chm

package
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Published: Jul 6, 2025 License: Apache-2.0 Imports: 2 Imported by: 0

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Constants

This section is empty.

Variables

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var SHARD_COUNT = 32

Functions

This section is empty.

Types

type ConcurrentMap

type ConcurrentMap[K comparable, V any] struct {
	// contains filtered or unexported fields
}

ConcurrentMap a "thread" safe map of type string:Anything. To avoid lock bottlenecks this map is dived to several (SHARD_COUNT) map shards.

func NewConcurrentMap

func NewConcurrentMap[V any]() ConcurrentMap[string, V]

NewConcurrentMap creates a new concurrent map.

func NewStringerConcurrentMap

func NewStringerConcurrentMap[K Stringer, V any]() ConcurrentMap[K, V]

NewStringerConcurrentMap creates a new concurrent map.

func (ConcurrentMap[K, V]) Clear

func (m ConcurrentMap[K, V]) Clear()

Clear removes all items from map.

func (ConcurrentMap[K, V]) Count

func (m ConcurrentMap[K, V]) Count() int

Count returns the number of elements within the map.

func (ConcurrentMap[K, V]) Get

func (m ConcurrentMap[K, V]) Get(key K) (V, bool)

Get retrieves an element from map under given key.

func (ConcurrentMap[K, V]) GetShard

func (m ConcurrentMap[K, V]) GetShard(key K) *ConcurrentMapShared[K, V]

GetShard returns shard under given key

func (ConcurrentMap[K, V]) Has

func (m ConcurrentMap[K, V]) Has(key K) bool

Has Looks up an item under specified key

func (ConcurrentMap[K, V]) IsEmpty

func (m ConcurrentMap[K, V]) IsEmpty() bool

IsEmpty checks if map is empty.

func (ConcurrentMap[K, V]) Items

func (m ConcurrentMap[K, V]) Items() map[K]V

Items returns all items as map[string]V

func (ConcurrentMap[K, V]) Iter

func (m ConcurrentMap[K, V]) Iter() <-chan Tuple[K, V]

Iter returns an iterator which could be used in a for range loop. Deprecated: using IterBuffered() will get a better performance

func (ConcurrentMap[K, V]) IterBuffered

func (m ConcurrentMap[K, V]) IterBuffered() <-chan Tuple[K, V]

IterBuffered returns a buffered iterator which could be used in a for range loop.

func (ConcurrentMap[K, V]) IterCb

func (m ConcurrentMap[K, V]) IterCb(fn IterCb[K, V])

Callback based iterator, cheapest way to read all elements in a map.

func (ConcurrentMap[K, V]) Keys

func (m ConcurrentMap[K, V]) Keys() []K

Keys returns all keys as []string

func (ConcurrentMap[K, V]) MSet

func (m ConcurrentMap[K, V]) MSet(data map[K]V)

func (ConcurrentMap[K, V]) Pop

func (m ConcurrentMap[K, V]) Pop(key K) (v V, exists bool)

Pop removes an element from the map and returns it

func (ConcurrentMap[K, V]) Remove

func (m ConcurrentMap[K, V]) Remove(key K)

Remove removes an element from the map.

func (ConcurrentMap[K, V]) RemoveCb

func (m ConcurrentMap[K, V]) RemoveCb(key K, cb RemoveCb[K, V]) bool

RemoveCb locks the shard containing the key, retrieves its current value and calls the callback with those params If callback returns true and element exists, it will remove it from the map Returns the value returned by the callback (even if element was not present in the map)

func (ConcurrentMap[K, V]) Set

func (m ConcurrentMap[K, V]) Set(key K, value V)

Set the given value under the specified key.

func (ConcurrentMap[K, V]) SetIfAbsent

func (m ConcurrentMap[K, V]) SetIfAbsent(key K, value V) bool

SetIfAbsent Sets the given value under the specified key if no value was associated with it.

func (ConcurrentMap[K, V]) Upsert

func (m ConcurrentMap[K, V]) Upsert(key K, value V, cb UpsertCb[V]) (res V)

Upsert Insert or Update - updates existing element or inserts a new one using UpsertCb

type ConcurrentMapShared

type ConcurrentMapShared[K comparable, V any] struct {
	sync.RWMutex // Read Write mutex, guards access to internal map.
	// contains filtered or unexported fields
}

ConcurrentMapShared A "thread" safe string to anything map.

type IterCb

type IterCb[K comparable, V any] func(key K, v V)

IterCb Iterator callbacalled for every key,value found in maps. RLock is held for all calls for a given shard therefore callback sess consistent view of a shard, but not across the shards

type RemoveCb

type RemoveCb[K any, V any] func(key K, v V, exists bool) bool

RemoveCb is a callback executed in a map.RemoveCb() call, while Lock is held If returns true, the element will be removed from the map

type Stringer

type Stringer interface {
	fmt.Stringer
	comparable
}

type Tuple

type Tuple[K comparable, V any] struct {
	Key K
	Val V
}

Tuple used by the Iter & IterBuffered functions to wrap two variables together over a channel,

type UpsertCb

type UpsertCb[V any] func(exist bool, valueInMap V, newValue V) V

UpsertCb Callback to return new element to be inserted into the map It is called while lock is held, therefore it MUST NOT try to access other keys in same map, as it can lead to deadlock since Go sync.RWLock is not reentrant

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