Build fixed. JS visualization loop added
This commit is contained in:
parent
ec01b0d7a8
commit
f8266d35c2
@ -1,4 +1,5 @@
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import org.jetbrains.kotlin.gradle.dsl.KotlinMultiplatformExtension
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import org.jetbrains.kotlin.gradle.dsl.KotlinMultiplatformExtension
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import org.jetbrains.kotlin.gradle.tasks.KotlinCompile
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buildscript {
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buildscript {
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val kotlinVersion: String by rootProject.extra("1.3.21")
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val kotlinVersion: String by rootProject.extra("1.3.21")
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@ -39,7 +40,7 @@ allprojects {
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}
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}
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group = "hep.dataforge"
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group = "hep.dataforge"
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version = "0.1.1-dev-4"
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version = "0.1.1-dev-5"
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// apply bintray configuration
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// apply bintray configuration
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apply(from = "${rootProject.rootDir}/gradle/bintray.gradle")
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apply(from = "${rootProject.rootDir}/gradle/bintray.gradle")
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@ -50,6 +51,36 @@ allprojects {
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}
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}
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subprojects {
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subprojects {
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// dokka {
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// outputFormat = "html"
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// outputDirectory = javadoc.destinationDir
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// }
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//
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// task dokkaJar (type: Jar, dependsOn: dokka) {
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// from javadoc . destinationDir
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// classifier = "javadoc"
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// }
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// Create empty jar for sources classifier to satisfy maven requirements
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val stubSources by tasks.registering(Jar::class) {
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archiveClassifier.set("sources")
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//from(sourceSets.main.get().allSource)
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}
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// Create empty jar for javadoc classifier to satisfy maven requirements
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val stubJavadoc by tasks.registering(Jar::class) {
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archiveClassifier.set("javadoc")
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}
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tasks.withType<KotlinCompile> {
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kotlinOptions{
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jvmTarget = "1.8"
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}
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}
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afterEvaluate {
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extensions.findByType<KotlinMultiplatformExtension>()?.apply {
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extensions.findByType<KotlinMultiplatformExtension>()?.apply {
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jvm {
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jvm {
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compilations.all {
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compilations.all {
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@ -60,7 +91,7 @@ subprojects {
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}
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}
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js {
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js {
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configure(listOf(compilations["main"], compilations["test"])) {
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compilations.all {
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tasks.getByName(compileKotlinTaskName) {
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tasks.getByName(compileKotlinTaskName) {
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kotlinOptions {
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kotlinOptions {
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metaInfo = true
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metaInfo = true
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@ -85,22 +116,9 @@ subprojects {
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languageSettings.progressiveMode = true
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languageSettings.progressiveMode = true
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}
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}
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}
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}
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}
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// dokka {
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configure<PublishingExtension> {
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// outputFormat = "html"
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// outputDirectory = javadoc.destinationDir
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// }
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//
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// task dokkaJar (type: Jar, dependsOn: dokka) {
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// from javadoc . destinationDir
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// classifier = "javadoc"
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// }
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if (!name.startsWith("dataforge")) return@subprojects
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extensions.findByType<PublishingExtension>()?.apply {
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publications.filterIsInstance<MavenPublication>().forEach { publication ->
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publications.filterIsInstance<MavenPublication>().forEach { publication ->
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if (publication.name == "kotlinMultiplatform") {
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if (publication.name == "kotlinMultiplatform") {
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// for our root metadata publication, set artifactId with a package and project name
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// for our root metadata publication, set artifactId with a package and project name
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@ -111,32 +129,12 @@ subprojects {
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}
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}
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}
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}
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// Create empty jar for sources classifier to satisfy maven requirements
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targets.all {
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val stubSources by tasks.registering(Jar::class) {
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val publication = publications.findByName(name) as MavenPublication
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archiveClassifier.set("sources")
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//from(sourceSets.main.get().allSource)
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}
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// Create empty jar for javadoc classifier to satisfy maven requirements
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val stubJavadoc by tasks.registering(Jar::class) {
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archiveClassifier.set("javadoc")
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}
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extensions.findByType<KotlinMultiplatformExtension>()?.apply {
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targets.forEach { target ->
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val publication = publications.findByName(target.name) as MavenPublication
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// Patch publications with fake javadoc
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// Patch publications with fake javadoc
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publication.artifact(stubJavadoc)
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publication.artifact(stubJavadoc.get())
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}
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// Remove gradle metadata publishing from all targets which are not native
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// if (target.platformType.name != "native") {
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// publication.gradleModuleMetadataFile = null
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// tasks.matching { it.name == "generateMetadataFileFor${name.capitalize()}Publication" }.all {
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// onlyIf { false }
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// }
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// }
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}
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}
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}
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}
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}
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}
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@ -48,3 +48,13 @@ kotlin {
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// }
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// }
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}
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}
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}
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}
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//tasks.withType<Kotlin2JsCompile>{
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// kotlinOptions{
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// metaInfo = true
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// outputFile = "${project.buildDir.path}/js/${project.name}.js"
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// sourceMap = true
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// moduleKind = "umd"
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// main = "call"
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// }
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//}
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@ -14,9 +14,9 @@ class MetaDelegateTest {
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fun delegateTest() {
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fun delegateTest() {
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val testObject = object : Specification {
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val testObject = object : Specification {
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override val config: Config = Config()
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override val config: Config = Config()
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var myValue by string()
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var myValue by config.string()
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var safeValue by number(2.2)
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var safeValue by config.number(2.2)
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var enumValue by enum(TestEnum.YES)
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var enumValue by config.enum(TestEnum.YES)
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}
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}
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testObject.config["myValue"] = "theString"
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testObject.config["myValue"] = "theString"
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testObject.enumValue = TestEnum.NO
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testObject.enumValue = TestEnum.NO
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@ -1,8 +1,5 @@
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import org.openjfx.gradle.JavaFXOptions
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plugins {
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plugins {
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kotlin("multiplatform")
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kotlin("multiplatform")
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id("org.openjfx.javafxplugin")
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}
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}
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kotlin {
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kotlin {
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@ -26,7 +23,3 @@ kotlin {
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}
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}
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}
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}
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}
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}
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configure<JavaFXOptions>{
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modules("javafx.controls")
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}
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@ -1,4 +1,3 @@
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import org.jetbrains.kotlin.gradle.tasks.KotlinCompile
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import org.openjfx.gradle.JavaFXOptions
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import org.openjfx.gradle.JavaFXOptions
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plugins {
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plugins {
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@ -7,6 +6,7 @@ plugins {
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}
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}
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dependencies {
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dependencies {
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api(project(":dataforge-vis"))
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api(project(":dataforge-vis:dataforge-vis-spatial"))
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api(project(":dataforge-vis:dataforge-vis-spatial"))
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api("no.tornado:tornadofx:1.7.18")
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api("no.tornado:tornadofx:1.7.18")
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implementation("org.fxyz3d:fxyz3d:0.4.0")
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implementation("org.fxyz3d:fxyz3d:0.4.0")
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@ -15,9 +15,3 @@ dependencies{
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configure<JavaFXOptions> {
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configure<JavaFXOptions> {
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modules("javafx.controls")
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modules("javafx.controls")
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}
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}
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tasks.withType<KotlinCompile> {
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kotlinOptions{
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jvmTarget = "1.8"
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}
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}
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@ -1,5 +1,8 @@
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package hep.dataforge.vis
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package hep.dataforge.vis
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import hep.dataforge.meta.*
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import hep.dataforge.names.Name
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import hep.dataforge.names.toName
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import javafx.beans.binding.ObjectBinding
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import javafx.beans.binding.ObjectBinding
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import tornadofx.*
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import tornadofx.*
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@ -1,6 +1,12 @@
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package hep.dataforge.vis.spatial
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package hep.dataforge.vis.spatial
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import hep.dataforge.context.Context
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import hep.dataforge.io.Output
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import hep.dataforge.meta.Meta
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import hep.dataforge.vis.DisplayGroup
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import hep.dataforge.vis.DisplayObjectPropertyListener
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import hep.dataforge.vis.DisplayObjectPropertyListener
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import hep.dataforge.vis.float
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import hep.dataforge.vis.transform
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import javafx.scene.Group
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import javafx.scene.Group
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import javafx.scene.Node
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import javafx.scene.Node
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import org.fxyz3d.shapes.primitives.CuboidMesh
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import org.fxyz3d.shapes.primitives.CuboidMesh
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@ -22,7 +28,7 @@ class FX3DOutput(override val context: Context) : Output<Any> {
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val y = listener["y"].float()
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val y = listener["y"].float()
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val z = listener["z"].float()
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val z = listener["z"].float()
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val center = objectBinding(x, y, z) {
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val center = objectBinding(x, y, z) {
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Point3D(x.value ?: 0f, y.value ?: 0f, z.value ?: 0f)
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org.fxyz3d.geometry.Point3D(x.value ?: 0f, y.value ?: 0f, z.value ?: 0f)
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}
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}
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when (obj) {
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when (obj) {
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is DisplayGroup3D -> Group(obj.children.map { buildNode(it) }).apply {
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is DisplayGroup3D -> Group(obj.children.map { buildNode(it) }).apply {
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@ -1,5 +1,10 @@
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package hep.dataforge.vis.spatial
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package hep.dataforge.vis.spatial
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import hep.dataforge.meta.MetaItem
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import hep.dataforge.meta.double
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import hep.dataforge.meta.get
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import hep.dataforge.meta.int
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import hep.dataforge.values.ValueType
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import javafx.scene.paint.Color
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import javafx.scene.paint.Color
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import javafx.scene.paint.Material
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import javafx.scene.paint.Material
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import javafx.scene.paint.PhongMaterial
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import javafx.scene.paint.PhongMaterial
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@ -51,11 +56,12 @@ fun MetaItem<*>.color(): Color {
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/**
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/**
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* Infer FX material based on meta item
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* Infer FX material based on meta item
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*/
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*/
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fun MetaItem<*>.material(): Material {
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fun MetaItem<*>?.material(): Material {
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return when (this) {
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return when (this) {
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null -> Materials.GREY
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is MetaItem.ValueItem -> PhongMaterial(color())
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is MetaItem.ValueItem -> PhongMaterial(color())
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is MetaItem.NodeItem -> PhongMaterial().apply {
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is MetaItem.NodeItem -> PhongMaterial().apply {
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node["color"]?.let { diffuseColor = it.color() }
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(node["color"]?: this@material).let { diffuseColor = it.color() }
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node["specularColor"]?.let { specularColor = it.color() }
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node["specularColor"]?.let { specularColor = it.color() }
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}
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}
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}
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}
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@ -1,5 +1,8 @@
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package hep.dataforge.vis.spatial
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package hep.dataforge.vis.spatial
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import hep.dataforge.context.Global
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import hep.dataforge.meta.number
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import hep.dataforge.vis.DisplayGroup
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import javafx.scene.Parent
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import javafx.scene.Parent
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import kotlinx.coroutines.GlobalScope
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import kotlinx.coroutines.GlobalScope
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import kotlinx.coroutines.delay
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import kotlinx.coroutines.delay
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@ -0,0 +1,59 @@
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package hep.dataforge.vis.spatial
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import hep.dataforge.meta.MetaItem
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import hep.dataforge.meta.double
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import hep.dataforge.meta.get
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import hep.dataforge.meta.int
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import hep.dataforge.values.ValueType
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import info.laht.threekt.materials.Material
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import info.laht.threekt.materials.MeshPhongMaterial
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import info.laht.threekt.math.Color
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import info.laht.threekt.math.ColorConstants
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object Materials {
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val DEFAULT = MeshPhongMaterial().apply {
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this.color.set(ColorConstants.darkgreen)
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}
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}
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/**
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* Infer color based on meta item
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*/
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fun MetaItem<*>.color(): Color {
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return when (this) {
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is MetaItem.ValueItem -> if (this.value.type == ValueType.STRING) {
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Color(this.value.string)
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} else {
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val int = value.number.toInt()
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val red = int and 0x00ff0000 shr 16
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val green = int and 0x0000ff00 shr 8
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val blue = int and 0x000000ff
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Color(red, green, blue)
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}
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is MetaItem.NodeItem -> {
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Color(
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node["red"]?.int ?: 0,
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node["green"]?.int ?: 0,
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node["blue"]?.int ?: 0
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)
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}
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}
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}
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/**
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* Infer FX material based on meta item
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*/
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fun MetaItem<*>?.material(): Material {
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return when (this) {
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null -> Materials.DEFAULT
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is MetaItem.ValueItem -> MeshPhongMaterial().apply {
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color = this@material.color()
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}
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is MetaItem.NodeItem -> MeshPhongMaterial().apply {
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(node["color"] ?: this@material).let { color = it.color() }
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opacity = node["opacity"]?.double ?: 1.0
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node["specularColor"]?.let { specular = it.color() }
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}
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}
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}
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@ -4,6 +4,7 @@ import hep.dataforge.context.Global
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import hep.dataforge.meta.number
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import hep.dataforge.meta.number
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import hep.dataforge.vis.ApplicationBase
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import hep.dataforge.vis.ApplicationBase
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import hep.dataforge.vis.DisplayGroup
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import hep.dataforge.vis.DisplayGroup
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import info.laht.threekt.external.controls.OrbitControls
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import kotlinx.coroutines.GlobalScope
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import kotlinx.coroutines.GlobalScope
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import kotlinx.coroutines.delay
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import kotlinx.coroutines.delay
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import kotlinx.coroutines.isActive
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import kotlinx.coroutines.isActive
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@ -17,9 +18,9 @@ class ThreeDemoApp : ApplicationBase() {
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override val stateKeys: List<String> = emptyList()
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override val stateKeys: List<String> = emptyList()
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override fun start(state: Map<String, Any>) {
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override fun start(state: Map<String, Any>) {
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println("started")
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val renderer = ThreeOutput(Global)
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val renderer = ThreeOutput(Global)
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document.getElementById("canvas")?.appendChild(renderer.root)
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renderer.start(document.getElementById("canvas")!!)
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println("started")
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lateinit var group: DisplayGroup
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lateinit var group: DisplayGroup
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@ -3,17 +3,25 @@ package hep.dataforge.vis.spatial
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import hep.dataforge.context.Context
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import hep.dataforge.context.Context
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import hep.dataforge.io.Output
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import hep.dataforge.io.Output
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import hep.dataforge.meta.Meta
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import hep.dataforge.meta.Meta
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import hep.dataforge.meta.get
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import hep.dataforge.vis.DisplayGroup
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import hep.dataforge.vis.DisplayGroup
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import info.laht.threekt.WebGLRenderer
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import info.laht.threekt.WebGLRenderer
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import info.laht.threekt.cameras.PerspectiveCamera
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import info.laht.threekt.cameras.PerspectiveCamera
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import info.laht.threekt.core.BufferGeometry
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import info.laht.threekt.core.Object3D
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import info.laht.threekt.core.Object3D
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import info.laht.threekt.external.controls.OrbitControls
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import info.laht.threekt.external.controls.OrbitControls
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import info.laht.threekt.extras.curves.CatmullRomCurve3
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import info.laht.threekt.geometries.BoxBufferGeometry
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import info.laht.threekt.geometries.BoxBufferGeometry
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import info.laht.threekt.lights.AmbientLight
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import info.laht.threekt.lights.AmbientLight
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import info.laht.threekt.materials.LineBasicMaterial
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||||||
|
import info.laht.threekt.materials.MeshBasicMaterial
|
||||||
import info.laht.threekt.materials.MeshPhongMaterial
|
import info.laht.threekt.materials.MeshPhongMaterial
|
||||||
import info.laht.threekt.math.ColorConstants
|
import info.laht.threekt.math.ColorConstants
|
||||||
|
import info.laht.threekt.math.Vector3
|
||||||
|
import info.laht.threekt.objects.Line
|
||||||
import info.laht.threekt.objects.Mesh
|
import info.laht.threekt.objects.Mesh
|
||||||
import info.laht.threekt.scenes.Scene
|
import info.laht.threekt.scenes.Scene
|
||||||
|
import org.w3c.dom.Element
|
||||||
import kotlin.browser.window
|
import kotlin.browser.window
|
||||||
|
|
||||||
class ThreeOutput(override val context: Context) : Output<Any> {
|
class ThreeOutput(override val context: Context) : Output<Any> {
|
||||||
@ -23,28 +31,39 @@ class ThreeOutput(override val context: Context) : Output<Any> {
|
|||||||
setSize(window.innerWidth, window.innerHeight)
|
setSize(window.innerWidth, window.innerHeight)
|
||||||
}
|
}
|
||||||
|
|
||||||
private val scene: Scene = Scene().apply {
|
val scene: Scene = Scene().apply {
|
||||||
add(AmbientLight())
|
add(AmbientLight())
|
||||||
}
|
}
|
||||||
private val camera = PerspectiveCamera(
|
|
||||||
|
val camera = PerspectiveCamera(
|
||||||
75,
|
75,
|
||||||
window.innerWidth.toDouble() / window.innerHeight,
|
window.innerWidth.toDouble() / window.innerHeight,
|
||||||
0.1,
|
0.1,
|
||||||
10000
|
10000
|
||||||
).apply {
|
).apply {
|
||||||
position.z = 4500.0
|
position.setZ(1000)
|
||||||
}
|
}
|
||||||
|
|
||||||
private val controls: OrbitControls = OrbitControls(camera, renderer.domElement)
|
val controls: OrbitControls = OrbitControls(camera, renderer.domElement)
|
||||||
|
|
||||||
val root by lazy {
|
val root get() = renderer.domElement
|
||||||
|
|
||||||
|
private fun animate() {
|
||||||
|
window.requestAnimationFrame {
|
||||||
|
animate()
|
||||||
|
}
|
||||||
|
renderer.render(scene, camera)
|
||||||
|
}
|
||||||
|
|
||||||
|
fun start(element: Element) {
|
||||||
window.addEventListener("resize", {
|
window.addEventListener("resize", {
|
||||||
camera.aspect = window.innerWidth.toDouble() / window.innerHeight;
|
camera.aspect = window.innerWidth.toDouble() / window.innerHeight;
|
||||||
camera.updateProjectionMatrix();
|
camera.updateProjectionMatrix();
|
||||||
|
|
||||||
renderer.setSize(window.innerWidth, window.innerHeight)
|
renderer.setSize(window.innerWidth, window.innerHeight)
|
||||||
}, false)
|
}, false)
|
||||||
renderer.domElement
|
element.appendChild(root)
|
||||||
|
animate()
|
||||||
}
|
}
|
||||||
|
|
||||||
|
|
||||||
@ -65,12 +84,10 @@ class ThreeOutput(override val context: Context) : Output<Any> {
|
|||||||
this.translateZ(obj.z)
|
this.translateZ(obj.z)
|
||||||
}
|
}
|
||||||
is Box -> {
|
is Box -> {
|
||||||
|
//TODO add bindings
|
||||||
val geometry = BoxBufferGeometry(obj.xSize, obj.ySize, obj.zSize)
|
val geometry = BoxBufferGeometry(obj.xSize, obj.ySize, obj.zSize)
|
||||||
.translate(obj.x, obj.y, obj.z)
|
.translate(obj.x, obj.y, obj.z)
|
||||||
val material = MeshPhongMaterial().apply {
|
Mesh(geometry, obj.properties["color"].material())
|
||||||
this.color.set(ColorConstants.darkgreen)
|
|
||||||
}
|
|
||||||
Mesh(geometry, material)
|
|
||||||
}
|
}
|
||||||
else -> {
|
else -> {
|
||||||
logger.error { "No renderer defined for ${obj::class}" }
|
logger.error { "No renderer defined for ${obj::class}" }
|
||||||
@ -92,7 +109,7 @@ class ThreeOutput(override val context: Context) : Output<Any> {
|
|||||||
|
|
||||||
// init {
|
// init {
|
||||||
// val cube: Mesh
|
// val cube: Mesh
|
||||||
|
//
|
||||||
// cube = Mesh(
|
// cube = Mesh(
|
||||||
// BoxBufferGeometry(1, 1, 1),
|
// BoxBufferGeometry(1, 1, 1),
|
||||||
// MeshPhongMaterial().apply {
|
// MeshPhongMaterial().apply {
|
||||||
@ -125,16 +142,6 @@ class ThreeOutput(override val context: Context) : Output<Any> {
|
|||||||
//
|
//
|
||||||
// // Create the final object to add to the scene
|
// // Create the final object to add to the scene
|
||||||
// Line(geometry, material).apply(scene::add)
|
// Line(geometry, material).apply(scene::add)
|
||||||
|
|
||||||
// }
|
|
||||||
|
|
||||||
// fun animate() {
|
|
||||||
// window.requestAnimationFrame {
|
|
||||||
// cube.rotation.x += 0.01
|
|
||||||
// cube.rotation.y += 0.01
|
|
||||||
// animate()
|
|
||||||
// }
|
|
||||||
// renderer.render(scene, camera)
|
|
||||||
// }
|
// }
|
||||||
|
|
||||||
}
|
}
|
@ -4,26 +4,7 @@ plugins {
|
|||||||
|
|
||||||
kotlin {
|
kotlin {
|
||||||
jvm()
|
jvm()
|
||||||
js {
|
js()
|
||||||
configure(listOf(compilations["main"], compilations["test"])) {
|
|
||||||
tasks.getByName(compileKotlinTaskName) {
|
|
||||||
kotlinOptions {
|
|
||||||
metaInfo = true
|
|
||||||
sourceMap = true
|
|
||||||
sourceMapEmbedSources = "always"
|
|
||||||
moduleKind = "umd"
|
|
||||||
}
|
|
||||||
}
|
|
||||||
}
|
|
||||||
|
|
||||||
configure(listOf(compilations["main"])) {
|
|
||||||
tasks.getByName(compileKotlinTaskName) {
|
|
||||||
kotlinOptions {
|
|
||||||
main = "call"
|
|
||||||
}
|
|
||||||
}
|
|
||||||
}
|
|
||||||
}
|
|
||||||
|
|
||||||
sourceSets {
|
sourceSets {
|
||||||
val commonMain by getting {
|
val commonMain by getting {
|
||||||
|
Loading…
Reference in New Issue
Block a user