3c0a83d19f
Using generics for the providers API allows a type to be associated with a ProviderKey, resulting in a type-safe API without that doesn't require runtime type assertions by every caller. Unfortunately, Go does not allow generic types in methods, only in functions [1]. This prevents a type-safe API on ModuleContext, and requires moving the API to be functions that take a ModuleContext as a parameter. This CL creates the new API, but doesn't convert all of the callers. [1] https://go.googlesource.com/proposal/+/refs/heads/master/design/43651-type-parameters.md#no-parameterized-methods) Bug: 316410648 Test: builds Change-Id: I3e30d68b966b730efd968166a38a25cc144bd6de
610 lines
18 KiB
Go
610 lines
18 KiB
Go
// Copyright 2016 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 android
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import (
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"bytes"
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"fmt"
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"path/filepath"
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"runtime"
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"sort"
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"strings"
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"github.com/google/blueprint"
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"github.com/google/blueprint/pathtools"
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"github.com/google/blueprint/proptools"
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)
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func init() {
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RegisterMakeVarsProvider(pctx, androidMakeVarsProvider)
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}
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func androidMakeVarsProvider(ctx MakeVarsContext) {
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ctx.Strict("MIN_SUPPORTED_SDK_VERSION", ctx.Config().MinSupportedSdkVersion().String())
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}
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// /////////////////////////////////////////////////////////////////////////////
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// BaseMakeVarsContext contains the common functions for other packages to use
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// to declare make variables
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type BaseMakeVarsContext interface {
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Config() Config
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DeviceConfig() DeviceConfig
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AddNinjaFileDeps(deps ...string)
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Failed() bool
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// These are equivalent to Strict and Check, but do not attempt to
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// evaluate the values before writing them to the Makefile. They can
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// be used when all ninja variables have already been evaluated through
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// Eval().
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StrictRaw(name, value string)
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CheckRaw(name, value string)
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// GlobWithDeps returns a list of files that match the specified pattern but do not match any
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// of the patterns in excludes. It also adds efficient dependencies to rerun the primary
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// builder whenever a file matching the pattern as added or removed, without rerunning if a
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// file that does not match the pattern is added to a searched directory.
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GlobWithDeps(pattern string, excludes []string) ([]string, error)
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// Phony creates a phony rule in Make, which will allow additional DistForGoal
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// dependencies to be added to it. Phony can be called on the same name multiple
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// times to add additional dependencies.
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Phony(names string, deps ...Path)
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// DistForGoal creates a rule to copy one or more Paths to the artifacts
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// directory on the build server when the specified goal is built.
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DistForGoal(goal string, paths ...Path)
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// DistForGoalWithFilename creates a rule to copy a Path to the artifacts
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// directory on the build server with the given filename when the specified
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// goal is built.
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DistForGoalWithFilename(goal string, path Path, filename string)
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// DistForGoals creates a rule to copy one or more Paths to the artifacts
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// directory on the build server when any of the specified goals are built.
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DistForGoals(goals []string, paths ...Path)
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// DistForGoalsWithFilename creates a rule to copy a Path to the artifacts
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// directory on the build server with the given filename when any of the
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// specified goals are built.
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DistForGoalsWithFilename(goals []string, path Path, filename string)
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}
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// MakeVarsContext contains the set of functions available for MakeVarsProvider
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// and SingletonMakeVarsProvider implementations.
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type MakeVarsContext interface {
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BaseMakeVarsContext
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ModuleName(module blueprint.Module) string
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ModuleDir(module blueprint.Module) string
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ModuleSubDir(module blueprint.Module) string
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ModuleType(module blueprint.Module) string
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ModuleProvider(module blueprint.Module, key blueprint.AnyProviderKey) any
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moduleProvider(module blueprint.Module, key blueprint.AnyProviderKey) (any, bool)
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BlueprintFile(module blueprint.Module) string
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ModuleErrorf(module blueprint.Module, format string, args ...interface{})
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Errorf(format string, args ...interface{})
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VisitAllModules(visit func(Module))
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VisitAllModulesIf(pred func(Module) bool, visit func(Module))
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// Verify the make variable matches the Soong version, fail the build
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// if it does not. If the make variable is empty, just set it.
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Strict(name, ninjaStr string)
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// Check to see if the make variable matches the Soong version, warn if
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// it does not. If the make variable is empty, just set it.
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Check(name, ninjaStr string)
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// These are equivalent to the above, but sort the make and soong
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// variables before comparing them. They also show the unique entries
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// in each list when displaying the difference, instead of the entire
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// string.
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StrictSorted(name, ninjaStr string)
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CheckSorted(name, ninjaStr string)
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// Evaluates a ninja string and returns the result. Used if more
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// complicated modification needs to happen before giving it to Make.
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Eval(ninjaStr string) (string, error)
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}
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// MakeVarsModuleContext contains the set of functions available for modules
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// implementing the ModuleMakeVarsProvider interface.
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type MakeVarsModuleContext interface {
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BaseMakeVarsContext
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}
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var _ PathContext = MakeVarsContext(nil)
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type MakeVarsProvider func(ctx MakeVarsContext)
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func RegisterMakeVarsProvider(pctx PackageContext, provider MakeVarsProvider) {
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makeVarsInitProviders = append(makeVarsInitProviders, makeVarsProvider{pctx, provider})
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}
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// SingletonMakeVarsProvider is a Singleton with an extra method to provide extra values to be exported to Make.
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type SingletonMakeVarsProvider interface {
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// MakeVars uses a MakeVarsContext to provide extra values to be exported to Make.
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MakeVars(ctx MakeVarsContext)
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}
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var singletonMakeVarsProvidersKey = NewOnceKey("singletonMakeVarsProvidersKey")
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func getSingletonMakevarsProviders(config Config) *[]makeVarsProvider {
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return config.Once(singletonMakeVarsProvidersKey, func() interface{} {
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return &[]makeVarsProvider{}
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}).(*[]makeVarsProvider)
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}
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// registerSingletonMakeVarsProvider adds a singleton that implements SingletonMakeVarsProvider to
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// the list of MakeVarsProviders to run.
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func registerSingletonMakeVarsProvider(config Config, singleton SingletonMakeVarsProvider) {
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// Singletons are registered on the Context and may be different between different Contexts,
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// for example when running multiple tests. Store the SingletonMakeVarsProviders in the
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// Config so they are attached to the Context.
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singletonMakeVarsProviders := getSingletonMakevarsProviders(config)
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*singletonMakeVarsProviders = append(*singletonMakeVarsProviders,
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makeVarsProvider{pctx, singletonMakeVarsProviderAdapter(singleton)})
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}
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// singletonMakeVarsProviderAdapter converts a SingletonMakeVarsProvider to a MakeVarsProvider.
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func singletonMakeVarsProviderAdapter(singleton SingletonMakeVarsProvider) MakeVarsProvider {
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return func(ctx MakeVarsContext) { singleton.MakeVars(ctx) }
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}
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// ModuleMakeVarsProvider is a Module with an extra method to provide extra values to be exported to Make.
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type ModuleMakeVarsProvider interface {
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Module
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// MakeVars uses a MakeVarsModuleContext to provide extra values to be exported to Make.
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MakeVars(ctx MakeVarsModuleContext)
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}
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// /////////////////////////////////////////////////////////////////////////////
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func makeVarsSingletonFunc() Singleton {
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return &makeVarsSingleton{}
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}
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type makeVarsSingleton struct {
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varsForTesting []makeVarsVariable
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installsForTesting []byte
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}
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type makeVarsProvider struct {
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pctx PackageContext
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call MakeVarsProvider
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}
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// Collection of makevars providers that are registered in init() methods.
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var makeVarsInitProviders []makeVarsProvider
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type makeVarsContext struct {
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SingletonContext
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config Config
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pctx PackageContext
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vars []makeVarsVariable
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phonies []phony
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dists []dist
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}
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var _ MakeVarsContext = &makeVarsContext{}
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type makeVarsVariable struct {
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name string
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value string
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sort bool
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strict bool
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}
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type phony struct {
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name string
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deps []string
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}
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type dist struct {
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goals []string
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paths []string
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}
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func (s *makeVarsSingleton) GenerateBuildActions(ctx SingletonContext) {
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if !ctx.Config().KatiEnabled() {
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return
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}
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outFile := absolutePath(PathForOutput(ctx,
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"make_vars"+proptools.String(ctx.Config().productVariables.Make_suffix)+".mk").String())
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lateOutFile := absolutePath(PathForOutput(ctx,
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"late"+proptools.String(ctx.Config().productVariables.Make_suffix)+".mk").String())
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installsFile := absolutePath(PathForOutput(ctx,
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"installs"+proptools.String(ctx.Config().productVariables.Make_suffix)+".mk").String())
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if ctx.Failed() {
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return
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}
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var vars []makeVarsVariable
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var dists []dist
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var phonies []phony
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var katiInstalls []katiInstall
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var katiSymlinks []katiInstall
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providers := append([]makeVarsProvider(nil), makeVarsInitProviders...)
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providers = append(providers, *getSingletonMakevarsProviders(ctx.Config())...)
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for _, provider := range providers {
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mctx := &makeVarsContext{
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SingletonContext: ctx,
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pctx: provider.pctx,
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}
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provider.call(mctx)
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vars = append(vars, mctx.vars...)
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phonies = append(phonies, mctx.phonies...)
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dists = append(dists, mctx.dists...)
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}
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ctx.VisitAllModules(func(m Module) {
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if provider, ok := m.(ModuleMakeVarsProvider); ok && m.Enabled() {
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mctx := &makeVarsContext{
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SingletonContext: ctx,
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}
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provider.MakeVars(mctx)
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vars = append(vars, mctx.vars...)
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phonies = append(phonies, mctx.phonies...)
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dists = append(dists, mctx.dists...)
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}
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if m.ExportedToMake() {
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katiInstalls = append(katiInstalls, m.base().katiInstalls...)
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katiSymlinks = append(katiSymlinks, m.base().katiSymlinks...)
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}
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})
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if ctx.Failed() {
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return
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}
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sort.Slice(vars, func(i, j int) bool {
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return vars[i].name < vars[j].name
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})
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sort.Slice(phonies, func(i, j int) bool {
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return phonies[i].name < phonies[j].name
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})
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lessArr := func(a, b []string) bool {
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if len(a) == len(b) {
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for i := range a {
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if a[i] < b[i] {
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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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return len(a) < len(b)
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}
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sort.Slice(dists, func(i, j int) bool {
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return lessArr(dists[i].goals, dists[j].goals) || lessArr(dists[i].paths, dists[j].paths)
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})
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outBytes := s.writeVars(vars)
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if err := pathtools.WriteFileIfChanged(outFile, outBytes, 0666); err != nil {
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ctx.Errorf(err.Error())
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}
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lateOutBytes := s.writeLate(phonies, dists)
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if err := pathtools.WriteFileIfChanged(lateOutFile, lateOutBytes, 0666); err != nil {
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ctx.Errorf(err.Error())
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}
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installsBytes := s.writeInstalls(katiInstalls, katiSymlinks)
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if err := pathtools.WriteFileIfChanged(installsFile, installsBytes, 0666); err != nil {
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ctx.Errorf(err.Error())
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}
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// Only save state for tests when testing.
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if ctx.Config().RunningInsideUnitTest() {
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s.varsForTesting = vars
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s.installsForTesting = installsBytes
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}
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}
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func (s *makeVarsSingleton) writeVars(vars []makeVarsVariable) []byte {
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buf := &bytes.Buffer{}
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fmt.Fprint(buf, `# Autogenerated file
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# Compares SOONG_$(1) against $(1), and warns if they are not equal.
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#
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# If the original variable is empty, then just set it to the SOONG_ version.
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#
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# $(1): Name of the variable to check
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# $(2): If not-empty, sort the values before comparing
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# $(3): Extra snippet to run if it does not match
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define soong-compare-var
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ifneq ($$($(1)),)
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my_val_make := $$(strip $(if $(2),$$(sort $$($(1))),$$($(1))))
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my_val_soong := $(if $(2),$$(sort $$(SOONG_$(1))),$$(SOONG_$(1)))
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ifneq ($$(my_val_make),$$(my_val_soong))
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$$(warning $(1) does not match between Make and Soong:)
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$(if $(2),$$(warning Make adds: $$(filter-out $$(my_val_soong),$$(my_val_make))),$$(warning Make : $$(my_val_make)))
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$(if $(2),$$(warning Soong adds: $$(filter-out $$(my_val_make),$$(my_val_soong))),$$(warning Soong: $$(my_val_soong)))
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$(3)
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endif
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my_val_make :=
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my_val_soong :=
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else
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$(1) := $$(SOONG_$(1))
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endif
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.KATI_READONLY := $(1) SOONG_$(1)
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endef
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my_check_failed := false
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`)
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// Write all the strict checks out first so that if one of them errors,
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// we get all of the strict errors printed, but not the non-strict
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// warnings.
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for _, v := range vars {
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if !v.strict {
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continue
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}
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sort := ""
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if v.sort {
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sort = "true"
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}
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fmt.Fprintf(buf, "SOONG_%s := %s\n", v.name, v.value)
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fmt.Fprintf(buf, "$(eval $(call soong-compare-var,%s,%s,my_check_failed := true))\n\n", v.name, sort)
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}
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fmt.Fprint(buf, `
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ifneq ($(my_check_failed),false)
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$(error Soong variable check failed)
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endif
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my_check_failed :=
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`)
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for _, v := range vars {
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if v.strict {
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continue
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}
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sort := ""
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if v.sort {
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sort = "true"
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}
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fmt.Fprintf(buf, "SOONG_%s := %s\n", v.name, v.value)
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fmt.Fprintf(buf, "$(eval $(call soong-compare-var,%s,%s))\n\n", v.name, sort)
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}
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fmt.Fprintln(buf, "\nsoong-compare-var :=")
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fmt.Fprintln(buf)
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return buf.Bytes()
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}
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func (s *makeVarsSingleton) writeLate(phonies []phony, dists []dist) []byte {
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buf := &bytes.Buffer{}
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fmt.Fprint(buf, `# Autogenerated file
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# Values written by Soong read after parsing all Android.mk files.
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`)
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for _, phony := range phonies {
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fmt.Fprintf(buf, ".PHONY: %s\n", phony.name)
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fmt.Fprintf(buf, "%s: %s\n", phony.name, strings.Join(phony.deps, "\\\n "))
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}
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fmt.Fprintln(buf)
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for _, dist := range dists {
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fmt.Fprintf(buf, ".PHONY: %s\n", strings.Join(dist.goals, " "))
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fmt.Fprintf(buf, "$(call dist-for-goals,%s,%s)\n",
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strings.Join(dist.goals, " "), strings.Join(dist.paths, " "))
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}
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return buf.Bytes()
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}
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// writeInstalls writes the list of install rules generated by Soong to a makefile. The rules
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// are exported to Make instead of written directly to the ninja file so that main.mk can add
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// the dependencies from the `required` property that are hard to resolve in Soong.
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func (s *makeVarsSingleton) writeInstalls(installs, symlinks []katiInstall) []byte {
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buf := &bytes.Buffer{}
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fmt.Fprint(buf, `# Autogenerated file
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# Values written by Soong to generate install rules that can be amended by Kati.
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`)
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preserveSymlinksFlag := "-d"
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if runtime.GOOS == "darwin" {
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preserveSymlinksFlag = "-R"
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}
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for _, install := range installs {
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// Write a rule for each install request in the form:
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// to: from [ deps ] [ | order only deps ]
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// cp -f -d $< $@ [ && chmod +x $@ ]
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fmt.Fprintf(buf, "%s: %s", install.to.String(), install.from.String())
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for _, dep := range install.implicitDeps {
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fmt.Fprintf(buf, " %s", dep.String())
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}
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if extraFiles := install.extraFiles; extraFiles != nil {
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fmt.Fprintf(buf, " %s", extraFiles.zip.String())
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}
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if len(install.orderOnlyDeps) > 0 {
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fmt.Fprintf(buf, " |")
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}
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for _, dep := range install.orderOnlyDeps {
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fmt.Fprintf(buf, " %s", dep.String())
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}
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fmt.Fprintln(buf)
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fmt.Fprintln(buf, "\t@echo \"Install: $@\"")
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fmt.Fprintf(buf, "\trm -f $@ && cp -f %s $< $@\n", preserveSymlinksFlag)
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if install.executable {
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fmt.Fprintf(buf, "\tchmod +x $@\n")
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}
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if extraFiles := install.extraFiles; extraFiles != nil {
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fmt.Fprintf(buf, "\t( unzip -qDD -d '%s' '%s' 2>&1 | grep -v \"zipfile is empty\"; exit $${PIPESTATUS[0]} ) || \\\n", extraFiles.dir.String(), extraFiles.zip.String())
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fmt.Fprintf(buf, "\t ( code=$$?; if [ $$code -ne 0 -a $$code -ne 1 ]; then exit $$code; fi )\n")
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}
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fmt.Fprintln(buf)
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}
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for _, symlink := range symlinks {
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fmt.Fprintf(buf, "%s:", symlink.to.String())
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if symlink.from != nil {
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// The symlink doesn't need updating when the target is modified, but we sometimes
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// have a dependency on a symlink to a binary instead of to the binary directly, and
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// the mtime of the symlink must be updated when the binary is modified, so use a
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// normal dependency here instead of an order-only dependency.
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fmt.Fprintf(buf, " %s", symlink.from.String())
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}
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for _, dep := range symlink.implicitDeps {
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fmt.Fprintf(buf, " %s", dep.String())
|
|
}
|
|
if len(symlink.orderOnlyDeps) > 0 {
|
|
fmt.Fprintf(buf, " |")
|
|
}
|
|
for _, dep := range symlink.orderOnlyDeps {
|
|
fmt.Fprintf(buf, " %s", dep.String())
|
|
}
|
|
fmt.Fprintln(buf)
|
|
|
|
fromStr := ""
|
|
if symlink.from != nil {
|
|
rel, err := filepath.Rel(filepath.Dir(symlink.to.String()), symlink.from.String())
|
|
if err != nil {
|
|
panic(fmt.Errorf("failed to find relative path for symlink from %q to %q: %w",
|
|
symlink.from.String(), symlink.to.String(), err))
|
|
}
|
|
fromStr = rel
|
|
} else {
|
|
fromStr = symlink.absFrom
|
|
}
|
|
|
|
fmt.Fprintln(buf, "\t@echo \"Symlink: $@\"")
|
|
fmt.Fprintf(buf, "\trm -f $@ && ln -sfn %s $@", fromStr)
|
|
fmt.Fprintln(buf)
|
|
fmt.Fprintln(buf)
|
|
}
|
|
|
|
return buf.Bytes()
|
|
}
|
|
|
|
func (c *makeVarsContext) DeviceConfig() DeviceConfig {
|
|
return DeviceConfig{c.Config().deviceConfig}
|
|
}
|
|
|
|
var ninjaDescaper = strings.NewReplacer("$$", "$")
|
|
|
|
func (c *makeVarsContext) Eval(ninjaStr string) (string, error) {
|
|
s, err := c.SingletonContext.Eval(c.pctx, ninjaStr)
|
|
if err != nil {
|
|
return "", err
|
|
}
|
|
// SingletonContext.Eval returns an exapnded string that is valid for a ninja file, de-escape $$ to $ for use
|
|
// in a Makefile
|
|
return ninjaDescaper.Replace(s), nil
|
|
}
|
|
|
|
func (c *makeVarsContext) addVariableRaw(name, value string, strict, sort bool) {
|
|
c.vars = append(c.vars, makeVarsVariable{
|
|
name: name,
|
|
value: value,
|
|
strict: strict,
|
|
sort: sort,
|
|
})
|
|
}
|
|
|
|
func (c *makeVarsContext) addVariable(name, ninjaStr string, strict, sort bool) {
|
|
value, err := c.Eval(ninjaStr)
|
|
if err != nil {
|
|
c.SingletonContext.Errorf(err.Error())
|
|
}
|
|
c.addVariableRaw(name, value, strict, sort)
|
|
}
|
|
|
|
func (c *makeVarsContext) addPhony(name string, deps []string) {
|
|
c.phonies = append(c.phonies, phony{name, deps})
|
|
}
|
|
|
|
func (c *makeVarsContext) addDist(goals []string, paths []string) {
|
|
c.dists = append(c.dists, dist{
|
|
goals: goals,
|
|
paths: paths,
|
|
})
|
|
}
|
|
|
|
func (c *makeVarsContext) Strict(name, ninjaStr string) {
|
|
c.addVariable(name, ninjaStr, true, false)
|
|
}
|
|
func (c *makeVarsContext) StrictSorted(name, ninjaStr string) {
|
|
c.addVariable(name, ninjaStr, true, true)
|
|
}
|
|
func (c *makeVarsContext) StrictRaw(name, value string) {
|
|
c.addVariableRaw(name, value, true, false)
|
|
}
|
|
|
|
func (c *makeVarsContext) Check(name, ninjaStr string) {
|
|
c.addVariable(name, ninjaStr, false, false)
|
|
}
|
|
func (c *makeVarsContext) CheckSorted(name, ninjaStr string) {
|
|
c.addVariable(name, ninjaStr, false, true)
|
|
}
|
|
func (c *makeVarsContext) CheckRaw(name, value string) {
|
|
c.addVariableRaw(name, value, false, false)
|
|
}
|
|
|
|
func (c *makeVarsContext) Phony(name string, deps ...Path) {
|
|
c.addPhony(name, Paths(deps).Strings())
|
|
}
|
|
|
|
func (c *makeVarsContext) DistForGoal(goal string, paths ...Path) {
|
|
c.DistForGoals([]string{goal}, paths...)
|
|
}
|
|
|
|
func (c *makeVarsContext) DistForGoalWithFilename(goal string, path Path, filename string) {
|
|
c.DistForGoalsWithFilename([]string{goal}, path, filename)
|
|
}
|
|
|
|
func (c *makeVarsContext) DistForGoals(goals []string, paths ...Path) {
|
|
c.addDist(goals, Paths(paths).Strings())
|
|
}
|
|
|
|
func (c *makeVarsContext) DistForGoalsWithFilename(goals []string, path Path, filename string) {
|
|
c.addDist(goals, []string{path.String() + ":" + filename})
|
|
}
|