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Author SHA1 Message Date
Michele Balistreri f431c7d6cb use compatible bc 2020-11-09 12:04:56 +01:00
Bitgamma c19d58bb5d Merge pull request #29 from bitgamma/sdk-302-compat
upgrade to SDK 3.0.2, handle IO errors separately from APDU errors
2020-06-25 09:44:40 +03:00
Bitgamma ff570d4720 Merge pull request #30 from bitgamma/stop-start-nfc
do not store references to Activity. Start and stop reader as needed
2020-06-05 13:33:53 +03:00
Michele Balistreri c0d09e3a49 dont explicitly stop the reader 2020-06-05 12:08:30 +03:00
Michele Balistreri d5feacb4ee add null handling 2020-06-05 10:19:01 +03:00
Michele Balistreri eeeaa26819 do not store references to Activity. Start and stop reader as needed 2020-06-05 09:01:34 +03:00
Michele Balistreri 29b3a3c578 upgrade to SDK 3.0.2, handle IO errors separately from APDU errors 2020-06-04 08:04:57 +03:00
Bitgamma b7fe831dd7 Merge pull request #27 from bitgamma/master
make compatible with 2.1 Keycard applet
2020-05-18 17:33:05 +03:00
Bitgamma 26db8dfd25 Merge pull request #1 from status-im/master
sync
2020-05-18 15:19:29 +03:00
Michele Balistreri 59052a36d7 make compatible with 2.1 Keycard applet 2020-05-18 13:36:18 +03:00
Bitgamma 900de62a4c Merge pull request #23 from bitgamma/master
avoid NVM writes (to improve login speed with Keycard)
2020-04-16 11:20:47 +03:00
Michele Balistreri 267bf1184f restore compatibility with current status-react 2020-04-16 10:12:34 +03:00
Roman Volosovskyi 38ca8597e2 Add nfc state events 2020-03-05 14:54:40 +02:00
Michele Balistreri cf7e3138c9 remove redundant derivation 2020-01-09 15:48:52 +03:00
Vitaliy Vlasov 8fb12850d7 Update status-keycard-java to 3.0.1 2019-12-27 18:31:15 +02:00
Michele Balistreri 905bcb6f0d avoid NVM writes 2019-12-23 17:03:11 +01:00
5 changed files with 128 additions and 60 deletions
+6 -1
View File
@@ -23,6 +23,11 @@ android {
versionCode 1
versionName "1.0"
}
lintOptions {
abortOnError false
}
}
repositories {
@@ -41,5 +46,5 @@ dependencies {
implementation 'com.facebook.react:react-native:+'
implementation 'org.bouncycastle:bcprov-jdk15on:1.60'
implementation 'org.apache.commons:commons-lang3:3.9'
implementation 'com.github.status-im.status-keycard-java:android:2.2.1'
implementation 'com.github.status-im.status-keycard-java:android:3.0.2'
}
@@ -41,9 +41,10 @@ public class RNStatusKeycardModule extends ReactContextBaseJavaModule implements
@Override
public void onHostResume() {
if (this.smartCard == null) {
this.smartCard = new SmartCard(getCurrentActivity(), reactContext);
smartCard.start();
this.smartCard = new SmartCard(reactContext);
}
smartCard.start(getCurrentActivity());
}
@Override
@@ -52,13 +53,12 @@ public class RNStatusKeycardModule extends ReactContextBaseJavaModule implements
@Override
public void onHostDestroy() {
}
@ReactMethod
public void nfcIsSupported(final Promise promise) {
if (smartCard != null) {
promise.resolve(smartCard.isNfcSupported());
promise.resolve(smartCard.isNfcSupported(getCurrentActivity()));
} else {
promise.resolve(false);
}
@@ -247,6 +247,20 @@ public class RNStatusKeycardModule extends ReactContextBaseJavaModule implements
}).start();
}
@ReactMethod
public void signWithPath(final String pairing, final String pin, final String path, final String hash, final Promise promise) {
new Thread(new Runnable() {
public void run() {
try {
promise.resolve(smartCard.signWithPath(pairing, pin, path, hash));
} catch (IOException | APDUException e) {
Log.d(TAG, e.getMessage());
promise.reject(e);
}
}
}).start();
}
@ReactMethod
public void signPinless(final String hash, final Promise promise) {
new Thread(new Runnable() {
@@ -41,8 +41,6 @@ import org.bouncycastle.util.encoders.Hex;
public class SmartCard extends BroadcastReceiver implements CardListener {
private NFCCardManager cardManager;
private Activity activity;
private ReactContext reactContext;
private NfcAdapter nfcAdapter;
private CardChannel cardChannel;
private EventEmitter eventEmitter;
@@ -56,12 +54,9 @@ public class SmartCard extends BroadcastReceiver implements CardListener {
private static final String ENCRYPTION_PATH = "m/43'/60'/1581'/1'/0";
private static final int WORDS_LIST_SIZE = 2048;
public SmartCard(Activity activity, ReactContext reactContext) {
public SmartCard(ReactContext reactContext) {
this.cardManager = new NFCCardManager();
this.cardManager.setCardListener(this);
this.activity = activity;
this.reactContext = reactContext;
this.nfcAdapter = NfcAdapter.getDefaultAdapter(activity.getBaseContext());
this.eventEmitter = new EventEmitter(reactContext);
}
@@ -73,23 +68,31 @@ public class SmartCard extends BroadcastReceiver implements CardListener {
Log.d(TAG, s);
}
public boolean start() {
if (!started) {
public boolean start(Activity activity) {
if(activity == null) {
return false;
}
if (!started) {
this.nfcAdapter = NfcAdapter.getDefaultAdapter(activity.getBaseContext());
this.cardManager.start();
started = true;
}
if (this.nfcAdapter != null) {
IntentFilter filter = new IntentFilter(NfcAdapter.ACTION_ADAPTER_STATE_CHANGED);
activity.registerReceiver(this, filter);
nfcAdapter.enableReaderMode(activity, this.cardManager, NfcAdapter.FLAG_READER_NFC_A | NfcAdapter.FLAG_READER_SKIP_NDEF_CHECK, null);
return true;
} else {
log("not support in this device");
return false;
}
} else {
if (this.nfcAdapter != null) {
IntentFilter filter = new IntentFilter(NfcAdapter.ACTION_ADAPTER_STATE_CHANGED);
activity.registerReceiver(this, filter);
nfcAdapter.enableReaderMode(activity, this.cardManager, NfcAdapter.FLAG_READER_NFC_A | NfcAdapter.FLAG_READER_SKIP_NDEF_CHECK, null);
return true;
} else {
log("not support in this device");
return false;
}
}
public void stop(Activity activity) {
if (activity != null && nfcAdapter != null) {
nfcAdapter.disableReaderMode(activity);
}
}
@@ -110,16 +113,20 @@ public class SmartCard extends BroadcastReceiver implements CardListener {
boolean on = false;
switch (state) {
case NfcAdapter.STATE_ON:
eventEmitter.emit("keyCardOnNFCEnabled", null);
log("NFC ON");
break;
case NfcAdapter.STATE_OFF:
eventEmitter.emit("keyCardOnNFCDisabled", null);
log("NFC OFF");
break;
default:
log("other");
}
}
public boolean isNfcSupported() {
return activity.getPackageManager().hasSystemFeature(PackageManager.FEATURE_NFC);
public boolean isNfcSupported(Activity activity) {
return activity != null && activity.getPackageManager().hasSystemFeature(PackageManager.FEATURE_NFC);
}
public boolean isNfcEnabled() {
@@ -229,14 +236,18 @@ public class SmartCard extends BroadcastReceiver implements CardListener {
Boolean isPaired = false;
if (pairingBase64.length() > 0) {
try {
Pairing pairing = new Pairing(pairingBase64);
cmdSet.setPairing(pairing);
Pairing pairing = new Pairing(pairingBase64);
cmdSet.setPairing(pairing);
try {
cmdSet.autoOpenSecureChannel();
Log.i(TAG, "secure channel opened");
isPaired = true;
} catch(APDUException e) {
Log.i(TAG, "autoOpenSecureChannel failed: " + e.getMessage());
}
if (isPaired) {
ApplicationStatus status = new ApplicationStatus(cmdSet.getStatus(KeycardCommandSet.GET_STATUS_P1_APPLICATION).checkOK().getData());
Log.i(TAG, "PIN retry counter: " + status.getPINRetryCount());
@@ -244,8 +255,6 @@ public class SmartCard extends BroadcastReceiver implements CardListener {
cardInfo.putInt("pin-retry-counter", status.getPINRetryCount());
cardInfo.putInt("puk-retry-counter", status.getPUKRetryCount());
} catch (IOException | IllegalArgumentException e) {
Log.i(TAG, "autoOpenSecureChannel failed: " + e.getMessage());
}
}
@@ -277,8 +286,10 @@ public class SmartCard extends BroadcastReceiver implements CardListener {
KeyPath currentPath = new KeyPath(cmdSet.getStatus(KeycardCommandSet.GET_STATUS_P1_KEY_PATH).checkOK().getData());
Log.i(TAG, "Current key path: " + currentPath);
cmdSet.deriveKey(path).checkOK();
Log.i(TAG, "Derived " + path);
if (!currentPath.toString().equals(path)) {
cmdSet.deriveKey(path).checkOK();
Log.i(TAG, "Derived " + path);
}
}
public String exportKey(final String pairingBase64, final String pin) throws IOException, APDUException {
@@ -330,20 +341,20 @@ public class SmartCard extends BroadcastReceiver implements CardListener {
cmdSet.verifyPIN(pin).checkOK();
Log.i(TAG, "pin verified");
byte[] tlvMaster = cmdSet.exportKey(MASTER_PATH, true, true).checkOK().getData();
byte[] tlvEncryption = cmdSet.exportKey(ENCRYPTION_PATH, false, false).checkOK().getData();
BIP32KeyPair encryptionKeyPair = BIP32KeyPair.fromTLV(tlvEncryption);
byte[] tlvMaster = cmdSet.exportKey(MASTER_PATH, false, true).checkOK().getData();
BIP32KeyPair masterPair = BIP32KeyPair.fromTLV(tlvMaster);
byte[] tlvRoot = cmdSet.exportKey(ROOT_PATH, true, true).checkOK().getData();
byte[] tlvRoot = cmdSet.exportKey(ROOT_PATH, false, true).checkOK().getData();
BIP32KeyPair keyPair = BIP32KeyPair.fromTLV(tlvRoot);
byte[] tlv = cmdSet.exportKey(WALLET_PATH, true, true).checkOK().getData();
BIP32KeyPair walletKeyPair = BIP32KeyPair.fromTLV(tlv);
byte[] tlvWhisper = cmdSet.exportKey(WHISPER_PATH, false, false).checkOK().getData();
BIP32KeyPair whisperKeyPair = BIP32KeyPair.fromTLV(tlvWhisper);
byte[] tlv2 = cmdSet.exportKey(WHISPER_PATH, false, false).checkOK().getData();
BIP32KeyPair whisperKeyPair = BIP32KeyPair.fromTLV(tlv2);
byte[] tlv3 = cmdSet.exportKey(ENCRYPTION_PATH, false, false).checkOK().getData();
BIP32KeyPair encryptionKeyPair = BIP32KeyPair.fromTLV(tlv3);
byte[] tlvWallet = cmdSet.exportKey(WALLET_PATH, true, true).checkOK().getData();
BIP32KeyPair walletKeyPair = BIP32KeyPair.fromTLV(tlvWallet);
ApplicationInfo info = new ApplicationInfo(cmdSet.select().checkOK().getData());
@@ -380,32 +391,24 @@ public class SmartCard extends BroadcastReceiver implements CardListener {
byte[] seed = Mnemonic.toBinarySeed(mnemonic, "");
BIP32KeyPair keyPair = BIP32KeyPair.fromBinarySeed(seed);
cmdSet.loadKey(keyPair);
cmdSet.loadKey(keyPair).checkOK();
log("keypair loaded to card");
cmdSet.deriveKey(ROOT_PATH).checkOK();
byte[] tlvRoot = cmdSet.exportKey(ROOT_PATH, false, true).checkOK().getData();
Log.i(TAG, "Derived " + ROOT_PATH);
byte[] tlvRoot = cmdSet.exportCurrentKey(true).checkOK().getData();
BIP32KeyPair rootKeyPair = BIP32KeyPair.fromTLV(tlvRoot);
cmdSet.deriveKey(WALLET_PATH).checkOK();
Log.i(TAG, "Derived " + WALLET_PATH);
byte[] tlv = cmdSet.exportCurrentKey(true).checkOK().getData();
BIP32KeyPair walletKeyPair = BIP32KeyPair.fromTLV(tlv);
cmdSet.deriveKey(WHISPER_PATH).checkOK();
byte[] tlvWhisper = cmdSet.exportKey(WHISPER_PATH, false, false).checkOK().getData();
Log.i(TAG, "Derived " + WHISPER_PATH);
BIP32KeyPair whisperKeyPair = BIP32KeyPair.fromTLV(tlvWhisper);
byte[] tlv2 = cmdSet.exportCurrentKey(false).checkOK().getData();
BIP32KeyPair whisperKeyPair = BIP32KeyPair.fromTLV(tlv2);
cmdSet.deriveKey(ENCRYPTION_PATH).checkOK();
byte[] tlvEncryption = cmdSet.exportKey(ENCRYPTION_PATH, false, false).checkOK().getData();
Log.i(TAG, "Derived " + ENCRYPTION_PATH);
BIP32KeyPair encryptionKeyPair = BIP32KeyPair.fromTLV(tlvEncryption);
byte[] tlv3 = cmdSet.exportCurrentKey(false).checkOK().getData();
BIP32KeyPair encryptionKeyPair = BIP32KeyPair.fromTLV(tlv3);
byte[] tlvWallet = cmdSet.exportKey(WALLET_PATH, true, true).checkOK().getData();
Log.i(TAG, "Derived " + WALLET_PATH);
BIP32KeyPair walletKeyPair = BIP32KeyPair.fromTLV(tlvWallet);
ApplicationInfo info = new ApplicationInfo(cmdSet.select().checkOK().getData());
@@ -575,6 +578,50 @@ public class SmartCard extends BroadcastReceiver implements CardListener {
return sig;
}
public String signWithPath(final String pairingBase64, final String pin, final String path, final String message) throws IOException, APDUException {
KeycardCommandSet cmdSet = new KeycardCommandSet(this.cardChannel);
cmdSet.select().checkOK();
Pairing pairing = new Pairing(pairingBase64);
cmdSet.setPairing(pairing);
cmdSet.autoOpenSecureChannel();
Log.i(TAG, "secure channel opened");
cmdSet.verifyPIN(pin).checkOK();
Log.i(TAG, "pin verified");
byte[] hash = Hex.decode(message);
RecoverableSignature signature;
if (cmdSet.getApplicationInfo().getAppVersion() < 0x0202) {
String actualPath = new KeyPath(cmdSet.getStatus(KeycardCommandSet.GET_STATUS_P1_KEY_PATH).checkOK().getData()).toString();
if (!actualPath.equals(path)) {
cmdSet.deriveKey(path).checkOK();
}
signature = new RecoverableSignature(hash, cmdSet.sign(hash).checkOK().getData());
} else {
signature = new RecoverableSignature(hash, cmdSet.signWithPath(hash, path, false).checkOK().getData());
}
Log.i(TAG, "Signed hash: " + Hex.toHexString(hash));
Log.i(TAG, "Recovery ID: " + signature.getRecId());
Log.i(TAG, "R: " + Hex.toHexString(signature.getR()));
Log.i(TAG, "S: " + Hex.toHexString(signature.getS()));
ByteArrayOutputStream out = new ByteArrayOutputStream();
out.write(signature.getR());
out.write(signature.getS());
out.write(signature.getRecId());
String sig = Hex.toHexString(out.toByteArray());
Log.i(TAG, "Signature: " + sig);
return sig;
}
public String signPinless(final String message) throws IOException, APDUException {
CashCommandSet cmdSet = new CashCommandSet(this.cardChannel);
cmdSet.select().checkOK();
+3 -1
View File
@@ -11,10 +11,12 @@ import Keycard from "react-native-status-keycard";
```javascript
import { DeviceEventEmitter } from 'react-native';
// Listen to connect/disconnect events
// Listen to connect/disconnect and nfc events
componentDidMount () {
DeviceEventEmitter.addListener("keyCardOnConnected", () => console.log("keycard connected"));
DeviceEventEmitter.addListener("keyCardOnDisconnected", () => console.log("keycard disconnected"));
DeviceEventEmitter.addListener("keyCardOnNFCEnabled", () => console.log("nfc enabled"));
DeviceEventEmitter.addListener("keyCardOnNFCDisabled", () => console.log("nfc disabled"));
}
```
+1 -1
View File
@@ -1,7 +1,7 @@
{
"name": "react-native-status-keycard",
"homepage": "https://keycard.status.im/",
"version": "2.5.16",
"version": "2.5.17",
"description": "React Native library to interact with Status Keycard using NFC connection (Android only)",
"main": "index.js",
"scripts": {