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Author SHA1 Message Date
694c44d7d5 bump version 1.2.0
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2025-11-10 13:52:07 +01:00
e4c3a0f45f implement padding, support UByteArray 2025-11-10 13:51:21 +01:00
10 changed files with 405 additions and 167 deletions

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@@ -1,5 +1,5 @@
group = "com.infendro" group = "com.infendro"
version = "1.1.1" version = "1.2.0"
repositories { repositories {
mavenCentral() mavenCentral()

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@@ -0,0 +1,148 @@
package com.infendro.bytearray
import com.infendro.bytearray.ByteOrder.BIG_ENDIAN
import kotlin.experimental.and
import kotlin.experimental.or
import kotlin.experimental.xor
infix fun ByteArray.and(
that: ByteArray,
): ByteArray {
if (this.size != that.size) throw Exception()
return ByteArray(size) { i ->
this[i] and that[i]
}
}
infix fun ByteArray.or(
that: ByteArray,
): ByteArray {
if (this.size != that.size) throw Exception()
return ByteArray(size) { i ->
this[i] or that[i]
}
}
infix fun ByteArray.xor(
that: ByteArray,
): ByteArray {
if (this.size != that.size) throw Exception()
return ByteArray(size) { i ->
this[i] xor that[i]
}
}
fun ByteArray.padStart(
length: Int,
padByte: Byte,
): ByteArray {
return buildList {
repeat(length - size) {
add(padByte)
}
addAll(this)
}.toByteArray()
}
fun ByteArray.padEnd(
length: Int,
padByte: Byte,
): ByteArray {
return buildList {
repeat(length - size) {
add(padByte)
}
addAll(this)
}.toByteArray()
}
fun ByteArray.toInt(
order: ByteOrder = BIG_ENDIAN,
): Int {
if (size != 4) throw Exception()
val bytes = order.normalize(this)
return bytes.fold(0) { acc, byte ->
(acc shl 8) or (byte.toInt() and 0xFF)
}
}
fun ByteArray.toIntArray(
order: ByteOrder = BIG_ENDIAN,
): IntArray {
if (size % 4 != 0) throw Exception()
return toList()
.chunked(4)
.map { it.toInt(order) }
.toIntArray()
}
fun ByteArray.toLong(
order: ByteOrder = BIG_ENDIAN,
): Long {
if (size != 8) throw Exception()
val bytes = order.normalize(this)
return bytes.fold(0L) { acc, byte ->
(acc shl 8) or (byte.toLong() and 0xFFL)
}
}
fun ByteArray.toLongArray(
order: ByteOrder = BIG_ENDIAN,
): LongArray {
if (size % 8 != 0) throw Exception()
return toList()
.chunked(8)
.map { it.toLong(order) }
.toLongArray()
}
fun ByteArray.toUInt(
order: ByteOrder = BIG_ENDIAN,
): UInt {
if (size != 4) throw Exception()
val bytes = order.normalize(this)
return bytes.fold(0U) { acc, byte ->
(acc shl 8) or (byte.toUInt() and 0xFFU)
}
}
fun ByteArray.toUIntArray(
order: ByteOrder = BIG_ENDIAN,
): UIntArray {
if (size % 4 != 0) throw Exception()
return toList()
.chunked(4)
.map { it.toUInt(order) }
.toUIntArray()
}
fun ByteArray.toULong(
order: ByteOrder = BIG_ENDIAN,
): ULong {
if (size != 8) throw Exception()
val bytes = order.normalize(this)
return bytes.fold(0UL) { acc, byte ->
(acc shl 8) or (byte.toULong() and 0xFFUL)
}
}
fun ByteArray.toULongArray(
order: ByteOrder = BIG_ENDIAN,
): ULongArray {
if (size % 8 != 0) throw Exception()
return toList()
.chunked(8)
.map { it.toULong(order) }
.toULongArray()
}

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@@ -7,6 +7,12 @@ enum class ByteOrder {
): ByteArray { ): ByteArray {
return bytes return bytes
} }
override fun normalize(
bytes: UByteArray,
): UByteArray {
return bytes
}
}, },
LITTLE_ENDIAN { LITTLE_ENDIAN {
override fun normalize( override fun normalize(
@@ -14,9 +20,19 @@ enum class ByteOrder {
): ByteArray { ): ByteArray {
return bytes.reversedArray() return bytes.reversedArray()
} }
override fun normalize(
bytes: UByteArray,
): UByteArray {
return bytes.reversedArray()
}
}; };
internal abstract fun normalize( internal abstract fun normalize(
bytes: ByteArray, bytes: ByteArray,
): ByteArray ): ByteArray
internal abstract fun normalize(
bytes: UByteArray,
): UByteArray
} }

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@@ -1,7 +1,75 @@
package com.infendro.bytearray package com.infendro.bytearray
import com.infendro.bytearray.ByteOrder.BIG_ENDIAN
fun MutableCollection<Byte>.addAll( fun MutableCollection<Byte>.addAll(
bytes: ByteArray, bytes: ByteArray,
): Boolean { ) = addAll(bytes.toList())
return addAll(bytes.toList())
} fun MutableCollection<UByte>.addAll(
bytes: UByteArray,
) = addAll(bytes.toList())
fun Collection<Byte>.toInt(
order: ByteOrder = BIG_ENDIAN,
) = toByteArray().toInt(order)
fun Collection<UByte>.toInt(
order: ByteOrder = BIG_ENDIAN,
) = toUByteArray().toInt(order)
fun Collection<Byte>.toIntArray(
order: ByteOrder = BIG_ENDIAN,
) = toByteArray().toIntArray(order)
fun Collection<UByte>.toIntArray(
order: ByteOrder = BIG_ENDIAN,
) = toUByteArray().toIntArray(order)
fun Collection<Byte>.toLong(
order: ByteOrder = BIG_ENDIAN,
) = toByteArray().toLong(order)
fun Collection<UByte>.toLong(
order: ByteOrder = BIG_ENDIAN,
) = toUByteArray().toLong(order)
fun Collection<Byte>.toLongArray(
order: ByteOrder = BIG_ENDIAN,
) = toByteArray().toLongArray(order)
fun Collection<UByte>.toLongArray(
order: ByteOrder = BIG_ENDIAN,
) = toUByteArray().toLongArray(order)
fun Collection<Byte>.toUInt(
order: ByteOrder = BIG_ENDIAN,
) = toByteArray().toUInt(order)
fun Collection<UByte>.toUInt(
order: ByteOrder = BIG_ENDIAN,
) = toUByteArray().toUInt(order)
fun Collection<Byte>.toUIntArray(
order: ByteOrder = BIG_ENDIAN,
) = toByteArray().toUIntArray(order)
fun Collection<UByte>.toUIntArray(
order: ByteOrder = BIG_ENDIAN,
) = toUByteArray().toUIntArray(order)
fun Collection<Byte>.toULong(
order: ByteOrder = BIG_ENDIAN,
) = toByteArray().toULong(order)
fun Collection<UByte>.toULong(
order: ByteOrder = BIG_ENDIAN,
) = toUByteArray().toULong(order)
fun Collection<Byte>.toULongArray(
order: ByteOrder = BIG_ENDIAN,
) = toByteArray().toULongArray(order)
fun Collection<UByte>.toULongArray(
order: ByteOrder = BIG_ENDIAN,
) = toUByteArray().toULongArray(order)

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@@ -12,38 +12,12 @@ fun Int.toByteArray(
return order.normalize(bytes) return order.normalize(bytes)
} }
fun ByteArray.toInt( fun Int.toUByteArray(
order: ByteOrder = BIG_ENDIAN, order: ByteOrder = BIG_ENDIAN,
): Int { ): UByteArray {
if (size != 4) throw Exception() val bytes = UByteArray(4) { i ->
val offset = (3 - i) * 8
val bytes = order.normalize(this) (this ushr offset).toUByte()
return bytes.fold(0) { acc, byte ->
(acc shl 8) or (byte.toInt() and 0xFF)
} }
} return order.normalize(bytes)
fun Collection<Byte>.toInt(
order: ByteOrder = BIG_ENDIAN,
): Int {
return toByteArray()
.toInt(order)
}
fun ByteArray.toIntArray(
order: ByteOrder = BIG_ENDIAN,
): IntArray {
if (size % 4 != 0) throw Exception()
return toList()
.chunked(4)
.map { it.toInt(order) }
.toIntArray()
}
fun Collection<Byte>.toIntArray(
order: ByteOrder = BIG_ENDIAN,
): IntArray {
return toByteArray()
.toIntArray(order)
} }

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@@ -12,38 +12,12 @@ fun Long.toByteArray(
return order.normalize(bytes) return order.normalize(bytes)
} }
fun ByteArray.toLong( fun Long.toUByteArray(
order: ByteOrder = BIG_ENDIAN, order: ByteOrder = BIG_ENDIAN,
): Long { ): UByteArray {
if (size != 8) throw Exception() val bytes = UByteArray(8) { i ->
val offset = (7 - i) * 8
val bytes = order.normalize(this) (this ushr offset).toUByte()
return bytes.fold(0L) { acc, byte ->
(acc shl 8) or (byte.toLong() and 0xFFL)
} }
} return order.normalize(bytes)
fun Collection<Byte>.toLong(
order: ByteOrder = BIG_ENDIAN,
): Long {
return toByteArray()
.toLong(order)
}
fun ByteArray.toLongArray(
order: ByteOrder = BIG_ENDIAN,
): LongArray {
if (size % 8 != 0) throw Exception()
return toList()
.chunked(8)
.map { it.toLong(order) }
.toLongArray()
}
fun Collection<Byte>.toLongArray(
order: ByteOrder = BIG_ENDIAN,
): LongArray {
return toByteArray()
.toLongArray(order)
} }

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@@ -0,0 +1,145 @@
package com.infendro.bytearray
import com.infendro.bytearray.ByteOrder.BIG_ENDIAN
infix fun UByteArray.and(
that: UByteArray,
): UByteArray {
if (this.size != that.size) throw Exception()
return UByteArray(size) { i ->
this[i] and that[i]
}
}
infix fun UByteArray.or(
that: UByteArray,
): UByteArray {
if (this.size != that.size) throw Exception()
return UByteArray(size) { i ->
this[i] or that[i]
}
}
infix fun UByteArray.xor(
that: UByteArray,
): UByteArray {
if (this.size != that.size) throw Exception()
return UByteArray(size) { i ->
this[i] xor that[i]
}
}
fun UByteArray.padStart(
length: Int,
padByte: UByte,
): UByteArray {
return buildList {
repeat(length - size) {
add(padByte)
}
addAll(this)
}.toUByteArray()
}
fun UByteArray.padEnd(
length: Int,
padByte: UByte,
): UByteArray {
return buildList {
repeat(length - size) {
add(padByte)
}
addAll(this)
}.toUByteArray()
}
fun UByteArray.toInt(
order: ByteOrder = BIG_ENDIAN,
): Int {
if (size != 4) throw Exception()
val bytes = order.normalize(this)
return bytes.fold(0) { acc, byte ->
(acc shl 8) or (byte.toInt() and 0xFF)
}
}
fun UByteArray.toIntArray(
order: ByteOrder = BIG_ENDIAN,
): IntArray {
if (size % 4 != 0) throw Exception()
return toList()
.chunked(4)
.map { it.toInt(order) }
.toIntArray()
}
fun UByteArray.toLong(
order: ByteOrder = BIG_ENDIAN,
): Long {
if (size != 8) throw Exception()
val bytes = order.normalize(this)
return bytes.fold(0L) { acc, byte ->
(acc shl 8) or (byte.toLong() and 0xFFL)
}
}
fun UByteArray.toLongArray(
order: ByteOrder = BIG_ENDIAN,
): LongArray {
if (size % 8 != 0) throw Exception()
return toList()
.chunked(8)
.map { it.toLong(order) }
.toLongArray()
}
fun UByteArray.toUInt(
order: ByteOrder = BIG_ENDIAN,
): UInt {
if (size != 4) throw Exception()
val bytes = order.normalize(this)
return bytes.fold(0U) { acc, byte ->
(acc shl 8) or (byte.toUInt() and 0xFFU)
}
}
fun UByteArray.toUIntArray(
order: ByteOrder = BIG_ENDIAN,
): UIntArray {
if (size % 4 != 0) throw Exception()
return toList()
.chunked(4)
.map { it.toUInt(order) }
.toUIntArray()
}
fun UByteArray.toULong(
order: ByteOrder = BIG_ENDIAN,
): ULong {
if (size != 8) throw Exception()
val bytes = order.normalize(this)
return bytes.fold(0UL) { acc, byte ->
(acc shl 8) or (byte.toULong() and 0xFFUL)
}
}
fun UByteArray.toULongArray(
order: ByteOrder = BIG_ENDIAN,
): ULongArray {
if (size % 8 != 0) throw Exception()
return toList()
.chunked(8)
.map { it.toULong(order) }
.toULongArray()
}

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@@ -12,38 +12,12 @@ fun UInt.toByteArray(
return order.normalize(bytes) return order.normalize(bytes)
} }
fun ByteArray.toUInt( fun UInt.toUByteArray(
order: ByteOrder = BIG_ENDIAN, order: ByteOrder = BIG_ENDIAN,
): UInt { ): UByteArray {
if (size != 4) throw Exception() val bytes = UByteArray(4) { i ->
val offset = (3 - i) * 8
val bytes = order.normalize(this) (this shr offset).toUByte()
return bytes.fold(0U) { acc, byte ->
(acc shl 8) or (byte.toUInt() and 0xFFU)
} }
} return order.normalize(bytes)
fun Collection<Byte>.toUInt(
order: ByteOrder = BIG_ENDIAN,
): UInt {
return toByteArray()
.toUInt(order)
}
fun ByteArray.toUIntArray(
order: ByteOrder = BIG_ENDIAN,
): UIntArray {
if (size % 4 != 0) throw Exception()
return toList()
.chunked(4)
.map { it.toUInt(order) }
.toUIntArray()
}
fun Collection<Byte>.toUIntArray(
order: ByteOrder = BIG_ENDIAN,
): UIntArray {
return toByteArray()
.toUIntArray(order)
} }

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@@ -12,38 +12,12 @@ fun ULong.toByteArray(
return order.normalize(bytes) return order.normalize(bytes)
} }
fun ByteArray.toULong( fun ULong.toUByteArray(
order: ByteOrder = BIG_ENDIAN, order: ByteOrder = BIG_ENDIAN,
): ULong { ): UByteArray {
if (size != 8) throw Exception() val bytes = UByteArray(8) { i ->
val offset = (7 - i) * 8
val bytes = order.normalize(this) (this shr offset).toUByte()
return bytes.fold(0UL) { acc, byte ->
(acc shl 8) or (byte.toULong() and 0xFFUL)
} }
} return order.normalize(bytes)
fun Collection<Byte>.toULong(
order: ByteOrder = BIG_ENDIAN,
): ULong {
return toByteArray()
.toULong(order)
}
fun ByteArray.toULongArray(
order: ByteOrder = BIG_ENDIAN,
): ULongArray {
if (size % 8 != 0) throw Exception()
return toList()
.chunked(8)
.map { it.toULong(order) }
.toULongArray()
}
fun Collection<Byte>.toULongArray(
order: ByteOrder = BIG_ENDIAN,
): ULongArray {
return toByteArray()
.toULongArray(order)
} }

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@@ -1,35 +0,0 @@
package com.infendro.bytearray
import kotlin.experimental.and
import kotlin.experimental.or
import kotlin.experimental.xor
infix fun ByteArray.and(
that: ByteArray,
): ByteArray {
if (this.size != that.size) throw Exception()
return ByteArray(size) { i ->
this[i] and that[i]
}
}
infix fun ByteArray.or(
that: ByteArray,
): ByteArray {
if (this.size != that.size) throw Exception()
return ByteArray(size) { i ->
this[i] or that[i]
}
}
infix fun ByteArray.xor(
that: ByteArray,
): ByteArray {
if (this.size != that.size) throw Exception()
return ByteArray(size) { i ->
this[i] xor that[i]
}
}