5e03586365
snapshot modules require the list of static libs to find the NOTICE files for the snapshot modules. snapshot binaries must include static_executable property to check if non static binaries have libc as a static lib. Bug: 190690041 Test: Check NOTICE for libaudiopreprocessing.so built from snapshots. Change-Id: I53f7549a158ab27ada87833a3f4d58620aa7c3cf
560 lines
18 KiB
Go
560 lines
18 KiB
Go
// Copyright 2020 The Android Open Source Project
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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 cc
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// This file contains singletons to capture vendor and recovery snapshot. They consist of prebuilt
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// modules under AOSP so older vendor and recovery can be built with a newer system in a single
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// source tree.
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import (
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"encoding/json"
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"path/filepath"
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"sort"
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"strings"
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"android/soong/android"
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)
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var vendorSnapshotSingleton = snapshotSingleton{
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"vendor",
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"SOONG_VENDOR_SNAPSHOT_ZIP",
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android.OptionalPath{},
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true,
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VendorSnapshotImageSingleton,
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false, /* fake */
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}
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var vendorFakeSnapshotSingleton = snapshotSingleton{
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"vendor",
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"SOONG_VENDOR_FAKE_SNAPSHOT_ZIP",
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android.OptionalPath{},
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true,
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VendorSnapshotImageSingleton,
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true, /* fake */
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}
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var recoverySnapshotSingleton = snapshotSingleton{
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"recovery",
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"SOONG_RECOVERY_SNAPSHOT_ZIP",
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android.OptionalPath{},
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false,
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recoverySnapshotImageSingleton,
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false, /* fake */
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}
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func VendorSnapshotSingleton() android.Singleton {
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return &vendorSnapshotSingleton
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}
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func VendorFakeSnapshotSingleton() android.Singleton {
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return &vendorFakeSnapshotSingleton
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}
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func RecoverySnapshotSingleton() android.Singleton {
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return &recoverySnapshotSingleton
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}
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type snapshotSingleton struct {
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// Name, e.g., "vendor", "recovery", "ramdisk".
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name string
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// Make variable that points to the snapshot file, e.g.,
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// "SOONG_RECOVERY_SNAPSHOT_ZIP".
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makeVar string
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// Path to the snapshot zip file.
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snapshotZipFile android.OptionalPath
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// Whether the image supports VNDK extension modules.
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supportsVndkExt bool
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// Implementation of the image interface specific to the image
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// associated with this snapshot (e.g., specific to the vendor image,
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// recovery image, etc.).
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image SnapshotImage
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// Whether this singleton is for fake snapshot or not.
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// Fake snapshot is a snapshot whose prebuilt binaries and headers are empty.
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// It is much faster to generate, and can be used to inspect dependencies.
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fake bool
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}
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// Determine if a dir under source tree is an SoC-owned proprietary directory based
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// on vendor snapshot configuration
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// Examples: device/, vendor/
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func isVendorProprietaryPath(dir string, deviceConfig android.DeviceConfig) bool {
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return VendorSnapshotSingleton().(*snapshotSingleton).image.isProprietaryPath(dir, deviceConfig)
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}
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// Determine if a dir under source tree is an SoC-owned proprietary directory based
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// on recovery snapshot configuration
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// Examples: device/, vendor/
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func isRecoveryProprietaryPath(dir string, deviceConfig android.DeviceConfig) bool {
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return RecoverySnapshotSingleton().(*snapshotSingleton).image.isProprietaryPath(dir, deviceConfig)
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}
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func IsVendorProprietaryModule(ctx android.BaseModuleContext) bool {
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// Any module in a vendor proprietary path is a vendor proprietary
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// module.
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if isVendorProprietaryPath(ctx.ModuleDir(), ctx.DeviceConfig()) {
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return true
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}
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// However if the module is not in a vendor proprietary path, it may
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// still be a vendor proprietary module. This happens for cc modules
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// that are excluded from the vendor snapshot, and it means that the
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// vendor has assumed control of the framework-provided module.
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if c, ok := ctx.Module().(LinkableInterface); ok {
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if c.ExcludeFromVendorSnapshot() {
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return true
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}
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}
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return false
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}
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func isRecoveryProprietaryModule(ctx android.BaseModuleContext) bool {
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// Any module in a recovery proprietary path is a recovery proprietary
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// module.
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if isRecoveryProprietaryPath(ctx.ModuleDir(), ctx.DeviceConfig()) {
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return true
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}
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// However if the module is not in a recovery proprietary path, it may
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// still be a recovery proprietary module. This happens for cc modules
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// that are excluded from the recovery snapshot, and it means that the
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// vendor has assumed control of the framework-provided module.
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if c, ok := ctx.Module().(LinkableInterface); ok {
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if c.ExcludeFromRecoverySnapshot() {
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return true
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}
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}
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return false
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}
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// Determines if the module is a candidate for snapshot.
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func isSnapshotAware(cfg android.DeviceConfig, m LinkableInterface, inProprietaryPath bool, apexInfo android.ApexInfo, image SnapshotImage) bool {
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if !m.Enabled() || m.HiddenFromMake() {
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return false
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}
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// When android/prebuilt.go selects between source and prebuilt, it sets
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// HideFromMake on the other one to avoid duplicate install rules in make.
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if m.IsHideFromMake() {
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return false
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}
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// skip proprietary modules, but (for the vendor snapshot only)
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// include all VNDK (static)
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if inProprietaryPath && (!image.includeVndk() || !m.IsVndk()) {
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return false
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}
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// If the module would be included based on its path, check to see if
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// the module is marked to be excluded. If so, skip it.
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if image.excludeFromSnapshot(m) {
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return false
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}
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if m.Target().Os.Class != android.Device {
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return false
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}
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if m.Target().NativeBridge == android.NativeBridgeEnabled {
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return false
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}
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// the module must be installed in target image
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if !apexInfo.IsForPlatform() || m.IsSnapshotPrebuilt() || !image.inImage(m)() {
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return false
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}
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// skip kernel_headers which always depend on vendor
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if m.KernelHeadersDecorator() {
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return false
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}
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if m.IsLlndk() {
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return false
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}
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// Libraries
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if sanitizable, ok := m.(PlatformSanitizeable); ok && sanitizable.IsSnapshotLibrary() {
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if sanitizable.SanitizePropDefined() {
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// scs and hwasan export both sanitized and unsanitized variants for static and header
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// Always use unsanitized variants of them.
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for _, t := range []SanitizerType{scs, Hwasan} {
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if !sanitizable.Shared() && sanitizable.IsSanitizerEnabled(t) {
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return false
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}
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}
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// cfi also exports both variants. But for static, we capture both.
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// This is because cfi static libraries can't be linked from non-cfi modules,
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// and vice versa. This isn't the case for scs and hwasan sanitizers.
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if !sanitizable.Static() && !sanitizable.Shared() && sanitizable.IsSanitizerEnabled(cfi) {
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return false
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}
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}
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if sanitizable.Static() {
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return sanitizable.OutputFile().Valid() && !image.private(m)
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}
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if sanitizable.Shared() || sanitizable.Rlib() {
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if !sanitizable.OutputFile().Valid() {
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return false
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}
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if image.includeVndk() {
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if !sanitizable.IsVndk() {
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return true
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}
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return sanitizable.IsVndkExt()
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}
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}
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return true
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}
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// Binaries and Objects
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if m.Binary() || m.Object() {
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return m.OutputFile().Valid()
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}
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return false
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}
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// This is to be saved as .json files, which is for development/vendor_snapshot/update.py.
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// These flags become Android.bp snapshot module properties.
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type snapshotJsonFlags struct {
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ModuleName string `json:",omitempty"`
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RelativeInstallPath string `json:",omitempty"`
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// library flags
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ExportedDirs []string `json:",omitempty"`
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ExportedSystemDirs []string `json:",omitempty"`
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ExportedFlags []string `json:",omitempty"`
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Sanitize string `json:",omitempty"`
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SanitizeMinimalDep bool `json:",omitempty"`
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SanitizeUbsanDep bool `json:",omitempty"`
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// binary flags
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Symlinks []string `json:",omitempty"`
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StaticExecutable bool `json:",omitempty"`
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// dependencies
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SharedLibs []string `json:",omitempty"`
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StaticLibs []string `json:",omitempty"`
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RuntimeLibs []string `json:",omitempty"`
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Required []string `json:",omitempty"`
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// extra config files
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InitRc []string `json:",omitempty"`
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VintfFragments []string `json:",omitempty"`
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}
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func (c *snapshotSingleton) GenerateBuildActions(ctx android.SingletonContext) {
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if !c.image.shouldGenerateSnapshot(ctx) {
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return
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}
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var snapshotOutputs android.Paths
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/*
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Vendor snapshot zipped artifacts directory structure:
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{SNAPSHOT_ARCH}/
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arch-{TARGET_ARCH}-{TARGET_ARCH_VARIANT}/
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shared/
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(.so shared libraries)
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static/
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(.a static libraries)
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header/
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(header only libraries)
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binary/
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(executable binaries)
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object/
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(.o object files)
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arch-{TARGET_2ND_ARCH}-{TARGET_2ND_ARCH_VARIANT}/
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shared/
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(.so shared libraries)
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static/
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(.a static libraries)
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header/
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(header only libraries)
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binary/
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(executable binaries)
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object/
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(.o object files)
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NOTICE_FILES/
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(notice files, e.g. libbase.txt)
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configs/
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(config files, e.g. init.rc files, vintf_fragments.xml files, etc.)
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include/
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(header files of same directory structure with source tree)
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*/
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snapshotDir := c.name + "-snapshot"
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if c.fake {
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// If this is a fake snapshot singleton, place all files under fake/ subdirectory to avoid
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// collision with real snapshot files
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snapshotDir = filepath.Join("fake", snapshotDir)
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}
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snapshotArchDir := filepath.Join(snapshotDir, ctx.DeviceConfig().DeviceArch())
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includeDir := filepath.Join(snapshotArchDir, "include")
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configsDir := filepath.Join(snapshotArchDir, "configs")
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noticeDir := filepath.Join(snapshotArchDir, "NOTICE_FILES")
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installedNotices := make(map[string]bool)
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installedConfigs := make(map[string]bool)
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var headers android.Paths
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copyFile := func(ctx android.SingletonContext, path android.Path, out string, fake bool) android.OutputPath {
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if fake {
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// All prebuilt binaries and headers are installed by copyFile function. This makes a fake
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// snapshot just touch prebuilts and headers, rather than installing real files.
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return writeStringToFileRule(ctx, "", out)
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} else {
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return copyFileRule(ctx, path, out)
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}
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}
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// installSnapshot function copies prebuilt file (.so, .a, or executable) and json flag file.
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// For executables, init_rc and vintf_fragments files are also copied.
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installSnapshot := func(m LinkableInterface, fake bool) android.Paths {
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targetArch := "arch-" + m.Target().Arch.ArchType.String()
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if m.Target().Arch.ArchVariant != "" {
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targetArch += "-" + m.Target().Arch.ArchVariant
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}
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var ret android.Paths
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prop := snapshotJsonFlags{}
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// Common properties among snapshots.
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prop.ModuleName = ctx.ModuleName(m)
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if c.supportsVndkExt && m.IsVndkExt() {
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// vndk exts are installed to /vendor/lib(64)?/vndk(-sp)?
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if m.IsVndkSp() {
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prop.RelativeInstallPath = "vndk-sp"
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} else {
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prop.RelativeInstallPath = "vndk"
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}
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} else {
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prop.RelativeInstallPath = m.RelativeInstallPath()
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}
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prop.RuntimeLibs = m.SnapshotRuntimeLibs()
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prop.Required = m.RequiredModuleNames()
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for _, path := range m.InitRc() {
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prop.InitRc = append(prop.InitRc, filepath.Join("configs", path.Base()))
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}
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for _, path := range m.VintfFragments() {
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prop.VintfFragments = append(prop.VintfFragments, filepath.Join("configs", path.Base()))
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}
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// install config files. ignores any duplicates.
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for _, path := range append(m.InitRc(), m.VintfFragments()...) {
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out := filepath.Join(configsDir, path.Base())
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if !installedConfigs[out] {
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installedConfigs[out] = true
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ret = append(ret, copyFile(ctx, path, out, fake))
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}
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}
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var propOut string
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if m.IsSnapshotLibrary() {
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exporterInfo := ctx.ModuleProvider(m.Module(), FlagExporterInfoProvider).(FlagExporterInfo)
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// library flags
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prop.ExportedFlags = exporterInfo.Flags
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for _, dir := range exporterInfo.IncludeDirs {
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prop.ExportedDirs = append(prop.ExportedDirs, filepath.Join("include", dir.String()))
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}
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for _, dir := range exporterInfo.SystemIncludeDirs {
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prop.ExportedSystemDirs = append(prop.ExportedSystemDirs, filepath.Join("include", dir.String()))
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}
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// shared libs dependencies aren't meaningful on static or header libs
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if m.Shared() {
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prop.SharedLibs = m.SnapshotSharedLibs()
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}
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// static libs dependencies are required to collect the NOTICE files.
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prop.StaticLibs = m.SnapshotStaticLibs()
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if sanitizable, ok := m.(PlatformSanitizeable); ok {
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if sanitizable.Static() && sanitizable.SanitizePropDefined() {
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prop.SanitizeMinimalDep = sanitizable.MinimalRuntimeDep() || sanitizable.MinimalRuntimeNeeded()
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prop.SanitizeUbsanDep = sanitizable.UbsanRuntimeDep() || sanitizable.UbsanRuntimeNeeded()
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}
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}
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var libType string
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if m.Static() {
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libType = "static"
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} else if m.Shared() {
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libType = "shared"
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} else if m.Rlib() {
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libType = "rlib"
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} else {
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libType = "header"
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}
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var stem string
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// install .a or .so
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if libType != "header" {
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libPath := m.OutputFile().Path()
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stem = libPath.Base()
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if sanitizable, ok := m.(PlatformSanitizeable); ok {
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if (sanitizable.Static() || sanitizable.Rlib()) && sanitizable.SanitizePropDefined() && sanitizable.IsSanitizerEnabled(cfi) {
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// both cfi and non-cfi variant for static libraries can exist.
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// attach .cfi to distinguish between cfi and non-cfi.
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// e.g. libbase.a -> libbase.cfi.a
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ext := filepath.Ext(stem)
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stem = strings.TrimSuffix(stem, ext) + ".cfi" + ext
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prop.Sanitize = "cfi"
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prop.ModuleName += ".cfi"
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}
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}
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snapshotLibOut := filepath.Join(snapshotArchDir, targetArch, libType, stem)
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ret = append(ret, copyFile(ctx, libPath, snapshotLibOut, fake))
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} else {
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stem = ctx.ModuleName(m)
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}
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propOut = filepath.Join(snapshotArchDir, targetArch, libType, stem+".json")
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} else if m.Binary() {
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// binary flags
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prop.Symlinks = m.Symlinks()
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prop.StaticExecutable = m.StaticExecutable()
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prop.SharedLibs = m.SnapshotSharedLibs()
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// static libs dependencies are required to collect the NOTICE files.
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prop.StaticLibs = m.SnapshotStaticLibs()
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// install bin
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binPath := m.OutputFile().Path()
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snapshotBinOut := filepath.Join(snapshotArchDir, targetArch, "binary", binPath.Base())
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ret = append(ret, copyFile(ctx, binPath, snapshotBinOut, fake))
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propOut = snapshotBinOut + ".json"
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} else if m.Object() {
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// object files aren't installed to the device, so their names can conflict.
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// Use module name as stem.
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objPath := m.OutputFile().Path()
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snapshotObjOut := filepath.Join(snapshotArchDir, targetArch, "object",
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ctx.ModuleName(m)+filepath.Ext(objPath.Base()))
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ret = append(ret, copyFile(ctx, objPath, snapshotObjOut, fake))
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propOut = snapshotObjOut + ".json"
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} else {
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ctx.Errorf("unknown module %q in vendor snapshot", m.String())
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return nil
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}
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j, err := json.Marshal(prop)
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if err != nil {
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ctx.Errorf("json marshal to %q failed: %#v", propOut, err)
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return nil
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}
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ret = append(ret, writeStringToFileRule(ctx, string(j), propOut))
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return ret
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}
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ctx.VisitAllModules(func(module android.Module) {
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m, ok := module.(LinkableInterface)
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if !ok {
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return
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}
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moduleDir := ctx.ModuleDir(module)
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inProprietaryPath := c.image.isProprietaryPath(moduleDir, ctx.DeviceConfig())
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apexInfo := ctx.ModuleProvider(module, android.ApexInfoProvider).(android.ApexInfo)
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if c.image.excludeFromSnapshot(m) {
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if inProprietaryPath {
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// Error: exclude_from_vendor_snapshot applies
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// to framework-path modules only.
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ctx.Errorf("module %q in vendor proprietary path %q may not use \"exclude_from_vendor_snapshot: true\"", m.String(), moduleDir)
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return
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}
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}
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if !isSnapshotAware(ctx.DeviceConfig(), m, inProprietaryPath, apexInfo, c.image) {
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return
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}
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// If we are using directed snapshot and a module is not included in the
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// list, we will still include the module as if it was a fake module.
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// The reason is that soong needs all the dependencies to be present, even
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// if they are not using during the build.
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installAsFake := c.fake
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if c.image.excludeFromDirectedSnapshot(ctx.DeviceConfig(), m.BaseModuleName()) {
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installAsFake = true
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}
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// installSnapshot installs prebuilts and json flag files
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snapshotOutputs = append(snapshotOutputs, installSnapshot(m, installAsFake)...)
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// just gather headers and notice files here, because they are to be deduplicated
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if m.IsSnapshotLibrary() {
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headers = append(headers, m.SnapshotHeaders()...)
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}
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if len(m.NoticeFiles()) > 0 {
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noticeName := ctx.ModuleName(m) + ".txt"
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noticeOut := filepath.Join(noticeDir, noticeName)
|
|
// skip already copied notice file
|
|
if !installedNotices[noticeOut] {
|
|
installedNotices[noticeOut] = true
|
|
snapshotOutputs = append(snapshotOutputs, combineNoticesRule(ctx, m.NoticeFiles(), noticeOut))
|
|
}
|
|
}
|
|
})
|
|
|
|
// install all headers after removing duplicates
|
|
for _, header := range android.FirstUniquePaths(headers) {
|
|
snapshotOutputs = append(snapshotOutputs, copyFile(ctx, header, filepath.Join(includeDir, header.String()), c.fake))
|
|
}
|
|
|
|
// All artifacts are ready. Sort them to normalize ninja and then zip.
|
|
sort.Slice(snapshotOutputs, func(i, j int) bool {
|
|
return snapshotOutputs[i].String() < snapshotOutputs[j].String()
|
|
})
|
|
|
|
zipPath := android.PathForOutput(
|
|
ctx,
|
|
snapshotDir,
|
|
c.name+"-"+ctx.Config().DeviceName()+".zip")
|
|
zipRule := android.NewRuleBuilder(pctx, ctx)
|
|
|
|
// filenames in rspfile from FlagWithRspFileInputList might be single-quoted. Remove it with tr
|
|
snapshotOutputList := android.PathForOutput(
|
|
ctx,
|
|
snapshotDir,
|
|
c.name+"-"+ctx.Config().DeviceName()+"_list")
|
|
rspFile := snapshotOutputList.ReplaceExtension(ctx, "rsp")
|
|
zipRule.Command().
|
|
Text("tr").
|
|
FlagWithArg("-d ", "\\'").
|
|
FlagWithRspFileInputList("< ", rspFile, snapshotOutputs).
|
|
FlagWithOutput("> ", snapshotOutputList)
|
|
|
|
zipRule.Temporary(snapshotOutputList)
|
|
|
|
zipRule.Command().
|
|
BuiltTool("soong_zip").
|
|
FlagWithOutput("-o ", zipPath).
|
|
FlagWithArg("-C ", android.PathForOutput(ctx, snapshotDir).String()).
|
|
FlagWithInput("-l ", snapshotOutputList)
|
|
|
|
zipRule.Build(zipPath.String(), c.name+" snapshot "+zipPath.String())
|
|
zipRule.DeleteTemporaryFiles()
|
|
c.snapshotZipFile = android.OptionalPathForPath(zipPath)
|
|
}
|
|
|
|
func (c *snapshotSingleton) MakeVars(ctx android.MakeVarsContext) {
|
|
ctx.Strict(
|
|
c.makeVar,
|
|
c.snapshotZipFile.String())
|
|
}
|