use of com.hedera.hashgraph.sdk.AccountCreateTransaction in project hedera-sdk-java by hashgraph.
the class AutomaticAssociationTest method autoAssociateTest.
@Test
@DisplayName("Tokens automatically become associated")
void autoAssociateTest() throws Exception {
var testEnv = new IntegrationTestEnv(1).useThrowawayAccount();
var key = PrivateKey.generateED25519();
var accountId = new AccountCreateTransaction().setKey(key).setInitialBalance(new Hbar(10)).setMaxAutomaticTokenAssociations(1).execute(testEnv.client).getReceipt(testEnv.client).accountId;
Objects.requireNonNull(accountId);
var accountInfo1 = new AccountInfoQuery().setAccountId(accountId).execute(testEnv.client);
assertThat(accountInfo1.maxAutomaticTokenAssociations).isEqualTo(1);
assertThat(accountInfo1.tokenRelationships.size()).isEqualTo(0);
var tokenId1 = new TokenCreateTransaction().setTreasuryAccountId(testEnv.operatorId).setTokenName("Test Token").setTokenSymbol("T").setAdminKey(testEnv.operatorKey).setInitialSupply(1).execute(testEnv.client).getReceipt(testEnv.client).tokenId;
var tokenId2 = new TokenCreateTransaction().setTreasuryAccountId(testEnv.operatorId).setTokenName("Test Token").setTokenSymbol("T").setAdminKey(testEnv.operatorKey).setInitialSupply(1).execute(testEnv.client).getReceipt(testEnv.client).tokenId;
Objects.requireNonNull(tokenId1);
Objects.requireNonNull(tokenId2);
var transferResponse1 = new TransferTransaction().addTokenTransfer(tokenId1, testEnv.operatorId, -1).addTokenTransfer(tokenId1, accountId, 1).execute(testEnv.client);
transferResponse1.getReceipt(testEnv.client);
var transferRecord = transferResponse1.getRecord(testEnv.client);
assertThat(transferRecord.automaticTokenAssociations.size()).isEqualTo(1);
assertThat(transferRecord.automaticTokenAssociations.get(0).accountId).isEqualTo(accountId);
assertThat(transferRecord.automaticTokenAssociations.get(0).tokenId).isEqualTo(tokenId1);
var accountInfo2 = new AccountInfoQuery().setAccountId(accountId).execute(testEnv.client);
assertThat(accountInfo2.tokenRelationships.size()).isEqualTo(1);
assertThat(accountInfo2.tokenRelationships.get(tokenId1).automaticAssociation).isTrue();
assertThatExceptionOfType(Exception.class).isThrownBy(() -> {
new TransferTransaction().addTokenTransfer(tokenId2, testEnv.operatorId, -1).addTokenTransfer(tokenId2, accountId, 1).execute(testEnv.client).getReceipt(testEnv.client);
}).withMessageContaining("NO_REMAINING_AUTOMATIC_ASSOCIATIONS");
new AccountUpdateTransaction().setAccountId(accountId).setMaxAutomaticTokenAssociations(2).freezeWith(testEnv.client).sign(key).execute(testEnv.client).getReceipt(testEnv.client);
var accountInfo3 = new AccountInfoQuery().setAccountId(accountId).execute(testEnv.client);
assertThat(accountInfo3.maxAutomaticTokenAssociations).isEqualTo(2);
new TokenDeleteTransaction().setTokenId(tokenId1).execute(testEnv.client).getReceipt(testEnv.client);
new TokenDeleteTransaction().setTokenId(tokenId2).execute(testEnv.client).getReceipt(testEnv.client);
testEnv.close(accountId, key);
}
use of com.hedera.hashgraph.sdk.AccountCreateTransaction in project hedera-sdk-java by hashgraph.
the class CustomFeesExample method main.
public static void main(String[] args) throws TimeoutException, PrecheckStatusException, ReceiptStatusException {
Client client = Client.forName(HEDERA_NETWORK);
// Defaults the operator account ID and key such that all generated transactions will be paid for
// by this account and be signed by this key
client.setOperator(OPERATOR_ID, OPERATOR_KEY);
// Create three accounts, Alice, Bob, and Charlie. Alice will be the treasury for our example token.
// Fees only apply in transactions not involving the treasury, so we need two other accounts.
PrivateKey aliceKey = PrivateKey.generateED25519();
AccountId aliceId = new AccountCreateTransaction().setInitialBalance(new Hbar(10)).setKey(aliceKey).freezeWith(client).sign(aliceKey).execute(client).getReceipt(client).accountId;
PrivateKey bobKey = PrivateKey.generateED25519();
AccountId bobId = new AccountCreateTransaction().setInitialBalance(new Hbar(10)).setKey(bobKey).freezeWith(client).sign(bobKey).execute(client).getReceipt(client).accountId;
PrivateKey charlieKey = PrivateKey.generateED25519();
AccountId charlieId = new AccountCreateTransaction().setInitialBalance(new Hbar(10)).setKey(charlieKey).freezeWith(client).sign(charlieKey).execute(client).getReceipt(client).accountId;
System.out.println("Alice: " + aliceId);
System.out.println("Bob: " + bobId);
System.out.println("Charlie: " + charlieId);
// Let's start with a custom fee list of 1 fixed fee. A custom fee list can be a list of up to
// 10 custom fees, where each fee is a fixed fee or a fractional fee.
// This fixed fee will mean that every time Bob transfers any number of tokens to Charlie,
// Alice will collect 1 Hbar from each account involved in the transaction who is SENDING
// the Token (in this case, Bob).
CustomFixedFee customHbarFee = new CustomFixedFee().setHbarAmount(new Hbar(1)).setFeeCollectorAccountId(aliceId);
List<CustomFee> hbarFeeList = Collections.singletonList(customHbarFee);
// In this example the fee is in Hbar, but you can charge a fixed fee in a token if you'd like.
// EG, you can make it so that each time an account transfers Foo tokens,
// they must pay a fee in Bar tokens to the fee collecting account.
// To charge a fixed fee in tokens, instead of calling setHbarAmount(), call
// setDenominatingTokenId(tokenForFee) and setAmount(tokenFeeAmount).
// Setting the feeScheduleKey to Alice's key will enable Alice to change the custom
// fees list on this token later using the TokenFeeScheduleUpdateTransaction.
// We will create an initial supply of 100 of these tokens.
TokenId tokenId = new TokenCreateTransaction().setTokenName("Example Token").setTokenSymbol("EX").setAdminKey(aliceKey).setSupplyKey(aliceKey).setFeeScheduleKey(aliceKey).setTreasuryAccountId(aliceId).setCustomFees(hbarFeeList).setInitialSupply(100).freezeWith(client).sign(aliceKey).execute(client).getReceipt(client).tokenId;
System.out.println("Token: " + tokenId);
TokenInfo tokenInfo1 = new TokenInfoQuery().setTokenId(tokenId).execute(client);
System.out.println("Custom Fees according to TokenInfoQuery:");
System.out.println(tokenInfo1.customFees);
// We must associate the token with Bob and Charlie before they can trade in it.
new TokenAssociateTransaction().setAccountId(bobId).setTokenIds(Collections.singletonList(tokenId)).freezeWith(client).sign(bobKey).execute(client).getReceipt(client);
new TokenAssociateTransaction().setAccountId(charlieId).setTokenIds(Collections.singletonList(tokenId)).freezeWith(client).sign(charlieKey).execute(client).getReceipt(client);
// give all 100 tokens to Bob
new TransferTransaction().addTokenTransfer(tokenId, bobId, 100).addTokenTransfer(tokenId, aliceId, -100).freezeWith(client).sign(aliceKey).execute(client).getReceipt(client);
Hbar aliceHbar1 = new AccountBalanceQuery().setAccountId(aliceId).execute(client).hbars;
System.out.println("Alice's Hbar balance before Bob transfers 20 tokens to Charlie: " + aliceHbar1);
TransactionRecord record1 = new TransferTransaction().addTokenTransfer(tokenId, bobId, -20).addTokenTransfer(tokenId, charlieId, 20).freezeWith(client).sign(bobKey).execute(client).getRecord(client);
Hbar aliceHbar2 = new AccountBalanceQuery().setAccountId(aliceId).execute(client).hbars;
System.out.println("Alices's Hbar balance after Bob transfers 20 tokens to Charlie: " + aliceHbar2);
System.out.println("Assessed fees according to transaction record:");
System.out.println(record1.assessedCustomFees);
// Let's use the TokenUpdateFeeScheduleTransaction with Alice's key to change the custom fees on our token.
// TokenUpdateFeeScheduleTransaction will replace the list of fees that apply to the token with
// an entirely new list. Let's charge a 10% fractional fee. This means that when Bob attempts to transfer
// 20 tokens to Charlie, 10% of the tokens he attempts to transfer (2 in this case) will be transferred to
// Alice instead.
// Fractional fees default to FeeAssessmentMethod.INCLUSIVE, which is the behavior described above.
// If you set the assessment method to EXCLUSIVE, then when Bob attempts to transfer 20 tokens to Charlie,
// Charlie will receive all 20 tokens, and Bob will be charged an _additional_ 10% fee which
// will be transferred to Alice.
CustomFractionalFee customFractionalFee = new CustomFractionalFee().setNumerator(1).setDenominator(10).setMin(1).setMax(10).setFeeCollectorAccountId(aliceId);
List<CustomFee> fractionalFeeList = Collections.singletonList(customFractionalFee);
new TokenFeeScheduleUpdateTransaction().setTokenId(tokenId).setCustomFees(fractionalFeeList).freezeWith(client).sign(aliceKey).execute(client).getReceipt(client);
TokenInfo tokenInfo2 = new TokenInfoQuery().setTokenId(tokenId).execute(client);
System.out.println("Custom Fees according to TokenInfoQuery:");
System.out.println(tokenInfo2.customFees);
Map<TokenId, Long> aliceTokens3 = new AccountBalanceQuery().setAccountId(aliceId).execute(client).tokens;
System.out.println("Alice's token balance before Bob transfers 20 tokens to Charlie: " + aliceTokens3);
TransactionRecord record2 = new TransferTransaction().addTokenTransfer(tokenId, bobId, -20).addTokenTransfer(tokenId, charlieId, 20).freezeWith(client).sign(bobKey).execute(client).getRecord(client);
Map<TokenId, Long> aliceTokens4 = new AccountBalanceQuery().setAccountId(aliceId).execute(client).tokens;
System.out.println("Alices's token balance after Bob transfers 20 tokens to Charlie: " + aliceTokens4);
System.out.println("Token transfers according to transaction record:");
System.out.println(record2.tokenTransfers);
System.out.println("Assessed fees according to transaction record:");
System.out.println(record2.assessedCustomFees);
// clean up
new TokenDeleteTransaction().setTokenId(tokenId).freezeWith(client).sign(aliceKey).execute(client).getReceipt(client);
new AccountDeleteTransaction().setAccountId(charlieId).setTransferAccountId(client.getOperatorAccountId()).freezeWith(client).sign(charlieKey).execute(client).getReceipt(client);
new AccountDeleteTransaction().setAccountId(bobId).setTransferAccountId(client.getOperatorAccountId()).freezeWith(client).sign(bobKey).execute(client).getReceipt(client);
new AccountDeleteTransaction().setAccountId(aliceId).setTransferAccountId(client.getOperatorAccountId()).freezeWith(client).sign(aliceKey).execute(client).getReceipt(client);
client.close();
}
use of com.hedera.hashgraph.sdk.AccountCreateTransaction in project hedera-sdk-java by hashgraph.
the class DeleteAccountExample method main.
public static void main(String[] args) throws TimeoutException, PrecheckStatusException, ReceiptStatusException {
Client client = Client.forName(HEDERA_NETWORK);
// Defaults the operator account ID and key such that all generated transactions will be paid for
// by this account and be signed by this key
client.setOperator(OPERATOR_ID, OPERATOR_KEY);
// Generate a Ed25519 private, public key pair
PrivateKey newKey = PrivateKey.generateED25519();
PublicKey newPublicKey = newKey.getPublicKey();
System.out.println("private key = " + newKey);
System.out.println("public key = " + newPublicKey);
TransactionResponse transactionResponse = new AccountCreateTransaction().setKey(newKey).setInitialBalance(new Hbar(2)).execute(client);
// This will wait for the receipt to become available
TransactionReceipt receipt = transactionResponse.getReceipt(client);
AccountId newAccountId = Objects.requireNonNull(receipt.accountId);
System.out.println("account = " + newAccountId);
new AccountDeleteTransaction().setTransactionId(TransactionId.generate(newAccountId)).setAccountId(newAccountId).setTransferAccountId(OPERATOR_ID).freezeWith(client).sign(newKey).execute(client).getReceipt(client);
}
use of com.hedera.hashgraph.sdk.AccountCreateTransaction in project hedera-sdk-java by hashgraph.
the class MultiSigOfflineExample method main.
public static void main(String[] args) throws PrecheckStatusException, TimeoutException, ReceiptStatusException, InvalidProtocolBufferException {
Client client = Client.forName(HEDERA_NETWORK);
// Defaults the operator account ID and key such that all generated transactions will be paid for
// by this account and be signed by this key
client.setOperator(OPERATOR_ID, OPERATOR_KEY);
PrivateKey user1Key = PrivateKey.generateED25519();
PrivateKey user2Key = PrivateKey.generateED25519();
System.out.println("private key for user 1 = " + user1Key);
System.out.println("public key for user 1 = " + user1Key.getPublicKey());
System.out.println("private key for user 2 = " + user2Key);
System.out.println("public key for user 2 = " + user2Key.getPublicKey());
// create a multi-sig account
KeyList keylist = new KeyList();
keylist.add(user1Key);
keylist.add(user2Key);
TransactionResponse createAccountTransaction = new AccountCreateTransaction().setInitialBalance(new Hbar(2)).setKey(keylist).execute(client);
@Var TransactionReceipt receipt = createAccountTransaction.getReceipt(client);
System.out.println("account id = " + receipt.accountId);
// create a transfer from new account to 0.0.3
TransferTransaction transferTransaction = new TransferTransaction().setNodeAccountIds(Collections.singletonList(new AccountId(3))).addHbarTransfer(Objects.requireNonNull(receipt.accountId), Hbar.from(-1)).addHbarTransfer(new AccountId(3), new Hbar(1)).freezeWith(client);
// convert transaction to bytes to send to signatories
byte[] transactionBytes = transferTransaction.toBytes();
Transaction<?> transactionToExecute = Transaction.fromBytes(transactionBytes);
// ask users to sign and return signature
byte[] user1Signature = user1Key.signTransaction(Transaction.fromBytes(transactionBytes));
byte[] user2Signature = user2Key.signTransaction(Transaction.fromBytes(transactionBytes));
// recreate the transaction from bytes
transactionToExecute.signWithOperator(client);
transactionToExecute.addSignature(user1Key.getPublicKey(), user1Signature);
transactionToExecute.addSignature(user2Key.getPublicKey(), user2Signature);
TransactionResponse result = transactionToExecute.execute(client);
receipt = result.getReceipt(client);
System.out.println(receipt.status);
}
use of com.hedera.hashgraph.sdk.AccountCreateTransaction in project hedera-sdk-java by hashgraph.
the class AccountAllowanceIntegrationTest method canSpendHbarAllowance.
@Test
@DisplayName("Can spend hbar allowance")
void canSpendHbarAllowance() throws Throwable {
var testEnv = new IntegrationTestEnv(1);
var aliceKey = PrivateKey.generateED25519();
var aliceId = new AccountCreateTransaction().setKey(aliceKey).setInitialBalance(new Hbar(10)).execute(testEnv.client).getReceipt(testEnv.client).accountId;
var bobKey = PrivateKey.generateED25519();
var bobId = new AccountCreateTransaction().setKey(bobKey).setInitialBalance(new Hbar(10)).execute(testEnv.client).getReceipt(testEnv.client).accountId;
Objects.requireNonNull(aliceId);
Objects.requireNonNull(bobId);
new AccountAllowanceApproveTransaction().approveHbarAllowance(bobId, aliceId, new Hbar(10)).freezeWith(testEnv.client).sign(bobKey).execute(testEnv.client).getReceipt(testEnv.client);
var transferRecord = new TransferTransaction().addHbarTransfer(testEnv.operatorId, new Hbar(5)).addApprovedHbarTransfer(bobId, new Hbar(5).negated()).setTransactionId(TransactionId.generate(aliceId)).freezeWith(testEnv.client).sign(aliceKey).execute(testEnv.client).getRecord(testEnv.client);
var transferFound = false;
for (var transfer : transferRecord.transfers) {
if (transfer.accountId.equals(testEnv.operatorId) && transfer.amount.equals(new Hbar(5))) {
transferFound = true;
break;
}
}
assertThat(transferFound).isTrue();
new AccountDeleteTransaction().setAccountId(bobId).setTransferAccountId(testEnv.operatorId).freezeWith(testEnv.client).sign(bobKey).execute(testEnv.client).getReceipt(testEnv.client);
testEnv.close(aliceId, aliceKey);
}
Aggregations