package com.tangem.wallet.ltc; import android.net.Uri; import android.text.InputFilter; import com.tangem.wallet.BTCUtils; import com.tangem.wallet.BalanceValidator; import com.tangem.wallet.Base58; import com.tangem.wallet.CoinData; import com.tangem.wallet.TangemContext; import com.tangem.wallet.Transaction; import com.tangem.wallet.UnspentOutputInfo; import com.tangem.wallet.btc.BtcData; import com.tangem.wallet.btc.BtcEngine; import com.tangem.card_common.data.TangemCard; import com.tangem.card_common.reader.CardProtocol; import com.tangem.card_common.tasks.SignTask; import com.tangem.card_common.util.Util; import com.tangem.util.CryptoUtil; import com.tangem.util.DecimalDigitsInputFilter; import com.tangem.util.DerEncodingUtil; import com.tangem.wallet.R; import java.io.ByteArrayOutputStream; import java.math.BigDecimal; import java.math.BigInteger; import java.math.RoundingMode; import java.nio.ByteBuffer; import java.security.NoSuchAlgorithmException; import java.security.NoSuchProviderException; import java.util.ArrayList; import java.util.Arrays; public class LtcEngine extends BtcEngine { private static final String TAG = LtcEngine.class.getSimpleName(); public BtcData coinData = null; public LtcEngine(TangemContext context) throws Exception { super(context); if (context.getCoinData() == null) { coinData = new BtcData(); context.setCoinData(coinData); } else if (context.getCoinData() instanceof BtcData) { coinData = (BtcData) context.getCoinData(); } else { throw new Exception("Invalid type of Blockchain data for LtcEngine"); } } public LtcEngine() { super(); } private static int getDecimals() { return 8; } private void checkBlockchainDataExists() throws Exception { if (coinData == null) throw new Exception("No blockchain data"); } @Override public boolean awaitingConfirmation() { if (coinData == null) return false; return coinData.getBalanceUnconfirmed() != 0; } @Override public String getBalanceHTML() { Amount balance = getBalance(); if (balance != null) { return balance.toDescriptionString(getDecimals()); } else { return ""; } } @Override public String getBalanceCurrency() { return "LTC"; } @Override public boolean isBalanceNotZero() { if (coinData == null) return false; if (coinData.getBalanceInInternalUnits() == null) return false; return coinData.getBalanceInInternalUnits().notZero(); } @Override public boolean hasBalanceInfo() { if (coinData == null) return false; return coinData.hasBalanceInfo(); } @Override public boolean isExtractPossible() { if (!hasBalanceInfo()) { ctx.setMessage(R.string.cannot_obtain_data_from_blockchain); } else if (!isBalanceNotZero()) { ctx.setMessage(R.string.wallet_empty); } else if (awaitingConfirmation()) { ctx.setMessage(R.string.please_wait_while_previous); } else if (coinData.getUnspentTransactions().size() == 0) { ctx.setMessage(R.string.please_wait_for_confirmation); } else { return true; } return false; } @Override public String getFeeCurrency() { return "LTC"; } @Override public boolean validateAddress(String address) { if (address == null || address.isEmpty()) { return false; } if (address.length() < 25) { return false; } if (address.length() > 35) { return false; } if (!address.startsWith("L") && !address.startsWith("M")) { return false; } byte[] decAddress = Base58.decodeBase58(address); if (decAddress == null || decAddress.length == 0) { return false; } byte[] rip = new byte[21]; for (int i = 0; i < 21; ++i) { rip[i] = decAddress[i]; } byte[] kcv = CryptoUtil.doubleSha256(rip); for (int i = 0; i < 4; ++i) { if (kcv[i] != decAddress[21 + i]) return false; } return true; } @Override public boolean isNeedCheckNode() { return true; } @Override public Uri getWalletExplorerUri() { return Uri.parse("https://live.blockcypher.com/ltc/address/" + ctx.getCoinData().getWallet()); } @Override public Uri getShareWalletUri() { if (ctx.getCard().getDenomination() != null) { return Uri.parse("litecoin:" + ctx.getCoinData().getWallet() + "?amount=" + convertToAmount(convertToInternalAmount(ctx.getCard().getDenomination())).toValueString(8)); } else { return Uri.parse("litecoin:" + ctx.getCoinData().getWallet()); } } @Override public InputFilter[] getAmountInputFilters() { return new InputFilter[]{new DecimalDigitsInputFilter(getDecimals())}; } @Override public boolean checkNewTransactionAmount(Amount amount) { if (coinData == null) return false; if (amount.compareTo(convertToAmount(coinData.getBalanceInInternalUnits())) > 0) { return false; } return true; } @Override public boolean checkNewTransactionAmountAndFee(Amount amountValue, Amount feeValue, Boolean isIncludeFee) { InternalAmount fee; InternalAmount amount; try { checkBlockchainDataExists(); amount = convertToInternalAmount(amountValue); fee = convertToInternalAmount(feeValue); } catch (Exception e) { e.printStackTrace(); return false; } if (fee == null || amount == null) return false; if (fee.isZero() || amount.isZero()) return false; if (isIncludeFee && (amount.compareTo(coinData.getBalanceInInternalUnits()) > 0 || amount.compareTo(fee) < 0)) return false; if (!isIncludeFee && amount.add(fee).compareTo(coinData.getBalanceInInternalUnits()) > 0) return false; return true; } @Override public boolean validateBalance(BalanceValidator balanceValidator) { if (((ctx.getCard().getOfflineBalance() == null) && !ctx.getCoinData().isBalanceReceived()) || (!ctx.getCoinData().isBalanceReceived() && (ctx.getCard().getRemainingSignatures() != ctx.getCard().getMaxSignatures()))) { balanceValidator.setScore(0); balanceValidator.setFirstLine("Unknown balance"); balanceValidator.setSecondLine("Balance cannot be verified. Swipe down to refresh."); return false; } // Workaround before new back-end // if (card.getRemainingSignatures() == card.getMaxSignatures()) { // firstLine = "Verified balance"; // secondLine = "Balance confirmed in blockchain. "; // secondLine += "Verified note identity. "; // return; // } if (coinData.getBalanceUnconfirmed() != 0) { balanceValidator.setScore(0); balanceValidator.setFirstLine("Transaction in progress"); balanceValidator.setSecondLine("Wait for confirmation in blockchain"); return false; } if (coinData.isBalanceReceived() && coinData.isBalanceEqual()) { balanceValidator.setScore(100); balanceValidator.setFirstLine("Verified balance"); balanceValidator.setSecondLine("Balance confirmed in blockchain"); if (coinData.getBalanceInInternalUnits().isZero()) { balanceValidator.setFirstLine("Empty wallet"); balanceValidator.setSecondLine(""); } } // rule 4 TODO: need to check SignedHashed against number of outputs in blockchain // if((card.getRemainingSignatures() != card.getMaxSignatures()) && card.getBalance() != 0) // { // score = 80; // firstLine = "Unguaranteed balance"; // secondLine = "Potential unsent transaction. Redeem immediately if accept. "; // return; // } if ((ctx.getCard().getOfflineBalance() != null) && !coinData.isBalanceReceived() && (ctx.getCard().getRemainingSignatures() == ctx.getCard().getMaxSignatures()) && coinData.getBalanceInInternalUnits().notZero()) { balanceValidator.setScore(80); balanceValidator.setFirstLine("Verified offline balance"); balanceValidator.setSecondLine("Can't obtain balance from blockchain. Restore internet connection to be more confident. "); } // if(card.getFailedBalanceRequestCounter()!=0) { // score -= 5 * card.getFailedBalanceRequestCounter(); // secondLine += "Not all nodes have returned balance. Swipe down or tap again. "; // if(score <= 0) // return; // } // // if(card.isBalanceReceived() && !card.isBalanceEqual()) { // score = 0; // firstLine = "Disputed balance"; // secondLine += " Cannot obtain trusted balance at the moment. Try to tap and check this banknote later."; // return; // } return true; } @Override public Amount getBalance() { if (!hasBalanceInfo()) return null; return convertToAmount(coinData.getBalanceInInternalUnits()); } @Override public String evaluateFeeEquivalent(String fee) { if (!coinData.getAmountEquivalentDescriptionAvailable()) return ""; try { Amount feeAmount = new Amount(fee, getFeeCurrency()); return feeAmount.toEquivalentString(coinData.getRate()); } catch (Exception e) { return ""; } } @Override public String getBalanceEquivalent() { if (coinData == null || !coinData.getAmountEquivalentDescriptionAvailable()) return ""; Amount balance = getBalance(); if (balance == null) return ""; return balance.toEquivalentString(coinData.getRate()); } @Override public String calculateAddress(byte[] pkUncompressed) throws NoSuchProviderException, NoSuchAlgorithmException { byte netSelectionByte = (byte) 0x30; byte hash1[] = Util.calculateSHA256(pkUncompressed); byte hash2[] = Util.calculateRIPEMD160(hash1); ByteBuffer BB = ByteBuffer.allocate(hash2.length + 1); BB.put(netSelectionByte); BB.put(hash2); byte hash3[] = Util.calculateSHA256(BB.array()); byte hash4[] = Util.calculateSHA256(hash3); BB = ByteBuffer.allocate(hash2.length + 5); BB.put(netSelectionByte); //BB.put((byte) 0x6f); BB.put(hash2); BB.put(hash4[0]); BB.put(hash4[1]); BB.put(hash4[2]); BB.put(hash4[3]); return org.bitcoinj.core.Base58.encode(BB.array()); } @Override public Amount convertToAmount(InternalAmount internalAmount) { BigDecimal d = internalAmount.divide(new BigDecimal("100000000")); return new Amount(d, getBalanceCurrency()); } @Override public Amount convertToAmount(String strAmount, String currency) { return new Amount(strAmount, currency); } @Override public InternalAmount convertToInternalAmount(Amount amount) { BigDecimal d = amount.multiply(new BigDecimal("100000000")); return new InternalAmount(d, "Satoshi"); } @Override public InternalAmount convertToInternalAmount(byte[] bytes) { if (bytes == null) return null; byte[] reversed = new byte[bytes.length]; for (int i = 0; i < bytes.length; i++) reversed[i] = bytes[bytes.length - i - 1]; return new InternalAmount(Util.byteArrayToLong(reversed), "Satoshi"); } @Override public byte[] convertToByteArray(InternalAmount internalAmount) { byte[] bytes = Util.longToByteArray(internalAmount.longValueExact()); byte[] reversed = new byte[bytes.length]; for (int i = 0; i < bytes.length; i++) reversed[i] = bytes[bytes.length - i - 1]; return reversed; } @Override public CoinData createCoinData() { return new BtcData(); } @Override public String getUnspentInputsDescription() { return coinData.getUnspentInputsDescription(); } @Override public SignTask.TransactionToSign constructTransaction(Amount amountValue, Amount feeValue, boolean IncFee, String targetAddress) throws Exception { ArrayList unspentOutputs = new ArrayList<>(); checkBlockchainDataExists(); String myAddress = ctx.getCoinData().getWallet(); byte[] pbKey = ctx.getCard().getWalletPublicKey(); for (BtcData.UnspentTransaction utxo : coinData.getUnspentTransactions()) { unspentOutputs.add(new UnspentOutputInfo(BTCUtils.fromHex(utxo.txID), new Transaction.Script(BTCUtils.fromHex(utxo.script)), utxo.amount, utxo.outputN, -1, utxo.txID, null)); } long fullAmount = 0; for (int i = 0; i < unspentOutputs.size(); ++i) { fullAmount += unspentOutputs.get(i).value; } long fees = convertToInternalAmount(feeValue).longValueExact(); long amount = convertToInternalAmount(amountValue).longValueExact(); long change = fullAmount - amount; if (IncFee) { amount = amount - fees; } else { change = change - fees; } final long amountFinal=amount; final long changeFinal=change; if (amount + fees > fullAmount) { throw new CardProtocol.TangemException_WrongAmount(String.format("Balance (%d) < change (%d) + amount (%d)", fullAmount, change, amount)); } final byte[][] txForSign = new byte[unspentOutputs.size()][]; final byte[][] bodyDoubleHash = new byte[unspentOutputs.size()][]; final byte[][] bodyHash= new byte[unspentOutputs.size()][]; for (int i = 0; i < unspentOutputs.size(); ++i) { txForSign[i] = BTCUtils.buildTXForSign(myAddress, targetAddress, myAddress, unspentOutputs, i, amount, change); bodyHash[i] = Util.calculateSHA256(txForSign[i]); bodyDoubleHash[i] = Util.calculateSHA256(bodyHash[i]); } return new SignTask.TransactionToSign() { @Override public boolean isSigningMethodSupported(TangemCard.SigningMethod signingMethod) { return signingMethod==TangemCard.SigningMethod.Sign_Hash || signingMethod==TangemCard.SigningMethod.Sign_Raw; } @Override public byte[][] getHashesToSign() throws Exception { byte[][] dataForSign=new byte[unspentOutputs.size()][]; if (txForSign.length > 10) throw new Exception("To much hashes in one transaction!"); for (int i = 0; i < unspentOutputs.size(); ++i) { dataForSign[i] = bodyDoubleHash[i]; } return dataForSign; } @Override public byte[] getRawDataToSign() throws Exception { ByteArrayOutputStream bs = new ByteArrayOutputStream(); for (int i = 0; i < txForSign.length; i++) { if (i != 0 && txForSign[0].length != txForSign[i].length) throw new Exception("Hashes length must be identical!"); bs.write(txForSign[i]); } return bs.toByteArray(); } @Override public String getHashAlgToSign() { return "sha-256x2"; } @Override public byte[] getIssuerTransactionSignature(byte[] dataToSignByIssuer) throws Exception { throw new Exception("Issuer validation not supported!"); } @Override public byte[] onSignCompleted(byte[] signFromCard) throws Exception { for (int i = 0; i < unspentOutputs.size(); ++i) { BigInteger r = new BigInteger(1, Arrays.copyOfRange(signFromCard, i * 64, 32 + i * 64)); BigInteger s = new BigInteger(1, Arrays.copyOfRange(signFromCard, 32 + i * 64, 64 + i * 64)); s = CryptoUtil.toCanonicalised(s); unspentOutputs.get(i).scriptForBuild = DerEncodingUtil.packSignDer(r, s, pbKey); } byte[] txForSend=BTCUtils.buildTXForSend(targetAddress, myAddress, unspentOutputs, amountFinal, changeFinal); notifyOnNeedSendTransaction(txForSend); return txForSend; } }; } private final static BigDecimal relayFee = new BigDecimal(0.00001).setScale(8, RoundingMode.DOWN); @Override public void requestFee(BlockchainRequestsCallbacks blockchainRequestsCallbacks, String targetAddress, Amount amount) throws Exception { coinData.minFee = coinData.normalFee = coinData.maxFee = new Amount(relayFee, "LTC"); blockchainRequestsCallbacks.onComplete(true); } @Override public boolean allowSelectFeeLevel() { return false; } }