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Author SHA1 Message Date
13d0e1b682 add MapDiff utils 2023-05-04 21:12:26 +06:00
6f9be2a9f8 start 0.18.1 and add SmartMutex 2023-05-03 23:47:05 +06:00
93ba98d993 Merge pull request #246 from InsanusMokrassar/revert-245-renovate/ksp
Revert "Update ksp to v1.8.21-1.0.11"
2023-04-28 00:34:20 +06:00
940ee3df06 Revert "Update ksp to v1.8.21-1.0.11" 2023-04-28 00:34:10 +06:00
2e7bab10fd Merge pull request #245 from InsanusMokrassar/renovate/ksp
Update ksp to v1.8.21-1.0.11
2023-04-28 00:14:25 +06:00
renovate[bot]
3ed70a37ea Update ksp to v1.8.21-1.0.11 2023-04-27 18:10:41 +00:00
fe8f80b9d9 Merge pull request #243 from InsanusMokrassar/0.18.0
0.18.0
2023-04-27 17:08:42 +06:00
4 changed files with 255 additions and 2 deletions

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@@ -1,5 +1,12 @@
# Changelog
## 0.18.1
* `Common`:
* Add `MapDiff`
* `Coroutines`:
* Add `SmartMutex`
## 0.18.0
**ALL PREVIOUSLY DEPRECATED FUNCTIONALITY HAVE BEEN REMOVED**

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@@ -0,0 +1,110 @@
package dev.inmo.micro_utils.common
/**
* Contains diff based on the comparison of objects with the same [K].
*
* @param removed Contains map with keys removed from parent map
* @param changed Contains map with keys values changed new map in comparison with old one
* @param added Contains map with new keys and values
*/
data class MapDiff<K, V> @Warning(warning) constructor(
val removed: Map<K, V>,
val changed: Map<K, Pair<V, V>>,
val added: Map<K, V>
) {
fun isEmpty() = removed.isEmpty() && changed.isEmpty() && added.isEmpty()
inline fun isNotEmpty() = !isEmpty()
companion object {
private const val warning = "This feature can be changed without any warranties. Use with caution and only in case you know what you are doing"
fun <K, V> empty() = MapDiff<K, V>(emptyMap(), emptyMap(), emptyMap())
}
}
private inline fun <K, V> createCompareFun(
strictComparison: Boolean
): (K, V, V) -> Boolean = if (strictComparison) {
{ _, first, second -> first === second }
} else {
{ _, first, second -> first == second }
}
/**
* Compare [this] [Map] with the [other] one in principle when [other] is newer than [this]
*
* @param compareFun Will be used to determine changed values
*/
fun <K, V> Map<K, V>.diff(
other: Map<K, V>,
compareFun: (K, V, V) -> Boolean
): MapDiff<K, V> {
val removed: Map<K, V> = (keys - other.keys).associateWith {
getValue(it)
}
val added: Map<K, V> = (other.keys - keys).associateWith {
other.getValue(it)
}
val changed = keys.intersect(other.keys).mapNotNull {
val old = getValue(it)
val new = other.getValue(it)
if (compareFun(it, old, new)) {
return@mapNotNull null
} else {
it to (old to new)
}
}.toMap()
return MapDiff(
removed,
changed,
added
)
}
/**
* Compare [this] [Map] with the [other] one in principle when [other] is newer than [this]
*
* @param strictComparison If true, will use strict (===) comparison for the values' comparison. Otherwise, standard
* `equals` will be used
*/
fun <K, V> Map<K, V>.diff(
other: Map<K, V>,
strictComparison: Boolean = false
): MapDiff<K, V> = diff(
other,
compareFun = createCompareFun(strictComparison)
)
/**
* Will apply changes with [other] map into [this] one
*
* @param compareFun Will be used to determine changed values
*/
fun <K, V> MutableMap<K, V>.applyDiff(
from: Map<K, V>,
compareFun: (K, V, V) -> Boolean = { _, first, second -> first == second }
) {
diff(from, compareFun).apply {
removed.keys.forEach { remove(it) }
changed.forEach { (k, oldNew) ->
put(k, oldNew.second)
}
added.forEach { (k, new) ->
put(k, new)
}
}
}
/**
* Will apply changes with [other] map into [this] one
*
* @param strictComparison If true, will use strict (===) comparison for the values' comparison. Otherwise, standard
* `equals` will be used
*/
fun <K, V> MutableMap<K, V>.applyDiff(
other: Map<K, V>,
strictComparison: Boolean = false
) = applyDiff(
other,
compareFun = createCompareFun(strictComparison)
)

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@@ -0,0 +1,136 @@
package dev.inmo.micro_utils.coroutines
import kotlinx.coroutines.currentCoroutineContext
import kotlinx.coroutines.flow.MutableStateFlow
import kotlinx.coroutines.flow.StateFlow
import kotlinx.coroutines.flow.asStateFlow
import kotlinx.coroutines.flow.first
import kotlinx.coroutines.isActive
import kotlinx.coroutines.sync.Mutex
import kotlinx.coroutines.sync.withLock
import kotlin.contracts.ExperimentalContracts
import kotlin.contracts.InvocationKind
import kotlin.contracts.contract
/**
* It is interface which will work like classic [Mutex], but in difference have [lockStateFlow] for listening of the
* [SmartMutex] state.
*
* There is [Mutable] and [Immutable] realizations. In case you are owner and manager current state of lock, you need
* [Mutable] [SmartMutex]. Otherwise, [Immutable].
*
* Any [Mutable] [SmartMutex] may produce its [Immutable] variant which will contains [lockStateFlow] equal to its
* [Mutable] creator
*/
sealed interface SmartMutex {
val lockStateFlow: StateFlow<Boolean>
/**
* * True - locked
* * False - unlocked
*/
val isLocked: Boolean
get() = lockStateFlow.value
/**
* Immutable variant of [SmartMutex]. In fact will depend on the owner of [lockStateFlow]
*/
class Immutable(override val lockStateFlow: StateFlow<Boolean>) : SmartMutex
/**
* Mutable variant of [SmartMutex]. With that variant you may [lock] and [unlock]. Besides, you may create
* [Immutable] variant of [this] instance with [immutable] factory
*
* @param locked Preset state of [isLocked] and its internal [_lockStateFlow]
*/
class Mutable(locked: Boolean = false) : SmartMutex {
private val _lockStateFlow = MutableStateFlow<Boolean>(locked)
override val lockStateFlow: StateFlow<Boolean> = _lockStateFlow.asStateFlow()
private val internalChangesMutex = Mutex()
fun immutable() = Immutable(lockStateFlow)
/**
* Holds call until this [SmartMutex] will be re-locked. That means that while [isLocked] == true, [holds] will
* wait for [isLocked] == false and then try to lock
*/
suspend fun lock() {
do {
waitUnlock()
val shouldContinue = internalChangesMutex.withLock {
if (_lockStateFlow.value) {
true
} else {
_lockStateFlow.value = true
false
}
}
} while (shouldContinue && currentCoroutineContext().isActive)
}
/**
* Will try to lock this [SmartMutex] immediataly
*
* @return True if lock was successful. False otherwise
*/
suspend fun tryLock(): Boolean {
return if (!_lockStateFlow.value) {
internalChangesMutex.withLock {
if (!_lockStateFlow.value) {
_lockStateFlow.value = true
true
} else {
false
}
}
} else {
false
}
}
/**
* If [isLocked] == true - will change it to false and return true. If current call will not unlock this
* [SmartMutex] - false
*/
suspend fun unlock(): Boolean {
return if (_lockStateFlow.value) {
internalChangesMutex.withLock {
if (_lockStateFlow.value) {
_lockStateFlow.value = false
true
} else {
false
}
}
} else {
false
}
}
}
}
/**
* Will call [SmartMutex.Mutable.lock], then execute [action] and return the result after [SmartMutex.Mutable.unlock]
*/
@OptIn(ExperimentalContracts::class)
suspend inline fun <T> SmartMutex.Mutable.withLock(action: () -> T): T {
contract {
callsInPlace(action, InvocationKind.EXACTLY_ONCE)
}
lock()
try {
return action()
} finally {
unlock()
}
}
/**
* Will wait until the [SmartMutex.lockStateFlow] of [this] instance will be false.
*
* Anyway, after the end of this block there are no any guaranties that [SmartMutex.isLocked] == false due to the fact
* that some other parties may lock it again
*/
suspend fun SmartMutex.waitUnlock() = lockStateFlow.first { !it }

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@@ -14,5 +14,5 @@ crypto_js_version=4.1.1
# Project data
group=dev.inmo
version=0.18.0
android_code_version=191
version=0.18.1
android_code_version=192