/* * * * Apache License * Version 2.0, January 2004 * http://www.apache.org/licenses/ * * TERMS AND CONDITIONS FOR USE, REPRODUCTION, AND DISTRIBUTION * * 1. Definitions. * * "License" shall mean the terms and conditions for use, reproduction, * and distribution as defined by Sections 1 through 9 of this document. * * "Licensor" shall mean the copyright owner or entity authorized by * the copyright owner that is granting the License. * * "Legal Entity" shall mean the union of the acting entity and all * other entities that control, are controlled by, or are under common * control with that entity. For the purposes of this definition, * "control" means (i) the power, direct or indirect, to cause the * direction or management of such entity, whether by contract or * otherwise, or (ii) ownership of fifty percent (50%) or more of the * outstanding shares, or (iii) beneficial ownership of such entity. * * "You" (or "Your") shall mean an individual or Legal Entity * exercising permissions granted by this License. * * "Source" form shall mean the preferred form for making modifications, * including but not limited to software source code, documentation * source, and configuration files. * * "Object" form shall mean any form resulting from mechanical * transformation or translation of a Source form, including but * not limited to compiled object code, generated documentation, * and conversions to other media types. * * "Work" shall mean the work of authorship, whether in Source or * Object form, made available under the License, as indicated by a * copyright notice that is included in or attached to the work * (an example is provided in the Appendix below). * * "Derivative Works" shall mean any work, whether in Source or Object * form, that is based on (or derived from) the Work and for which the * editorial revisions, annotations, elaborations, or other modifications * represent, as a whole, an original work of authorship. For the purposes * of this License, Derivative Works shall not include works that remain * separable from, or merely link (or bind by name) to the interfaces of, * the Work and Derivative Works thereof. * * "Contribution" shall mean any work of authorship, including * the original version of the Work and any modifications or additions * to that Work or Derivative Works thereof, that is intentionally * submitted to Licensor for inclusion in the Work by the copyright owner * or by an individual or Legal Entity authorized to submit on behalf of * the copyright owner. For the purposes of this definition, "submitted" * means any form of electronic, verbal, or written communication sent * to the Licensor or its representatives, including but not limited to * communication on electronic mailing lists, source code control systems, * and issue tracking systems that are managed by, or on behalf of, the * Licensor for the purpose of discussing and improving the Work, but * excluding communication that is conspicuously marked or otherwise * designated in writing by the copyright owner as "Not a Contribution." * * "Contributor" shall mean Licensor and any individual or Legal Entity * on behalf of whom a Contribution has been received by Licensor and * subsequently incorporated within the Work. * * 2. Grant of Copyright License. Subject to the terms and conditions of * this License, each Contributor hereby grants to You a perpetual, * worldwide, non-exclusive, no-charge, royalty-free, irrevocable * copyright license to reproduce, prepare Derivative Works of, * publicly display, publicly perform, sublicense, and distribute the * Work and such Derivative Works in Source or Object form. * * 3. Grant of Patent License. Subject to the terms and conditions of * this License, each Contributor hereby grants to You a perpetual, * worldwide, non-exclusive, no-charge, royalty-free, irrevocable * (except as stated in this section) patent license to make, have made, * use, offer to sell, sell, import, and otherwise transfer the Work, * where such license applies only to those patent claims licensable * by such Contributor that are necessarily infringed by their * Contribution(s) alone or by combination of their Contribution(s) * with the Work to which such Contribution(s) was submitted. If You * institute patent litigation against any entity (including a * cross-claim or counterclaim in a lawsuit) alleging that the Work * or a Contribution incorporated within the Work constitutes direct * or contributory patent infringement, then any patent licenses * granted to You under this License for that Work shall terminate * as of the date such litigation is filed. * * 4. Redistribution. You may reproduce and distribute copies of the * Work or Derivative Works thereof in any medium, with or without * modifications, and in Source or Object form, provided that You * meet the following conditions: * * (a) You must give any other recipients of the Work or * Derivative Works a copy of this License; and * * (b) You must cause any modified files to carry prominent notices * stating that You changed the files; and * * (c) You must retain, in the Source form of any Derivative Works * that You distribute, all copyright, patent, trademark, and * attribution notices from the Source form of the Work, * excluding those notices that do not pertain to any part of * the Derivative Works; and * * (d) If the Work includes a "NOTICE" text file as part of its * distribution, then any Derivative Works that You distribute must * include a readable copy of the attribution notices contained * within such NOTICE file, excluding those notices that do not * pertain to any part of the Derivative Works, in at least one * of the following places: within a NOTICE text file distributed * as part of the Derivative Works; within the Source form or * documentation, if provided along with the Derivative Works; or, * within a display generated by the Derivative Works, if and * wherever such third-party notices normally appear. The contents * of the NOTICE file are for informational purposes only and * do not modify the License. You may add Your own attribution * notices within Derivative Works that You distribute, alongside * or as an addendum to the NOTICE text from the Work, provided * that such additional attribution notices cannot be construed * as modifying the License. * * You may add Your own copyright statement to Your modifications and * may provide additional or different license terms and conditions * for use, reproduction, or distribution of Your modifications, or * for any such Derivative Works as a whole, provided Your use, * reproduction, and distribution of the Work otherwise complies with * the conditions stated in this License. * * 5. Submission of Contributions. Unless You explicitly state otherwise, * any Contribution intentionally submitted for inclusion in the Work * by You to the Licensor shall be under the terms and conditions of * this License, without any additional terms or conditions. * Notwithstanding the above, nothing herein shall supersede or modify * the terms of any separate license agreement you may have executed * with Licensor regarding such Contributions. * * 6. Trademarks. This License does not grant permission to use the trade * names, trademarks, service marks, or product names of the Licensor, * except as required for reasonable and customary use in describing the * origin of the Work and reproducing the content of the NOTICE file. * * 7. Disclaimer of Warranty. Unless required by applicable law or * agreed to in writing, Licensor provides the Work (and each * Contributor provides its Contributions) on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or * implied, including, without limitation, any warranties or conditions * of TITLE, NON-INFRINGEMENT, MERCHANTABILITY, or FITNESS FOR A * PARTICULAR PURPOSE. You are solely responsible for determining the * appropriateness of using or redistributing the Work and assume any * risks associated with Your exercise of permissions under this License. * * 8. Limitation of Liability. In no event and under no legal theory, * whether in tort (including negligence), contract, or otherwise, * unless required by applicable law (such as deliberate and grossly * negligent acts) or agreed to in writing, shall any Contributor be * liable to You for damages, including any direct, indirect, special, * incidental, or consequential damages of any character arising as a * result of this License or out of the use or inability to use the * Work (including but not limited to damages for loss of goodwill, * work stoppage, computer failure or malfunction, or any and all * other commercial damages or losses), even if such Contributor * has been advised of the possibility of such damages. * * 9. Accepting Warranty or Additional Liability. While redistributing * the Work or Derivative Works thereof, You may choose to offer, * and charge a fee for, acceptance of support, warranty, indemnity, * or other liability obligations and/or rights consistent with this * License. However, in accepting such obligations, You may act only * on Your own behalf and on Your sole responsibility, not on behalf * of any other Contributor, and only if You agree to indemnify, * defend, and hold each Contributor harmless for any liability * incurred by, or claims asserted against, such Contributor by reason * of your accepting any such warranty or additional liability. * * END OF TERMS AND CONDITIONS * * APPENDIX: How to apply the Apache License to your work. * * To apply the Apache License to your work, attach the following * boilerplate notice, with the fields enclosed by brackets "[]" * replaced with your own identifying information. (Don't include * the brackets!) The text should be enclosed in the appropriate * comment syntax for the file format. We also recommend that a * file or class name and description of purpose be included on the * same "printed page" as the copyright notice for easier * identification within third-party archives. * * Copyright 2016 Alibaba Group * * Licensed under the Apache License, Version 2.0 (the "License"); * you may not use this file except in compliance with the License. * You may obtain a copy of the License at * * http://www.apache.org/licenses/LICENSE-2.0 * * Unless required by applicable law or agreed to in writing, software * distributed under the License is distributed on an "AS IS" BASIS, * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. * See the License for the specific language governing permissions and * limitations under the License. * * */ package com.taobao.common.dexpatcher; import com.taobao.common.dexpatcher.algorithms.diff.*; import com.taobao.common.dexpatcher.struct.DexPatchFile; import com.taobao.common.dexpatcher.struct.PatchOperation; import com.taobao.dex.*; import com.taobao.dex.io.DexDataBuffer; import com.taobao.dx.util.IndexMap; import org.apache.commons.io.FileUtils; import java.io.*; import java.util.ArrayList; import java.util.HashSet; import java.util.List; import java.util.Set; import java.util.regex.Pattern; public class DexPatchGenerator { private static final String TAG = "DexPatchGenerator"; private final Dex oldDex; private final Dex newDex; private final DexPatcherLogger logger = new DexPatcherLogger(); private DexSectionDiffAlgorithm<StringData> stringDataSectionDiffAlg; private DexSectionDiffAlgorithm<Integer> typeIdSectionDiffAlg; private DexSectionDiffAlgorithm<ProtoId> protoIdSectionDiffAlg; private DexSectionDiffAlgorithm<FieldId> fieldIdSectionDiffAlg; private DexSectionDiffAlgorithm<MethodId> methodIdSectionDiffAlg; private DexSectionDiffAlgorithm<ClassDef> classDefSectionDiffAlg; private DexSectionDiffAlgorithm<TypeList> typeListSectionDiffAlg; private DexSectionDiffAlgorithm<AnnotationSetRefList> annotationSetRefListSectionDiffAlg; private DexSectionDiffAlgorithm<AnnotationSet> annotationSetSectionDiffAlg; private DexSectionDiffAlgorithm<ClassData> classDataSectionDiffAlg; private DexSectionDiffAlgorithm<Code> codeSectionDiffAlg; private DexSectionDiffAlgorithm<DebugInfoItem> debugInfoSectionDiffAlg; private DexSectionDiffAlgorithm<Annotation> annotationSectionDiffAlg; private DexSectionDiffAlgorithm<EncodedValue> encodedArraySectionDiffAlg; private DexSectionDiffAlgorithm<AnnotationsDirectory> annotationsDirectorySectionDiffAlg; private Set<String> additionalRemovingClassPatternSet; private int patchedHeaderOffset = 0; private int patchedStringIdsOffset = 0; private int patchedTypeIdsOffset = 0; private int patchedProtoIdsOffset = 0; private int patchedFieldIdsOffset = 0; private int patchedMethodIdsOffset = 0; private int patchedClassDefsOffset = 0; private int patchedTypeListsOffset = 0; private int patchedAnnotationItemsOffset = 0; private int patchedAnnotationSetItemsOffset = 0; private int patchedAnnotationSetRefListItemsOffset = 0; private int patchedAnnotationsDirectoryItemsOffset = 0; private int patchedDebugInfoItemsOffset = 0; private int patchedCodeItemsOffset = 0; private int patchedClassDataItemsOffset = 0; private int patchedStringDataItemsOffset = 0; private int patchedEncodedArrayItemsOffset = 0; private int patchedMapListOffset = 0; private int patchedDexSize = 0; public DexPatchGenerator(File oldDexFile, File newDexFile) throws IOException { this(new Dex(oldDexFile), new Dex(newDexFile)); } /** * Notice: you should close inputstream manually. */ public DexPatchGenerator(File oldDexFile, InputStream newDexStream) throws IOException { this(new Dex(oldDexFile), new Dex(newDexStream)); } /** * Notice: you should close inputstream manually. */ public DexPatchGenerator(InputStream oldDexStream, InputStream newDexStream) throws IOException { this(new Dex(oldDexStream), new Dex(newDexStream)); } public DexPatchGenerator(Dex oldDex, Dex newDex) { this.oldDex = oldDex; this.newDex = newDex; IndexMap oldToNewIndexMap = new IndexMap(); IndexMap oldToPatchedIndexMap = new IndexMap(); IndexMap newToPatchedIndexMap = new IndexMap(); IndexMap selfIndexMapForSkip = new IndexMap(); additionalRemovingClassPatternSet = new HashSet<String>(); this.stringDataSectionDiffAlg = new StringDataSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.typeIdSectionDiffAlg = new TypeIdSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.protoIdSectionDiffAlg = new ProtoIdSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.fieldIdSectionDiffAlg = new FieldIdSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.methodIdSectionDiffAlg = new MethodIdSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.classDefSectionDiffAlg = new ClassDefSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.typeListSectionDiffAlg = new TypeListSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.annotationSetRefListSectionDiffAlg = new AnnotationSetRefListSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.annotationSetSectionDiffAlg = new AnnotationSetSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.classDataSectionDiffAlg = new ClassDataSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.codeSectionDiffAlg = new CodeSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.debugInfoSectionDiffAlg = new DebugInfoItemSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.annotationSectionDiffAlg = new AnnotationSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.encodedArraySectionDiffAlg = new StaticValueSectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); this.annotationsDirectorySectionDiffAlg = new AnnotationsDirectorySectionDiffAlgorithm( oldDex, newDex, oldToNewIndexMap, oldToPatchedIndexMap, newToPatchedIndexMap, selfIndexMapForSkip ); } public void setLogger(DexPatcherLogger.IDexPatcherLogger logger) { this.logger.setLoggerImpl(logger); } public void executeAndSaveTo(File file) throws IOException { OutputStream os = null; try { os = new BufferedOutputStream(new FileOutputStream(file)); executeAndSaveTo(os); } finally { if (os != null) { try { os.close(); } catch (Exception e) { // ignored. } } } if (file.exists() && file.length() == 0L){ FileUtils.deleteQuietly(file); } } public void executeAndSaveTo(OutputStream out) throws IOException { // Firstly, collect information of items we want to remove additionally // in new dex and set them to corresponding diff algorithm implementations. Pattern[] classNamePatterns = new Pattern[this.additionalRemovingClassPatternSet.size()]; int classNamePatternCount = 0; for (String regExStr : this.additionalRemovingClassPatternSet) { classNamePatterns[classNamePatternCount++] = Pattern.compile(regExStr); } List<Integer> typeIdOfClassDefsToRemove = new ArrayList<Integer>(classNamePatternCount); List<Integer> offsetOfClassDatasToRemove = new ArrayList<Integer>(classNamePatternCount); for (ClassDef classDef : this.newDex.classDefs()) { String typeName = this.newDex.typeNames().get(classDef.typeIndex); for (Pattern pattern : classNamePatterns) { if (pattern.matcher(typeName).matches()) { typeIdOfClassDefsToRemove.add(classDef.typeIndex); offsetOfClassDatasToRemove.add(classDef.classDataOffset); break; } } } ((ClassDefSectionDiffAlgorithm) this.classDefSectionDiffAlg) .setTypeIdOfClassDefsToRemove(typeIdOfClassDefsToRemove); ((ClassDataSectionDiffAlgorithm) this.classDataSectionDiffAlg) .setOffsetOfClassDatasToRemove(offsetOfClassDatasToRemove); // Then, run diff algorithms according to sections' dependencies. // Use size calculated by algorithms above or from dex file definition to // calculate sections' offset and patched dex size. // Calculate header and id sections size, so that we can work out // the base offset of typeLists Section. int patchedheaderSize = SizeOf.HEADER_ITEM; int patchedStringIdsSize = newDex.getTableOfContents().stringIds.size * SizeOf.STRING_ID_ITEM; int patchedTypeIdsSize = newDex.getTableOfContents().typeIds.size * SizeOf.TYPE_ID_ITEM; // Although simulatePatchOperation can calculate this value, since protoIds section // depends on typeLists section, we can't run protoIds Section's simulatePatchOperation // method so far. Instead we calculate protoIds section's size using information in newDex // directly. int patchedProtoIdsSize = newDex.getTableOfContents().protoIds.size * SizeOf.PROTO_ID_ITEM; int patchedFieldIdsSize = newDex.getTableOfContents().fieldIds.size * SizeOf.MEMBER_ID_ITEM; int patchedMethodIdsSize = newDex.getTableOfContents().methodIds.size * SizeOf.MEMBER_ID_ITEM; int patchedClassDefsSize = newDex.getTableOfContents().classDefs.size * SizeOf.CLASS_DEF_ITEM; int patchedIdSectionSize = patchedStringIdsSize + patchedTypeIdsSize + patchedProtoIdsSize + patchedFieldIdsSize + patchedMethodIdsSize + patchedClassDefsSize; this.patchedHeaderOffset = 0; // The diff works on each sections obey such procedure: // 1. Execute diff algorithms to calculate indices of items we need to add, del and replace. // 2. Execute patch algorithm simulation to calculate indices and offsets mappings that is // necessary to next section's diff works. // Immediately do the patch simulation so that we can know: // 1. Indices and offsets mapping between old dex and patched dex. // 2. Indices and offsets mapping between new dex and patched dex. // These information will be used to do next diff works. this.patchedStringIdsOffset = patchedHeaderOffset + patchedheaderSize; if (this.oldDex.getTableOfContents().stringIds.isElementFourByteAligned) { this.patchedStringIdsOffset = SizeOf.roundToTimesOfFour(this.patchedStringIdsOffset); } this.stringDataSectionDiffAlg.execute(); this.patchedStringDataItemsOffset = patchedheaderSize + patchedIdSectionSize; if (this.oldDex.getTableOfContents().stringDatas.isElementFourByteAligned) { this.patchedStringDataItemsOffset = SizeOf.roundToTimesOfFour(this.patchedStringDataItemsOffset); } this.stringDataSectionDiffAlg.simulatePatchOperation(this.patchedStringDataItemsOffset); this.typeIdSectionDiffAlg.execute(); this.patchedTypeIdsOffset = this.patchedStringIdsOffset + patchedStringIdsSize; if (this.oldDex.getTableOfContents().typeIds.isElementFourByteAligned) { this.patchedTypeIdsOffset = SizeOf.roundToTimesOfFour(this.patchedTypeIdsOffset); } this.typeIdSectionDiffAlg.simulatePatchOperation(this.patchedTypeIdsOffset); this.typeListSectionDiffAlg.execute(); this.patchedTypeListsOffset = patchedheaderSize + patchedIdSectionSize + this.stringDataSectionDiffAlg.getPatchedSectionSize(); if (this.oldDex.getTableOfContents().typeLists.isElementFourByteAligned) { this.patchedTypeListsOffset = SizeOf.roundToTimesOfFour(this.patchedTypeListsOffset); } this.typeListSectionDiffAlg.simulatePatchOperation(this.patchedTypeListsOffset); this.protoIdSectionDiffAlg.execute(); this.patchedProtoIdsOffset = this.patchedTypeIdsOffset + patchedTypeIdsSize; if (this.oldDex.getTableOfContents().protoIds.isElementFourByteAligned) { this.patchedProtoIdsOffset = SizeOf.roundToTimesOfFour(this.patchedProtoIdsOffset); } this.protoIdSectionDiffAlg.simulatePatchOperation(this.patchedProtoIdsOffset); this.fieldIdSectionDiffAlg.execute(); this.patchedFieldIdsOffset = this.patchedProtoIdsOffset + patchedProtoIdsSize; if (this.oldDex.getTableOfContents().fieldIds.isElementFourByteAligned) { this.patchedFieldIdsOffset = SizeOf.roundToTimesOfFour(this.patchedFieldIdsOffset); } this.fieldIdSectionDiffAlg.simulatePatchOperation(this.patchedFieldIdsOffset); this.methodIdSectionDiffAlg.execute(); this.patchedMethodIdsOffset = this.patchedFieldIdsOffset + patchedFieldIdsSize; if (this.oldDex.getTableOfContents().methodIds.isElementFourByteAligned) { this.patchedMethodIdsOffset = SizeOf.roundToTimesOfFour(this.patchedMethodIdsOffset); } this.methodIdSectionDiffAlg.simulatePatchOperation(this.patchedMethodIdsOffset); this.annotationSectionDiffAlg.execute(); this.patchedAnnotationItemsOffset = this.patchedTypeListsOffset + this.typeListSectionDiffAlg.getPatchedSectionSize(); if (this.oldDex.getTableOfContents().annotations.isElementFourByteAligned) { this.patchedAnnotationItemsOffset = SizeOf.roundToTimesOfFour(this.patchedAnnotationItemsOffset); } this.annotationSectionDiffAlg.simulatePatchOperation(this.patchedAnnotationItemsOffset); this.annotationSetSectionDiffAlg.execute(); this.patchedAnnotationSetItemsOffset = this.patchedAnnotationItemsOffset + this.annotationSectionDiffAlg.getPatchedSectionSize(); if (this.oldDex.getTableOfContents().annotationSets.isElementFourByteAligned) { this.patchedAnnotationSetItemsOffset = SizeOf.roundToTimesOfFour(this.patchedAnnotationSetItemsOffset); } this.annotationSetSectionDiffAlg.simulatePatchOperation( this.patchedAnnotationSetItemsOffset ); this.annotationSetRefListSectionDiffAlg.execute(); this.patchedAnnotationSetRefListItemsOffset = this.patchedAnnotationSetItemsOffset + this.annotationSetSectionDiffAlg.getPatchedSectionSize(); if (this.oldDex.getTableOfContents().annotationSetRefLists.isElementFourByteAligned) { this.patchedAnnotationSetRefListItemsOffset = SizeOf.roundToTimesOfFour(this.patchedAnnotationSetRefListItemsOffset); } this.annotationSetRefListSectionDiffAlg.simulatePatchOperation( this.patchedAnnotationSetRefListItemsOffset ); this.annotationsDirectorySectionDiffAlg.execute(); this.patchedAnnotationsDirectoryItemsOffset = this.patchedAnnotationSetRefListItemsOffset + this.annotationSetRefListSectionDiffAlg.getPatchedSectionSize(); if (this.oldDex.getTableOfContents().annotationsDirectories.isElementFourByteAligned) { this.patchedAnnotationsDirectoryItemsOffset = SizeOf.roundToTimesOfFour(this.patchedAnnotationsDirectoryItemsOffset); } this.annotationsDirectorySectionDiffAlg.simulatePatchOperation( this.patchedAnnotationsDirectoryItemsOffset ); this.debugInfoSectionDiffAlg.execute(); this.patchedDebugInfoItemsOffset = this.patchedAnnotationsDirectoryItemsOffset + this.annotationsDirectorySectionDiffAlg.getPatchedSectionSize(); if (this.oldDex.getTableOfContents().debugInfos.isElementFourByteAligned) { this.patchedDebugInfoItemsOffset = SizeOf.roundToTimesOfFour(this.patchedDebugInfoItemsOffset); } this.debugInfoSectionDiffAlg.simulatePatchOperation(this.patchedDebugInfoItemsOffset); this.codeSectionDiffAlg.execute(); this.patchedCodeItemsOffset = this.patchedDebugInfoItemsOffset + this.debugInfoSectionDiffAlg.getPatchedSectionSize(); if (this.oldDex.getTableOfContents().codes.isElementFourByteAligned) { this.patchedCodeItemsOffset = SizeOf.roundToTimesOfFour(this.patchedCodeItemsOffset); } this.codeSectionDiffAlg.simulatePatchOperation(this.patchedCodeItemsOffset); this.classDataSectionDiffAlg.execute(); this.patchedClassDataItemsOffset = this.patchedCodeItemsOffset + this.codeSectionDiffAlg.getPatchedSectionSize(); if (this.oldDex.getTableOfContents().classDatas.isElementFourByteAligned) { this.patchedClassDataItemsOffset = SizeOf.roundToTimesOfFour(this.patchedClassDataItemsOffset); } this.classDataSectionDiffAlg.simulatePatchOperation(this.patchedClassDataItemsOffset); this.encodedArraySectionDiffAlg.execute(); this.patchedEncodedArrayItemsOffset = this.patchedClassDataItemsOffset + this.classDataSectionDiffAlg.getPatchedSectionSize(); if (this.oldDex.getTableOfContents().encodedArrays.isElementFourByteAligned) { this.patchedEncodedArrayItemsOffset = SizeOf.roundToTimesOfFour(this.patchedEncodedArrayItemsOffset); } this.encodedArraySectionDiffAlg.simulatePatchOperation(this.patchedEncodedArrayItemsOffset); this.classDefSectionDiffAlg.execute(); this.patchedClassDefsOffset = this.patchedMethodIdsOffset + patchedMethodIdsSize; if (this.oldDex.getTableOfContents().classDefs.isElementFourByteAligned) { this.patchedClassDefsOffset = SizeOf.roundToTimesOfFour(this.patchedClassDefsOffset); } // Calculate any values we still know nothing about them. this.patchedMapListOffset = this.patchedEncodedArrayItemsOffset + this.encodedArraySectionDiffAlg.getPatchedSectionSize(); if (this.oldDex.getTableOfContents().mapList.isElementFourByteAligned) { this.patchedMapListOffset = SizeOf.roundToTimesOfFour(this.patchedMapListOffset); } int patchedMapListSize = newDex.getTableOfContents().mapList.byteCount; this.patchedDexSize = this.patchedMapListOffset + patchedMapListSize; // Finally, write results to patch file. writeResultToStream(out); } private void writeResultToStream(OutputStream os) throws IOException { if (stringDataSectionDiffAlg.getPatchOperationList().size() == 0 && typeIdSectionDiffAlg.getPatchOperationList().size() == 0 && typeListSectionDiffAlg.getPatchOperationList().size() == 0&& protoIdSectionDiffAlg.getPatchOperationList().size() == 0 && fieldIdSectionDiffAlg.getPatchOperationList().size() == 0&& methodIdSectionDiffAlg.getPatchOperationList().size() == 0&& annotationSectionDiffAlg.getPatchOperationList().size() == 0&& annotationSetSectionDiffAlg.getPatchOperationList().size() == 0&& annotationSetRefListSectionDiffAlg.getPatchOperationList().size() == 0&& annotationsDirectorySectionDiffAlg.getPatchOperationList().size() == 0&& debugInfoSectionDiffAlg.getPatchOperationList().size() == 0&& codeSectionDiffAlg.getPatchOperationList().size() == 0&& classDataSectionDiffAlg.getPatchOperationList().size() == 0&& encodedArraySectionDiffAlg.getPatchOperationList().size() == 0&& classDefSectionDiffAlg.getPatchOperationList().size() == 0){ return; } DexDataBuffer buffer = new DexDataBuffer(); buffer.write(DexPatchFile.MAGIC); buffer.writeShort(DexPatchFile.CURRENT_VERSION); buffer.writeInt(this.patchedDexSize); // we will return here to write firstChunkOffset later. int posOfFirstChunkOffsetField = buffer.position(); buffer.writeInt(0); buffer.writeInt(this.patchedStringIdsOffset); buffer.writeInt(this.patchedTypeIdsOffset); buffer.writeInt(this.patchedProtoIdsOffset); buffer.writeInt(this.patchedFieldIdsOffset); buffer.writeInt(this.patchedMethodIdsOffset); buffer.writeInt(this.patchedClassDefsOffset); buffer.writeInt(this.patchedMapListOffset); buffer.writeInt(this.patchedTypeListsOffset); buffer.writeInt(this.patchedAnnotationSetRefListItemsOffset); buffer.writeInt(this.patchedAnnotationSetItemsOffset); buffer.writeInt(this.patchedClassDataItemsOffset); buffer.writeInt(this.patchedCodeItemsOffset); buffer.writeInt(this.patchedStringDataItemsOffset); buffer.writeInt(this.patchedDebugInfoItemsOffset); buffer.writeInt(this.patchedAnnotationItemsOffset); buffer.writeInt(this.patchedEncodedArrayItemsOffset); buffer.writeInt(this.patchedAnnotationsDirectoryItemsOffset); buffer.write(this.oldDex.computeSignature(false)); int firstChunkOffset = buffer.position(); buffer.position(posOfFirstChunkOffsetField); buffer.writeInt(firstChunkOffset); buffer.position(firstChunkOffset); writePatchOperations(buffer, this.stringDataSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.typeIdSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.typeListSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.protoIdSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.fieldIdSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.methodIdSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.annotationSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.annotationSetSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.annotationSetRefListSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.annotationsDirectorySectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.debugInfoSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.codeSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.classDataSectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.encodedArraySectionDiffAlg.getPatchOperationList()); writePatchOperations(buffer, this.classDefSectionDiffAlg.getPatchOperationList()); byte[] bufferData = buffer.array(); os.write(bufferData); os.flush(); } private <T extends Comparable<T>> void writePatchOperations( DexDataBuffer buffer, List<PatchOperation<T>> patchOperationList ) { List<Integer> delOpIndexList = new ArrayList<Integer>(patchOperationList.size()); List<Integer> addOpIndexList = new ArrayList<Integer>(patchOperationList.size()); List<Integer> replaceOpIndexList = new ArrayList<Integer>(patchOperationList.size()); List<T> newItemList = new ArrayList<T>(patchOperationList.size()); for (PatchOperation<T> patchOperation : patchOperationList) { switch (patchOperation.op) { case PatchOperation.OP_DEL: { delOpIndexList.add(patchOperation.index); break; } case PatchOperation.OP_ADD: { addOpIndexList.add(patchOperation.index); newItemList.add(patchOperation.newItem); break; } case PatchOperation.OP_REPLACE: { replaceOpIndexList.add(patchOperation.index); newItemList.add(patchOperation.newItem); break; } } } buffer.writeUleb128(delOpIndexList.size()); int lastIndex = 0; for (Integer index : delOpIndexList) { buffer.writeSleb128(index - lastIndex); lastIndex = index; } buffer.writeUleb128(addOpIndexList.size()); lastIndex = 0; for (Integer index : addOpIndexList) { buffer.writeSleb128(index - lastIndex); lastIndex = index; } buffer.writeUleb128(replaceOpIndexList.size()); lastIndex = 0; for (Integer index : replaceOpIndexList) { buffer.writeSleb128(index - lastIndex); lastIndex = index; } for (T newItem : newItemList) { if (newItem instanceof StringData) { buffer.writeStringData((StringData) newItem); } else if (newItem instanceof Integer) { // TypeId item. buffer.writeInt((Integer) newItem); } else if (newItem instanceof TypeList) { buffer.writeTypeList((TypeList) newItem); } else if (newItem instanceof ProtoId) { buffer.writeProtoId((ProtoId) newItem); } else if (newItem instanceof FieldId) { buffer.writeFieldId((FieldId) newItem); } else if (newItem instanceof MethodId) { buffer.writeMethodId((MethodId) newItem); } else if (newItem instanceof Annotation) { buffer.writeAnnotation((Annotation) newItem); } else if (newItem instanceof AnnotationSet) { buffer.writeAnnotationSet((AnnotationSet) newItem); } else if (newItem instanceof AnnotationSetRefList) { buffer.writeAnnotationSetRefList( (AnnotationSetRefList) newItem ); } else if (newItem instanceof AnnotationsDirectory) { buffer.writeAnnotationsDirectory( (AnnotationsDirectory) newItem ); } else if (newItem instanceof DebugInfoItem) { buffer.writeDebugInfoItem((DebugInfoItem) newItem); } else if (newItem instanceof Code) { buffer.writeCode((Code) newItem); } else if (newItem instanceof ClassData) { buffer.writeClassData((ClassData) newItem); } else if (newItem instanceof EncodedValue) { buffer.writeEncodedArray((EncodedValue) newItem); } else if (newItem instanceof ClassDef) { buffer.writeClassDef((ClassDef) newItem); } else { throw new IllegalStateException( "Unknown item type: " + newItem.getClass() ); } } } }