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test: extend and simplify availablecoins_tests
Clean redundant code and add coverage for 'AvailableCoins' incremental result.
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1 changed files with 25 additions and 33 deletions
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@ -55,17 +55,31 @@ public:
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std::unique_ptr<CWallet> wallet;
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};
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void TestCoinsResult(AvailableCoinsTestingSetup& context, OutputType out_type, CAmount amount,
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std::map<OutputType, size_t>& expected_coins_sizes)
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{
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LOCK(context.wallet->cs_wallet);
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util::Result<CTxDestination> dest = Assert(context.wallet->GetNewDestination(out_type, ""));
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CWalletTx& wtx = context.AddTx(CRecipient{{GetScriptForDestination(*dest)}, amount, /*fSubtractFeeFromAmount=*/true});
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CoinFilterParams filter;
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filter.skip_locked = false;
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CoinsResult available_coins = AvailableCoins(*context.wallet, nullptr, std::nullopt, filter);
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// Lock outputs so they are not spent in follow-up transactions
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for (uint32_t i = 0; i < wtx.tx->vout.size(); i++) context.wallet->LockCoin({wtx.GetHash(), i});
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for (const auto& [type, size] : expected_coins_sizes) BOOST_CHECK_EQUAL(size, available_coins.coins[type].size());
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}
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BOOST_FIXTURE_TEST_CASE(BasicOutputTypesTest, AvailableCoinsTestingSetup)
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{
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CoinsResult available_coins;
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util::Result<CTxDestination> dest{util::Error{}};
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LOCK(wallet->cs_wallet);
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std::map<OutputType, size_t> expected_coins_sizes;
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for (const auto& out_type : OUTPUT_TYPES) { expected_coins_sizes[out_type] = 0U; }
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// Verify our wallet has one usable coinbase UTXO before starting
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// This UTXO is a P2PK, so it should show up in the Other bucket
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available_coins = AvailableCoins(*wallet);
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BOOST_CHECK_EQUAL(available_coins.Size(), 1U);
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BOOST_CHECK_EQUAL(available_coins.coins[OutputType::UNKNOWN].size(), 1U);
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expected_coins_sizes[OutputType::UNKNOWN] = 1U;
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CoinsResult available_coins = WITH_LOCK(wallet->cs_wallet, return AvailableCoins(*wallet));
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BOOST_CHECK_EQUAL(available_coins.Size(), expected_coins_sizes[OutputType::UNKNOWN]);
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BOOST_CHECK_EQUAL(available_coins.coins[OutputType::UNKNOWN].size(), expected_coins_sizes[OutputType::UNKNOWN]);
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// We will create a self transfer for each of the OutputTypes and
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// verify it is put in the correct bucket after running GetAvailablecoins
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@ -74,33 +88,11 @@ BOOST_FIXTURE_TEST_CASE(BasicOutputTypesTest, AvailableCoinsTestingSetup)
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// 1. One UTXO as the recipient
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// 2. One UTXO from the change, due to payment address matching logic
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// Bech32m
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dest = wallet->GetNewDestination(OutputType::BECH32M, "");
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BOOST_ASSERT(dest);
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AddTx(CRecipient{{GetScriptForDestination(*dest)}, 1 * COIN, /*fSubtractFeeFromAmount=*/true});
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available_coins = AvailableCoins(*wallet);
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BOOST_CHECK_EQUAL(available_coins.coins[OutputType::BECH32M].size(), 2U);
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// Bech32
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dest = wallet->GetNewDestination(OutputType::BECH32, "");
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BOOST_ASSERT(dest);
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AddTx(CRecipient{{GetScriptForDestination(*dest)}, 2 * COIN, /*fSubtractFeeFromAmount=*/true});
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available_coins = AvailableCoins(*wallet);
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BOOST_CHECK_EQUAL(available_coins.coins[OutputType::BECH32].size(), 2U);
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// P2SH-SEGWIT
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dest = wallet->GetNewDestination(OutputType::P2SH_SEGWIT, "");
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BOOST_ASSERT(dest);
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AddTx(CRecipient{{GetScriptForDestination(*dest)}, 3 * COIN, /*fSubtractFeeFromAmount=*/true});
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available_coins = AvailableCoins(*wallet);
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BOOST_CHECK_EQUAL(available_coins.coins[OutputType::P2SH_SEGWIT].size(), 2U);
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// Legacy (P2PKH)
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dest = wallet->GetNewDestination(OutputType::LEGACY, "");
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BOOST_ASSERT(dest);
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AddTx(CRecipient{{GetScriptForDestination(*dest)}, 4 * COIN, /*fSubtractFeeFromAmount=*/true});
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available_coins = AvailableCoins(*wallet);
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BOOST_CHECK_EQUAL(available_coins.coins[OutputType::LEGACY].size(), 2U);
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for (const auto& out_type : OUTPUT_TYPES) {
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if (out_type == OutputType::UNKNOWN) continue;
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expected_coins_sizes[out_type] = 2U;
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TestCoinsResult(*this, out_type, 1 * COIN, expected_coins_sizes);
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}
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}
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BOOST_AUTO_TEST_SUITE_END()
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