6f5311d7c6
Co-authored-by: Brannon King <countprimes@gmail.com>
537 lines
17 KiB
Go
537 lines
17 KiB
Go
// Copyright (c) 2016-2017 The btcsuite developers
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// Use of this source code is governed by an ISC
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// license that can be found in the LICENSE file.
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package rpctest
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import (
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"fmt"
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"io/ioutil"
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"math/rand"
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"net"
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"os"
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"path/filepath"
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"strconv"
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"sync"
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"testing"
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"time"
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"github.com/lbryio/lbcd/chaincfg"
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"github.com/lbryio/lbcd/chaincfg/chainhash"
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"github.com/lbryio/lbcd/rpcclient"
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"github.com/lbryio/lbcd/wire"
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btcutil "github.com/lbryio/lbcutil"
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)
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const (
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// These constants define the minimum and maximum p2p and rpc port
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// numbers used by a test harness. The min port is inclusive while the
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// max port is exclusive.
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minPeerPort = 10000
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maxPeerPort = 35000
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minRPCPort = maxPeerPort
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maxRPCPort = 60000
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// BlockVersion is the default block version used when generating
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// blocks.
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BlockVersion = 4
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// DefaultMaxConnectionRetries is the default number of times we re-try
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// to connect to the node after starting it.
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DefaultMaxConnectionRetries = 20
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// DefaultConnectionRetryTimeout is the default duration we wait between
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// two connection attempts.
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DefaultConnectionRetryTimeout = 50 * time.Millisecond
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)
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var (
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// current number of active test nodes.
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numTestInstances = 0
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// testInstances is a private package-level slice used to keep track of
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// all active test harnesses. This global can be used to perform
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// various "joins", shutdown several active harnesses after a test,
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// etc.
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testInstances = make(map[string]*Harness)
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// Used to protest concurrent access to above declared variables.
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harnessStateMtx sync.RWMutex
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// ListenAddressGenerator is a function that is used to generate two
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// listen addresses (host:port), one for the P2P listener and one for
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// the RPC listener. This is exported to allow overwriting of the
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// default behavior which isn't very concurrency safe (just selecting
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// a random port can produce collisions and therefore flakes).
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ListenAddressGenerator = generateListeningAddresses
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)
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// HarnessTestCase represents a test-case which utilizes an instance of the
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// Harness to exercise functionality.
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type HarnessTestCase func(r *Harness, t *testing.T)
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// Harness fully encapsulates an active btcd process to provide a unified
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// platform for creating rpc driven integration tests involving btcd. The
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// active btcd node will typically be run in simnet mode in order to allow for
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// easy generation of test blockchains. The active btcd process is fully
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// managed by Harness, which handles the necessary initialization, and teardown
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// of the process along with any temporary directories created as a result.
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// Multiple Harness instances may be run concurrently, in order to allow for
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// testing complex scenarios involving multiple nodes. The harness also
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// includes an in-memory wallet to streamline various classes of tests.
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type Harness struct {
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// ActiveNet is the parameters of the blockchain the Harness belongs
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// to.
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ActiveNet *chaincfg.Params
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// MaxConnRetries is the maximum number of times we re-try to connect to
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// the node after starting it.
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MaxConnRetries int
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// ConnectionRetryTimeout is the duration we wait between two connection
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// attempts.
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ConnectionRetryTimeout time.Duration
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Client *rpcclient.Client
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BatchClient *rpcclient.Client
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node *node
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handlers *rpcclient.NotificationHandlers
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wallet *memWallet
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testNodeDir string
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nodeNum int
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sync.Mutex
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}
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// New creates and initializes new instance of the rpc test harness.
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// Optionally, websocket handlers and a specified configuration may be passed.
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// In the case that a nil config is passed, a default configuration will be
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// used. If a custom btcd executable is specified, it will be used to start the
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// harness node. Otherwise a new binary is built on demand.
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//
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// NOTE: This function is safe for concurrent access.
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func New(activeNet *chaincfg.Params, handlers *rpcclient.NotificationHandlers,
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extraArgs []string, customExePath string) (*Harness, error) {
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harnessStateMtx.Lock()
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defer harnessStateMtx.Unlock()
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// Add a flag for the appropriate network type based on the provided
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// chain params.
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switch activeNet.Net {
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case wire.MainNet:
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// No extra flags since mainnet is the default
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case wire.TestNet3:
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extraArgs = append(extraArgs, "--testnet")
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case wire.TestNet:
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extraArgs = append(extraArgs, "--regtest")
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case wire.SimNet:
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extraArgs = append(extraArgs, "--simnet")
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default:
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return nil, fmt.Errorf("rpctest.New must be called with one " +
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"of the supported chain networks")
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}
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testDir, err := baseDir()
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if err != nil {
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return nil, err
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}
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harnessID := strconv.Itoa(numTestInstances)
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nodeTestData, err := ioutil.TempDir(testDir, "harness-"+harnessID)
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if err != nil {
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return nil, err
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}
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certFile := filepath.Join(nodeTestData, "rpc.cert")
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keyFile := filepath.Join(nodeTestData, "rpc.key")
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if err := genCertPair(certFile, keyFile); err != nil {
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return nil, err
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}
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wallet, err := newMemWallet(activeNet, uint32(numTestInstances))
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if err != nil {
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return nil, err
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}
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miningAddr := fmt.Sprintf("--miningaddr=%s", wallet.coinbaseAddr)
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extraArgs = append(extraArgs, miningAddr)
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config, err := newConfig(
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"rpctest", certFile, keyFile, extraArgs, customExePath,
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)
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if err != nil {
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return nil, err
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}
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// Generate p2p+rpc listening addresses.
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config.listen, config.rpcListen = ListenAddressGenerator()
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// Create the testing node bounded to the simnet.
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node, err := newNode(config, nodeTestData)
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if err != nil {
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return nil, err
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}
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nodeNum := numTestInstances
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numTestInstances++
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if handlers == nil {
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handlers = &rpcclient.NotificationHandlers{}
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}
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// If a handler for the OnFilteredBlock{Connected,Disconnected} callback
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// callback has already been set, then create a wrapper callback which
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// executes both the currently registered callback and the mem wallet's
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// callback.
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if handlers.OnFilteredBlockConnected != nil {
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obc := handlers.OnFilteredBlockConnected
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handlers.OnFilteredBlockConnected = func(height int32, header *wire.BlockHeader, filteredTxns []*btcutil.Tx) {
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wallet.IngestBlock(height, header, filteredTxns)
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obc(height, header, filteredTxns)
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}
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} else {
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// Otherwise, we can claim the callback ourselves.
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handlers.OnFilteredBlockConnected = wallet.IngestBlock
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}
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if handlers.OnFilteredBlockDisconnected != nil {
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obd := handlers.OnFilteredBlockDisconnected
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handlers.OnFilteredBlockDisconnected = func(height int32, header *wire.BlockHeader) {
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wallet.UnwindBlock(height, header)
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obd(height, header)
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}
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} else {
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handlers.OnFilteredBlockDisconnected = wallet.UnwindBlock
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}
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h := &Harness{
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handlers: handlers,
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node: node,
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MaxConnRetries: DefaultMaxConnectionRetries,
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ConnectionRetryTimeout: DefaultConnectionRetryTimeout,
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testNodeDir: nodeTestData,
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ActiveNet: activeNet,
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nodeNum: nodeNum,
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wallet: wallet,
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}
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// Track this newly created test instance within the package level
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// global map of all active test instances.
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testInstances[h.testNodeDir] = h
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return h, nil
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}
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// SetUp initializes the rpc test state. Initialization includes: starting up a
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// simnet node, creating a websockets client and connecting to the started
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// node, and finally: optionally generating and submitting a testchain with a
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// configurable number of mature coinbase outputs coinbase outputs.
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//
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// NOTE: This method and TearDown should always be called from the same
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// goroutine as they are not concurrent safe.
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func (h *Harness) SetUp(createTestChain bool, numMatureOutputs uint32) error {
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// Start the btcd node itself. This spawns a new process which will be
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// managed
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if err := h.node.start(); err != nil {
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return err
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}
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if err := h.connectRPCClient(); err != nil {
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return err
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}
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h.wallet.Start()
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// Filter transactions that pay to the coinbase associated with the
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// wallet.
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filterAddrs := []btcutil.Address{h.wallet.coinbaseAddr}
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if err := h.Client.LoadTxFilter(true, filterAddrs, nil); err != nil {
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return err
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}
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// Ensure btcd properly dispatches our registered call-back for each new
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// block. Otherwise, the memWallet won't function properly.
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if err := h.Client.NotifyBlocks(); err != nil {
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return err
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}
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// Create a test chain with the desired number of mature coinbase
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// outputs.
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if createTestChain && numMatureOutputs != 0 {
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numToGenerate := (uint32(h.ActiveNet.CoinbaseMaturity) +
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numMatureOutputs)
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_, err := h.Client.Generate(numToGenerate)
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if err != nil {
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return err
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}
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}
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// Block until the wallet has fully synced up to the tip of the main
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// chain.
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_, height, err := h.Client.GetBestBlock()
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if err != nil {
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return err
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}
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ticker := time.NewTicker(time.Millisecond * 100)
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for range ticker.C {
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walletHeight := h.wallet.SyncedHeight()
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if walletHeight == height {
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break
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}
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}
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ticker.Stop()
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return nil
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}
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// tearDown stops the running rpc test instance. All created processes are
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// killed, and temporary directories removed.
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//
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// This function MUST be called with the harness state mutex held (for writes).
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func (h *Harness) tearDown() error {
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if h.Client != nil {
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h.Client.Shutdown()
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}
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if h.BatchClient != nil {
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h.BatchClient.Shutdown()
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}
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if err := h.node.shutdown(); err != nil {
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return err
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}
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if err := os.RemoveAll(h.testNodeDir); err != nil {
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return err
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}
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delete(testInstances, h.testNodeDir)
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return nil
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}
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// TearDown stops the running rpc test instance. All created processes are
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// killed, and temporary directories removed.
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//
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// NOTE: This method and SetUp should always be called from the same goroutine
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// as they are not concurrent safe.
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func (h *Harness) TearDown() error {
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harnessStateMtx.Lock()
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defer harnessStateMtx.Unlock()
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return h.tearDown()
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}
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// connectRPCClient attempts to establish an RPC connection to the created btcd
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// process belonging to this Harness instance. If the initial connection
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// attempt fails, this function will retry h.maxConnRetries times, backing off
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// the time between subsequent attempts. If after h.maxConnRetries attempts,
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// we're not able to establish a connection, this function returns with an
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// error.
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func (h *Harness) connectRPCClient() error {
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var client, batchClient *rpcclient.Client
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var err error
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rpcConf := h.node.config.rpcConnConfig()
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batchConf := h.node.config.rpcConnConfig()
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batchConf.HTTPPostMode = true
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for i := 0; i < h.MaxConnRetries; i++ {
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fail := false
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if client == nil {
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if client, err = rpcclient.New(&rpcConf, h.handlers); err != nil {
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time.Sleep(time.Duration(i) * h.ConnectionRetryTimeout)
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fail = true
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}
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}
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if batchClient == nil {
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if batchClient, err = rpcclient.NewBatch(&batchConf); err != nil {
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time.Sleep(time.Duration(i) * h.ConnectionRetryTimeout)
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fail = true
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}
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}
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if !fail {
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break
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}
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}
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if client == nil || batchClient == nil {
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return fmt.Errorf("connection timeout")
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}
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h.Client = client
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h.wallet.SetRPCClient(client)
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h.BatchClient = batchClient
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return nil
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}
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// NewAddress returns a fresh address spendable by the Harness' internal
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// wallet.
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//
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// This function is safe for concurrent access.
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func (h *Harness) NewAddress() (btcutil.Address, error) {
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return h.wallet.NewAddress()
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}
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// ConfirmedBalance returns the confirmed balance of the Harness' internal
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// wallet.
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//
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// This function is safe for concurrent access.
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func (h *Harness) ConfirmedBalance() btcutil.Amount {
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return h.wallet.ConfirmedBalance()
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}
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// SendOutputs creates, signs, and finally broadcasts a transaction spending
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// the harness' available mature coinbase outputs creating new outputs
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// according to targetOutputs.
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//
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// This function is safe for concurrent access.
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func (h *Harness) SendOutputs(targetOutputs []*wire.TxOut,
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feeRate btcutil.Amount) (*chainhash.Hash, error) {
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return h.wallet.SendOutputs(targetOutputs, feeRate)
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}
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// SendOutputsWithoutChange creates and sends a transaction that pays to the
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// specified outputs while observing the passed fee rate and ignoring a change
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// output. The passed fee rate should be expressed in sat/b.
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//
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// This function is safe for concurrent access.
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func (h *Harness) SendOutputsWithoutChange(targetOutputs []*wire.TxOut,
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feeRate btcutil.Amount) (*chainhash.Hash, error) {
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return h.wallet.SendOutputsWithoutChange(targetOutputs, feeRate)
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}
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// CreateTransaction returns a fully signed transaction paying to the specified
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// outputs while observing the desired fee rate. The passed fee rate should be
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// expressed in satoshis-per-byte. The transaction being created can optionally
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// include a change output indicated by the change boolean. Any unspent outputs
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// selected as inputs for the crafted transaction are marked as unspendable in
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// order to avoid potential double-spends by future calls to this method. If the
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// created transaction is cancelled for any reason then the selected inputs MUST
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// be freed via a call to UnlockOutputs. Otherwise, the locked inputs won't be
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// returned to the pool of spendable outputs.
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//
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// This function is safe for concurrent access.
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func (h *Harness) CreateTransaction(targetOutputs []*wire.TxOut,
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feeRate btcutil.Amount, change bool) (*wire.MsgTx, error) {
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return h.wallet.CreateTransaction(targetOutputs, feeRate, change)
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}
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// UnlockOutputs unlocks any outputs which were previously marked as
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// unspendabe due to being selected to fund a transaction via the
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// CreateTransaction method.
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//
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// This function is safe for concurrent access.
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func (h *Harness) UnlockOutputs(inputs []*wire.TxIn) {
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h.wallet.UnlockOutputs(inputs)
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}
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// RPCConfig returns the harnesses current rpc configuration. This allows other
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// potential RPC clients created within tests to connect to a given test
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// harness instance.
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func (h *Harness) RPCConfig() rpcclient.ConnConfig {
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return h.node.config.rpcConnConfig()
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}
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// P2PAddress returns the harness' P2P listening address. This allows potential
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// peers (such as SPV peers) created within tests to connect to a given test
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// harness instance.
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func (h *Harness) P2PAddress() string {
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return h.node.config.listen
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}
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// GenerateAndSubmitBlock creates a block whose contents include the passed
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// transactions and submits it to the running simnet node. For generating
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// blocks with only a coinbase tx, callers can simply pass nil instead of
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// transactions to be mined. Additionally, a custom block version can be set by
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// the caller. A blockVersion of -1 indicates that the current default block
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// version should be used. An uninitialized time.Time should be used for the
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// blockTime parameter if one doesn't wish to set a custom time.
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//
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// This function is safe for concurrent access.
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func (h *Harness) GenerateAndSubmitBlock(txns []*btcutil.Tx, blockVersion int32,
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blockTime time.Time) (*btcutil.Block, error) {
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return h.GenerateAndSubmitBlockWithCustomCoinbaseOutputs(txns,
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blockVersion, blockTime, []wire.TxOut{})
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}
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// GenerateAndSubmitBlockWithCustomCoinbaseOutputs creates a block whose
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// contents include the passed coinbase outputs and transactions and submits
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// it to the running simnet node. For generating blocks with only a coinbase tx,
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// callers can simply pass nil instead of transactions to be mined.
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// Additionally, a custom block version can be set by the caller. A blockVersion
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// of -1 indicates that the current default block version should be used. An
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// uninitialized time.Time should be used for the blockTime parameter if one
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// doesn't wish to set a custom time. The mineTo list of outputs will be added
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// to the coinbase; this is not checked for correctness until the block is
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// submitted; thus, it is the caller's responsibility to ensure that the outputs
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// are correct. If the list is empty, the coinbase reward goes to the wallet
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// managed by the Harness.
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//
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// This function is safe for concurrent access.
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func (h *Harness) GenerateAndSubmitBlockWithCustomCoinbaseOutputs(
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txns []*btcutil.Tx, blockVersion int32, blockTime time.Time,
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mineTo []wire.TxOut) (*btcutil.Block, error) {
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h.Lock()
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defer h.Unlock()
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if blockVersion == -1 {
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blockVersion = BlockVersion
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}
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prevBlockHash, prevBlockHeight, err := h.Client.GetBestBlock()
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if err != nil {
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return nil, err
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}
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mBlock, err := h.Client.GetBlock(prevBlockHash)
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if err != nil {
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return nil, err
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}
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prevBlock := btcutil.NewBlock(mBlock)
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prevBlock.SetHeight(prevBlockHeight)
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// Create a new block including the specified transactions
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newBlock, err := CreateBlock(prevBlock, txns, blockVersion,
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blockTime, h.wallet.coinbaseAddr, mineTo, h.ActiveNet)
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if err != nil {
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return nil, err
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}
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// Submit the block to the simnet node.
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if err := h.Client.SubmitBlock(newBlock, nil); err != nil {
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return nil, err
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}
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return newBlock, nil
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}
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// generateListeningAddresses returns two strings representing listening
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// addresses designated for the current rpc test. If there haven't been any
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// test instances created, the default ports are used. Otherwise, in order to
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// support multiple test nodes running at once, the p2p and rpc port are
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// picked at random between {min/max}PeerPort and {min/max}RPCPort respectively.
|
|
func generateListeningAddresses() (string, string) {
|
|
localhost := "127.0.0.1"
|
|
|
|
rand.Seed(time.Now().UnixNano())
|
|
|
|
portString := func(minPort, maxPort int) string {
|
|
port := minPort + rand.Intn(maxPort-minPort)
|
|
return strconv.Itoa(port)
|
|
}
|
|
|
|
p2p := net.JoinHostPort(localhost, portString(minPeerPort, maxPeerPort))
|
|
rpc := net.JoinHostPort(localhost, portString(minRPCPort, maxRPCPort))
|
|
return p2p, rpc
|
|
}
|
|
|
|
// baseDir is the directory path of the temp directory for all rpctest files.
|
|
func baseDir() (string, error) {
|
|
dirPath := filepath.Join(os.TempDir(), "lbcd", "rpctest")
|
|
err := os.MkdirAll(dirPath, 0755)
|
|
return dirPath, err
|
|
}
|