2015-12-01 19:44:58 +01:00
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// Copyright (c) 2014 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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2014-11-04 18:22:13 +01:00
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package votingpool_test
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import (
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"bytes"
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"testing"
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"github.com/btcsuite/btcutil"
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"github.com/btcsuite/btcutil/hdkeychain"
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vp "github.com/btcsuite/btcwallet/votingpool"
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)
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func TestStartWithdrawal(t *testing.T) {
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tearDown, pool, store := vp.TstCreatePoolAndTxStore(t)
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defer tearDown()
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mgr := pool.Manager()
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masters := []*hdkeychain.ExtendedKey{
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vp.TstCreateMasterKey(t, bytes.Repeat([]byte{0x00, 0x01}, 16)),
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vp.TstCreateMasterKey(t, bytes.Repeat([]byte{0x02, 0x01}, 16)),
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vp.TstCreateMasterKey(t, bytes.Repeat([]byte{0x03, 0x01}, 16))}
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def := vp.TstCreateSeriesDef(t, pool, 2, masters)
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vp.TstCreateSeries(t, pool, []vp.TstSeriesDef{def})
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// Create eligible inputs and the list of outputs we need to fulfil.
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2015-04-07 17:40:13 +02:00
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vp.TstCreateSeriesCreditsOnStore(t, pool, def.SeriesID, []int64{5e6, 4e6}, store)
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2014-11-04 18:22:13 +01:00
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address1 := "34eVkREKgvvGASZW7hkgE2uNc1yycntMK6"
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address2 := "3PbExiaztsSYgh6zeMswC49hLUwhTQ86XG"
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requests := []vp.OutputRequest{
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vp.TstNewOutputRequest(t, 1, address1, 4e6, mgr.ChainParams()),
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vp.TstNewOutputRequest(t, 2, address2, 1e6, mgr.ChainParams()),
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}
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changeStart := vp.TstNewChangeAddress(t, pool, def.SeriesID, 0)
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startAddr := vp.TstNewWithdrawalAddress(t, pool, def.SeriesID, 0, 0)
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lastSeriesID := def.SeriesID
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dustThreshold := btcutil.Amount(1e4)
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currentBlock := int32(vp.TstInputsBlock + vp.TstEligibleInputMinConfirmations + 1)
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var status *vp.WithdrawalStatus
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var err error
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vp.TstRunWithManagerUnlocked(t, mgr, func() {
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status, err = pool.StartWithdrawal(0, requests, *startAddr, lastSeriesID, *changeStart,
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store, currentBlock, dustThreshold)
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})
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if err != nil {
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t.Fatal(err)
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}
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// Check that all outputs were successfully fulfilled.
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checkWithdrawalOutputs(t, status, map[string]btcutil.Amount{address1: 4e6, address2: 1e6})
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if status.Fees() != btcutil.Amount(1e3) {
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t.Fatalf("Wrong amount for fees; got %v, want %v", status.Fees(), btcutil.Amount(1e3))
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}
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// This withdrawal generated a single transaction with just one change
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// output, so the next change address will be on the same series with the
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// index incremented by 1.
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nextChangeAddr := status.NextChangeAddr()
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if nextChangeAddr.SeriesID() != changeStart.SeriesID() {
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t.Fatalf("Wrong nextChangeStart series; got %d, want %d", nextChangeAddr.SeriesID(),
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changeStart.SeriesID())
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}
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if nextChangeAddr.Index() != changeStart.Index()+1 {
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t.Fatalf("Wrong nextChangeStart index; got %d, want %d", nextChangeAddr.Index(),
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changeStart.Index()+1)
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}
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// NOTE: The ntxid is deterministic so we hardcode it here, but if the test
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// or the code is changed in a way that causes the generated transaction to
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// change (e.g. different inputs/outputs), the ntxid will change too and
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// this will have to be updated.
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ntxid := vp.Ntxid("eb753083db55bd0ad2eb184bfd196a7ea8b90eaa000d9293e892999695af2519")
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txSigs := status.Sigs()[ntxid]
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// Finally we use SignTx() to construct the SignatureScripts (using the raw
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// signatures). Must unlock the manager as signing involves looking up the
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// redeem script, which is stored encrypted.
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msgtx := status.TstGetMsgTx(ntxid)
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vp.TstRunWithManagerUnlocked(t, mgr, func() {
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if err = vp.SignTx(msgtx, txSigs, mgr, store); err != nil {
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t.Fatal(err)
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}
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})
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2015-02-23 17:07:12 +01:00
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// Any subsequent StartWithdrawal() calls with the same parameters will
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// return the previously stored WithdrawalStatus.
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var status2 *vp.WithdrawalStatus
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vp.TstRunWithManagerUnlocked(t, mgr, func() {
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status2, err = pool.StartWithdrawal(0, requests, *startAddr, lastSeriesID, *changeStart,
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store, currentBlock, dustThreshold)
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})
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if err != nil {
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t.Fatal(err)
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}
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vp.TstCheckWithdrawalStatusMatches(t, *status, *status2)
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2014-11-04 18:22:13 +01:00
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}
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func checkWithdrawalOutputs(
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t *testing.T, wStatus *vp.WithdrawalStatus, amounts map[string]btcutil.Amount) {
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fulfilled := wStatus.Outputs()
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if len(fulfilled) != 2 {
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t.Fatalf("Unexpected number of outputs in WithdrawalStatus; got %d, want %d",
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len(fulfilled), 2)
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}
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for _, output := range fulfilled {
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addr := output.Address()
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amount, ok := amounts[addr]
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if !ok {
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t.Fatalf("Unexpected output addr: %s", addr)
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}
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status := output.Status()
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if status != "success" {
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t.Fatalf(
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"Unexpected status for output %v; got '%s', want 'success'", output, status)
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}
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outpoints := output.Outpoints()
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if len(outpoints) != 1 {
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t.Fatalf(
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"Unexpected number of outpoints for output %v; got %d, want 1", output,
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len(outpoints))
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}
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gotAmount := outpoints[0].Amount()
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if gotAmount != amount {
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t.Fatalf("Unexpected amount for output %v; got %v, want %v", output, gotAmount, amount)
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}
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}
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}
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