489ba8d31d
Calculate rate*fee first before dividing by 1000. Add more unit tests around the fee calculations.
274 lines
6.2 KiB
Go
274 lines
6.2 KiB
Go
// Copyright (c) 2013-2015 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 main
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import (
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"testing"
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"github.com/btcsuite/btcd/btcec"
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"github.com/btcsuite/btcd/txscript"
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"github.com/btcsuite/btcd/wire"
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"github.com/btcsuite/btcutil"
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)
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// TestCalcMinRequiredTxRelayFee tests the calcMinRequiredTxRelayFee API.
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func TestCalcMinRequiredTxRelayFee(t *testing.T) {
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tests := []struct {
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name string // test description.
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size int64 // Transaction size in bytes.
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relayFee btcutil.Amount // minimum relay transaction fee.
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want int64 // Expected fee.
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}{
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{
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// Ensure combination of size and fee that are less than 1000
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// produce a non-zero fee.
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"250 bytes with relay fee of 3",
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250,
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3,
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3,
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},
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{
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"100 bytes with default minimum relay fee",
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100,
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defaultMinRelayTxFee,
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100,
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},
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{
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"max standard tx size with default minimum relay fee",
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maxStandardTxSize,
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defaultMinRelayTxFee,
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100000,
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},
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{
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"max standard tx size with max satoshi relay fee",
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maxStandardTxSize,
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btcutil.MaxSatoshi,
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btcutil.MaxSatoshi,
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},
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{
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"1500 bytes with 5000 relay fee",
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1500,
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5000,
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7500,
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},
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{
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"1500 bytes with 3000 relay fee",
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1500,
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3000,
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4500,
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},
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{
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"782 bytes with 5000 relay fee",
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782,
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5000,
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3910,
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},
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{
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"782 bytes with 3000 relay fee",
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782,
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3000,
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2346,
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},
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{
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"782 bytes with 2550 relay fee",
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782,
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2550,
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1994,
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},
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}
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for _, test := range tests {
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got := calcMinRequiredTxRelayFee(test.size, test.relayFee)
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if got != test.want {
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t.Errorf("TestCalcMinRequiredTxRelayFee test '%s' "+
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"failed: got %v want %v", test.name, got,
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test.want)
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continue
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}
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}
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}
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// TestCheckPkScriptStandard tests the checkPkScriptStandard API.
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func TestCheckPkScriptStandard(t *testing.T) {
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var pubKeys [][]byte
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for i := 0; i < 4; i++ {
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pk, err := btcec.NewPrivateKey(btcec.S256())
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if err != nil {
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t.Fatalf("TestCheckPkScriptStandard NewPrivateKey failed: %v",
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err)
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return
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}
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pubKeys = append(pubKeys, pk.PubKey().SerializeCompressed())
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}
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tests := []struct {
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name string // test description.
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script *txscript.ScriptBuilder
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isStandard bool
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}{
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{
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"key1 and key2",
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txscript.NewScriptBuilder().AddOp(txscript.OP_2).
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AddData(pubKeys[0]).AddData(pubKeys[1]).
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AddOp(txscript.OP_2).AddOp(txscript.OP_CHECKMULTISIG),
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true,
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},
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{
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"key1 or key2",
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txscript.NewScriptBuilder().AddOp(txscript.OP_1).
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AddData(pubKeys[0]).AddData(pubKeys[1]).
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AddOp(txscript.OP_2).AddOp(txscript.OP_CHECKMULTISIG),
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true,
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},
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{
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"escrow",
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txscript.NewScriptBuilder().AddOp(txscript.OP_2).
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AddData(pubKeys[0]).AddData(pubKeys[1]).
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AddData(pubKeys[2]).
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AddOp(txscript.OP_3).AddOp(txscript.OP_CHECKMULTISIG),
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true,
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},
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{
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"one of four",
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txscript.NewScriptBuilder().AddOp(txscript.OP_1).
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AddData(pubKeys[0]).AddData(pubKeys[1]).
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AddData(pubKeys[2]).AddData(pubKeys[3]).
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AddOp(txscript.OP_4).AddOp(txscript.OP_CHECKMULTISIG),
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false,
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},
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{
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"malformed1",
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txscript.NewScriptBuilder().AddOp(txscript.OP_3).
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AddData(pubKeys[0]).AddData(pubKeys[1]).
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AddOp(txscript.OP_2).AddOp(txscript.OP_CHECKMULTISIG),
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false,
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},
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{
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"malformed2",
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txscript.NewScriptBuilder().AddOp(txscript.OP_2).
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AddData(pubKeys[0]).AddData(pubKeys[1]).
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AddOp(txscript.OP_3).AddOp(txscript.OP_CHECKMULTISIG),
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false,
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},
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{
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"malformed3",
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txscript.NewScriptBuilder().AddOp(txscript.OP_0).
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AddData(pubKeys[0]).AddData(pubKeys[1]).
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AddOp(txscript.OP_2).AddOp(txscript.OP_CHECKMULTISIG),
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false,
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},
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{
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"malformed4",
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txscript.NewScriptBuilder().AddOp(txscript.OP_1).
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AddData(pubKeys[0]).AddData(pubKeys[1]).
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AddOp(txscript.OP_0).AddOp(txscript.OP_CHECKMULTISIG),
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false,
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},
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{
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"malformed5",
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txscript.NewScriptBuilder().AddOp(txscript.OP_1).
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AddData(pubKeys[0]).AddData(pubKeys[1]).
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AddOp(txscript.OP_CHECKMULTISIG),
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false,
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},
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{
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"malformed6",
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txscript.NewScriptBuilder().AddOp(txscript.OP_1).
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AddData(pubKeys[0]).AddData(pubKeys[1]),
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false,
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},
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}
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for _, test := range tests {
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script, err := test.script.Script()
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if err != nil {
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t.Fatalf("TestCheckPkScriptStandard test '%s' "+
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"failed: %v", test.name, err)
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continue
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}
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scriptClass := txscript.GetScriptClass(script)
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got := checkPkScriptStandard(script, scriptClass)
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if (test.isStandard && got != nil) ||
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(!test.isStandard && got == nil) {
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t.Fatalf("TestCheckPkScriptStandard test '%s' failed",
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test.name)
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return
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}
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}
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}
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// TestDust tests the isDust API.
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func TestDust(t *testing.T) {
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pkScript := []byte{0x76, 0xa9, 0x21, 0x03, 0x2f, 0x7e, 0x43,
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0x0a, 0xa4, 0xc9, 0xd1, 0x59, 0x43, 0x7e, 0x84, 0xb9,
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0x75, 0xdc, 0x76, 0xd9, 0x00, 0x3b, 0xf0, 0x92, 0x2c,
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0xf3, 0xaa, 0x45, 0x28, 0x46, 0x4b, 0xab, 0x78, 0x0d,
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0xba, 0x5e, 0x88, 0xac}
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tests := []struct {
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name string // test description
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txOut wire.TxOut
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relayFee btcutil.Amount // minimum relay transaction fee.
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isDust bool
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}{
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{
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// Any value is allowed with a zero relay fee.
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"zero value with zero relay fee",
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wire.TxOut{0, pkScript},
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0,
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false,
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},
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{
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// Zero value is dust with any relay fee"
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"zero value with very small tx fee",
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wire.TxOut{0, pkScript},
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1,
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true,
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},
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{
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"38 byte public key script with value 584",
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wire.TxOut{584, pkScript},
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1000,
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true,
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},
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{
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"38 byte public key script with value 585",
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wire.TxOut{585, pkScript},
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1000,
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false,
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},
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{
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// Maximum allowed value is never dust.
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"max satoshi amount is never dust",
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wire.TxOut{btcutil.MaxSatoshi, pkScript},
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btcutil.MaxSatoshi,
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false,
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},
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{
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// Maximum int64 value causes overflow.
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"maximum int64 value",
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wire.TxOut{1<<63 - 1, pkScript},
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1<<63 - 1,
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true,
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},
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{
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// Unspendable pkScript due to an invalid public key
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// script.
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"unspendable pkScript",
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wire.TxOut{5000, []byte{0x01}},
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0, // no relay fee
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true,
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},
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}
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for _, test := range tests {
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res := isDust(&test.txOut, test.relayFee)
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if res != test.isDust {
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t.Fatalf("Dust test '%s' failed: want %v got %v",
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test.name, test.isDust, res)
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continue
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}
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}
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}
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