2018-04-26 10:47:56 +02:00
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package wallet_test
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import (
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"runtime"
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"testing"
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2021-08-26 00:58:28 +02:00
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"github.com/lbryio/lbcwallet/wallet"
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2018-04-26 10:47:56 +02:00
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)
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// Harness holds the BranchRecoveryState being tested, the recovery window being
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// used, provides access to the test object, and tracks the expected horizon
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// and next unfound values.
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type Harness struct {
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t *testing.T
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brs *wallet.BranchRecoveryState
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recoveryWindow uint32
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expHorizon uint32
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expNextUnfound uint32
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}
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type (
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// Stepper is a generic interface that performs an action or assertion
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// against a test Harness.
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Stepper interface {
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// Apply performs an action or assertion against branch recovery
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// state held by the Harness. The step index is provided so
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// that any failures can report which Step failed.
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Apply(step int, harness *Harness)
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}
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// InitialiDelta is a Step that verifies our first attempt to expand the
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// branch recovery state's horizons tells us to derive a number of
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// adddresses equal to the recovery window.
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InitialDelta struct{}
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// CheckDelta is a Step that expands the branch recovery state's
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// horizon, and checks that the returned delta meets our expected
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// `delta`.
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CheckDelta struct {
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delta uint32
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}
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// CheckNumInvalid is a Step that asserts that the branch recovery
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// state reports `total` invalid children with the current horizon.
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CheckNumInvalid struct {
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total uint32
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}
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// MarkInvalid is a Step that marks the `child` as invalid in the branch
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// recovery state.
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MarkInvalid struct {
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child uint32
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}
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// ReportFound is a Step that reports `child` as being found to the
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// branch recovery state.
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ReportFound struct {
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child uint32
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}
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)
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// Apply extends the current horizon of the branch recovery state, and checks
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// that the returned delta is equal to the test's recovery window. If the
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// assertions pass, the harness's expected horizon is increased by the returned
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// delta.
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//
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// NOTE: This should be used before applying any CheckDelta steps.
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2021-03-24 14:43:24 +01:00
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func (InitialDelta) Apply(i int, h *Harness) {
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2018-04-26 10:47:56 +02:00
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curHorizon, delta := h.brs.ExtendHorizon()
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assertHorizon(h.t, i, curHorizon, h.expHorizon)
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assertDelta(h.t, i, delta, h.recoveryWindow)
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h.expHorizon += delta
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}
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// Apply extends the current horizon of the branch recovery state, and checks
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// that the returned delta is equal to the CheckDelta's child value.
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func (d CheckDelta) Apply(i int, h *Harness) {
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curHorizon, delta := h.brs.ExtendHorizon()
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assertHorizon(h.t, i, curHorizon, h.expHorizon)
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assertDelta(h.t, i, delta, d.delta)
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h.expHorizon += delta
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}
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// Apply queries the branch recovery state for the number of invalid children
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// that lie between the last found address and the current horizon, and compares
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// that to the CheckNumInvalid's total.
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func (m CheckNumInvalid) Apply(i int, h *Harness) {
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assertNumInvalid(h.t, i, h.brs.NumInvalidInHorizon(), m.total)
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}
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// Apply marks the MarkInvalid's child index as invalid in the branch recovery
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// state, and increments the harness's expected horizon.
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func (m MarkInvalid) Apply(i int, h *Harness) {
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h.brs.MarkInvalidChild(m.child)
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h.expHorizon++
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}
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// Apply reports the ReportFound's child index as found in the branch recovery
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// state. If the child index meets or exceeds our expected next unfound value,
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// the expected value will be modified to be the child index + 1. Afterwards,
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// this step asserts that the branch recovery state's next reported unfound
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// value matches our potentially-updated value.
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func (r ReportFound) Apply(i int, h *Harness) {
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h.brs.ReportFound(r.child)
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if r.child >= h.expNextUnfound {
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h.expNextUnfound = r.child + 1
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}
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assertNextUnfound(h.t, i, h.brs.NextUnfound(), h.expNextUnfound)
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}
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// Compile-time checks to ensure our steps implement the Step interface.
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var _ Stepper = InitialDelta{}
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var _ Stepper = CheckDelta{}
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var _ Stepper = CheckNumInvalid{}
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var _ Stepper = MarkInvalid{}
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var _ Stepper = ReportFound{}
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// TestBranchRecoveryState walks the BranchRecoveryState through a sequence of
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// steps, verifying that:
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// - the horizon is properly expanded in response to found addrs
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// - report found children below or equal to previously found causes no change
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// - marking invalid children expands the horizon
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func TestBranchRecoveryState(t *testing.T) {
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const recoveryWindow = 10
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recoverySteps := []Stepper{
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// First, check that expanding our horizon returns exactly the
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// recovery window (10).
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InitialDelta{},
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// Expected horizon: 10.
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// Report finding the 2nd addr, this should cause our horizon
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// to expand by 2.
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ReportFound{1},
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CheckDelta{2},
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// Expected horizon: 12.
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// Sanity check that expanding again reports zero delta, as
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// nothing has changed.
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CheckDelta{0},
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// Now, report finding the 6th addr, which should expand our
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// horizon to 16 with a detla of 4.
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ReportFound{5},
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CheckDelta{4},
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// Expected horizon: 16.
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// Sanity check that expanding again reports zero delta, as
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// nothing has changed.
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CheckDelta{0},
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// Report finding child index 5 again, nothing should change.
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ReportFound{5},
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CheckDelta{0},
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// Report finding a lower index that what was last found,
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// nothing should change.
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ReportFound{4},
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CheckDelta{0},
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// Moving on, report finding the 11th addr, which should extend
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// our horizon to 21.
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ReportFound{10},
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CheckDelta{5},
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// Expected horizon: 21.
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// Before testing the lookahead expansion when encountering
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// invalid child keys, check that we are correctly starting with
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// no invalid keys.
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CheckNumInvalid{0},
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// Now that the window has been expanded, simulate deriving
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// invalid keys in range of addrs that are being derived for the
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// first time. The horizon will be incremented by one, as the
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// recovery manager is expected to try and derive at least the
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// next address.
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MarkInvalid{17},
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CheckNumInvalid{1},
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CheckDelta{0},
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// Expected horizon: 22.
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// Check that deriving a second invalid key shows both invalid
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// indexes currently within the horizon.
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MarkInvalid{18},
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CheckNumInvalid{2},
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CheckDelta{0},
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// Expected horizon: 23.
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// Lastly, report finding the addr immediately after our two
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// invalid keys. This should return our number of invalid keys
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// within the horizon back to 0.
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ReportFound{19},
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CheckNumInvalid{0},
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// As the 20-th key was just marked found, our horizon will need
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// to expand to 30. With the horizon at 23, the delta returned
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// should be 7.
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CheckDelta{7},
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CheckDelta{0},
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// Expected horizon: 30.
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}
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brs := wallet.NewBranchRecoveryState(recoveryWindow)
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harness := &Harness{
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t: t,
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brs: brs,
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recoveryWindow: recoveryWindow,
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}
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for i, step := range recoverySteps {
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step.Apply(i, harness)
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}
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}
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func assertHorizon(t *testing.T, i int, have, want uint32) {
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assertHaveWant(t, i, "incorrect horizon", have, want)
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}
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func assertDelta(t *testing.T, i int, have, want uint32) {
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assertHaveWant(t, i, "incorrect delta", have, want)
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}
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func assertNextUnfound(t *testing.T, i int, have, want uint32) {
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assertHaveWant(t, i, "incorrect next unfound", have, want)
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}
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func assertNumInvalid(t *testing.T, i int, have, want uint32) {
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assertHaveWant(t, i, "incorrect num invalid children", have, want)
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}
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func assertHaveWant(t *testing.T, i int, msg string, have, want uint32) {
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_, _, line, _ := runtime.Caller(2)
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if want != have {
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t.Fatalf("[line: %d, step: %d] %s: got %d, want %d",
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line, i, msg, have, want)
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}
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}
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