Initial commit

This commit is contained in:
Edwin Jakobs
2018-10-04 22:58:28 +02:00
commit 8611f7303e
10 changed files with 715 additions and 0 deletions

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.gitignore vendored Normal file
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.gradle/
out/
target/
build/
*.iml/
.idea/

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README.md Normal file
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# ORX (OPENRNDR EXTRA)
A growing library of assorted data structures, algorithms and utilities.
- orx-kdtree - kd-tree implementation for fast nearest point searches
## Usage

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build.gradle Normal file
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plugins {
id 'org.jetbrains.kotlin.jvm' version '1.2.71'
id 'maven'
}
group 'org.openrndr.extra'
version '0.0.1'
repositories {
mavenCentral()
}
ext {
openrndrVersion = "0.4.0-SNAPSHOT"
}
subprojects {
apply plugin: 'kotlin'
repositories {
mavenLocal()
mavenCentral()
maven {
url="https://dl.bintray.com/openrndr/openrndr"
}
}
dependencies {
compile "org.openrndr:openrndr-core:$openrndrVersion"
compile group: 'org.jetbrains.kotlinx', name: 'kotlinx-coroutines-core', version: '0.27.0'
}
}
dependencies {
compile "org.jetbrains.kotlin:kotlin-stdlib-jdk8"
}
compileKotlin {
kotlinOptions.jvmTarget = "1.8"
}
compileTestKotlin {
kotlinOptions.jvmTarget = "1.8"
}

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gradle/wrapper/gradle-wrapper.jar vendored Normal file

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#Thu Oct 04 22:36:06 CEST 2018
distributionBase=GRADLE_USER_HOME
distributionPath=wrapper/dists
zipStoreBase=GRADLE_USER_HOME
zipStorePath=wrapper/dists
distributionUrl=https\://services.gradle.org/distributions/gradle-4.8-all.zip

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#!/usr/bin/env sh
##############################################################################
##
## Gradle start up script for UN*X
##
##############################################################################
# Attempt to set APP_HOME
# Resolve links: $0 may be a link
PRG="$0"
# Need this for relative symlinks.
while [ -h "$PRG" ] ; do
ls=`ls -ld "$PRG"`
link=`expr "$ls" : '.*-> \(.*\)$'`
if expr "$link" : '/.*' > /dev/null; then
PRG="$link"
else
PRG=`dirname "$PRG"`"/$link"
fi
done
SAVED="`pwd`"
cd "`dirname \"$PRG\"`/" >/dev/null
APP_HOME="`pwd -P`"
cd "$SAVED" >/dev/null
APP_NAME="Gradle"
APP_BASE_NAME=`basename "$0"`
# Add default JVM options here. You can also use JAVA_OPTS and GRADLE_OPTS to pass JVM options to this script.
DEFAULT_JVM_OPTS=""
# Use the maximum available, or set MAX_FD != -1 to use that value.
MAX_FD="maximum"
warn () {
echo "$*"
}
die () {
echo
echo "$*"
echo
exit 1
}
# OS specific support (must be 'true' or 'false').
cygwin=false
msys=false
darwin=false
nonstop=false
case "`uname`" in
CYGWIN* )
cygwin=true
;;
Darwin* )
darwin=true
;;
MINGW* )
msys=true
;;
NONSTOP* )
nonstop=true
;;
esac
CLASSPATH=$APP_HOME/gradle/wrapper/gradle-wrapper.jar
# Determine the Java command to use to start the JVM.
if [ -n "$JAVA_HOME" ] ; then
if [ -x "$JAVA_HOME/jre/sh/java" ] ; then
# IBM's JDK on AIX uses strange locations for the executables
JAVACMD="$JAVA_HOME/jre/sh/java"
else
JAVACMD="$JAVA_HOME/bin/java"
fi
if [ ! -x "$JAVACMD" ] ; then
die "ERROR: JAVA_HOME is set to an invalid directory: $JAVA_HOME
Please set the JAVA_HOME variable in your environment to match the
location of your Java installation."
fi
else
JAVACMD="java"
which java >/dev/null 2>&1 || die "ERROR: JAVA_HOME is not set and no 'java' command could be found in your PATH.
Please set the JAVA_HOME variable in your environment to match the
location of your Java installation."
fi
# Increase the maximum file descriptors if we can.
if [ "$cygwin" = "false" -a "$darwin" = "false" -a "$nonstop" = "false" ] ; then
MAX_FD_LIMIT=`ulimit -H -n`
if [ $? -eq 0 ] ; then
if [ "$MAX_FD" = "maximum" -o "$MAX_FD" = "max" ] ; then
MAX_FD="$MAX_FD_LIMIT"
fi
ulimit -n $MAX_FD
if [ $? -ne 0 ] ; then
warn "Could not set maximum file descriptor limit: $MAX_FD"
fi
else
warn "Could not query maximum file descriptor limit: $MAX_FD_LIMIT"
fi
fi
# For Darwin, add options to specify how the application appears in the dock
if $darwin; then
GRADLE_OPTS="$GRADLE_OPTS \"-Xdock:name=$APP_NAME\" \"-Xdock:icon=$APP_HOME/media/gradle.icns\""
fi
# For Cygwin, switch paths to Windows format before running java
if $cygwin ; then
APP_HOME=`cygpath --path --mixed "$APP_HOME"`
CLASSPATH=`cygpath --path --mixed "$CLASSPATH"`
JAVACMD=`cygpath --unix "$JAVACMD"`
# We build the pattern for arguments to be converted via cygpath
ROOTDIRSRAW=`find -L / -maxdepth 1 -mindepth 1 -type d 2>/dev/null`
SEP=""
for dir in $ROOTDIRSRAW ; do
ROOTDIRS="$ROOTDIRS$SEP$dir"
SEP="|"
done
OURCYGPATTERN="(^($ROOTDIRS))"
# Add a user-defined pattern to the cygpath arguments
if [ "$GRADLE_CYGPATTERN" != "" ] ; then
OURCYGPATTERN="$OURCYGPATTERN|($GRADLE_CYGPATTERN)"
fi
# Now convert the arguments - kludge to limit ourselves to /bin/sh
i=0
for arg in "$@" ; do
CHECK=`echo "$arg"|egrep -c "$OURCYGPATTERN" -`
CHECK2=`echo "$arg"|egrep -c "^-"` ### Determine if an option
if [ $CHECK -ne 0 ] && [ $CHECK2 -eq 0 ] ; then ### Added a condition
eval `echo args$i`=`cygpath --path --ignore --mixed "$arg"`
else
eval `echo args$i`="\"$arg\""
fi
i=$((i+1))
done
case $i in
(0) set -- ;;
(1) set -- "$args0" ;;
(2) set -- "$args0" "$args1" ;;
(3) set -- "$args0" "$args1" "$args2" ;;
(4) set -- "$args0" "$args1" "$args2" "$args3" ;;
(5) set -- "$args0" "$args1" "$args2" "$args3" "$args4" ;;
(6) set -- "$args0" "$args1" "$args2" "$args3" "$args4" "$args5" ;;
(7) set -- "$args0" "$args1" "$args2" "$args3" "$args4" "$args5" "$args6" ;;
(8) set -- "$args0" "$args1" "$args2" "$args3" "$args4" "$args5" "$args6" "$args7" ;;
(9) set -- "$args0" "$args1" "$args2" "$args3" "$args4" "$args5" "$args6" "$args7" "$args8" ;;
esac
fi
# Escape application args
save () {
for i do printf %s\\n "$i" | sed "s/'/'\\\\''/g;1s/^/'/;\$s/\$/' \\\\/" ; done
echo " "
}
APP_ARGS=$(save "$@")
# Collect all arguments for the java command, following the shell quoting and substitution rules
eval set -- $DEFAULT_JVM_OPTS $JAVA_OPTS $GRADLE_OPTS "\"-Dorg.gradle.appname=$APP_BASE_NAME\"" -classpath "\"$CLASSPATH\"" org.gradle.wrapper.GradleWrapperMain "$APP_ARGS"
# by default we should be in the correct project dir, but when run from Finder on Mac, the cwd is wrong
if [ "$(uname)" = "Darwin" ] && [ "$HOME" = "$PWD" ]; then
cd "$(dirname "$0")"
fi
exec "$JAVACMD" "$@"

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@if "%DEBUG%" == "" @echo off
@rem ##########################################################################
@rem
@rem Gradle startup script for Windows
@rem
@rem ##########################################################################
@rem Set local scope for the variables with windows NT shell
if "%OS%"=="Windows_NT" setlocal
set DIRNAME=%~dp0
if "%DIRNAME%" == "" set DIRNAME=.
set APP_BASE_NAME=%~n0
set APP_HOME=%DIRNAME%
@rem Add default JVM options here. You can also use JAVA_OPTS and GRADLE_OPTS to pass JVM options to this script.
set DEFAULT_JVM_OPTS=
@rem Find java.exe
if defined JAVA_HOME goto findJavaFromJavaHome
set JAVA_EXE=java.exe
%JAVA_EXE% -version >NUL 2>&1
if "%ERRORLEVEL%" == "0" goto init
echo.
echo ERROR: JAVA_HOME is not set and no 'java' command could be found in your PATH.
echo.
echo Please set the JAVA_HOME variable in your environment to match the
echo location of your Java installation.
goto fail
:findJavaFromJavaHome
set JAVA_HOME=%JAVA_HOME:"=%
set JAVA_EXE=%JAVA_HOME%/bin/java.exe
if exist "%JAVA_EXE%" goto init
echo.
echo ERROR: JAVA_HOME is set to an invalid directory: %JAVA_HOME%
echo.
echo Please set the JAVA_HOME variable in your environment to match the
echo location of your Java installation.
goto fail
:init
@rem Get command-line arguments, handling Windows variants
if not "%OS%" == "Windows_NT" goto win9xME_args
:win9xME_args
@rem Slurp the command line arguments.
set CMD_LINE_ARGS=
set _SKIP=2
:win9xME_args_slurp
if "x%~1" == "x" goto execute
set CMD_LINE_ARGS=%*
:execute
@rem Setup the command line
set CLASSPATH=%APP_HOME%\gradle\wrapper\gradle-wrapper.jar
@rem Execute Gradle
"%JAVA_EXE%" %DEFAULT_JVM_OPTS% %JAVA_OPTS% %GRADLE_OPTS% "-Dorg.gradle.appname=%APP_BASE_NAME%" -classpath "%CLASSPATH%" org.gradle.wrapper.GradleWrapperMain %CMD_LINE_ARGS%
:end
@rem End local scope for the variables with windows NT shell
if "%ERRORLEVEL%"=="0" goto mainEnd
:fail
rem Set variable GRADLE_EXIT_CONSOLE if you need the _script_ return code instead of
rem the _cmd.exe /c_ return code!
if not "" == "%GRADLE_EXIT_CONSOLE%" exit 1
exit /b 1
:mainEnd
if "%OS%"=="Windows_NT" endlocal
:omega

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package org.openrndr.extra.kdtree
import kotlinx.coroutines.experimental.CoroutineScope
import kotlinx.coroutines.experimental.GlobalScope
import kotlinx.coroutines.experimental.launch
import kotlinx.coroutines.experimental.runBlocking
import org.openrndr.math.IntVector2
import org.openrndr.math.Vector2
import org.openrndr.math.Vector3
import org.openrndr.math.Vector4
import java.util.*
import java.util.concurrent.atomic.AtomicInteger
import kotlin.IllegalStateException
/** built-in mapper for [Vector2] */
fun vector2Mapper(v: Vector2, dimension: Int): Double {
return when (dimension) {
0 -> v.x
else -> v.y
}
}
fun intVector2Mapper(v: IntVector2, dimension: Int): Double {
return when (dimension) {
0 -> v.x.toDouble()
else -> v.y.toDouble()
}
}
/** built-in mapper for [Vector3] */
fun vector3Mapper(v: Vector3, dimension: Int): Double {
return when (dimension) {
0 -> v.x
1 -> v.y
else -> v.y
}
}
/** built-in mapper for [Vector4] */
fun vector4Mapper(v: Vector4, dimension: Int): Double {
return when (dimension) {
0 -> v.x
1 -> v.y
2 -> v.z
else -> v.w
}
}
class KDTreeNode<T> {
var parent: KDTreeNode<T>? = null
var median: Double = 0.0
var dimension: Int = 0
var children: Array<KDTreeNode<T>?> = arrayOfNulls(2)
var item: T? = null
internal val isLeaf: Boolean
get() = children[0] == null && children[1] == null
override fun toString(): String {
return "KDTreeNode{" +
"median=" + median +
", item=" + item +
", dimension=" + dimension +
", children=" + Arrays.toString(children) +
"} " + super.toString()
}
}
fun <T> insertItem(root: KDTreeNode<T>, item: T, mapper: (T, Int) -> Double): KDTreeNode<T> {
return if (root.isLeaf) {
root.item = item
root
} else {
if (mapper(item, root.dimension) < root.median) {
insertItem(root.children[0] ?: throw IllegalStateException("left is null"), item, mapper)
} else {
insertItem(root.children[1] ?: throw IllegalStateException("right is null"), item, mapper)
}
}
}
fun <T> buildKDTree(items: MutableList<T>, dimensions: Int, mapper: (T, Int) -> Double): KDTreeNode<T> {
val root = KDTreeNode<T>()
val start = System.currentTimeMillis()
fun <T> buildTreeTask(scope: CoroutineScope, node: KDTreeNode<T>, items: MutableList<T>, dimensions: Int, levels: Int, mapper: (T, Int) -> Double): KDTreeNode<T> {
if (items.size > 0) {
val dimension = levels % dimensions
val values = ArrayList<T>()
for (item in items) {
values.add(item)
}
node.dimension = dimension
val median = selectNth(items, items.size / 2) { mapper(it, dimension) }
val leftItems = mutableListOf<T>()
val rightItems = mutableListOf<T>()
node.median = mapper(median, dimension)
node.item = median
for (item in items) {
if (item === median) {
continue
}
if (mapper(item, dimension) < node.median) {
leftItems.add(item)
} else {
rightItems.add(item)
}
}
// validate split
if (leftItems.size + rightItems.size + 1 != items.size) {
throw IllegalStateException("left: ${leftItems.size}, right: ${rightItems.size}, items: ${items.size}")
}
if (leftItems.size > 0) {
node.children[0] = KDTreeNode()
node.children[0]?.let {
it.parent = node
scope.launch {
buildTreeTask(scope, it, leftItems, dimensions, levels + 1, mapper)
}
}
}
if (rightItems.size > 0) {
node.children[1] = KDTreeNode()
node.children[1]?.let {
it.parent = node
scope.launch {
buildTreeTask(scope, it, rightItems, dimensions, levels + 1, mapper)
}
}
}
}
return node
}
val job = GlobalScope.launch {
buildTreeTask(this, root, items, dimensions, 0, mapper)
}
runBlocking {
job.join()
}
println("building took ${System.currentTimeMillis()-start}ms")
return root
}
private fun <T> sqrDistance(left: T, right: T, dimensions: Int, mapper: (T, Int) -> Double): Double {
var distance = 0.0
for (i in 0 until dimensions) {
val d = mapper(left, i) - mapper(right, i)
distance += d * d
}
return distance
}
fun <T> findAllNodes(root: KDTreeNode<T>): List<KDTreeNode<T>> {
val stack = Stack<KDTreeNode<T>>()
val all = ArrayList<KDTreeNode<T>>()
stack.empty()
stack.push(root)
while (!stack.isEmpty()) {
val node = stack.pop()
// if (node.item != null /*&& !visited.contains(node.children[1])*/) {
all.add(node)
// }
if (node.children[0] != null /*&&!visited.contains(node.children[0])*/) {
stack.push(node.children[0])
}
if (node.children[1] != null) {
stack.push(node.children[1])
}
}
return all
}
fun <T> findNearest(root: KDTreeNode<T>, item: T, dimensions: Int, mapper: (T, Int) -> Double): T? {
var nearest = java.lang.Double.POSITIVE_INFINITY
var nearestArg: KDTreeNode<T>? = null
fun nearest(node: KDTreeNode<T>?, item: T) {
if (node != null) {
if (node.item == null) {
println(node)
}
val route: Int = if (mapper(item, node.dimension) < node.median) {
nearest(node.children[0], item)
0
} else {
nearest(node.children[1], item)
1
}
val distance = sqrDistance(item, node.item
?: throw IllegalStateException("item is null"), dimensions, mapper)
if (distance < nearest) {
nearest = distance
nearestArg = node
}
val d = Math.abs(node.median - mapper(item, node.dimension))
if (d * d < nearest) {
nearest(node.children[1 - route], item)
}
}
}
nearest(root, item)
return nearestArg?.item
}
fun <T> insert(root: KDTreeNode<T>, item: T, dimensions: Int, mapper: (T, Int) -> Double): KDTreeNode<T> {
val stack = Stack<KDTreeNode<T>>()
stack.push(root)
dive@ while (true) {
val node = stack.peek()
val value = mapper(item, node.dimension)
if (value < node.median) {
if (node.children[0] != null) {
stack.push(node.children[0])
} else {
// sit here
node.children[0] = KDTreeNode()
node.children[0]?.item = item
node.children[0]?.dimension = (node.dimension + 1) % dimensions
node.children[0]?.median = mapper(item, (node.dimension + 1) % dimensions)
node.children[0]?.parent = node
return node.children[0] ?: throw IllegalStateException("child is null")
}
} else {
if (node.children[1] != null) {
stack.push(node.children[1])
} else {
// sit here
node.children[1] = KDTreeNode()
node.children[1]?.item = item
node.children[1]?.dimension = (node.dimension + 1) % dimensions
node.children[1]?.median = mapper(item, (node.dimension + 1) % dimensions)
node.children[1]?.parent = node
return node.children[1] ?: throw IllegalStateException("child is null")
}
}
}
}
fun <T> remove(toRemove: KDTreeNode<T>, mapper: (T, Int) -> Double): KDTreeNode<T>? {
// trivial case
if (toRemove.isLeaf) {
val p = toRemove.parent
if (p != null) {
when {
p.children[0] === toRemove -> p.children[0] = null
p.children[1] === toRemove -> p.children[1] = null
else -> {
// broken!
}
}
} else {
toRemove.item = null
}
} else {
val stack = Stack<KDTreeNode<T>>()
var branch = 0
if (toRemove.children[0] != null) {
stack.push(toRemove.children[0])
branch = 0
} else {
stack.push(toRemove.children[1])
branch = 1
}
var minValue: Double = java.lang.Double.POSITIVE_INFINITY
var maxValue: Double = java.lang.Double.NEGATIVE_INFINITY
var minArg: KDTreeNode<T>? = null
var maxArg: KDTreeNode<T>? = null
while (!stack.isEmpty()) {
val node = stack.pop() ?: throw RuntimeException("null on stack")
val value = mapper(node.item ?: throw IllegalStateException("item is null"), toRemove.dimension)
if (value < minValue) {
minValue = value
minArg = node
}
if (value > maxValue) {
maxValue = value
maxArg = node
}
if (node.dimension != toRemove.dimension) {
if (node.children[0] != null) {
stack.push(node.children[0])
}
if (node.children[1] != null) {
stack.push(node.children[1])
}
} else {
if (branch == 1) {
if (node.children[0] != null) {
stack.push(node.children[0])
} else {
if (node.children[1] != null) {
stack.push(node.children[1])
}
}
}
if (branch == 0) {
if (node.children[1] != null) {
stack.push(node.children[1])
} else {
if (node.children[0] != null) {
stack.push(node.children[0])
}
}
}
}
}
if (branch == 1) {
toRemove.item = minArg?.item
toRemove.median = mapper(minArg?.item ?: throw IllegalStateException("minArg is null"), toRemove.dimension)
remove(minArg, mapper)
}
if (branch == 0) {
toRemove.item = maxArg?.item
toRemove.median = mapper(maxArg?.item ?: throw IllegalStateException("maxArg is null"), toRemove.dimension)
remove(maxArg, mapper)
}
}
return null
}

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package org.openrndr.extra.kdtree
fun <T> selectNth(items: MutableList<T>, n: Int, mapper: (T)->Double): T {
var from = 0
var to = items.size - 1
// if from == to we reached the kth element
while (from < to) {
var r = from
var w = to
val mid = mapper(items[(r + w) / 2])
// stop when the reader and writer meet
while (r < w) {
if (mapper(items[r]) >= mid) { // put the large values at the end
val tmp = items[w]
items[w] = items[r]
items[r] = tmp
w--
} else { // the value is smaller than the pivot, skip
r++
}
}
// if we stepped up (r++) we need to step one down
if (mapper(items[r]) > mid)
r--
// the r pointer is on the end of the first k elements
if (n <= r) {
to = r
} else {
from = r + 1
}
}
return items[n]
}

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rootProject.name = 'orx'
include 'orx-kdtree'