362 lines
14 KiB
Go
362 lines
14 KiB
Go
// Copyright 2019 Google Inc. All rights reserved.
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//
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// Licensed under the Apache License, Version 2.0 (the "License");
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// you may not use this file except in compliance with the License.
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// You may obtain a copy of the License at
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//
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// http://www.apache.org/licenses/LICENSE-2.0
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//
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// Unless required by applicable law or agreed to in writing, software
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// distributed under the License is distributed on an "AS IS" BASIS,
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// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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// See the License for the specific language governing permissions and
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// limitations under the License.
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package java
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import (
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"github.com/google/blueprint"
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"android/soong/android"
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)
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var hiddenAPIGenerateCSVRule = pctx.AndroidStaticRule("hiddenAPIGenerateCSV", blueprint.RuleParams{
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Command: "${config.Class2NonSdkList} --stub-api-flags ${stubAPIFlags} $in $outFlag $out",
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CommandDeps: []string{"${config.Class2NonSdkList}"},
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}, "outFlag", "stubAPIFlags")
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type hiddenAPI struct {
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// The name of the module as it would be used in the boot jars configuration, e.g. without any
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// prebuilt_ prefix (if it is a prebuilt) and without any ".impl" suffix if it is a
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// java_sdk_library implementation library.
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configurationName string
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// True if the module containing this structure contributes to the hiddenapi information or has
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// that information encoded within it.
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active bool
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// Identifies the active module variant which will be used as the source of hiddenapi information.
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//
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// A class may be compiled into a number of different module variants each of which will need the
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// hiddenapi information encoded into it and so will be marked as active. However, only one of
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// them must be used as a source of information by hiddenapi otherwise it will end up with
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// duplicate entries. That module will have primary=true.
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//
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// Note, that modules <x>-hiddenapi that provide additional annotation information for module <x>
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// that is on the bootclasspath are marked as primary=true as they are the primary source of that
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// annotation information.
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primary bool
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// The path to the dex jar that is in the boot class path. If this is nil then the associated
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// module is not a boot jar, but could be one of the <x>-hiddenapi modules that provide additional
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// annotations for the <x> boot dex jar but which do not actually provide a boot dex jar
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// themselves.
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//
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// This must be the path to the unencoded dex jar as the encoded dex jar indirectly depends on
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// this file so using the encoded dex jar here would result in a cycle in the ninja rules.
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bootDexJarPath android.Path
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// The path to the CSV file that contains mappings from Java signature to various flags derived
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// from annotations in the source, e.g. whether it is public or the sdk version above which it
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// can no longer be used.
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//
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// It is created by the Class2NonSdkList tool which processes the .class files in the class
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// implementation jar looking for UnsupportedAppUsage and CovariantReturnType annotations. The
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// tool also consumes the hiddenAPISingletonPathsStruct.stubFlags file in order to perform
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// consistency checks on the information in the annotations and to filter out bridge methods
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// that are already part of the public API.
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flagsCSVPath android.Path
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// The path to the CSV file that contains mappings from Java signature to the value of properties
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// specified on UnsupportedAppUsage annotations in the source.
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//
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// Like the flagsCSVPath file this is also created by the Class2NonSdkList in the same way.
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// Although the two files could potentially be created in a single invocation of the
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// Class2NonSdkList at the moment they are created using their own invocation, with the behavior
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// being determined by the property that is used.
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metadataCSVPath android.Path
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// The path to the CSV file that contains mappings from Java signature to source location
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// information.
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//
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// It is created by the merge_csv tool which processes the class implementation jar, extracting
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// all the files ending in .uau (which are CSV files) and merges them together. The .uau files are
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// created by the unsupported app usage annotation processor during compilation of the class
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// implementation jar.
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indexCSVPath android.Path
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}
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func (h *hiddenAPI) flagsCSV() android.Path {
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return h.flagsCSVPath
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}
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func (h *hiddenAPI) metadataCSV() android.Path {
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return h.metadataCSVPath
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}
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func (h *hiddenAPI) bootDexJar() android.Path {
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return h.bootDexJarPath
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}
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func (h *hiddenAPI) indexCSV() android.Path {
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return h.indexCSVPath
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}
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type hiddenAPIIntf interface {
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bootDexJar() android.Path
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flagsCSV() android.Path
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indexCSV() android.Path
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metadataCSV() android.Path
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}
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var _ hiddenAPIIntf = (*hiddenAPI)(nil)
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// Initialize the hiddenapi structure
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func (h *hiddenAPI) initHiddenAPI(ctx android.BaseModuleContext, configurationName string) {
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// If hiddenapi processing is disabled treat this as inactive.
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if ctx.Config().IsEnvTrue("UNSAFE_DISABLE_HIDDENAPI_FLAGS") {
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return
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}
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h.configurationName = configurationName
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// It is important that hiddenapi information is only gathered for/from modules that are actually
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// on the boot jars list because the runtime only enforces access to the hidden API for the
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// bootclassloader. If information is gathered for modules not on the list then that will cause
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// failures in the CtsHiddenApiBlocklist... tests.
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module := ctx.Module()
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h.active = isModuleInBootClassPath(ctx, module)
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if !h.active {
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// The rest of the properties will be ignored if active is false.
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return
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}
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// Determine whether this module is the primary module or not.
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primary := true
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// A prebuilt module is only primary if it is preferred and conversely a source module is only
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// primary if it has not been replaced by a prebuilt module.
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if pi, ok := module.(android.PrebuiltInterface); ok {
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if p := pi.Prebuilt(); p != nil {
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primary = p.UsePrebuilt()
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}
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} else {
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// The only module that will pass a different configurationName to its module name to this
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// method is the implementation library of a java_sdk_library. It has a configuration name of
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// <x> the same as its parent java_sdk_library but a module name of <x>.impl. It is not the
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// primary module, the java_sdk_library with the name of <x> is.
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primary = configurationName == ctx.ModuleName()
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// A source module that has been replaced by a prebuilt can never be the primary module.
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if module.IsReplacedByPrebuilt() {
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ctx.VisitDirectDepsWithTag(android.PrebuiltDepTag, func(prebuilt android.Module) {
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if h, ok := prebuilt.(hiddenAPIIntf); ok && h.bootDexJar() != nil {
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primary = false
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} else {
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ctx.ModuleErrorf(
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"hiddenapi has determined that the source module %q should be ignored as it has been"+
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" replaced by the prebuilt module %q but unfortunately it does not provide a"+
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" suitable boot dex jar", ctx.ModuleName(), ctx.OtherModuleName(prebuilt))
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}
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})
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}
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}
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h.primary = primary
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}
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func isModuleInBootClassPath(ctx android.BaseModuleContext, module android.Module) bool {
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// Get the configured non-updatable and updatable boot jars.
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nonUpdatableBootJars := ctx.Config().NonUpdatableBootJars()
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updatableBootJars := ctx.Config().UpdatableBootJars()
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active := isModuleInConfiguredList(ctx, module, nonUpdatableBootJars) ||
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isModuleInConfiguredList(ctx, module, updatableBootJars)
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return active
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}
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// hiddenAPIExtractAndEncode is called by any module that could contribute to the hiddenapi
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// processing.
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//
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// It ignores any module that has not had initHiddenApi() called on it and which is not in the boot
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// jar list.
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//
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// Otherwise, it generates ninja rules to do the following:
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// 1. Extract information needed for hiddenapi processing from the module and output it into CSV
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// files.
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// 2. Conditionally adds the supplied dex file to the list of files used to generate the
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// hiddenAPISingletonPathsStruct.stubsFlag file.
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// 3. Conditionally creates a copy of the supplied dex file into which it has encoded the hiddenapi
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// flags and returns this instead of the supplied dex jar, otherwise simply returns the supplied
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// dex jar.
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func (h *hiddenAPI) hiddenAPIExtractAndEncode(ctx android.ModuleContext, dexJar android.OutputPath,
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implementationJar android.Path, uncompressDex bool) android.OutputPath {
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if !h.active {
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return dexJar
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}
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h.hiddenAPIExtractInformation(ctx, dexJar, implementationJar)
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hiddenAPIJar := android.PathForModuleOut(ctx, "hiddenapi", h.configurationName+".jar").OutputPath
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// Create a copy of the dex jar which has been encoded with hiddenapi flags.
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hiddenAPIEncodeDex(ctx, hiddenAPIJar, dexJar, uncompressDex)
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// Use the encoded dex jar from here onwards.
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dexJar = hiddenAPIJar
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return dexJar
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}
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// hiddenAPIExtractInformation generates ninja rules to extract the information from the classes
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// jar, and outputs it to the appropriate module specific CSV file.
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//
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// It also makes the dex jar available for use when generating the
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// hiddenAPISingletonPathsStruct.stubFlags.
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func (h *hiddenAPI) hiddenAPIExtractInformation(ctx android.ModuleContext, dexJar, classesJar android.Path) {
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if !h.active {
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return
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}
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// More than one library with the same classes may need to be encoded but only one should be
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// used as a source of information for hidden API processing otherwise it will result in
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// duplicate entries in the files.
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if !h.primary {
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return
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}
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classesJars := android.Paths{classesJar}
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ctx.VisitDirectDepsWithTag(hiddenApiAnnotationsTag, func(dep android.Module) {
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javaInfo := ctx.OtherModuleProvider(dep, JavaInfoProvider).(JavaInfo)
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classesJars = append(classesJars, javaInfo.ImplementationJars...)
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})
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stubFlagsCSV := hiddenAPISingletonPaths(ctx).stubFlags
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flagsCSV := android.PathForModuleOut(ctx, "hiddenapi", "flags.csv")
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ctx.Build(pctx, android.BuildParams{
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Rule: hiddenAPIGenerateCSVRule,
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Description: "hiddenapi flags",
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Inputs: classesJars,
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Output: flagsCSV,
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Implicit: stubFlagsCSV,
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Args: map[string]string{
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"outFlag": "--write-flags-csv",
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"stubAPIFlags": stubFlagsCSV.String(),
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},
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})
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h.flagsCSVPath = flagsCSV
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metadataCSV := android.PathForModuleOut(ctx, "hiddenapi", "metadata.csv")
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ctx.Build(pctx, android.BuildParams{
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Rule: hiddenAPIGenerateCSVRule,
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Description: "hiddenapi metadata",
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Inputs: classesJars,
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Output: metadataCSV,
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Implicit: stubFlagsCSV,
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Args: map[string]string{
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"outFlag": "--write-metadata-csv",
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"stubAPIFlags": stubFlagsCSV.String(),
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},
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})
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h.metadataCSVPath = metadataCSV
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indexCSV := android.PathForModuleOut(ctx, "hiddenapi", "index.csv")
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rule := android.NewRuleBuilder(pctx, ctx)
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rule.Command().
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BuiltTool("merge_csv").
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Flag("--zip_input").
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Flag("--key_field signature").
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FlagWithOutput("--output=", indexCSV).
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Inputs(classesJars)
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rule.Build("merged-hiddenapi-index", "Merged Hidden API index")
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h.indexCSVPath = indexCSV
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// Save the unencoded dex jar so it can be used when generating the
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// hiddenAPISingletonPathsStruct.stubFlags file.
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h.bootDexJarPath = dexJar
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}
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var hiddenAPIEncodeDexRule = pctx.AndroidStaticRule("hiddenAPIEncodeDex", blueprint.RuleParams{
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Command: `rm -rf $tmpDir && mkdir -p $tmpDir && mkdir $tmpDir/dex-input && mkdir $tmpDir/dex-output &&
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unzip -qoDD $in 'classes*.dex' -d $tmpDir/dex-input &&
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for INPUT_DEX in $$(find $tmpDir/dex-input -maxdepth 1 -name 'classes*.dex' | sort); do
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echo "--input-dex=$${INPUT_DEX}";
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echo "--output-dex=$tmpDir/dex-output/$$(basename $${INPUT_DEX})";
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done | xargs ${config.HiddenAPI} encode --api-flags=$flagsCsv $hiddenapiFlags &&
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${config.SoongZipCmd} $soongZipFlags -o $tmpDir/dex.jar -C $tmpDir/dex-output -f "$tmpDir/dex-output/classes*.dex" &&
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${config.MergeZipsCmd} -D -zipToNotStrip $tmpDir/dex.jar -stripFile "classes*.dex" -stripFile "**/*.uau" $out $tmpDir/dex.jar $in`,
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CommandDeps: []string{
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"${config.HiddenAPI}",
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"${config.SoongZipCmd}",
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"${config.MergeZipsCmd}",
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},
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}, "flagsCsv", "hiddenapiFlags", "tmpDir", "soongZipFlags")
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func hiddenAPIEncodeDex(ctx android.ModuleContext, output android.WritablePath, dexInput android.Path,
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uncompressDex bool) {
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flagsCSV := hiddenAPISingletonPaths(ctx).flags
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// The encode dex rule requires unzipping and rezipping the classes.dex files, ensure that if it was uncompressed
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// in the input it stays uncompressed in the output.
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soongZipFlags := ""
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hiddenapiFlags := ""
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tmpOutput := output
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tmpDir := android.PathForModuleOut(ctx, "hiddenapi", "dex")
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if uncompressDex {
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soongZipFlags = "-L 0"
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tmpOutput = android.PathForModuleOut(ctx, "hiddenapi", "unaligned", "unaligned.jar")
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tmpDir = android.PathForModuleOut(ctx, "hiddenapi", "unaligned")
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}
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enforceHiddenApiFlagsToAllMembers := true
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// If frameworks/base doesn't exist we must be building with the 'master-art' manifest.
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// Disable assertion that all methods/fields have hidden API flags assigned.
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if !ctx.Config().FrameworksBaseDirExists(ctx) {
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enforceHiddenApiFlagsToAllMembers = false
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}
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// b/149353192: when a module is instrumented, jacoco adds synthetic members
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// $jacocoData and $jacocoInit. Since they don't exist when building the hidden API flags,
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// don't complain when we don't find hidden API flags for the synthetic members.
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if j, ok := ctx.Module().(interface {
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shouldInstrument(android.BaseModuleContext) bool
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}); ok && j.shouldInstrument(ctx) {
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enforceHiddenApiFlagsToAllMembers = false
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}
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if !enforceHiddenApiFlagsToAllMembers {
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hiddenapiFlags = "--no-force-assign-all"
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}
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ctx.Build(pctx, android.BuildParams{
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Rule: hiddenAPIEncodeDexRule,
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Description: "hiddenapi encode dex",
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Input: dexInput,
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Output: tmpOutput,
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Implicit: flagsCSV,
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Args: map[string]string{
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"flagsCsv": flagsCSV.String(),
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"tmpDir": tmpDir.String(),
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"soongZipFlags": soongZipFlags,
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"hiddenapiFlags": hiddenapiFlags,
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},
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})
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if uncompressDex {
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TransformZipAlign(ctx, output, tmpOutput)
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}
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}
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type hiddenApiAnnotationsDependencyTag struct {
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blueprint.BaseDependencyTag
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}
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// Tag used to mark dependencies on java_library instances that contains Java source files whose
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// sole purpose is to provide additional hiddenapi annotations.
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var hiddenApiAnnotationsTag hiddenApiAnnotationsDependencyTag
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// Mark this tag so dependencies that use it are excluded from APEX contents.
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func (t hiddenApiAnnotationsDependencyTag) ExcludeFromApexContents() {}
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var _ android.ExcludeFromApexContentsTag = hiddenApiAnnotationsTag
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