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bf8ae68eea
So we only need to do one `GetRawMempool` lookup when checking the exclusion of multiple txns.
332 lines
10 KiB
Go
332 lines
10 KiB
Go
package lntest
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import (
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"fmt"
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"github.com/btcsuite/btcd/blockchain"
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"github.com/btcsuite/btcd/btcutil"
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"github.com/btcsuite/btcd/chaincfg/chainhash"
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"github.com/btcsuite/btcd/wire"
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"github.com/lightningnetwork/lnd/lntest/miner"
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"github.com/lightningnetwork/lnd/lntest/node"
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"github.com/lightningnetwork/lnd/lntest/wait"
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"github.com/stretchr/testify/require"
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)
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// Miner returns the miner instance.
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//
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// NOTE: Caller should keep in mind that when using this private instance,
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// certain states won't be managed by the HarnessTest anymore. For instance,
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// when mining directly, the nodes managed by the HarnessTest can be out of
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// sync, and the `HarnessTest.CurrentHeight()` won't be accurate.
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func (h *HarnessTest) Miner() *miner.HarnessMiner {
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return h.miner
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}
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// MineBlocks mines blocks and asserts all active nodes have synced to the
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// chain. It assumes no txns are expected in the blocks.
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//
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// NOTE: Use `MineBlocksAndAssertNumTxes` if you expect txns in the blocks. Use
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// `MineEmptyBlocks` if you want to make sure that txns stay unconfirmed.
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func (h *HarnessTest) MineBlocks(num int) {
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require.Less(h, num, maxBlocksAllowed, "too many blocks to mine")
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// Update the harness's current height.
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defer h.updateCurrentHeight()
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// Mine num of blocks.
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for i := 0; i < num; i++ {
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block := h.miner.MineBlocks(1)[0]
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// Check the block doesn't have any txns except the coinbase.
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if len(block.Transactions) <= 1 {
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// Make sure all the active nodes are synced.
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h.AssertActiveNodesSyncedTo(block)
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// Mine the next block.
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continue
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}
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// Create a detailed description.
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desc := fmt.Sprintf("block %v has %d txns:\n",
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block.BlockHash(), len(block.Transactions)-1)
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// Print all the txns except the coinbase.
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for _, tx := range block.Transactions {
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if blockchain.IsCoinBaseTx(tx) {
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continue
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}
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desc += fmt.Sprintf("%v\n", tx.TxHash())
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}
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desc += "Consider using `MineBlocksAndAssertNumTxes` if you " +
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"expect txns, or `MineEmptyBlocks` if you want to " +
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"keep the txns unconfirmed."
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// Raise an error if the block has txns.
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require.Fail(h, "MineBlocks", desc)
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}
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}
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// MineEmptyBlocks mines a given number of empty blocks.
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//
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// NOTE: this differs from miner's `MineEmptyBlocks` as it requires the nodes
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// to be synced.
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func (h *HarnessTest) MineEmptyBlocks(num int) []*wire.MsgBlock {
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require.Less(h, num, maxBlocksAllowed, "too many blocks to mine")
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// Update the harness's current height.
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defer h.updateCurrentHeight()
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blocks := h.miner.MineEmptyBlocks(num)
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// Finally, make sure all the active nodes are synced.
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h.AssertActiveNodesSynced()
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return blocks
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}
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// MineBlocksAndAssertNumTxes mines blocks and asserts the number of
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// transactions are found in the first block. It also asserts all active nodes
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// have synced to the chain.
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//
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// NOTE: this differs from miner's `MineBlocks` as it requires the nodes to be
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// synced.
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func (h *HarnessTest) MineBlocksAndAssertNumTxes(num uint32,
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numTxs int) []*wire.MsgBlock {
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// Update the harness's current height.
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defer h.updateCurrentHeight()
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// If we expect transactions to be included in the blocks we'll mine,
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// we wait here until they are seen in the miner's mempool.
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txids := h.AssertNumTxsInMempool(numTxs)
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// Mine blocks.
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blocks := h.miner.MineBlocks(num)
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// Assert that all the transactions were included in the first block.
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for _, txid := range txids {
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h.miner.AssertTxInBlock(blocks[0], txid)
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}
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// Make sure the mempool has been updated.
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h.miner.AssertTxnsNotInMempool(txids)
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// Finally, make sure all the active nodes are synced.
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bestBlock := blocks[len(blocks)-1]
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h.AssertActiveNodesSyncedTo(bestBlock)
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return blocks
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}
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// ConnectMiner connects the miner with the chain backend in the network.
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func (h *HarnessTest) ConnectMiner() {
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err := h.manager.chainBackend.ConnectMiner()
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require.NoError(h, err, "failed to connect miner")
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}
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// DisconnectMiner removes the connection between the miner and the chain
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// backend in the network.
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func (h *HarnessTest) DisconnectMiner() {
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err := h.manager.chainBackend.DisconnectMiner()
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require.NoError(h, err, "failed to disconnect miner")
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}
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// cleanMempool mines blocks till the mempool is empty and asserts all active
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// nodes have synced to the chain.
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func (h *HarnessTest) cleanMempool() {
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_, startHeight := h.GetBestBlock()
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// Mining the blocks slow to give `lnd` more time to sync.
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var bestBlock *wire.MsgBlock
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err := wait.NoError(func() error {
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// If mempool is empty, exit.
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mem := h.miner.GetRawMempool()
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if len(mem) == 0 {
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_, height := h.GetBestBlock()
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h.Logf("Mined %d blocks when cleanup the mempool",
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height-startHeight)
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return nil
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}
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// Otherwise mine a block.
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blocks := h.miner.MineBlocksSlow(1)
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bestBlock = blocks[len(blocks)-1]
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// Make sure all the active nodes are synced.
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h.AssertActiveNodesSyncedTo(bestBlock)
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return fmt.Errorf("still have %d txes in mempool", len(mem))
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}, wait.MinerMempoolTimeout)
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require.NoError(h, err, "timeout cleaning up mempool")
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}
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// mineTillForceCloseResolved asserts that the number of pending close channels
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// are zero. Each time it checks, an empty block is mined, followed by a
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// mempool check to see if there are any sweeping txns. If found, these txns
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// are then mined to clean up the mempool.
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func (h *HarnessTest) mineTillForceCloseResolved(hn *node.HarnessNode) {
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_, startHeight := h.GetBestBlock()
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err := wait.NoError(func() error {
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resp := hn.RPC.PendingChannels()
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total := len(resp.PendingForceClosingChannels)
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if total != 0 {
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// Mine an empty block first.
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h.MineEmptyBlocks(1)
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// If there are new sweeping txns, mine a block to
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// confirm it.
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mem := h.GetRawMempool()
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if len(mem) != 0 {
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h.MineBlocksAndAssertNumTxes(1, len(mem))
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}
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return fmt.Errorf("expected num of pending force " +
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"close channel to be zero")
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}
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_, height := h.GetBestBlock()
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h.Logf("Mined %d blocks while waiting for force closed "+
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"channel to be resolved", height-startHeight)
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return nil
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}, DefaultTimeout)
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require.NoErrorf(h, err, "assert force close resolved timeout")
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}
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// AssertTxInMempool asserts a given transaction can be found in the mempool.
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func (h *HarnessTest) AssertTxInMempool(txid chainhash.Hash) *wire.MsgTx {
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return h.miner.AssertTxInMempool(txid)
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}
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// AssertTxNotInMempool asserts a given transaction cannot be found in the
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// mempool. It assumes the mempool is not empty.
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//
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// NOTE: this should be used after `AssertTxInMempool` to ensure the tx has
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// entered the mempool before. Otherwise it might give false positive and the
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// tx may enter the mempool after the check.
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func (h *HarnessTest) AssertTxNotInMempool(txid chainhash.Hash) {
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h.miner.AssertTxNotInMempool(txid)
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}
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// AssertNumTxsInMempool polls until finding the desired number of transactions
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// in the provided miner's mempool. It will assert if this number is not met
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// after the given timeout.
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func (h *HarnessTest) AssertNumTxsInMempool(n int) []chainhash.Hash {
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return h.miner.AssertNumTxsInMempool(n)
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}
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// AssertOutpointInMempool asserts a given outpoint can be found in the mempool.
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func (h *HarnessTest) AssertOutpointInMempool(op wire.OutPoint) *wire.MsgTx {
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return h.miner.AssertOutpointInMempool(op)
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}
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// AssertTxInBlock asserts that a given txid can be found in the passed block.
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func (h *HarnessTest) AssertTxInBlock(block *wire.MsgBlock,
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txid chainhash.Hash) {
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h.miner.AssertTxInBlock(block, txid)
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}
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// GetNumTxsFromMempool polls until finding the desired number of transactions
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// in the miner's mempool and returns the full transactions to the caller.
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func (h *HarnessTest) GetNumTxsFromMempool(n int) []*wire.MsgTx {
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return h.miner.GetNumTxsFromMempool(n)
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}
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// GetBestBlock makes a RPC request to miner and asserts.
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func (h *HarnessTest) GetBestBlock() (*chainhash.Hash, int32) {
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return h.miner.GetBestBlock()
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}
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// MineBlockWithTx mines a single block to include the specifies tx only.
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func (h *HarnessTest) MineBlockWithTx(tx *wire.MsgTx) *wire.MsgBlock {
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return h.miner.MineBlockWithTx(tx)
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}
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// ConnectToMiner connects the miner to a temp miner.
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func (h *HarnessTest) ConnectToMiner(tempMiner *miner.HarnessMiner) {
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h.miner.ConnectMiner(tempMiner)
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}
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// DisconnectFromMiner disconnects the miner from the temp miner.
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func (h *HarnessTest) DisconnectFromMiner(tempMiner *miner.HarnessMiner) {
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h.miner.DisconnectMiner(tempMiner)
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}
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// GetRawMempool makes a RPC call to the miner's GetRawMempool and
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// asserts.
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func (h *HarnessTest) GetRawMempool() []chainhash.Hash {
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return h.miner.GetRawMempool()
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}
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// GetRawTransaction makes a RPC call to the miner's GetRawTransaction and
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// asserts.
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func (h *HarnessTest) GetRawTransaction(txid chainhash.Hash) *btcutil.Tx {
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return h.miner.GetRawTransaction(txid)
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}
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// NewMinerAddress creates a new address for the miner and asserts.
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func (h *HarnessTest) NewMinerAddress() btcutil.Address {
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return h.miner.NewMinerAddress()
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}
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// SpawnTempMiner creates a temp miner and syncs it with the current miner.
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// Once miners are synced, the temp miner is disconnected from the original
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// miner and returned.
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func (h *HarnessTest) SpawnTempMiner() *miner.HarnessMiner {
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return h.miner.SpawnTempMiner()
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}
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// CreateTransaction uses the miner to create a transaction using the given
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// outputs using the specified fee rate and returns the transaction.
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func (h *HarnessTest) CreateTransaction(outputs []*wire.TxOut,
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feeRate btcutil.Amount) *wire.MsgTx {
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return h.miner.CreateTransaction(outputs, feeRate)
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}
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// SendOutputsWithoutChange uses the miner to send the given outputs using the
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// specified fee rate and returns the txid.
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func (h *HarnessTest) SendOutputsWithoutChange(outputs []*wire.TxOut,
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feeRate btcutil.Amount) *chainhash.Hash {
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return h.miner.SendOutputsWithoutChange(outputs, feeRate)
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}
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// AssertMinerBlockHeightDelta ensures that tempMiner is 'delta' blocks ahead
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// of miner.
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func (h *HarnessTest) AssertMinerBlockHeightDelta(
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tempMiner *miner.HarnessMiner, delta int32) {
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h.miner.AssertMinerBlockHeightDelta(tempMiner, delta)
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}
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// SendRawTransaction submits the encoded transaction to the server which will
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// then relay it to the network.
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func (h *HarnessTest) SendRawTransaction(tx *wire.MsgTx,
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allowHighFees bool) (chainhash.Hash, error) {
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txid, err := h.miner.Client.SendRawTransaction(tx, allowHighFees)
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require.NoError(h, err)
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return *txid, nil
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}
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// CurrentHeight returns the current block height.
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func (h *HarnessTest) CurrentHeight() uint32 {
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return h.currentHeight
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}
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// updateCurrentHeight set the harness's current height to the best known
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// height.
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func (h *HarnessTest) updateCurrentHeight() {
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_, height := h.GetBestBlock()
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h.currentHeight = uint32(height)
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}
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