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376 lines
13 KiB
376 lines
13 KiB
use hyperlane_core::{Announcement, H160};
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use std::str::FromStr;
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use account_utils::SizedData;
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use borsh::BorshSerialize;
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use solana_program::{
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instruction::{AccountMeta, Instruction},
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pubkey,
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pubkey::Pubkey,
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system_program,
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};
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use solana_program_test::*;
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use solana_sdk::{
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instruction::InstructionError, signature::Signer, signer::keypair::Keypair,
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transaction::TransactionError,
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};
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use hyperlane_sealevel_validator_announce::{
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accounts::{
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ReplayProtection, ReplayProtectionAccount, ValidatorAnnounce, ValidatorAnnounceAccount,
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ValidatorStorageLocations, ValidatorStorageLocationsAccount,
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},
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instruction::{
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AnnounceInstruction, InitInstruction, Instruction as ValidatorAnnounceInstruction,
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},
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processor::process_instruction as validator_announce_process_instruction,
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replay_protection_pda_seeds, validator_announce_pda_seeds,
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validator_storage_locations_pda_seeds,
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};
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use hyperlane_test_utils::{assert_transaction_error, process_instruction};
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// The Ethereum mailbox & domain chosen for easy testing
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const TEST_MAILBOX: &str = "00000000000000000000000035231d4c2d8b8adcb5617a638a0c4548684c7c70";
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const TEST_DOMAIN: u32 = 1;
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fn validator_announce_id() -> Pubkey {
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pubkey!("DH43ae1LwemXAboWwSh8zc9pG8j72gKUEXNi57w8fEnn")
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}
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fn get_test_mailbox() -> Pubkey {
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let mailbox_bytes = hex::decode(TEST_MAILBOX).unwrap();
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Pubkey::new(&mailbox_bytes[..])
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}
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fn get_test_announcements() -> Vec<(Announcement, Vec<u8>)> {
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// Signed by the following validator:
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//
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// Address: 0x13DFDeB827D4D7fACE707fAdbfd4D651438B4aB3
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// Private Key: 0x2053099fadf2520efd407cbf043f89fe10eaf91a356d585e9ad12a5eb5f771dd
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let announcement0 = Announcement {
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validator: H160::from_str("0x13DFDeB827D4D7fACE707fAdbfd4D651438B4aB3").unwrap(),
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mailbox_address: get_test_mailbox().to_bytes().into(),
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mailbox_domain: TEST_DOMAIN,
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storage_location: "s3://test-storage-location-foo/us-east-1".to_string(),
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};
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// Got using ethers.js to sign `announcement0.signing_hash()`, which is
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// 0x6a4f7bcbbcf3f700c4f4da16d3d14ae907ced31d79779e196f4f40af710cfa85
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//
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// > await (new ethers.Wallet('0x2053099fadf2520efd407cbf043f89fe10eaf91a356d585e9ad12a5eb5f771dd')).signMessage(ethers.utils.arrayify('0x6a4f7bcbbcf3f700c4f4da16d3d14ae907ced31d79779e196f4f40af710cfa85'))
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let signature0 = hex::decode("fa0d375457d9a98b3cd6c6ee308464ea23abc2f2368e80d942dacf0b2e3cc4d66ac51efabe169b7cb29170894c588221c91807e500a7a9f9648a8b1c47eceecc1c").unwrap();
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// UTF-8 characters in the storage location
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let announcement1 = Announcement {
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validator: H160::from_str("0x13DFDeB827D4D7fACE707fAdbfd4D651438B4aB3").unwrap(),
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mailbox_address: get_test_mailbox().to_bytes().into(),
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mailbox_domain: TEST_DOMAIN,
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storage_location: "s3://test-storage-location-Здравствуйте/us-east-1".to_string(),
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};
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// Got using ethers.js to sign `announcement1.signing_hash()`, which is
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// 0xb647a8e18b8152d7cc122ef3e88b643a0dcd2b702dded70ac2d1c94477ca3090
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//
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// > await (new ethers.Wallet('0x2053099fadf2520efd407cbf043f89fe10eaf91a356d585e9ad12a5eb5f771dd')).signMessage(ethers.utils.arrayify('0xb647a8e18b8152d7cc122ef3e88b643a0dcd2b702dded70ac2d1c94477ca3090'))
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let signature1 = hex::decode("983b941ae9bf939bf59abcf81e7d2e66735da5e2726f955b915aea247ae16afa3a03b69fe7d7c83154caca29d8ad62f2a1ccbbb5c56f67dab10c98a2d4aac3b01c").unwrap();
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vec![(announcement0, signature0), (announcement1, signature1)]
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}
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async fn initialize(
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banks_client: &mut BanksClient,
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payer: &Keypair,
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mailbox: Pubkey,
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) -> Result<(Pubkey, u8), BanksClientError> {
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let program_id = validator_announce_id();
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let (validator_announce_key, validator_announce_bump_seed) =
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Pubkey::find_program_address(validator_announce_pda_seeds!(), &program_id);
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// Accounts:
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// 0. `[signer]` The payer.
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// 1. `[executable]` The system program.
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// 2. `[writable]` The ValidatorAnnounce PDA account.
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let init_instruction = Instruction::new_with_borsh(
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program_id,
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&ValidatorAnnounceInstruction::Init(InitInstruction {
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mailbox,
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local_domain: TEST_DOMAIN,
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}),
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vec![
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AccountMeta::new_readonly(payer.pubkey(), true),
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AccountMeta::new_readonly(system_program::id(), false),
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AccountMeta::new(validator_announce_key, false),
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],
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);
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process_instruction(banks_client, init_instruction, payer, &[payer]).await?;
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Ok((validator_announce_key, validator_announce_bump_seed))
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}
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#[tokio::test]
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async fn test_initialize() {
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let program_id = validator_announce_id();
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let (mut banks_client, payer, _recent_blockhash) = ProgramTest::new(
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"hyperlane_sealevel_validator_announce",
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program_id,
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processor!(validator_announce_process_instruction),
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)
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.start()
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.await;
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let mailbox = get_test_mailbox();
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let (validator_announce_key, validator_announce_bump_seed) =
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initialize(&mut banks_client, &payer, mailbox)
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.await
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.unwrap();
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// Expect the validator announce account to be initialized.
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let validator_announce_account = banks_client
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.get_account(validator_announce_key)
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.await
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.unwrap()
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.unwrap();
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assert_eq!(validator_announce_account.owner, program_id);
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let validator_announce =
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ValidatorAnnounceAccount::fetch(&mut &validator_announce_account.data[..])
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.unwrap()
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.into_inner();
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assert_eq!(
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validator_announce,
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Box::new(ValidatorAnnounce {
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bump_seed: validator_announce_bump_seed,
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mailbox,
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local_domain: TEST_DOMAIN,
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}),
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);
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}
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#[tokio::test]
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async fn test_initialize_errors_if_called_twice() {
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let program_id = validator_announce_id();
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let (mut banks_client, payer, _recent_blockhash) = ProgramTest::new(
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"hyperlane_sealevel_validator_announce",
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program_id,
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processor!(validator_announce_process_instruction),
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)
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.start()
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.await;
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let mailbox = get_test_mailbox();
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initialize(&mut banks_client, &payer, mailbox)
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.await
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.unwrap();
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// Using the same mailbox / payer in the new initialize will result in the same
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// tx hash because a new blockhash isn't used for the new transaction.
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// As a workaround, use a different mailbox
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let init_result = initialize(&mut banks_client, &payer, Pubkey::new_unique()).await;
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assert_transaction_error(
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init_result,
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TransactionError::InstructionError(0, InstructionError::AccountAlreadyInitialized),
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);
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}
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async fn announce(
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banks_client: &mut BanksClient,
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payer: &Keypair,
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program_id: Pubkey,
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validator_announce_key: Pubkey,
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announce_instruction: AnnounceInstruction,
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) -> Result<(Pubkey, u8, Pubkey, u8), BanksClientError> {
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let (validator_storage_locations_key, validator_storage_locations_bump_seed) =
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Pubkey::find_program_address(
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validator_storage_locations_pda_seeds!(announce_instruction.validator),
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&program_id,
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);
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let replay_id = announce_instruction.replay_id();
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let (replay_protection_key, replay_protection_bump_seed) =
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Pubkey::find_program_address(replay_protection_pda_seeds!(replay_id), &program_id);
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// Accounts:
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// 0. `[signer]` The payer.
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// 1. `[executable]` The system program.
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// 2. `[]` The ValidatorAnnounce PDA account.
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// 3. `[writeable]` The validator-specific ValidatorStorageLocationsAccount PDA account.
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// 4. `[writeable]` The ReplayProtection PDA account specific to the announcement being made.
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let announce_instruction = Instruction::new_with_borsh(
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program_id,
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&ValidatorAnnounceInstruction::Announce(announce_instruction),
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vec![
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AccountMeta::new_readonly(payer.pubkey(), true),
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AccountMeta::new_readonly(system_program::id(), false),
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AccountMeta::new_readonly(validator_announce_key, false),
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AccountMeta::new(validator_storage_locations_key, false),
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AccountMeta::new(replay_protection_key, false),
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],
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);
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process_instruction(banks_client, announce_instruction, payer, &[payer]).await?;
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Ok((
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validator_storage_locations_key,
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validator_storage_locations_bump_seed,
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replay_protection_key,
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replay_protection_bump_seed,
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))
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}
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async fn assert_successful_announcement(
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banks_client: &mut BanksClient,
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program_id: Pubkey,
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validator_storage_locations_key: Pubkey,
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replay_protection_key: Pubkey,
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expected_validator_storage_locations: ValidatorStorageLocations,
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) {
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// Expect the validator storage locations account to be created & with the new announcement.
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let validator_storage_locations_account = banks_client
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.get_account(validator_storage_locations_key)
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.await
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.unwrap()
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.unwrap();
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assert_eq!(validator_storage_locations_account.owner, program_id);
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let validator_storage_locations =
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ValidatorStorageLocationsAccount::fetch(&mut &validator_storage_locations_account.data[..])
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.unwrap()
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.into_inner();
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assert_eq!(
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validator_storage_locations,
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Box::new(expected_validator_storage_locations.clone()),
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);
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// Also sanity check that the sizing logic is correct!
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assert_eq!(
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validator_storage_locations_account.data.len(),
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// Plus 1 for the initialized byte
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expected_validator_storage_locations
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.try_to_vec()
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.unwrap()
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.len()
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+ 1,
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);
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assert_eq!(
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validator_storage_locations_account.data.len(),
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ValidatorStorageLocationsAccount::from(expected_validator_storage_locations).size(),
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);
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// Expect the replay protection account to be created
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let replay_protection_account = banks_client
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.get_account(replay_protection_key)
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.await
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.unwrap()
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.unwrap();
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assert_eq!(replay_protection_account.owner, program_id);
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assert!(!validator_storage_locations_account.data.is_empty());
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let replay_protection =
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ReplayProtectionAccount::fetch_data(&mut &validator_storage_locations_account.data[..])
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.unwrap();
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assert_eq!(replay_protection, Some(Box::new(ReplayProtection(()))),);
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}
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#[tokio::test]
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async fn test_announce() {
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let program_id = validator_announce_id();
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let (mut banks_client, payer, _recent_blockhash) = ProgramTest::new(
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"hyperlane_sealevel_validator_announce",
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program_id,
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processor!(validator_announce_process_instruction),
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)
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.start()
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.await;
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let mailbox = get_test_mailbox();
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let (validator_announce_key, _validator_announce_bump_seed) =
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initialize(&mut banks_client, &payer, mailbox)
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.await
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.unwrap();
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let test_announcements = get_test_announcements();
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// Make the first announcement
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let (announcement, signature) = test_announcements[0].clone();
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let announce_instruction = AnnounceInstruction {
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validator: announcement.validator,
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storage_location: announcement.storage_location,
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signature,
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};
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let (
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validator_storage_locations_key,
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validator_storage_locations_bump_seed,
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replay_protection_key,
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_replay_protection_bump_seed,
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) = announce(
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&mut banks_client,
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&payer,
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program_id,
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validator_announce_key,
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announce_instruction.clone(),
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)
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.await
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.unwrap();
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assert_successful_announcement(
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&mut banks_client,
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program_id,
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validator_storage_locations_key,
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replay_protection_key,
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ValidatorStorageLocations {
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bump_seed: validator_storage_locations_bump_seed,
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storage_locations: vec![announce_instruction.storage_location.clone()],
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},
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)
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.await;
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// And ensure that the announcement can't be made again!
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let announce_result = announce(
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&mut banks_client,
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&payer,
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program_id,
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validator_announce_key,
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announce_instruction.clone(),
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)
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.await;
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assert_transaction_error(
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announce_result,
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TransactionError::InstructionError(0, InstructionError::AccountAlreadyInitialized),
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);
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// And then announce the second storage location, which we expect to be successful
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let (announcement, signature) = test_announcements[1].clone();
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let announce_instruction1 = AnnounceInstruction {
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validator: announcement.validator,
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storage_location: announcement.storage_location,
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signature,
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};
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let (_, _, replay_protection_key, _replay_protection_bump_seed) = announce(
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&mut banks_client,
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&payer,
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program_id,
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validator_announce_key,
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announce_instruction1.clone(),
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)
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.await
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.unwrap();
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assert_successful_announcement(
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&mut banks_client,
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program_id,
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validator_storage_locations_key,
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replay_protection_key,
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ValidatorStorageLocations {
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bump_seed: validator_storage_locations_bump_seed,
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storage_locations: vec![
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announce_instruction.storage_location.clone(),
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announce_instruction1.storage_location.clone(),
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],
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},
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)
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.await;
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}
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