserved.
+ * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
+ *
+ * This code is free software; you can redistribute it and/or modify it
+ * under the terms of the GNU General Public License version 2 only, as
+ * published by the Free Software Foundation.
+ *
+ * This code is distributed in the hope that it will be useful, but WITHOUT
+ * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
+ * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
+ * version 2 for more details (a copy is included in the LICENSE file that
+ * accompanied this code).
+ *
+ * You should have received a copy of the GNU General Public License version
+ * 2 along with this work; if not, write to the Free Software Foundation,
+ * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
+ *
+ * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
+ * or visit www.oracle.com if you need additional information or have any
+ * questions.
+ */
+
+/*
+ * @test
+ * @bug 8076190
+ * @library /lib/testlibrary /lib
+ * @modules java.base/sun.security.pkcs
+ * java.base/sun.security.x509
+ * java.base/sun.security.util
+ * @summary Customizing the generation of a PKCS12 keystore
+ */
+
+import jdk.testlibrary.Asserts;
+import jdk.testlibrary.SecurityTools;
+import jdk.testlibrary.OutputAnalyzer;
+
+import java.io.File;
+import java.io.FileInputStream;
+import java.io.FileOutputStream;
+import java.io.IOException;
+import java.io.InputStream;
+import java.io.OutputStream;
+import java.io.UncheckedIOException;
+import java.nio.file.Files;
+import java.nio.file.Paths;
+import java.security.KeyStore;
+import java.util.Base64;
+import java.util.Objects;
+
+import static jdk.testlibrary.security.DerUtils.*;
+import static sun.security.x509.AlgorithmId.*;
+import static sun.security.pkcs.ContentInfo.*;
+
+public class ParamsTest {
+
+ public static void main(String[] args) throws Throwable {
+
+ // De-BASE64 textual files in ./params to `pwd`
+ Files.newDirectoryStream(Paths.get(System.getProperty("test.src"), "params"))
+ .forEach(p -> {
+ try (InputStream is = Base64.getMimeDecoder().wrap(Files.newInputStream(p));
+ OutputStream os = Files.newOutputStream(p.getFileName())){
+ byte[] buffer = new byte[2048];
+ int read;
+ while ((read = is.read(buffer, 0, 2048)) >= 0) {
+ os.write(buffer, 0, read);
+ }
+ } catch (IOException e) {
+ throw new UncheckedIOException(e);
+ }
+ });
+
+ byte[] data;
+
+ // openssl -> keytool interop check
+
+ // os2. no cert pbe, no mac.
+ check("os2", "a", null, "changeit", true, true, true);
+ check("os2", "a", "changeit", "changeit", true, true, true);
+ // You can even load it with a wrong storepass, controversial
+ check("os2", "a", "wrongpass", "changeit", true, true, true);
+
+ // os3. no cert pbe, has mac. just like JKS
+ check("os3", "a", null, "changeit", true, true, true);
+ check("os3", "a", "changeit", "changeit", true, true, true);
+ // Cannot load with a wrong storepass, same as JKS
+ check("os3", "a", "wrongpass", "-", IOException.class, "-", "-");
+
+ // os4. non default algs
+ check("os4", "a", "changeit", "changeit", true, true, true);
+ check("os4", "a", "wrongpass", "-", IOException.class, "-", "-");
+ // no storepass no cert
+ check("os4", "a", null, "changeit", true, false, true);
+
+ // os5. strong non default algs
+ check("os5", "a", "changeit", "changeit", true, true, true);
+ check("os5", "a", "wrongpass", "-", IOException.class, "-", "-");
+ // no storepass no cert
+ check("os5", "a", null, "changeit", true, false, true);
+
+ // keytool
+
+ // Current default pkcs12 setting
+ keytool("-importkeystore -srckeystore ks -srcstorepass changeit "
+ + "-deststoretype PKCS12 -destkeystore ksnormal -deststorepass changeit");
+ data = Files.readAllBytes(Paths.get("ksnormal"));
+ checkInt(data, "22", 100000); // Mac ic
+ checkAlg(data, "2000", SHA_oid); // Mac alg
+ checkAlg(data, "110c010c01000", pbeWithSHA1AndDESede_oid); // key alg
+ checkInt(data, "110c010c010011", 50000); // key ic
+ checkAlg(data, "110c10", ENCRYPTED_DATA_OID);
+ checkAlg(data, "110c110110", pbeWithSHA1AndRC2_40_oid); // cert alg
+ checkInt(data, "110c1101111", 50000); // cert ic
+
+ check("ksnormal", "a", "changeit", "changeit", true, true, true);
+ check("ksnormal", "a", null, "changeit", true, false, true);
+ check("ksnormal", "a", "wrongpass", "-", IOException.class, "-", "-");
+
+ // Add a new entry with password-less settings, still has a storepass
+ keytool("-keystore ksnormal -genkeypair -storepass changeit -alias b -dname CN=b "
+ + "-J-Dkeystore.pkcs12.certProtectionAlgorithm=NONE "
+ + "-J-Dkeystore.pkcs12.macAlgorithm=NONE");
+ data = Files.readAllBytes(Paths.get("ksnormal"));
+ checkInt(data, "22", 100000); // Mac ic
+ checkAlg(data, "2000", SHA_oid); // Mac alg
+ checkAlg(data, "110c010c01000", pbeWithSHA1AndDESede_oid); // key alg
+ checkInt(data, "110c010c010011", 50000); // key ic
+ checkAlg(data, "110c010c11000", pbeWithSHA1AndDESede_oid); // new key alg
+ checkInt(data, "110c010c110011", 50000); // new key ic
+ checkAlg(data, "110c10", ENCRYPTED_DATA_OID);
+ checkAlg(data, "110c110110", pbeWithSHA1AndRC2_40_oid); // cert alg
+ checkInt(data, "110c1101111", 50000); // cert ic
+ check("ksnormal", "b", null, "changeit", true, false, true);
+ check("ksnormal", "b", "changeit", "changeit", true, true, true);
+
+ // Different keypbe alg, no cert pbe and no mac
+ keytool("-importkeystore -srckeystore ks -srcstorepass changeit "
+ + "-deststoretype PKCS12 -destkeystore ksnopass -deststorepass changeit "
+ + "-J-Dkeystore.pkcs12.keyProtectionAlgorithm=PBEWithSHA1AndRC4_128 "
+ + "-J-Dkeystore.pkcs12.certProtectionAlgorithm=NONE "
+ + "-J-Dkeystore.pkcs12.macAlgorithm=NONE");
+ data = Files.readAllBytes(Paths.get("ksnopass"));
+ shouldNotExist(data, "2"); // no Mac
+ checkAlg(data, "110c010c01000", pbeWithSHA1AndRC4_128_oid);
+ checkInt(data, "110c010c010011", 50000);
+ checkAlg(data, "110c10", DATA_OID);
+ check("ksnopass", "a", null, "changeit", true, true, true);
+ check("ksnopass", "a", "changeit", "changeit", true, true, true);
+ check("ksnopass", "a", "wrongpass", "changeit", true, true, true);
+
+ // Add a new entry with normal settings, still password-less
+ keytool("-keystore ksnopass -genkeypair -storepass changeit -alias b -dname CN=B");
+ data = Files.readAllBytes(Paths.get("ksnopass"));
+ shouldNotExist(data, "2"); // no Mac
+ checkAlg(data, "110c010c01000", pbeWithSHA1AndRC4_128_oid);
+ checkInt(data, "110c010c010011", 50000);
+ checkAlg(data, "110c010c11000", pbeWithSHA1AndDESede_oid);
+ checkInt(data, "110c010c110011", 50000);
+ checkAlg(data, "110c10", DATA_OID);
+ check("ksnopass", "a", null, "changeit", true, true, true);
+ check("ksnopass", "b", null, "changeit", true, true, true);
+
+ keytool("-importkeystore -srckeystore ks -srcstorepass changeit "
+ + "-deststoretype PKCS12 -destkeystore ksnewic -deststorepass changeit "
+ + "-J-Dkeystore.pkcs12.macIterationCount=5555 "
+ + "-J-Dkeystore.pkcs12.certPbeIterationCount=6666 "
+ + "-J-Dkeystore.pkcs12.keyPbeIterationCount=7777");
+ data = Files.readAllBytes(Paths.get("ksnewic"));
+ checkInt(data, "22", 5555); // Mac ic
+ checkAlg(data, "2000", SHA_oid); // Mac alg
+ checkAlg(data, "110c010c01000", pbeWithSHA1AndDESede_oid); // key alg
+ checkInt(data, "110c010c010011", 7777); // key ic
+ checkAlg(data, "110c110110", pbeWithSHA1AndRC2_40_oid); // cert alg
+ checkInt(data, "110c1101111", 6666); // cert ic
+
+ // keypbe alg cannot be NONE
+ keytool("-keystore ksnewic -genkeypair -storepass changeit -alias b -dname CN=B "
+ + "-J-Dkeystore.pkcs12.keyProtectionAlgorithm=NONE")
+ .shouldContain("NONE AlgorithmParameters not available")
+ .shouldHaveExitValue(1);
+
+ // new entry new keypbe alg (and default ic), else unchanged
+ keytool("-keystore ksnewic -genkeypair -storepass changeit -alias b -dname CN=B "
+ + "-J-Dkeystore.pkcs12.keyProtectionAlgorithm=PBEWithSHA1AndRC4_128");
+ data = Files.readAllBytes(Paths.get("ksnewic"));
+ checkInt(data, "22", 5555); // Mac ic
+ checkAlg(data, "2000", SHA_oid); // Mac alg
+ checkAlg(data, "110c010c01000", pbeWithSHA1AndDESede_oid); // key alg
+ checkInt(data, "110c010c010011", 7777); // key ic
+ checkAlg(data, "110c010c11000", pbeWithSHA1AndRC4_128_oid); // new key alg
+ checkInt(data, "110c010c110011", 50000); // new key ic
+ checkAlg(data, "110c110110", pbeWithSHA1AndRC2_40_oid); // cert alg
+ checkInt(data, "110c1101111", 6666); // cert ic
+
+ // Check KeyStore loading multiple keystores
+ KeyStore ks = KeyStore.getInstance("pkcs12");
+ try (FileInputStream fis = new FileInputStream("ksnormal");
+ FileOutputStream fos = new FileOutputStream("ksnormaldup")) {
+ ks.load(fis, "changeit".toCharArray());
+ ks.store(fos, "changeit".toCharArray());
+ }
+ data = Files.readAllBytes(Paths.get("ksnormaldup"));
+ checkInt(data, "22", 100000); // Mac ic
+ checkAlg(data, "2000", SHA_oid); // Mac alg
+ checkAlg(data, "110c010c01000", pbeWithSHA1AndDESede_oid); // key alg
+ checkInt(data, "110c010c010011", 50000); // key ic
+ checkAlg(data, "110c010c11000", pbeWithSHA1AndDESede_oid); // new key alg
+ checkInt(data, "110c010c110011", 50000); // new key ic
+ checkAlg(data, "110c10", ENCRYPTED_DATA_OID);
+ checkAlg(data, "110c110110", pbeWithSHA1AndRC2_40_oid); // cert alg
+ checkInt(data, "110c1101111", 50000); // cert ic
+
+ try (FileInputStream fis = new FileInputStream("ksnopass");
+ FileOutputStream fos = new FileOutputStream("ksnopassdup")) {
+ ks.load(fis, "changeit".toCharArray());
+ ks.store(fos, "changeit".toCharArray());
+ }
+ data = Files.readAllBytes(Paths.get("ksnopassdup"));
+ shouldNotExist(data, "2"); // no Mac
+ checkAlg(data, "110c010c01000", pbeWithSHA1AndRC4_128_oid);
+ checkInt(data, "110c010c010011", 50000);
+ checkAlg(data, "110c010c11000", pbeWithSHA1AndDESede_oid);
+ checkInt(data, "110c010c110011", 50000);
+ checkAlg(data, "110c10", DATA_OID);
+
+ try (FileInputStream fis = new FileInputStream("ksnewic");
+ FileOutputStream fos = new FileOutputStream("ksnewicdup")) {
+ ks.load(fis, "changeit".toCharArray());
+ ks.store(fos, "changeit".toCharArray());
+ }
+ data = Files.readAllBytes(Paths.get("ksnewicdup"));
+ checkInt(data, "22", 5555); // Mac ic
+ checkAlg(data, "2000", SHA_oid); // Mac alg
+ checkAlg(data, "110c010c01000", pbeWithSHA1AndDESede_oid); // key alg
+ checkInt(data, "110c010c010011", 7777); // key ic
+ checkAlg(data, "110c010c11000", pbeWithSHA1AndRC4_128_oid); // new key alg
+ checkInt(data, "110c010c110011", 50000); // new key ic
+ checkAlg(data, "110c110110", pbeWithSHA1AndRC2_40_oid); // cert alg
+ checkInt(data, "110c1101111", 6666); // cert ic
+
+ // Check keytool behavior
+
+ // ksnormal has password
+
+ keytool("-list -keystore ksnormal")
+ .shouldContain("WARNING WARNING WARNING")
+ .shouldContain("Certificate chain length: 0");
+
+ SecurityTools.setResponse("changeit");
+ keytool("-list -keystore ksnormal")
+ .shouldNotContain("WARNING WARNING WARNING")
+ .shouldContain("Certificate fingerprint");
+
+ // ksnopass is password-less
+
+ keytool("-list -storetype PKCS12 -keystore ksnopass")
+ .shouldNotContain("WARNING WARNING WARNING")
+ .shouldContain("Certificate fingerprint");
+
+ // -certreq prompts for keypass
+ SecurityTools.setResponse("changeit");
+ keytool("-certreq -alias a -storetype PKCS12 -keystore ksnopass")
+ .shouldContain("Enter key password for <a>")
+ .shouldContain("-----BEGIN NEW CERTIFICATE REQUEST-----")
+ .shouldHaveExitValue(0);
+
+ // -certreq -storepass works fine
+ keytool("-certreq -alias a -keystore ksnopass -storepass changeit")
+ .shouldNotContain("Enter key password for <a>")
+ .shouldContain("-----BEGIN NEW CERTIFICATE REQUEST-----")
+ .shouldHaveExitValue(0);
+
+ // -certreq -keypass also works fine
+ keytool("-certreq -alias a -storetype PKCS12 -keystore ksnopass -keypass changeit")
+ .shouldNotContain("Enter key password for <a>")
+ .shouldContain("-----BEGIN NEW CERTIFICATE REQUEST-----")
+ .shouldHaveExitValue(0);
+
+ // -importkeystore prompts for srckeypass
+ SecurityTools.setResponse("changeit", "changeit");
+ keytool("-importkeystore -srcstoretype PKCS12 -srckeystore ksnopass "
+ + "-destkeystore jks3 -deststoretype PKCS12 -deststorepass changeit")
+ .shouldContain("Enter key password for <a>")
+ .shouldContain("Enter key password for <b>")
+ .shouldContain("2 entries successfully imported");
+
+ // ksnopass2 is ksnopass + 2 cert entries
+ ks = KeyStore.getInstance("pkcs12");
+ try (FileInputStream fis = new FileInputStream("ksnopass")) {
+ ks.load(fis, (char[])null);
+ }
+ ks.setCertificateEntry("aa", ks.getCertificate("a"));
+ ks.setCertificateEntry("bb", ks.getCertificate("b"));
+ try (FileOutputStream fos = new FileOutputStream("ksnopass2")) {
+ ks.store(fos, null);
+ }
+
+ // -importkeystore prompts for srckeypass for private keys
+ // and no prompt for certs
+ SecurityTools.setResponse("changeit", "changeit");
+ keytool("-importkeystore -srcstoretype PKCS12 -srckeystore ksnopass2 "
+ + "-destkeystore jks5 -deststorepass changeit")
+ .shouldContain("Enter key password for <a>")
+ .shouldContain("Enter key password for <b>")
+ .shouldNotContain("Enter key password for <aa>")
+ .shouldNotContain("Enter key password for <bb>")
+ .shouldContain("4 entries successfully imported");
+
+ // ksonlycert has only cert entries
+
+ ks.deleteEntry("a");
+ ks.deleteEntry("b");
+ try (FileOutputStream fos = new FileOutputStream("ksonlycert")) {
+ ks.store(fos, null);
+ }
+
+ // -importkeystore does not prompt at all
+ keytool("-importkeystore -srckeystore ksonlycert "
+ + "-destkeystore jks6 -deststorepass changeit")
+ .shouldNotContain("Enter key password for <aa>")
+ .shouldNotContain("Enter key password for <bb>")
+ .shouldContain("2 entries successfully imported");
+
+ // create a new password-less keystore
+ keytool("-keystore ksnopass -exportcert -alias a -file a.cert -rfc");
+
+ // Normally storepass is prompted for
+ keytool("-keystore kscert1 -storetype PKCS12 -importcert -alias a -file a.cert -noprompt")
+ .shouldContain("Enter keystore password:");
+ keytool("-keystore kscert2 -storetype PKCS12 -importcert -alias a -file a.cert -noprompt "
+ + "-J-Dkeystore.pkcs12.certProtectionAlgorithm=NONE")
+ .shouldContain("Enter keystore password:");
+ keytool("-keystore kscert3 -storetype PKCS12 -importcert -alias a -file a.cert -noprompt "
+ + "-J-Dkeystore.pkcs12.macAlgorithm=NONE")
+ .shouldContain("Enter keystore password:");
+ // ... but not if it's password-less
+ keytool("-keystore kscert4 -storetype PKCS12 -importcert -alias a -file a.cert -noprompt "
+ + "-J-Dkeystore.pkcs12.certProtectionAlgorithm=NONE "
+ + "-J-Dkeystore.pkcs12.macAlgorithm=NONE")
+ .shouldNotContain("Enter keystore password:");
+
+ // still prompt for keypass for genkeypair and certreq
+ SecurityTools.setResponse("changeit", "changeit");
+ keytool("-keystore ksnopassnew -storetype PKCS12 -genkeypair -alias a -dname CN=A "
+ + "-J-Dkeystore.pkcs12.certProtectionAlgorithm=NONE "
+ + "-J-Dkeystore.pkcs12.macAlgorithm=NONE")
+ .shouldNotContain("Enter keystore password:")
+ .shouldContain("Enter key password for <a>");
+ keytool("-keystore ksnopassnew -storetype PKCS12 -certreq -alias a")
+ .shouldNotContain("Enter keystore password:")
+ .shouldContain("Enter key password for <a>");
+ keytool("-keystore ksnopassnew -storetype PKCS12 -list -v -alias a")
+ .shouldNotContain("Enter keystore password:")
+ .shouldNotContain("Enter key password for <a>");
+
+ // params only read on demand
+
+ // keyPbeIterationCount is used by -genkeypair
+ keytool("-keystore ksgenbadkeyic -storetype PKCS12 -genkeypair -alias a -dname CN=A "
+ + "-storepass changeit "
+ + "-J-Dkeystore.pkcs12.keyPbeIterationCount=abc")
+ .shouldContain("keyPbeIterationCount is not a number: abc")
+ .shouldHaveExitValue(1);
+
+ keytool("-keystore ksnopassnew -exportcert -alias a -file a.cert");
+
+ // but not used by -importcert
+ keytool("-keystore ksimpbadkeyic -importcert -alias a -file a.cert "
+ + "-noprompt -storepass changeit "
+ + "-J-Dkeystore.pkcs12.keyPbeIterationCount=abc")
+ .shouldHaveExitValue(0);
+
+ // None is used by -list
+ keytool("-keystore ksnormal -storepass changeit -list "
+ + "-J-Dkeystore.pkcs12.keyPbeIterationCount=abc "
+ + "-J-Dkeystore.pkcs12.certPbeIterationCount=abc "
+ + "-J-Dkeystore.pkcs12.macIterationCount=abc")
+ .shouldHaveExitValue(0);
+ }
+
+ /**
+ * Check keystore loading and key/cert reading.
+ *
+ * @param keystore the file name of keystore
+ * @param alias the key/cert to read
+ * @param storePass store pass to try out, can be null
+ * @param keypass key pass to try, can not be null
+ * @param expectedLoad expected result of keystore loading, true if non
+ * null, false if null, exception class if exception
+ * @param expectedCert expected result of cert reading
+ * @param expectedKey expected result of key reading
+ */
+ private static void check(
+ String keystore,
+ String alias,
+ String storePass,
+ String keypass,
+ Object expectedLoad,
+ Object expectedCert,
+ Object expectedKey) {
+ KeyStore ks = null;
+ Object actualLoad, actualCert, actualKey;
+ String label = keystore + "-" + alias + "-" + storePass + "-" + keypass;
+ try {
+ ks = KeyStore.getInstance("pkcs12");
+ try (FileInputStream fis = new FileInputStream(keystore)) {
+ ks.load(fis, storePass == null ? null : storePass.toCharArray());
+ }
+ actualLoad = ks != null;
+ } catch (Exception e) {
+ e.printStackTrace(System.out);
+ actualLoad = e.getClass();
+ }
+ Asserts.assertEQ(expectedLoad, actualLoad, label + "-load");
+
+ // If not loaded correctly, skip cert/key reading
+ if (!Objects.equals(actualLoad, true)) {
+ return;
+ }
+
+ try {
+ actualCert = (ks.getCertificate(alias) != null);
+ } catch (Exception e) {
+ e.printStackTrace(System.out);
+ actualCert = e.getClass();
+ }
+ Asserts.assertEQ(expectedCert, actualCert, label + "-cert");
+
+ try {
+ actualKey = (ks.getKey(alias, keypass.toCharArray()) != null);
+ } catch (Exception e) {
+ e.printStackTrace(System.out);
+ actualKey = e.getClass();
+ }
+ Asserts.assertEQ(expectedKey, actualKey, label + "-key");
+ }
+
+ static OutputAnalyzer keytool(String s) throws Throwable {
+ return SecurityTools.keytool(s);
+ }
+}
--- /dev/null 2022-02-08 18:39:58.000000000 +0300
+++ openjdk/jdk/test/sun/security/pkcs12/params/README 2022-02-08 18:39:57.000000000 +0300
@@ -0,0 +1,54 @@
+1. Preparing data in this directory
+
+mkdir tmp
+cd tmp
+keytool -keystore ks -genkeypair -storepass changeit -alias a -dname CN=A
+openssl pkcs12 -in ks -nodes -out kandc -passin pass:changeit
+openssl pkcs12 -export -in kandc -out os2 -name a -passout pass:changeit \
+ -certpbe NONE -nomac
+openssl pkcs12 -export -in kandc -out os3 -name a -passout pass:changeit \
+ -certpbe NONE
+openssl pkcs12 -export -in kandc -out os4 -name a -passout pass:changeit \
+ -certpbe PBE-SHA1-RC4-128 -keypbe PBE-SHA1-RC4-128 -macalg SHA224
+openssl pkcs12 -export -in kandc -out os5 -name a -passout pass:changeit \
+ -certpbe AES-256-CBC -keypbe AES-256-CBC -macalg SHA512
+for a in *; do
+ openssl base64 -in $a -out ../$a
+done
+cd ..
+rm -rf tmp
+
+2. After running the test, we can go to the scratch directory and run the
+following commands to check keytool -> openssl interoperability.
+OpenSSL 1.1.0i is used here. Earlier versions might generate different info.
+
+(
+openssl pkcs12 -in ks2 -passin pass:changeit -info -nokeys -nocerts 2> t2 || exit 20
+grep "MAC:sha1 Iteration 100000" t2 || exit 21
+grep "Shrouded Keybag: pbeWithSHA1And3-KeyTripleDES-CBC, Iteration 50000" t2 || exit 23
+grep "PKCS7 Encrypted data: pbeWithSHA1And40BitRC2-CBC, Iteration 50000" t2 || exit 24
+
+openssl pkcs12 -in ks22 -passin pass:changeit -info -nokeys -nocerts 2> t22 || exit 25
+diff t2 t22 || exit 26
+
+openssl pkcs12 -in ks3 -passin pass:changeit -info -nokeys -nocerts && exit 30
+
+openssl pkcs12 -in ks3 -passin pass:changeit -info -nokeys -nocerts -nomacver 2> t3 || exit 31
+grep "PKCS7 Encrypted data:" t3 && exit 33
+grep "Shrouded Keybag: pbeWithSHA1And3-KeyTripleDES-CBC, Iteration 50000" t3 || exit 34
+grep "Shrouded Keybag: pbeWithSHA1And128BitRC4, Iteration 50000" t3 || exit 35
+
+openssl pkcs12 -in ks33 -passin pass:changeit -info -nokeys -nocerts -nomacver 2> t33 || exit 36
+diff t3 t33 || exit 37
+
+openssl pkcs12 -in ks4 -passin pass:changeit -info -nokeys -nocerts 2> t4 || exit 40
+grep "MAC:sha1 Iteration 5555" t4 || exit 41
+grep "Shrouded Keybag: pbeWithSHA1And3-KeyTripleDES-CBC, Iteration 7777" t4 || exit 43
+grep "Shrouded Keybag: pbeWithSHA1And128BitRC4, Iteration 50000" t4 || exit 44
+grep "PKCS7 Encrypted data: pbeWithSHA1And40BitRC2-CBC, Iteration 6666" t4 || exit 45
+
+openssl pkcs12 -in ks44 -passin pass:changeit -info -nokeys -nocerts 2> t44 || exit 46
+diff t4 t44 || exit 47
+
+echo Succeed
+)
--- /dev/null 2022-02-08 18:39:58.000000000 +0300
+++ openjdk/jdk/test/sun/security/pkcs12/params/kandc 2022-02-08 18:39:58.000000000 +0300
@@ -0,0 +1,55 @@
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--- /dev/null 2022-02-08 18:39:59.000000000 +0300
+++ openjdk/jdk/test/sun/security/pkcs12/params/ks 2022-02-08 18:39:59.000000000 +0300
@@ -0,0 +1,45 @@
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--- /dev/null 2022-02-08 18:39:59.000000000 +0300
+++ openjdk/jdk/test/sun/security/pkcs12/params/os2 2022-02-08 18:39:59.000000000 +0300
@@ -0,0 +1,42 @@
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--- /dev/null 2022-02-08 18:40:00.000000000 +0300
+++ openjdk/jdk/test/sun/security/pkcs12/params/os3 2022-02-08 18:40:00.000000000 +0300
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--- /dev/null 2022-02-08 18:40:01.000000000 +0300
+++ openjdk/jdk/test/sun/security/pkcs12/params/os4 2022-02-08 18:40:00.000000000 +0300
@@ -0,0 +1,44 @@
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--- /dev/null 2022-02-08 18:40:01.000000000 +0300
+++ openjdk/jdk/test/sun/security/pkcs12/params/os5 2022-02-08 18:40:01.000000000 +0300
@@ -0,0 +1,48 @@
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--- openjdk/jdk/src/share/classes/com/sun/crypto/provider/HmacPKCS12PBESHA1.java 2022-02-08 18:40:02.000000000 +0300
+++ /dev/null 2022-02-08 18:40:02.000000000 +0300
@@ -1,142 +0,0 @@
-/*
- * Copyright (c) 2003, 2013, Oracle and/or its affiliates. All rights reserved.
- * DO NOT ALTER OR REMOVE COPYRIGHT NOTICES OR THIS FILE HEADER.
- *
- * This code is free software; you can redistribute it and/or modify it
- * under the terms of the GNU General Public License version 2 only, as
- * published by the Free Software Foundation. Oracle designates this
- * particular file as subject to the "Classpath" exception as provided
- * by Oracle in the LICENSE file that accompanied this code.
- *
- * This code is distributed in the hope that it will be useful, but WITHOUT
- * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or
- * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License
- * version 2 for more details (a copy is included in the LICENSE file that
- * accompanied this code).
- *
- * You should have received a copy of the GNU General Public License version
- * 2 along with this work; if not, write to the Free Software Foundation,
- * Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA.
- *
- * Please contact Oracle, 500 Oracle Parkway, Redwood Shores, CA 94065 USA
- * or visit www.oracle.com if you need additional information or have any
- * questions.
- */
-
-package com.sun.crypto.provider;
-
-import java.util.Arrays;
-import java.nio.ByteBuffer;
-
-import javax.crypto.MacSpi;
-import javax.crypto.SecretKey;
-import javax.crypto.spec.SecretKeySpec;
-import javax.crypto.spec.PBEParameterSpec;
-import java.security.*;
-import java.security.spec.*;
-
-/**
- * This is an implementation of the HMAC-PBESHA1 algorithm as defined
- * in PKCS#12 v1.0 standard.
- *
- * @author Valerie Peng
- */
-public final class HmacPKCS12PBESHA1 extends HmacCore {
-
- /**
- * Standard constructor, creates a new HmacSHA1 instance.
- */
- public HmacPKCS12PBESHA1() throws NoSuchAlgorithmException {
- super("SHA1", 64);
- }
-
- /**
- * Initializes the HMAC with the given secret key and algorithm parameters.
- *
- * @param key the secret key.
- * @param params the algorithm parameters.
- *
- * @exception InvalidKeyException if the given key is inappropriate for
- * initializing this MAC.
- * @exception InvalidAlgorithmParameterException if the given algorithm
- * parameters are inappropriate for this MAC.
- */
- protected void engineInit(Key key, AlgorithmParameterSpec params)
- throws InvalidKeyException, InvalidAlgorithmParameterException {
- char[] passwdChars;
- byte[] salt = null;
- int iCount = 0;
- if (key instanceof javax.crypto.interfaces.PBEKey) {
- javax.crypto.interfaces.PBEKey pbeKey =
- (javax.crypto.interfaces.PBEKey) key;
- passwdChars = pbeKey.getPassword();
- salt = pbeKey.getSalt(); // maybe null if unspecified
- iCount = pbeKey.getIterationCount(); // maybe 0 if unspecified
- } else if (key instanceof SecretKey) {
- byte[] passwdBytes;
- if (!(key.getAlgorithm().regionMatches(true, 0, "PBE", 0, 3)) ||
- (passwdBytes = key.getEncoded()) == null) {
- throw new InvalidKeyException("Missing password");
- }
- passwdChars = new char[passwdBytes.length];
- for (int i=0; i<passwdChars.length; i++) {
- passwdChars[i] = (char) (passwdBytes[i] & 0x7f);
- }
- Arrays.fill(passwdBytes, (byte)0x00);
- } else {
- throw new InvalidKeyException("SecretKey of PBE type required");
- }
-
- byte[] derivedKey;
- try {
- if (params == null) {
- // should not auto-generate default values since current
- // javax.crypto.Mac api does not have any method for caller to
- // retrieve the generated defaults.
- if ((salt == null) || (iCount == 0)) {
- throw new InvalidAlgorithmParameterException
- ("PBEParameterSpec required for salt and iteration count");
- }
- } else if (!(params instanceof PBEParameterSpec)) {
- throw new InvalidAlgorithmParameterException
- ("PBEParameterSpec type required");
- } else {
- PBEParameterSpec pbeParams = (PBEParameterSpec) params;
- // make sure the parameter values are consistent
- if (salt != null) {
- if (!Arrays.equals(salt, pbeParams.getSalt())) {
- throw new InvalidAlgorithmParameterException
- ("Inconsistent value of salt between key and params");
- }
- } else {
- salt = pbeParams.getSalt();
- }
- if (iCount != 0) {
- if (iCount != pbeParams.getIterationCount()) {
- throw new InvalidAlgorithmParameterException
- ("Different iteration count between key and params");
- }
- } else {
- iCount = pbeParams.getIterationCount();
- }
- }
- // For security purpose, we need to enforce a minimum length
- // for salt; just require the minimum salt length to be 8-byte
- // which is what PKCS#5 recommends and openssl does.
- if (salt.length < 8) {
- throw new InvalidAlgorithmParameterException
- ("Salt must be at least 8 bytes long");
- }
- if (iCount <= 0) {
- throw new InvalidAlgorithmParameterException
- ("IterationCount must be a positive number");
- }
- derivedKey = PKCS12PBECipherCore.derive(passwdChars, salt,
- iCount, engineGetMacLength(), PKCS12PBECipherCore.MAC_KEY);
- } finally {
- Arrays.fill(passwdChars, '\0');
- }
- SecretKey cipherKey = new SecretKeySpec(derivedKey, "HmacSHA1");
- super.engineInit(cipherKey, null);
- }
-}