519 lines
26 KiB
Groovy
519 lines
26 KiB
Groovy
import java.time.LocalDateTime
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import org.apache.tools.ant.taskdefs.condition.Os
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import static groovy.io.FileType.*
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task jpackageSanityChecks {
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description 'Interactive sanity checks on the version of the code that will be packaged'
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doLast {
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executeCmd("git --no-pager log -5 --oneline")
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ant.input(message: "Above you see the current HEAD and its recent history.\n" +
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"Is this the right commit for packaging? (y=continue, n=abort)",
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addproperty: "sanity-check-1",
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validargs: "y,n")
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if (ant.properties['sanity-check-1'] == 'n') {
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ant.fail('Aborting')
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}
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executeCmd("git status --short --branch")
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ant.input(message: "Above you see any local changes that are not in the remote branch.\n" +
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"If you have any local changes, please abort, get them merged, get the latest branch and try again.\n" +
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"Continue with packaging? (y=continue, n=abort)",
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addproperty: "sanity-check-2",
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validargs: "y,n")
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if (ant.properties['sanity-check-2'] == 'n') {
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ant.fail('Aborting')
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}
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// TODO Evtl check programmatically in gradle (i.e. fail if below v11)
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executeCmd("java --version")
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ant.input(message: "Above you see the installed java version, which will be used to compile and build Bisq.\n" +
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"Is this java version ok for that? (y=continue, n=abort)",
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addproperty: "sanity-check-3",
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validargs: "y,n")
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if (ant.properties['sanity-check-3'] == 'n') {
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ant.fail('Aborting')
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}
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}
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}
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task getJavaBinariesDownloadURLs {
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description 'Find out which JDK will be used for jpackage and prepare to download it'
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dependsOn 'jpackageSanityChecks'
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doLast {
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// The build directory will be deleted next time the clean task runs
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// Therefore, we can use it to store any temp files (separate JDK for jpackage, etc) and resulting build artefacts
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// We create a temp folder in the build directory which holds all jpackage-related artefacts (not just the final installers)
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String tempRootDirName = 'temp-' + LocalDateTime.now().format('yyyy.MM.dd-HHmmssSSS')
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File tempRootDir = new File(project.buildDir, tempRootDirName)
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tempRootDir.mkdirs()
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ext.tempRootDir = tempRootDir
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println "Created temp root folder " + tempRootDir
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File binariesFolderPath = new File(tempRootDir, "binaries")
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binariesFolderPath.mkdirs()
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ext.binariesFolderPath = binariesFolderPath
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// TODO Extend script logic to alternatively allow a local (separate, v14+) JDK for jpackage
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// TODO Another option is to use the local JDK for everything: build jars and use jpackage (but then it has to be v14+)
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// Define the download URLs (and associated binary hashes) for the JDK used to package the installers
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// These JDKs are independent of what is installed on the building system
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//
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// If these specific versions are not hosted by AdoptOpenJDK anymore, or if different versions are desired,
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// simply update the links and associated hashes below
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//
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// See https://adoptopenjdk.net/releases.html?variant=openjdk15&jvmVariant=hotspot for latest download URLs
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// On the download page linked above, filter as follows to get the binary URL + associated SHA256:
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// - architecture: x64
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// - operating system:
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// -- linux ( -> use the tar.gz JDK link)
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// -- macOS ( -> use the tar.gz JDK link)
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// -- windows ( -> use the .zip JDK link)
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Map jdk15Binaries = [
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'linux' : 'https://github.com/AdoptOpenJDK/openjdk15-binaries/releases/download/jdk-15.0.2%2B7/OpenJDK15U-jdk_x64_linux_hotspot_15.0.2_7.tar.gz',
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'linux-sha256' : '94f20ca8ea97773571492e622563883b8869438a015d02df6028180dd9acc24d',
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'mac' : 'https://github.com/AdoptOpenJDK/openjdk15-binaries/releases/download/jdk-15.0.2%2B7/OpenJDK15U-jdk_x64_mac_hotspot_15.0.2_7.tar.gz',
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'mac-sha256' : 'd358a7ff03905282348c6c80562a4da2e04eb377b60ad2152be4c90f8d580b7f',
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'windows' : 'https://github.com/AdoptOpenJDK/openjdk15-binaries/releases/download/jdk-15.0.2%2B7/OpenJDK15U-jdk_x64_windows_hotspot_15.0.2_7.zip',
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'windows-sha256': 'b80dde2b7f8374eff0f1726c1cbdb48fb095fdde21489046d92f7144baff5741'
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// TODO For some reason, using "--runtime-image jdk-11" does NOT work with a v15 jpackage, but works with v14
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]
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String osKey
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if (Os.isFamily(Os.FAMILY_WINDOWS)) {
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osKey = 'windows'
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} else if (Os.isFamily(Os.FAMILY_MAC)) {
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osKey = 'mac'
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} else {
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osKey = 'linux'
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}
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ext.jdk15Binary_DownloadURL = jdk15Binaries[osKey]
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ext.jdk15Binary_SHA256Hash = jdk15Binaries[osKey + '-sha256']
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}
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}
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task retrieveAndExtractJavaBinaries {
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description 'Retrieve necessary Java binaries and extract them'
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dependsOn 'getJavaBinariesDownloadURLs'
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doLast {
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File tempRootDir = getJavaBinariesDownloadURLs.property("tempRootDir") as File
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// Folder where the jpackage JDK archive will be downloaded and extracted
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String jdkForJpackageDirName = "jdk-jpackage"
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File jdkForJpackageDir = new File(tempRootDir, jdkForJpackageDirName)
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jdkForJpackageDir.mkdirs()
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String jdkForJpackageArchiveURL = getJavaBinariesDownloadURLs.property('jdk15Binary_DownloadURL')
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String jdkForJpackageArchiveHash = getJavaBinariesDownloadURLs.property('jdk15Binary_SHA256Hash')
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String jdkForJpackageArchiveFileName = jdkForJpackageArchiveURL.tokenize('/').last()
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File jdkForJpackageFile = new File(jdkForJpackageDir, jdkForJpackageArchiveFileName)
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// Download necessary JDK binaries + verify hash
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ext.downloadAndVerifyArchive(jdkForJpackageArchiveURL, jdkForJpackageArchiveHash, jdkForJpackageFile)
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// Extract them
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String jpackageBinaryFileName
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if (Os.isFamily(Os.FAMILY_WINDOWS)) {
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ext.extractArchiveZip(jdkForJpackageFile, jdkForJpackageDir)
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jpackageBinaryFileName = 'jpackage.exe'
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} else {
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ext.extractArchiveTarGz(jdkForJpackageFile, jdkForJpackageDir)
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jpackageBinaryFileName = 'jpackage'
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}
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// Find jpackage in the newly extracted JDK
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// Don't rely on hardcoded paths to reach it, because the path depends on the version and platform
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jdkForJpackageDir.traverse(type: FILES, nameFilter: jpackageBinaryFileName) {
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println 'Using jpackage binary from ' + it
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ext.jpackageFilePath = it.path
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}
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}
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ext.downloadAndVerifyArchive = { String archiveURL, String archiveSHA256, File destinationArchiveFile ->
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println "Downloading ${archiveURL}"
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ant.get(src: archiveURL, dest: destinationArchiveFile)
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println 'Download saved to ' + destinationArchiveFile
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println 'Verifying checksum for downloaded binary ...'
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ant.jdkHash = archiveSHA256
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ant.checksum(file: destinationArchiveFile, algorithm: 'SHA-256', property: '${jdkHash}', verifyProperty: 'hashMatches')
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if (ant.properties['hashMatches'] != 'true') {
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ant.fail('Checksum mismatch: Downloaded JDK binary has a different checksum than expected')
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}
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println 'Checksum verified'
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}
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ext.extractArchiveTarGz = { File tarGzFile, File destinationDir ->
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println "Extracting tar.gz ${tarGzFile}"
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// Gradle's tar extraction preserves permissions (crucial for jpackage to function correctly)
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copy {
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from tarTree(resources.gzip(tarGzFile))
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into destinationDir
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}
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println "Extracted to ${destinationDir}"
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}
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ext.extractArchiveZip = { File zipFile, File destinationDir ->
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println "Extracting zip ${zipFile}..."
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ant.unzip(src: zipFile, dest: destinationDir)
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println "Extracted to ${destinationDir}"
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}
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}
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task packageInstallers {
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description 'Call jpackage to prepare platform-specific binaries for this platform'
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dependsOn 'retrieveAndExtractJavaBinaries'
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// Clean all previous artefacts and create a fresh shadowJar for the installers
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dependsOn rootProject.clean
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dependsOn ':desktop:shadowJar'
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doLast {
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String jPackageFilePath = retrieveAndExtractJavaBinaries.property('jpackageFilePath')
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File binariesFolderPath = file(getJavaBinariesDownloadURLs.property('binariesFolderPath'))
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File tempRootDir = getJavaBinariesDownloadURLs.property("tempRootDir") as File
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// The jpackageTempDir stores temp files used by jpackage for building the installers
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// It can be inspected in order to troubleshoot the packaging process
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File jpackageTempDir = new File(tempRootDir, "jpackage-temp")
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jpackageTempDir.mkdirs()
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// ALL contents of this folder will be included in the resulting installers
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// However, the fat jar is the only one we need
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// Therefore, this location should point to a folder that ONLY contains the fat jar
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// If later we will need to include other non-jar resources, we can do that by adding --resource-dir to the jpackage opts
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String fatJarFolderPath = "${project(':desktop').buildDir}/libs/fatJar"
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String mainJarName = shadowJar.getArchiveFileName().get()
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delete(fatJarFolderPath)
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mkdir(fatJarFolderPath)
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copy {
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from "${project(':desktop').buildDir}/libs/${mainJarName}"
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into fatJarFolderPath
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}
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// We convert the fat jar into a deterministic one by stripping out comments with date, etc.
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// jar file created from https://github.com/ManfredKarrer/tools
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executeCmd("java -jar \"${project(':desktop').projectDir}/package/tools-1.0.jar\" ${fatJarFolderPath}/${mainJarName}")
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// Store deterministic jar SHA-256
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ant.checksum(file: "${fatJarFolderPath}/${mainJarName}", algorithm: 'SHA-256')
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copy {
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from "${fatJarFolderPath}/${mainJarName}.SHA-256"
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into binariesFolderPath
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}
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// TODO For non-modular applications: use jlink to create a custom runtime containing only the modules required
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// See jpackager argument documentation:
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// https://docs.oracle.com/en/java/javase/15/docs/specs/man/jpackage.html
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// Remove the -SNAPSHOT suffix from the version string (originally defined in build.gradle)
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// Having it in would have resulted in an invalid version property for several platforms (mac, linux/rpm)
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String appVersion = version.replaceAll("-SNAPSHOT", "")
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println "Packaging Bisq version ${appVersion}"
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// zip jar lib for Raspberry Pi only on macOS as there are path issues on Windows and it is only needed once
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// for the release
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if (Os.isFamily(Os.FAMILY_MAC)) {
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println "Zipping jar lib for raspberry pi"
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ant.zip(basedir: "${project(':desktop').buildDir}/app/lib",
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destfile: "${binariesFolderPath}/jar-lib-for-raspberry-pi-${appVersion}.zip")
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}
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String appDescription = 'A decentralized bitcoin exchange network.'
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String appCopyright = '© 2021 Bisq'
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String appNameAndVendor = 'Bisq'
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String commonOpts = new String(
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// Generic options
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" --dest \"${binariesFolderPath}\"" +
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" --name ${appNameAndVendor}" +
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" --description \"${appDescription}\"" +
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" --app-version ${appVersion}" +
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" --copyright \"${appCopyright}\"" +
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" --vendor ${appNameAndVendor}" +
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" --temp \"${jpackageTempDir}\"" +
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// Options for creating the application image
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" --input ${fatJarFolderPath}" +
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// Options for creating the application launcher
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" --main-jar ${mainJarName}" +
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" --main-class bisq.desktop.app.BisqAppMain" +
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" --java-options -Xss1280k" +
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" --java-options -XX:MaxRAM=4g" +
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" --java-options -Djava.net.preferIPv4Stack=true"
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// Warning: this will cause guice reflection exceptions and lead to issues with the guice internal cache
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// resulting in the UI not loading
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// " --java-options -Djdk.module.illegalAccess=deny" +
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)
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if (Os.isFamily(Os.FAMILY_WINDOWS)) {
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// TODO Found no benefit in using --resource-dir "..package/windows", it has the same outcome as opts below
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String windowsOpts = new String(
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" --icon \"${project(':desktop').projectDir}/package/windows/Bisq.ico\"" +
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" --resource-dir \"${project(':desktop').projectDir}/package/windows\"" +
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" --win-dir-chooser" +
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" --win-per-user-install" +
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" --win-menu" +
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" --win-shortcut"
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)
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executeCmd(jPackageFilePath + commonOpts + windowsOpts + " --type exe")
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// Set the necessary permissions before calling signtool
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executeCmd("\"attrib -R \"${binariesFolderPath}/Bisq-${appVersion}.exe\"\"")
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// In addition to the groovy quotes around the string, the entire Windows command must also be surrounded
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// by quotes, plus each path inside the command has to be quoted as well
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// Reason for this is that the path to the called executable contains spaces
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// See https://stackoverflow.com/questions/6376113/how-do-i-use-spaces-in-the-command-prompt/6378038#6378038
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executeCmd("\"\"C:\\Program Files (x86)\\Windows Kits\\10\\App Certification Kit\\signtool.exe\" sign /v /fd SHA256 /a \"${binariesFolderPath}/Bisq-${appVersion}.exe\"\"")
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} else if (Os.isFamily(Os.FAMILY_MAC)) {
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// See https://docs.oracle.com/en/java/javase/14/jpackage/override-jpackage-resources.html
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// for details of "--resource-dir"
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String macOpts = new String(
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" --resource-dir \"${project(':desktop').projectDir}/package/macosx\""
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)
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// Env variable can be set by calling "export BISQ_PACKAGE_SIGNING_IDENTITY='Some value'"
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// See "man codesign" for details about the expected signing identity
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String envVariableSigningID = "$System.env.BISQ_PACKAGE_SIGNING_IDENTITY"
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println "Environment variable BISQ_PACKAGE_SIGNING_IDENTITY is: ${envVariableSigningID}"
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ant.input(message: "Sign the app using the above signing identity? (y=yes, n=no)",
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addproperty: "macos-sign-check",
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validargs: "y,n")
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if (ant.properties['macos-sign-check'] == 'y') {
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// Create a temp folder to extract the macos-specific dylibs that need to be signed
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File tempDylibFolderPath = new File(tempRootDir, "dylibs-to-sign")
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tempDylibFolderPath.mkdirs()
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// Dylibs relevant for signing (paths relative to the tempDylibFolderPath)
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String dylibsToSign = new String(
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" libjavafx_iio.dylib" +
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" libglass.dylib" +
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" libjavafx_font.dylib" +
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" libprism_common.dylib" +
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" libprism_es2.dylib" +
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" libdecora_sse.dylib" +
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" libprism_sw.dylib" +
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" META-INF/native/libio_grpc_netty_shaded_netty_tcnative_osx_x86_64.jnilib"
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)
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// macOS step 1: Sign dylibs and replace them in the shadow jar
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// Extract dylibss for signing
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executeCmd("cd ${tempDylibFolderPath} &&" +
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" jar xf ${fatJarFolderPath}/${mainJarName}" +
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dylibsToSign)
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// Sign them
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executeCmd("cd ${tempDylibFolderPath} &&" +
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" codesign -vvv --options runtime --deep --force --sign \"${envVariableSigningID}\"" +
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dylibsToSign)
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// Verify signature
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executeCmd("cd ${tempDylibFolderPath} &&" +
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" codesign -vvv --deep --strict " + dylibsToSign)
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// Replace unsigned files in jar file
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executeCmd("cd ${tempDylibFolderPath} &&" +
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" jar uf ${fatJarFolderPath}/${mainJarName}" +
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dylibsToSign)
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// macOS step 2: Build app-image using the shadow jar above (containing signed dylibs)
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// NOTE: licensing file cannot be added at this point only when creating the dmg later
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executeCmd(jPackageFilePath +
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commonOpts +
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macOpts +
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" --type app-image")
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// macOS step 3: Sign app (hardended runtime)
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File bisqAppImageFullPath = new File(binariesFolderPath, "Bisq.app")
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executeCmd("codesign" +
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" --sign \"${envVariableSigningID}\"" +
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" --options runtime" +
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" --entitlements '${project(':desktop').projectDir}/package/macosx/macos.entitlements'" +
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" --force" +
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" --verbose" +
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" ${bisqAppImageFullPath}/Contents/runtime/Contents/MacOS/libjli.dylib")
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executeCmd("codesign" +
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" --sign \"${envVariableSigningID}\"" +
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" --options runtime" +
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" --entitlements '${project(':desktop').projectDir}/package/macosx/macos.entitlements'" +
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" --force" +
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" --verbose" +
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" ${bisqAppImageFullPath}/Contents/MacOS/Bisq")
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executeCmd("codesign" +
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" --sign \"${envVariableSigningID}\"" +
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" --options runtime" +
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" --entitlements '${project(':desktop').projectDir}/package/macosx/macos.entitlements'" +
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" --force" +
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" --verbose" +
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" ${bisqAppImageFullPath}")
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// macOS step 4: Package the app-image into a dmg bundle
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executeCmd(jPackageFilePath +
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" --dest \"${binariesFolderPath}\"" +
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" --name ${appNameAndVendor}" +
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" --description \"${appDescription}\"" +
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" --app-version ${appVersion}" +
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" --copyright \"${appCopyright}\"" +
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" --vendor ${appNameAndVendor}" +
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" --temp \"${jpackageTempDir}\"" +
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" --app-image ${bisqAppImageFullPath}" +
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" --mac-sign" +
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macOpts +
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" --type dmg")
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// macOS step 5: Delete unused app image
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delete(bisqAppImageFullPath)
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// macOS step 6: Sign dmg bundle
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executeCmd("codesign" +
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" --sign \"${envVariableSigningID}\"" +
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" --options runtime" +
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" --entitlements '${project(':desktop').projectDir}/package/macosx/macos.entitlements'" +
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" -vvvv" +
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" --deep" +
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" '${binariesFolderPath}/Bisq-${appVersion}.dmg'")
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// macOS step 7: Upload for notarization
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// See https://developer.apple.com/documentation/xcode/notarizing_macos_software_before_distribution/customizing_the_notarization_workflow#3087734
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String envVariableAcUsername = "$System.env.BISQ_PACKAGE_NOTARIZATION_AC_USERNAME"
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String envVariableAscProvider = "$System.env.BISQ_PACKAGE_NOTARIZATION_ASC_PROVIDER"
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// e.g. network.bisq.CAT is used when binaries are built by @ripcurlx
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String envVariablePrimaryBundleId = "$System.env.BISQ_PRIMARY_BUNDLE_ID"
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def uploadForNotarizationOutput = executeCmd("xcrun altool --notarize-app" +
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" --primary-bundle-id '${envVariablePrimaryBundleId}'" +
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" --username '${envVariableAcUsername}'" +
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" --password '@keychain:AC_PASSWORD'" +
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" --asc-provider '${envVariableAscProvider}'" +
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" --file '${binariesFolderPath}/Bisq-${appVersion}.dmg'")
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// Response:
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// No errors uploading '[PATH_TO_BISQ_REPO]/bisq/desktop/build/temp-620637000/binaries/Bisq-1.1.1.dmg'.
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// RequestUUID = ea8bba77-97b7-4c15-a53f-8bbccf627190
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def requestUUID = uploadForNotarizationOutput.split('RequestUUID = ')[1].trim()
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println "Extracted RequestUUID: " + requestUUID
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// Every 1 minute, check the status
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def notarizationEndedInSuccess = false
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def notarizationEndedInFailure = false
|
|
while (!(notarizationEndedInSuccess || notarizationEndedInFailure)) {
|
|
println "Current time is:"
|
|
executeCmd('date')
|
|
println "Waiting for 1 minute..."
|
|
sleep(1 * 60 * 1000)
|
|
|
|
println "Checking notarization status"
|
|
|
|
def checkNotarizationStatusOutput = executeCmd("xcrun altool --notarization-info" +
|
|
" '${requestUUID}'" +
|
|
" --username '${envVariableAcUsername}'" +
|
|
" --password '@keychain:AC_PASSWORD'")
|
|
|
|
notarizationEndedInSuccess = checkNotarizationStatusOutput.contains('success')
|
|
notarizationEndedInFailure = checkNotarizationStatusOutput.contains('invalid')
|
|
}
|
|
|
|
if (notarizationEndedInFailure) {
|
|
ant.fail('Notarization failed, aborting')
|
|
}
|
|
|
|
if (notarizationEndedInSuccess) {
|
|
println "Notarization was successful"
|
|
|
|
// macOS step 8: Staple ticket on dmg
|
|
executeCmd("xcrun stapler staple" +
|
|
" '${binariesFolderPath}/Bisq-${appVersion}.dmg'")
|
|
}
|
|
|
|
} else {
|
|
// If user didn't confirm the optional signing step, then generate a plain non-signed dmg
|
|
executeCmd(jPackageFilePath + commonOpts + macOpts + " --type dmg")
|
|
}
|
|
} else {
|
|
String linuxOpts = new String(
|
|
" --icon ${project(':desktop').projectDir}/package/linux/icon.png" +
|
|
|
|
// This defines the first part of the resulting packages (the application name)
|
|
// deb requires lowercase letters, therefore the application name is written in lowercase
|
|
" --linux-package-name bisq" +
|
|
|
|
// This represents the linux package version (revision)
|
|
// By convention, this is part of the deb/rpm package names, in addition to the software version
|
|
" --linux-app-release 1" +
|
|
|
|
" --linux-menu-group Network" +
|
|
" --linux-shortcut"
|
|
)
|
|
|
|
// Package deb
|
|
executeCmd(jPackageFilePath + commonOpts + linuxOpts +
|
|
" --linux-deb-maintainer noreply@bisq.network" +
|
|
" --type deb")
|
|
|
|
// Clean jpackage temp folder, needs to be empty for the next packaging step (rpm)
|
|
jpackageTempDir.deleteDir()
|
|
jpackageTempDir.mkdirs()
|
|
|
|
// Package rpm
|
|
executeCmd(jPackageFilePath + commonOpts + linuxOpts +
|
|
" --linux-rpm-license-type AGPLv3" + // https://fedoraproject.org/wiki/Licensing:Main?rd=Licensing#Good_Licenses
|
|
" --type rpm")
|
|
}
|
|
|
|
// Env variable can be set by calling "export BISQ_SHARED_FOLDER='Some value'"
|
|
// This is to copy the final binary/ies to a shared folder for further processing if a VM is used.
|
|
String envVariableSharedFolder = "$System.env.BISQ_SHARED_FOLDER"
|
|
println "Environment variable BISQ_SHARED_FOLDER is: ${envVariableSharedFolder}"
|
|
ant.input(message: "Copy the created binary to a shared folder? (y=yes, n=no)",
|
|
addproperty: "copy-to-shared-folder",
|
|
validargs: "y,n")
|
|
if (ant.properties['copy-to-shared-folder'] == 'y') {
|
|
copy {
|
|
from binariesFolderPath
|
|
into envVariableSharedFolder
|
|
}
|
|
executeCmd("open " + envVariableSharedFolder)
|
|
}
|
|
|
|
println "The binaries are ready:"
|
|
binariesFolderPath.traverse {
|
|
println it.path
|
|
}
|
|
}
|
|
}
|
|
|
|
def executeCmd(String cmd) {
|
|
String shell
|
|
String shellArg
|
|
if (Os.isFamily(Os.FAMILY_WINDOWS)) {
|
|
shell = 'cmd'
|
|
shellArg = '/c'
|
|
} else {
|
|
shell = 'bash'
|
|
shellArg = '-c'
|
|
}
|
|
|
|
println "Executing command:\n${cmd}\n"
|
|
// See "Executing External Processes" section of
|
|
// http://docs.groovy-lang.org/next/html/documentation/
|
|
def commands = [shell, shellArg, cmd]
|
|
def process = commands.execute(null, project.rootDir)
|
|
def result
|
|
if (process.waitFor() == 0) {
|
|
result = process.text
|
|
println "Command output (stdout):\n${result}"
|
|
} else {
|
|
result = process.err.text
|
|
println "Command output (stderr):\n${result}"
|
|
}
|
|
return result
|
|
}
|