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internal/sync: add Clear to HashTrieMap
This change adds the Clear operation to HashTrieMap to align it with sync.Map. Change-Id: I46069b018725d7fe3a07d667876235534bca86f1 Reviewed-on: https://go-review.googlesource.com/c/go/+/606459 Reviewed-by: David Chase <drchase@google.com> LUCI-TryBot-Result: Go LUCI <golang-scoped@luci-project-accounts.iam.gserviceaccount.com> Auto-Submit: Michael Knyszek <mknyszek@google.com>
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@ -21,7 +21,7 @@ import (
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type HashTrieMap[K comparable, V any] struct {
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type HashTrieMap[K comparable, V any] struct {
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inited atomic.Uint32
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inited atomic.Uint32
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initMu Mutex
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initMu Mutex
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root *indirect[K, V]
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root atomic.Pointer[indirect[K, V]]
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keyHash hashFunc
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keyHash hashFunc
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valEqual equalFunc
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valEqual equalFunc
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seed uintptr
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seed uintptr
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@ -47,7 +47,7 @@ func (ht *HashTrieMap[K, V]) initSlow() {
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// equal function for the value, if any.
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// equal function for the value, if any.
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var m map[K]V
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var m map[K]V
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mapType := abi.TypeOf(m).MapType()
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mapType := abi.TypeOf(m).MapType()
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ht.root = newIndirectNode[K, V](nil)
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ht.root.Store(newIndirectNode[K, V](nil))
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ht.keyHash = mapType.Hasher
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ht.keyHash = mapType.Hasher
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ht.valEqual = mapType.Elem.Equal
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ht.valEqual = mapType.Elem.Equal
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ht.seed = uintptr(runtime_rand())
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ht.seed = uintptr(runtime_rand())
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@ -65,7 +65,7 @@ func (ht *HashTrieMap[K, V]) Load(key K) (value V, ok bool) {
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ht.init()
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ht.init()
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hash := ht.keyHash(abi.NoEscape(unsafe.Pointer(&key)), ht.seed)
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hash := ht.keyHash(abi.NoEscape(unsafe.Pointer(&key)), ht.seed)
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i := ht.root
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i := ht.root.Load()
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hashShift := 8 * goarch.PtrSize
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hashShift := 8 * goarch.PtrSize
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for hashShift != 0 {
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for hashShift != 0 {
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hashShift -= nChildrenLog2
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hashShift -= nChildrenLog2
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@ -94,7 +94,7 @@ func (ht *HashTrieMap[K, V]) LoadOrStore(key K, value V) (result V, loaded bool)
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var n *node[K, V]
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var n *node[K, V]
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for {
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for {
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// Find the key or a candidate location for insertion.
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// Find the key or a candidate location for insertion.
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i = ht.root
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i = ht.root.Load()
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hashShift = 8 * goarch.PtrSize
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hashShift = 8 * goarch.PtrSize
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haveInsertPoint := false
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haveInsertPoint := false
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for hashShift != 0 {
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for hashShift != 0 {
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@ -211,7 +211,7 @@ func (ht *HashTrieMap[K, V]) Swap(key K, new V) (previous V, loaded bool) {
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var n *node[K, V]
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var n *node[K, V]
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for {
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for {
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// Find the key or a candidate location for insertion.
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// Find the key or a candidate location for insertion.
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i = ht.root
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i = ht.root.Load()
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hashShift = 8 * goarch.PtrSize
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hashShift = 8 * goarch.PtrSize
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haveInsertPoint := false
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haveInsertPoint := false
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for hashShift != 0 {
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for hashShift != 0 {
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@ -426,7 +426,7 @@ func (ht *HashTrieMap[K, V]) CompareAndDelete(key K, old V) (deleted bool) {
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func (ht *HashTrieMap[K, V]) find(key K, hash uintptr, valEqual equalFunc, value V) (i *indirect[K, V], hashShift uint, slot *atomic.Pointer[node[K, V]], n *node[K, V]) {
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func (ht *HashTrieMap[K, V]) find(key K, hash uintptr, valEqual equalFunc, value V) (i *indirect[K, V], hashShift uint, slot *atomic.Pointer[node[K, V]], n *node[K, V]) {
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for {
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for {
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// Find the key or return if it's not there.
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// Find the key or return if it's not there.
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i = ht.root
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i = ht.root.Load()
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hashShift = 8 * goarch.PtrSize
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hashShift = 8 * goarch.PtrSize
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found := false
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found := false
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for hashShift != 0 {
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for hashShift != 0 {
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@ -470,15 +470,18 @@ func (ht *HashTrieMap[K, V]) find(key K, hash uintptr, valEqual equalFunc, value
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}
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}
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}
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}
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// All returns an iter.Seq2 that produces all key-value pairs in the map.
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// All returns an iterator over each key and value present in the map.
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// The enumeration does not represent any consistent snapshot of the map,
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//
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// but is guaranteed to visit each unique key-value pair only once. It is
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// The iterator does not necessarily correspond to any consistent snapshot of the
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// safe to operate on the tree during iteration. No particular enumeration
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// HashTrieMap's contents: no key will be visited more than once, but if the value
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// order is guaranteed.
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// for any key is stored or deleted concurrently (including by yield), the iterator
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// may reflect any mapping for that key from any point during iteration. The iterator
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// does not block other methods on the receiver; even yield itself may call any
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// method on the HashTrieMap.
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func (ht *HashTrieMap[K, V]) All() func(yield func(K, V) bool) {
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func (ht *HashTrieMap[K, V]) All() func(yield func(K, V) bool) {
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ht.init()
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ht.init()
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return func(yield func(key K, value V) bool) {
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return func(yield func(key K, value V) bool) {
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ht.iter(ht.root, yield)
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ht.iter(ht.root.Load(), yield)
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}
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}
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}
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}
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@ -505,6 +508,15 @@ func (ht *HashTrieMap[K, V]) iter(i *indirect[K, V], yield func(key K, value V)
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return true
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return true
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}
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}
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// Clear deletes all the entries, resulting in an empty HashTrieMap.
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func (ht *HashTrieMap[K, V]) Clear() {
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ht.init()
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// It's sufficient to just drop the root on the floor, but the root
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// must always be non-nil.
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ht.root.Store(newIndirectNode[K, V](nil))
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}
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const (
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const (
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// 16 children. This seems to be the sweet spot for
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// 16 children. This seems to be the sweet spot for
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// load performance: any smaller and we lose out on
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// load performance: any smaller and we lose out on
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@ -66,6 +66,57 @@ func testHashTrieMap(t *testing.T, newMap func() *isync.HashTrieMap[string, int]
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return true
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return true
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})
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})
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})
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})
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t.Run("Clear", func(t *testing.T) {
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t.Run("Simple", func(t *testing.T) {
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m := newMap()
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for i, s := range testData {
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expectMissing(t, s, 0)(m.Load(s))
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expectStored(t, s, i)(m.LoadOrStore(s, i))
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expectPresent(t, s, i)(m.Load(s))
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expectLoaded(t, s, i)(m.LoadOrStore(s, 0))
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}
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m.Clear()
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for _, s := range testData {
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expectMissing(t, s, 0)(m.Load(s))
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}
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})
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t.Run("Concurrent", func(t *testing.T) {
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m := newMap()
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// Load up the map.
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for i, s := range testData {
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expectMissing(t, s, 0)(m.Load(s))
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expectStored(t, s, i)(m.LoadOrStore(s, i))
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}
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gmp := runtime.GOMAXPROCS(-1)
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var wg sync.WaitGroup
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for i := range gmp {
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wg.Add(1)
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go func(id int) {
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defer wg.Done()
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for _, s := range testData {
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// Try a couple things to interfere with the clear.
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expectNotDeleted(t, s, math.MaxInt)(m.CompareAndDelete(s, math.MaxInt))
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m.CompareAndSwap(s, i, i+1) // May succeed or fail; we don't care.
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}
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}(i)
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}
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// Concurrently clear the map.
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runtime.Gosched()
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m.Clear()
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// Wait for workers to finish.
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wg.Wait()
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// It should all be empty now.
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for _, s := range testData {
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expectMissing(t, s, 0)(m.Load(s))
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}
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})
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})
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t.Run("CompareAndDelete", func(t *testing.T) {
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t.Run("CompareAndDelete", func(t *testing.T) {
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t.Run("All", func(t *testing.T) {
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t.Run("All", func(t *testing.T) {
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m := newMap()
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m := newMap()
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