mirror of
https://github.com/topjohnwu/Magisk.git
synced 2025-03-29 16:52:28 +00:00
parent
21b11f1b48
commit
d1c939f48a
@ -12,6 +12,10 @@ import com.topjohnwu.magisk.utils.Shell;
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import com.topjohnwu.magisk.utils.Utils;
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import com.topjohnwu.magisk.utils.ZipUtils;
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import java.io.File;
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import java.io.FileInputStream;
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import java.io.FileNotFoundException;
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import java.io.FileOutputStream;
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import java.io.OutputStream;
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public class ProcessRepoZip extends ParallelTask<Void, Void, Boolean> {
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@ -33,26 +37,59 @@ public class ProcessRepoZip extends ParallelTask<Void, Void, Boolean> {
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@Override
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protected Boolean doInBackground(Void... params) {
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// Create a buffer in memory for input/output
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ByteArrayInOutStream buffer = new ByteArrayInOutStream();
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FileInputStream in;
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FileOutputStream out;
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try {
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// First remove top folder (the folder with the repo name) in Github source zip
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ZipUtils.removeTopFolder(activity.getContentResolver().openInputStream(mUri), buffer);
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// Then sign the zip for the first time
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ZipUtils.signZip(activity, buffer.getInputStream(), buffer, false);
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// Adjust the zip to prevent unzip issues
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ZipUtils.adjustZip(buffer);
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// Finally, sign the whole zip file again
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ZipUtils.signZip(activity, buffer.getInputStream(), buffer, true);
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// Write it back to the downloaded zip
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try (OutputStream out = activity.getContentResolver().openOutputStream(mUri)) {
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buffer.writeTo(out);
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// Create temp file
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File temp1 = new File(magiskManager.getCacheDir(), "1.zip");
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File temp2 = new File(magiskManager.getCacheDir(), "2.zip");
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if (magiskManager.getCacheDir().mkdirs()) {
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temp1.createNewFile();
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temp2.createNewFile();
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}
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out = new FileOutputStream(temp1);
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// First remove top folder in Github source zip, Uri -> temp1
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ZipUtils.removeTopFolder(activity.getContentResolver().openInputStream(mUri), out);
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out.flush();
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out.close();
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out = new FileOutputStream(temp2);
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// Then sign the zip for the first time, temp1 -> temp2
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ZipUtils.signZip(activity, temp1, out, false);
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out.flush();
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out.close();
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// Adjust the zip to prevent unzip issues, temp2 -> temp2
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ZipUtils.adjustZip(temp2);
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out = new FileOutputStream(temp1);
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// Finally, sign the whole zip file again, temp2 -> temp1
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ZipUtils.signZip(activity, temp2, out, true);
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out.flush();
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out.close();
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in = new FileInputStream(temp1);
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// Write it back to the downloaded zip, temp1 -> Uri
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try (OutputStream target = activity.getContentResolver().openOutputStream(mUri)) {
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byte[] buffer = new byte[4096];
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int length;
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if (target == null) throw new FileNotFoundException();
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while ((length = in.read(buffer)) > 0)
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target.write(buffer, 0, length);
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}
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// Delete the temp file
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temp1.delete();
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temp2.delete();
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return true;
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} catch (Exception e) {
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Logger.error("ProcessRepoZip: Error!");
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@ -76,6 +76,11 @@ public class ZipUtils {
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private static final int USE_SHA1 = 1;
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private static final int USE_SHA256 = 2;
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// Files matching this pattern are not copied to the output.
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private static Pattern stripPattern =
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Pattern.compile("^(META-INF/((.*)[.](SF|RSA|DSA|EC)|com/android/otacert))|(" +
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Pattern.quote(JarFile.MANIFEST_NAME) + ")$");
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static {
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System.loadLibrary("zipadjust");
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sBouncyCastleProvider = new BouncyCastleProvider();
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@ -84,11 +89,17 @@ public class ZipUtils {
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public native static byte[] zipAdjust(byte[] bytes, int size);
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public native static void zipAdjust(String filename);
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// Wrapper function for the JNI function
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public static void adjustZip(ByteArrayInOutStream buffer) {
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buffer.setBuffer(zipAdjust(buffer.toByteArray(), buffer.size()));
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}
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public static void adjustZip(File file) {
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zipAdjust(file.getPath());
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}
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public static void removeTopFolder(InputStream in, OutputStream out) throws IOException {
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try {
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JarInputStream source = new JarInputStream(in);
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@ -186,24 +197,23 @@ public class ZipUtils {
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}
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}
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public static void signZip(Context context, InputStream inputStream,
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public static void signZip(Context context, File input,
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OutputStream outputStream, boolean signWholeFile) throws Exception {
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JarMap inputJar;
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JarFile inputJar = new JarFile(input);
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int hashes = 0;
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try {
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X509Certificate publicKey = readPublicKey(context.getAssets().open(PUBLIC_KEY_NAME));
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hashes |= getDigestAlgorithm(publicKey);
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X509Certificate publicKey = GeneralUtils.readPublicKey(context.getAssets().open(PUBLIC_KEY_NAME));
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hashes |= FileUtils.getDigestAlgorithm(publicKey);
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// Set the ZIP file timestamp to the starting valid time
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// of the 0th certificate plus one hour (to match what
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// we've historically done).
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long timestamp = publicKey.getNotBefore().getTime() + 3600L * 1000;
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PrivateKey privateKey = readPrivateKey(context.getAssets().open(PRIVATE_KEY_NAME));
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inputJar = new JarMap(new JarInputStream(inputStream));
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PrivateKey privateKey = GeneralUtils.readPrivateKey(context.getAssets().open(PRIVATE_KEY_NAME));
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if (signWholeFile) {
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if (!"RSA".equalsIgnoreCase(privateKey.getAlgorithm())) {
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throw new IOException("Cannot sign OTA packages with non-RSA keys");
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}
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signWholeFile(inputJar, context.getAssets().open(PUBLIC_KEY_NAME),
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FileUtils.signWholeFile(inputJar, context.getAssets().open(PUBLIC_KEY_NAME),
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publicKey, privateKey, outputStream);
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} else {
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JarOutputStream outputJar = new JarOutputStream(outputStream);
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@ -214,9 +224,9 @@ public class ZipUtils {
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// and produces output that is only a tiny bit larger
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// (~0.1% on full OTA packages I tested).
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outputJar.setLevel(9);
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Manifest manifest = addDigestsToManifest(inputJar, hashes);
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copyFiles(manifest, inputJar, outputJar, timestamp);
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signFile(manifest, inputJar, publicKey, privateKey, outputJar);
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Manifest manifest = FileUtils.addDigestsToManifest(inputJar, hashes);
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FileUtils.copyFiles(manifest, inputJar, outputJar, timestamp);
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GeneralUtils.signFile(manifest, publicKey, privateKey, outputJar);
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outputJar.close();
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}
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} catch (Exception e) {
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@ -225,69 +235,54 @@ public class ZipUtils {
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}
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}
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public static class JarMap extends TreeMap<String, Pair<JarEntry, ByteArrayOutputStream> > {
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private Manifest manifest;
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public JarMap(JarInputStream in) throws IOException {
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super();
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manifest = in.getManifest();
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byte[] buffer = new byte[4096];
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int num;
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JarEntry entry;
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while ((entry = in.getNextJarEntry()) != null) {
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ByteArrayOutputStream stream = new ByteArrayOutputStream();
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while ((num = in.read(buffer)) > 0) {
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stream.write(buffer, 0, num);
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public static void signZip(Context context, InputStream inputStream,
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OutputStream outputStream, boolean signWholeFile) throws Exception {
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StreamUtils.JarMap inputJar;
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int hashes = 0;
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try {
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X509Certificate publicKey = GeneralUtils.readPublicKey(context.getAssets().open(PUBLIC_KEY_NAME));
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hashes |= FileUtils.getDigestAlgorithm(publicKey);
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// Set the ZIP file timestamp to the starting valid time
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// of the 0th certificate plus one hour (to match what
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// we've historically done).
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long timestamp = publicKey.getNotBefore().getTime() + 3600L * 1000;
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PrivateKey privateKey = GeneralUtils.readPrivateKey(context.getAssets().open(PRIVATE_KEY_NAME));
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inputJar = new StreamUtils.JarMap(new JarInputStream(inputStream));
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if (signWholeFile) {
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if (!"RSA".equalsIgnoreCase(privateKey.getAlgorithm())) {
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throw new IOException("Cannot sign OTA packages with non-RSA keys");
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}
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put(entry.getName(), entry, stream);
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}
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in.close();
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}
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public JarEntry getJarEntry(String name) {
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return get(name).first;
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}
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public ByteArrayOutputStream getStream(String name) {
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return get(name).second;
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}
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public void put(String name, JarEntry entry, ByteArrayOutputStream stream) {
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put(name, new Pair<>(entry, stream));
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}
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public Manifest getManifest() {
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return manifest;
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}
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public Enumeration<JarEntry> entries() {
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Iterator<Map.Entry<String, Pair<JarEntry, ByteArrayOutputStream> >> i = entrySet().iterator();
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ArrayList<JarEntry> list = new ArrayList<>();
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while (i.hasNext())
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list.add(i.next().getValue().first);
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return Collections.enumeration(list);
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}
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}
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/**
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* Return one of USE_SHA1 or USE_SHA256 according to the signature
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* algorithm specified in the cert.
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*/
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private static int getDigestAlgorithm(X509Certificate cert) {
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String sigAlg = cert.getSigAlgName().toUpperCase(Locale.US);
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if ("SHA1WITHRSA".equals(sigAlg) ||
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"MD5WITHRSA".equals(sigAlg)) { // see "HISTORICAL NOTE" above.
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return USE_SHA1;
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} else if (sigAlg.startsWith("SHA256WITH")) {
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return USE_SHA256;
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StreamUtils.signWholeFile(inputJar, context.getAssets().open(PUBLIC_KEY_NAME),
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publicKey, privateKey, outputStream);
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} else {
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throw new IllegalArgumentException("unsupported signature algorithm \"" + sigAlg +
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"\" in cert [" + cert.getSubjectDN());
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JarOutputStream outputJar = new JarOutputStream(outputStream);
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// For signing .apks, use the maximum compression to make
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// them as small as possible (since they live forever on
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// the system partition). For OTA packages, use the
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// default compression level, which is much much faster
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// and produces output that is only a tiny bit larger
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// (~0.1% on full OTA packages I tested).
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outputJar.setLevel(9);
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Manifest manifest = StreamUtils.addDigestsToManifest(inputJar, hashes);
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StreamUtils.copyFiles(manifest, inputJar, outputJar, timestamp);
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GeneralUtils.signFile(manifest, publicKey, privateKey, outputJar);
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outputJar.close();
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}
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} catch (Exception e) {
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e.printStackTrace();
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throw e;
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}
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}
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// This class host general functions
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public static class GeneralUtils {
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/** Returns the expected signature algorithm for this key type. */
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private static String getSignatureAlgorithm(X509Certificate cert) {
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String sigAlg = cert.getSigAlgName().toUpperCase(Locale.US);
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String keyType = cert.getPublicKey().getAlgorithm().toUpperCase(Locale.US);
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if ("RSA".equalsIgnoreCase(keyType)) {
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if (getDigestAlgorithm(cert) == USE_SHA256) {
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if (FileUtils.getDigestAlgorithm(cert) == USE_SHA256) {
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return "SHA256withRSA";
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} else {
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return "SHA1withRSA";
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@ -300,10 +295,7 @@ public class ZipUtils {
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throw new IllegalArgumentException("unsupported key type: " + keyType);
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}
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}
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// Files matching this pattern are not copied to the output.
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private static Pattern stripPattern =
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Pattern.compile("^(META-INF/((.*)[.](SF|RSA|DSA|EC)|com/android/otacert))|(" +
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Pattern.quote(JarFile.MANIFEST_NAME) + ")$");
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private static X509Certificate readPublicKey(InputStream input)
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throws IOException, GeneralSecurityException {
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try {
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@ -373,6 +365,7 @@ public class ZipUtils {
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input.close();
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}
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}
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private static PrivateKey decodeAsKeyType(KeySpec spec, String keyType)
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throws GeneralSecurityException {
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try {
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@ -382,57 +375,6 @@ public class ZipUtils {
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}
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}
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/**
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* Add the hash(es) of every file to the manifest, creating it if
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* necessary.
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*/
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private static Manifest addDigestsToManifest(JarMap jar, int hashes)
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throws IOException, GeneralSecurityException {
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Manifest input = jar.getManifest();
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Manifest output = new Manifest();
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Attributes main = output.getMainAttributes();
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if (input != null) {
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main.putAll(input.getMainAttributes());
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} else {
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main.putValue("Manifest-Version", "1.0");
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main.putValue("Created-By", "1.0 (Android SignApk)");
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}
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MessageDigest md_sha1 = null;
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MessageDigest md_sha256 = null;
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if ((hashes & USE_SHA1) != 0) {
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md_sha1 = MessageDigest.getInstance("SHA1");
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}
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if ((hashes & USE_SHA256) != 0) {
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md_sha256 = MessageDigest.getInstance("SHA256");
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}
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// We sort the input entries by name, and add them to the
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// output manifest in sorted order. We expect that the output
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// map will be deterministic.
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/* JarMap is a TreeMap, so it's already sorted */
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for (String name : jar.keySet()) {
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JarEntry entry = jar.getJarEntry(name);
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if (!entry.isDirectory() &&
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(stripPattern == null || !stripPattern.matcher(name).matches())) {
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byte[] buffer = jar.getStream(name).toByteArray();
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if (md_sha1 != null) md_sha1.update(buffer, 0, buffer.length);
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if (md_sha256 != null) md_sha256.update(buffer, 0, buffer.length);
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Attributes attr = null;
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if (input != null) attr = input.getAttributes(name);
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attr = attr != null ? new Attributes(attr) : new Attributes();
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if (md_sha1 != null) {
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attr.putValue("SHA1-Digest",
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new String(Base64.encode(md_sha1.digest()), "ASCII"));
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}
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if (md_sha256 != null) {
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attr.putValue("SHA-256-Digest",
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new String(Base64.encode(md_sha256.digest()), "ASCII"));
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}
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output.getEntries().put(name, attr);
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}
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}
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return output;
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}
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/**
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* Add a copy of the public key to the archive; this should
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* exactly match one of the files in
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@ -463,30 +405,6 @@ public class ZipUtils {
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manifest.getEntries().put(OTACERT_NAME, attr);
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}
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/** Write to another stream and track how many bytes have been
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* written.
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*/
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private static class CountOutputStream extends FilterOutputStream {
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private int mCount;
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public CountOutputStream(OutputStream out) {
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super(out);
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mCount = 0;
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}
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@Override
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public void write(int b) throws IOException {
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super.write(b);
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mCount++;
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}
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@Override
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public void write(byte[] b, int off, int len) throws IOException {
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super.write(b, off, len);
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mCount += len;
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}
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public int size() {
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return mCount;
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}
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}
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/** Write a .SF file with a digest of the specified manifest. */
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private static void writeSignatureFile(Manifest manifest, OutputStream out,
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int hash)
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@ -556,31 +474,55 @@ public class ZipUtils {
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dos.writeObject(asn1.readObject());
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}
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}
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/**
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* Copy all the files in a manifest from input to output. We set
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* the modification times in the output to a fixed time, so as to
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* reduce variation in the output file and make incremental OTAs
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* more efficient.
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*/
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private static void copyFiles(Manifest manifest,
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JarMap in, JarOutputStream out, long timestamp) throws IOException {
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Map<String, Attributes> entries = manifest.getEntries();
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ArrayList<String> names = new ArrayList<>(entries.keySet());
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Collections.sort(names);
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for (String name : names) {
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JarEntry inEntry = in.getJarEntry(name);
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JarEntry outEntry;
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if (inEntry.getMethod() == JarEntry.STORED) {
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// Preserve the STORED method of the input entry.
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outEntry = new JarEntry(inEntry);
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} else {
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// Create a new entry so that the compressed len is recomputed.
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outEntry = new JarEntry(name);
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private static void signFile(Manifest manifest,
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X509Certificate publicKey, PrivateKey privateKey,
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JarOutputStream outputJar)
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throws Exception {
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// Assume the certificate is valid for at least an hour.
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long timestamp = publicKey.getNotBefore().getTime() + 3600L * 1000;
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// MANIFEST.MF
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JarEntry je = new JarEntry(JarFile.MANIFEST_NAME);
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je.setTime(timestamp);
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outputJar.putNextEntry(je);
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manifest.write(outputJar);
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// CERT.SF / CERT#.SF
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je = new JarEntry(CERT_SF_NAME);
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je.setTime(timestamp);
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outputJar.putNextEntry(je);
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ByteArrayOutputStream baos = new ByteArrayOutputStream();
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writeSignatureFile(manifest, baos, FileUtils.getDigestAlgorithm(publicKey));
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byte[] signedData = baos.toByteArray();
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outputJar.write(signedData);
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// CERT.{DSA,EC,RSA} / CERT#.{DSA,EC,RSA}
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je = new JarEntry((String.format(CERT_SIG_NAME, privateKey.getAlgorithm())));
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je.setTime(timestamp);
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outputJar.putNextEntry(je);
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writeSignatureBlock(new CMSProcessableByteArray(signedData),
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publicKey, privateKey, outputJar);
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}
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outEntry.setTime(timestamp);
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out.putNextEntry(outEntry);
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in.getStream(name).writeTo(out);
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out.flush();
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/** Write to another stream and track how many bytes have been
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* written.
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*/
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private static class CountOutputStream extends FilterOutputStream {
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private int mCount;
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public CountOutputStream(OutputStream out) {
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super(out);
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mCount = 0;
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}
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@Override
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public void write(int b) throws IOException {
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super.write(b);
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mCount++;
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}
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@Override
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public void write(byte[] b, int off, int len) throws IOException {
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super.write(b, off, len);
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mCount += len;
|
||||
}
|
||||
public int size() {
|
||||
return mCount;
|
||||
}
|
||||
}
|
||||
|
||||
@ -634,16 +576,193 @@ public class ZipUtils {
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// This class host functions that consumes JarFiles
|
||||
public static class FileUtils {
|
||||
|
||||
/**
|
||||
* Return one of USE_SHA1 or USE_SHA256 according to the signature
|
||||
* algorithm specified in the cert.
|
||||
*/
|
||||
private static int getDigestAlgorithm(X509Certificate cert) {
|
||||
String sigAlg = cert.getSigAlgName().toUpperCase(Locale.US);
|
||||
if ("SHA1WITHRSA".equals(sigAlg) ||
|
||||
"MD5WITHRSA".equals(sigAlg)) { // see "HISTORICAL NOTE" above.
|
||||
return USE_SHA1;
|
||||
} else if (sigAlg.startsWith("SHA256WITH")) {
|
||||
return USE_SHA256;
|
||||
} else {
|
||||
throw new IllegalArgumentException("unsupported signature algorithm \"" + sigAlg +
|
||||
"\" in cert [" + cert.getSubjectDN());
|
||||
}
|
||||
}
|
||||
|
||||
private static Manifest addDigestsToManifest(JarFile jar, int hashes)
|
||||
throws IOException, GeneralSecurityException {
|
||||
Manifest input = jar.getManifest();
|
||||
Manifest output = new Manifest();
|
||||
Attributes main = output.getMainAttributes();
|
||||
if (input != null) {
|
||||
main.putAll(input.getMainAttributes());
|
||||
} else {
|
||||
main.putValue("Manifest-Version", "1.0");
|
||||
main.putValue("Created-By", "1.0 (Android SignApk)");
|
||||
}
|
||||
MessageDigest md_sha1 = null;
|
||||
MessageDigest md_sha256 = null;
|
||||
if ((hashes & USE_SHA1) != 0) {
|
||||
md_sha1 = MessageDigest.getInstance("SHA1");
|
||||
}
|
||||
if ((hashes & USE_SHA256) != 0) {
|
||||
md_sha256 = MessageDigest.getInstance("SHA256");
|
||||
}
|
||||
byte[] buffer = new byte[4096];
|
||||
int num;
|
||||
// We sort the input entries by name, and add them to the
|
||||
// output manifest in sorted order. We expect that the output
|
||||
// map will be deterministic.
|
||||
TreeMap<String, JarEntry> byName = new TreeMap<String, JarEntry>();
|
||||
for (Enumeration<JarEntry> e = jar.entries(); e.hasMoreElements(); ) {
|
||||
JarEntry entry = e.nextElement();
|
||||
byName.put(entry.getName(), entry);
|
||||
}
|
||||
for (JarEntry entry: byName.values()) {
|
||||
String name = entry.getName();
|
||||
if (!entry.isDirectory() &&
|
||||
(stripPattern == null || !stripPattern.matcher(name).matches())) {
|
||||
InputStream data = jar.getInputStream(entry);
|
||||
while ((num = data.read(buffer)) > 0) {
|
||||
if (md_sha1 != null) md_sha1.update(buffer, 0, num);
|
||||
if (md_sha256 != null) md_sha256.update(buffer, 0, num);
|
||||
}
|
||||
Attributes attr = null;
|
||||
if (input != null) attr = input.getAttributes(name);
|
||||
attr = attr != null ? new Attributes(attr) : new Attributes();
|
||||
// Remove any previously computed digests from this entry's attributes.
|
||||
for (Iterator<Object> i = attr.keySet().iterator(); i.hasNext();) {
|
||||
Object key = i.next();
|
||||
if (!(key instanceof Attributes.Name)) {
|
||||
continue;
|
||||
}
|
||||
String attributeNameLowerCase =
|
||||
((Attributes.Name) key).toString().toLowerCase(Locale.US);
|
||||
if (attributeNameLowerCase.endsWith("-digest")) {
|
||||
i.remove();
|
||||
}
|
||||
}
|
||||
// Add SHA-1 digest if requested
|
||||
if (md_sha1 != null) {
|
||||
attr.putValue("SHA1-Digest",
|
||||
new String(Base64.encode(md_sha1.digest()), "ASCII"));
|
||||
}
|
||||
// Add SHA-256 digest if requested
|
||||
if (md_sha256 != null) {
|
||||
attr.putValue("SHA-256-Digest",
|
||||
new String(Base64.encode(md_sha256.digest()), "ASCII"));
|
||||
}
|
||||
output.getEntries().put(name, attr);
|
||||
}
|
||||
}
|
||||
return output;
|
||||
}
|
||||
|
||||
private static void copyFiles(Manifest manifest,
|
||||
JarFile in, JarOutputStream out, long timestamp) throws IOException {
|
||||
byte[] buffer = new byte[4096];
|
||||
int num;
|
||||
Map<String, Attributes> entries = manifest.getEntries();
|
||||
ArrayList<String> names = new ArrayList<String>(entries.keySet());
|
||||
Collections.sort(names);
|
||||
for (String name : names) {
|
||||
JarEntry inEntry = in.getJarEntry(name);
|
||||
JarEntry outEntry = null;
|
||||
if (inEntry.getMethod() == JarEntry.STORED) {
|
||||
// Preserve the STORED method of the input entry.
|
||||
outEntry = new JarEntry(inEntry);
|
||||
} else {
|
||||
// Create a new entry so that the compressed len is recomputed.
|
||||
outEntry = new JarEntry(name);
|
||||
}
|
||||
outEntry.setTime(timestamp);
|
||||
out.putNextEntry(outEntry);
|
||||
InputStream data = in.getInputStream(inEntry);
|
||||
while ((num = data.read(buffer)) > 0) {
|
||||
out.write(buffer, 0, num);
|
||||
}
|
||||
out.flush();
|
||||
}
|
||||
}
|
||||
|
||||
private static void signWholeFile(JarFile inputJar, InputStream publicKeyFile,
|
||||
X509Certificate publicKey, PrivateKey privateKey,
|
||||
OutputStream outputStream) throws Exception {
|
||||
CMSSigner cmsOut = new CMSSigner(inputJar, publicKeyFile,
|
||||
publicKey, privateKey, outputStream);
|
||||
ByteArrayOutputStream temp = new ByteArrayOutputStream();
|
||||
// put a readable message and a null char at the start of the
|
||||
// archive comment, so that tools that display the comment
|
||||
// (hopefully) show something sensible.
|
||||
// TODO: anything more useful we can put in this message?
|
||||
byte[] message = "signed by SignApk".getBytes("UTF-8");
|
||||
temp.write(message);
|
||||
temp.write(0);
|
||||
cmsOut.writeSignatureBlock(temp);
|
||||
byte[] zipData = cmsOut.getSigner().getTail();
|
||||
// For a zip with no archive comment, the
|
||||
// end-of-central-directory record will be 22 bytes long, so
|
||||
// we expect to find the EOCD marker 22 bytes from the end.
|
||||
if (zipData[zipData.length-22] != 0x50 ||
|
||||
zipData[zipData.length-21] != 0x4b ||
|
||||
zipData[zipData.length-20] != 0x05 ||
|
||||
zipData[zipData.length-19] != 0x06) {
|
||||
throw new IllegalArgumentException("zip data already has an archive comment");
|
||||
}
|
||||
int total_size = temp.size() + 6;
|
||||
if (total_size > 0xffff) {
|
||||
throw new IllegalArgumentException("signature is too big for ZIP file comment");
|
||||
}
|
||||
// signature starts this many bytes from the end of the file
|
||||
int signature_start = total_size - message.length - 1;
|
||||
temp.write(signature_start & 0xff);
|
||||
temp.write((signature_start >> 8) & 0xff);
|
||||
// Why the 0xff bytes? In a zip file with no archive comment,
|
||||
// bytes [-6:-2] of the file are the little-endian offset from
|
||||
// the start of the file to the central directory. So for the
|
||||
// two high bytes to be 0xff 0xff, the archive would have to
|
||||
// be nearly 4GB in size. So it's unlikely that a real
|
||||
// commentless archive would have 0xffs here, and lets us tell
|
||||
// an old signed archive from a new one.
|
||||
temp.write(0xff);
|
||||
temp.write(0xff);
|
||||
temp.write(total_size & 0xff);
|
||||
temp.write((total_size >> 8) & 0xff);
|
||||
temp.flush();
|
||||
// Signature verification checks that the EOCD header is the
|
||||
// last such sequence in the file (to avoid minzip finding a
|
||||
// fake EOCD appended after the signature in its scan). The
|
||||
// odds of producing this sequence by chance are very low, but
|
||||
// let's catch it here if it does.
|
||||
byte[] b = temp.toByteArray();
|
||||
for (int i = 0; i < b.length-3; ++i) {
|
||||
if (b[i] == 0x50 && b[i+1] == 0x4b && b[i+2] == 0x05 && b[i+3] == 0x06) {
|
||||
throw new IllegalArgumentException("found spurious EOCD header at " + i);
|
||||
}
|
||||
}
|
||||
outputStream.write(total_size & 0xff);
|
||||
outputStream.write((total_size >> 8) & 0xff);
|
||||
temp.writeTo(outputStream);
|
||||
}
|
||||
|
||||
private static class CMSSigner implements CMSTypedData {
|
||||
private JarMap inputJar;
|
||||
private JarFile inputJar;
|
||||
private InputStream publicKeyFile;
|
||||
private X509Certificate publicKey;
|
||||
private PrivateKey privateKey;
|
||||
private OutputStream outputStream;
|
||||
private final ASN1ObjectIdentifier type;
|
||||
private WholeFileSignerOutputStream signer;
|
||||
public CMSSigner(JarMap inputJar, InputStream publicKeyFile,
|
||||
private GeneralUtils.WholeFileSignerOutputStream signer;
|
||||
public CMSSigner(JarFile inputJar, InputStream publicKeyFile,
|
||||
X509Certificate publicKey, PrivateKey privateKey,
|
||||
OutputStream outputStream) {
|
||||
this.inputJar = inputJar;
|
||||
@ -662,7 +781,7 @@ public class ZipUtils {
|
||||
}
|
||||
public void write(OutputStream out) throws IOException {
|
||||
try {
|
||||
signer = new WholeFileSignerOutputStream(out, outputStream);
|
||||
signer = new GeneralUtils.WholeFileSignerOutputStream(out, outputStream);
|
||||
JarOutputStream outputJar = new JarOutputStream(signer);
|
||||
int hash = getDigestAlgorithm(publicKey);
|
||||
// Assume the certificate is valid for at least an hour.
|
||||
@ -671,7 +790,7 @@ public class ZipUtils {
|
||||
copyFiles(manifest, inputJar, outputJar, timestamp);
|
||||
// Don't add Otacert, it's not an OTA
|
||||
// addOtacert(outputJar, publicKeyFile, timestamp, manifest, hash);
|
||||
signFile(manifest, inputJar, publicKey, privateKey, outputJar);
|
||||
GeneralUtils.signFile(manifest, publicKey, privateKey, outputJar);
|
||||
signer.notifyClosing();
|
||||
outputJar.close();
|
||||
signer.finish();
|
||||
@ -685,12 +804,96 @@ public class ZipUtils {
|
||||
CertificateEncodingException,
|
||||
OperatorCreationException,
|
||||
CMSException {
|
||||
ZipUtils.writeSignatureBlock(this, publicKey, privateKey, temp);
|
||||
GeneralUtils.writeSignatureBlock(this, publicKey, privateKey, temp);
|
||||
}
|
||||
public WholeFileSignerOutputStream getSigner() {
|
||||
public GeneralUtils.WholeFileSignerOutputStream getSigner() {
|
||||
return signer;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
// This class host functions that consumes inputstreams
|
||||
// Uses JarMap (virtual random access JarFile in memory)
|
||||
public static class StreamUtils {
|
||||
|
||||
/**
|
||||
* Add the hash(es) of every file to the manifest, creating it if
|
||||
* necessary.
|
||||
*/
|
||||
private static Manifest addDigestsToManifest(JarMap jar, int hashes)
|
||||
throws IOException, GeneralSecurityException {
|
||||
Manifest input = jar.getManifest();
|
||||
Manifest output = new Manifest();
|
||||
Attributes main = output.getMainAttributes();
|
||||
if (input != null) {
|
||||
main.putAll(input.getMainAttributes());
|
||||
} else {
|
||||
main.putValue("Manifest-Version", "1.0");
|
||||
main.putValue("Created-By", "1.0 (Android SignApk)");
|
||||
}
|
||||
MessageDigest md_sha1 = null;
|
||||
MessageDigest md_sha256 = null;
|
||||
if ((hashes & USE_SHA1) != 0) {
|
||||
md_sha1 = MessageDigest.getInstance("SHA1");
|
||||
}
|
||||
if ((hashes & USE_SHA256) != 0) {
|
||||
md_sha256 = MessageDigest.getInstance("SHA256");
|
||||
}
|
||||
// We sort the input entries by name, and add them to the
|
||||
// output manifest in sorted order. We expect that the output
|
||||
// map will be deterministic.
|
||||
/* JarMap is a TreeMap, so it's already sorted */
|
||||
for (String name : jar.keySet()) {
|
||||
JarEntry entry = jar.getJarEntry(name);
|
||||
if (!entry.isDirectory() &&
|
||||
(stripPattern == null || !stripPattern.matcher(name).matches())) {
|
||||
byte[] buffer = jar.getStream(name).toByteArray();
|
||||
if (md_sha1 != null) md_sha1.update(buffer, 0, buffer.length);
|
||||
if (md_sha256 != null) md_sha256.update(buffer, 0, buffer.length);
|
||||
Attributes attr = null;
|
||||
if (input != null) attr = input.getAttributes(name);
|
||||
attr = attr != null ? new Attributes(attr) : new Attributes();
|
||||
if (md_sha1 != null) {
|
||||
attr.putValue("SHA1-Digest",
|
||||
new String(Base64.encode(md_sha1.digest()), "ASCII"));
|
||||
}
|
||||
if (md_sha256 != null) {
|
||||
attr.putValue("SHA-256-Digest",
|
||||
new String(Base64.encode(md_sha256.digest()), "ASCII"));
|
||||
}
|
||||
output.getEntries().put(name, attr);
|
||||
}
|
||||
}
|
||||
return output;
|
||||
}
|
||||
|
||||
/**
|
||||
* Copy all the files in a manifest from input to output. We set
|
||||
* the modification times in the output to a fixed time, so as to
|
||||
* reduce variation in the output file and make incremental OTAs
|
||||
* more efficient.
|
||||
*/
|
||||
private static void copyFiles(Manifest manifest,
|
||||
JarMap in, JarOutputStream out, long timestamp) throws IOException {
|
||||
Map<String, Attributes> entries = manifest.getEntries();
|
||||
ArrayList<String> names = new ArrayList<>(entries.keySet());
|
||||
Collections.sort(names);
|
||||
for (String name : names) {
|
||||
JarEntry inEntry = in.getJarEntry(name);
|
||||
JarEntry outEntry;
|
||||
if (inEntry.getMethod() == JarEntry.STORED) {
|
||||
// Preserve the STORED method of the input entry.
|
||||
outEntry = new JarEntry(inEntry);
|
||||
} else {
|
||||
// Create a new entry so that the compressed len is recomputed.
|
||||
outEntry = new JarEntry(name);
|
||||
}
|
||||
outEntry.setTime(timestamp);
|
||||
out.putNextEntry(outEntry);
|
||||
in.getStream(name).writeTo(out);
|
||||
out.flush();
|
||||
}
|
||||
}
|
||||
|
||||
private static void signWholeFile(JarMap inputJar, InputStream publicKeyFile,
|
||||
X509Certificate publicKey, PrivateKey privateKey,
|
||||
@ -752,30 +955,102 @@ public class ZipUtils {
|
||||
temp.writeTo(outputStream);
|
||||
}
|
||||
|
||||
private static void signFile(Manifest manifest, JarMap inputJar,
|
||||
public static class JarMap extends TreeMap<String, Pair<JarEntry, ByteArrayOutputStream> > {
|
||||
|
||||
private Manifest manifest;
|
||||
|
||||
public JarMap(JarInputStream in) throws IOException {
|
||||
super();
|
||||
manifest = in.getManifest();
|
||||
byte[] buffer = new byte[4096];
|
||||
int num;
|
||||
JarEntry entry;
|
||||
while ((entry = in.getNextJarEntry()) != null) {
|
||||
ByteArrayOutputStream stream = new ByteArrayOutputStream();
|
||||
while ((num = in.read(buffer)) > 0) {
|
||||
stream.write(buffer, 0, num);
|
||||
}
|
||||
put(entry.getName(), entry, stream);
|
||||
}
|
||||
in.close();
|
||||
}
|
||||
|
||||
public JarEntry getJarEntry(String name) {
|
||||
return get(name).first;
|
||||
}
|
||||
public ByteArrayOutputStream getStream(String name) {
|
||||
return get(name).second;
|
||||
}
|
||||
public void put(String name, JarEntry entry, ByteArrayOutputStream stream) {
|
||||
put(name, new Pair<>(entry, stream));
|
||||
}
|
||||
public Manifest getManifest() {
|
||||
return manifest;
|
||||
}
|
||||
public Enumeration<JarEntry> entries() {
|
||||
Iterator<Entry<String, Pair<JarEntry, ByteArrayOutputStream> >> i = entrySet().iterator();
|
||||
ArrayList<JarEntry> list = new ArrayList<>();
|
||||
while (i.hasNext())
|
||||
list.add(i.next().getValue().first);
|
||||
return Collections.enumeration(list);
|
||||
}
|
||||
}
|
||||
|
||||
private static class CMSSigner implements CMSTypedData {
|
||||
private JarMap inputJar;
|
||||
private InputStream publicKeyFile;
|
||||
private X509Certificate publicKey;
|
||||
private PrivateKey privateKey;
|
||||
private OutputStream outputStream;
|
||||
private final ASN1ObjectIdentifier type;
|
||||
private GeneralUtils.WholeFileSignerOutputStream signer;
|
||||
public CMSSigner(JarMap inputJar, InputStream publicKeyFile,
|
||||
X509Certificate publicKey, PrivateKey privateKey,
|
||||
JarOutputStream outputJar)
|
||||
throws Exception {
|
||||
OutputStream outputStream) {
|
||||
this.inputJar = inputJar;
|
||||
this.publicKeyFile = publicKeyFile;
|
||||
this.publicKey = publicKey;
|
||||
this.privateKey = privateKey;
|
||||
this.outputStream = outputStream;
|
||||
this.type = new ASN1ObjectIdentifier(CMSObjectIdentifiers.data.getId());
|
||||
}
|
||||
public Object getContent() {
|
||||
// Not supported, but still don't crash or return null
|
||||
return 1;
|
||||
}
|
||||
public ASN1ObjectIdentifier getContentType() {
|
||||
return type;
|
||||
}
|
||||
public void write(OutputStream out) throws IOException {
|
||||
try {
|
||||
signer = new GeneralUtils.WholeFileSignerOutputStream(out, outputStream);
|
||||
JarOutputStream outputJar = new JarOutputStream(signer);
|
||||
int hash = FileUtils.getDigestAlgorithm(publicKey);
|
||||
// Assume the certificate is valid for at least an hour.
|
||||
long timestamp = publicKey.getNotBefore().getTime() + 3600L * 1000;
|
||||
// MANIFEST.MF
|
||||
JarEntry je = new JarEntry(JarFile.MANIFEST_NAME);
|
||||
je.setTime(timestamp);
|
||||
outputJar.putNextEntry(je);
|
||||
manifest.write(outputJar);
|
||||
// CERT.SF / CERT#.SF
|
||||
je = new JarEntry(CERT_SF_NAME);
|
||||
je.setTime(timestamp);
|
||||
outputJar.putNextEntry(je);
|
||||
ByteArrayOutputStream baos = new ByteArrayOutputStream();
|
||||
writeSignatureFile(manifest, baos, getDigestAlgorithm(publicKey));
|
||||
byte[] signedData = baos.toByteArray();
|
||||
outputJar.write(signedData);
|
||||
// CERT.{DSA,EC,RSA} / CERT#.{DSA,EC,RSA}
|
||||
je = new JarEntry((String.format(CERT_SIG_NAME, privateKey.getAlgorithm())));
|
||||
je.setTime(timestamp);
|
||||
outputJar.putNextEntry(je);
|
||||
writeSignatureBlock(new CMSProcessableByteArray(signedData),
|
||||
publicKey, privateKey, outputJar);
|
||||
Manifest manifest = addDigestsToManifest(inputJar, hash);
|
||||
copyFiles(manifest, inputJar, outputJar, timestamp);
|
||||
// Don't add Otacert, it's not an OTA
|
||||
// addOtacert(outputJar, publicKeyFile, timestamp, manifest, hash);
|
||||
GeneralUtils.signFile(manifest, publicKey, privateKey, outputJar);
|
||||
signer.notifyClosing();
|
||||
outputJar.close();
|
||||
signer.finish();
|
||||
}
|
||||
catch (Exception e) {
|
||||
throw new IOException(e);
|
||||
}
|
||||
}
|
||||
public void writeSignatureBlock(ByteArrayOutputStream temp)
|
||||
throws IOException,
|
||||
CertificateEncodingException,
|
||||
OperatorCreationException,
|
||||
CMSException {
|
||||
GeneralUtils.writeSignatureBlock(this, publicKey, privateKey, temp);
|
||||
}
|
||||
public GeneralUtils.WholeFileSignerOutputStream getSigner() {
|
||||
return signer;
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
@ -4,10 +4,15 @@
|
||||
|
||||
#include <jni.h>
|
||||
#include <stdlib.h>
|
||||
#include <sys/types.h>
|
||||
#include <unistd.h>
|
||||
#include <sys/stat.h>
|
||||
#include <fcntl.h>
|
||||
#include "zipadjust.h"
|
||||
|
||||
JNIEXPORT jbyteArray JNICALL
|
||||
Java_com_topjohnwu_magisk_utils_ZipUtils_zipAdjust(JNIEnv *env, jclass type, jbyteArray jbytes, jint size) {
|
||||
Java_com_topjohnwu_magisk_utils_ZipUtils_zipAdjust___3BI(JNIEnv *env, jclass type,
|
||||
jbyteArray jbytes, jint size) {
|
||||
fin = (*env)->GetPrimitiveArrayCritical(env, jbytes, NULL);
|
||||
insize = (size_t) size;
|
||||
|
||||
@ -21,3 +26,37 @@ Java_com_topjohnwu_magisk_utils_ZipUtils_zipAdjust(JNIEnv *env, jclass type, jby
|
||||
|
||||
return ret;
|
||||
}
|
||||
|
||||
JNIEXPORT void JNICALL
|
||||
Java_com_topjohnwu_magisk_utils_ZipUtils_zipAdjust__Ljava_lang_String_2(JNIEnv *env, jclass type, jstring name) {
|
||||
const char *filename = (*env)->GetStringUTFChars(env, name, NULL);
|
||||
int fd = open(filename, O_RDONLY);
|
||||
if (fd < 0)
|
||||
return;
|
||||
|
||||
// Load the file to memory
|
||||
insize = lseek(fd, 0, SEEK_END);
|
||||
lseek(fd, 0, SEEK_SET);
|
||||
fin = malloc(insize);
|
||||
read(fd, fin, insize);
|
||||
|
||||
zipadjust(0);
|
||||
|
||||
close(fd);
|
||||
|
||||
// Open file for output
|
||||
fd = open(filename, O_WRONLY | O_TRUNC);
|
||||
if (fd < 0)
|
||||
return;
|
||||
|
||||
(*env)->ReleaseStringUTFChars(env, name, filename);
|
||||
|
||||
// Write back to file
|
||||
lseek(fd, 0, SEEK_SET);
|
||||
write(fd, fout, outsize);
|
||||
|
||||
close(fd);
|
||||
free(fin);
|
||||
free(fout);
|
||||
|
||||
}
|
||||
|
@ -1,14 +1,8 @@
|
||||
#include <stdlib.h>
|
||||
#include <stdio.h>
|
||||
#include <zlib.h>
|
||||
#include <android/log.h>
|
||||
#include "zipadjust.h"
|
||||
|
||||
#define LOG_TAG "zipadjust"
|
||||
|
||||
#define LOGD(...) __android_log_print(ANDROID_LOG_DEBUG, LOG_TAG, __VA_ARGS__)
|
||||
#define LOGE(...) __android_log_print(ANDROID_LOG_ERROR, LOG_TAG, __VA_ARGS__)
|
||||
|
||||
size_t insize = 0, outsize = 0, alloc = 0;
|
||||
unsigned char *fin = NULL, *fout = NULL;
|
||||
|
||||
|
@ -1,9 +1,16 @@
|
||||
#ifndef MAGISKMANAGER_ZIPADJUST_H_H
|
||||
#define MAGISKMANAGER_ZIPADJUST_H_H
|
||||
|
||||
#include <android/log.h>
|
||||
|
||||
int zipadjust(int decompress);
|
||||
|
||||
extern size_t insize, outsize, alloc;
|
||||
extern unsigned char *fin, *fout;
|
||||
|
||||
#define LOG_TAG "zipadjust"
|
||||
|
||||
#define LOGD(...) __android_log_print(ANDROID_LOG_DEBUG, LOG_TAG, __VA_ARGS__)
|
||||
#define LOGE(...) __android_log_print(ANDROID_LOG_ERROR, LOG_TAG, __VA_ARGS__)
|
||||
|
||||
#endif //MAGISKMANAGER_ZIPADJUST_H_H
|
||||
|
Loading…
x
Reference in New Issue
Block a user