Add //visibility:any_partition
When we convert the partitions to be built with soong, there will likely be separate partition modules per product. This means that a lot of installable modules will have to be visible to a lot of partitions. To make this easier, add the //visibility:any_partition visibility spec, which allows the module to be used from any module of type android_filesystem or android_system_image. Fixes: 321000103 Test: go test Change-Id: Iea1f1ab7d88dfdb1fd00f19eb8c9941693a2375f
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4 changed files with 104 additions and 37 deletions
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@ -314,6 +314,9 @@ subpackages) can use this module.
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* `["//visibility:override"]`: Discards any rules inherited from defaults or a
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creating module. Can only be used at the beginning of a list of visibility
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rules.
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* `["//visibility:any_partition"]`: Any modules of type android_filesystem
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or android_system_image can use this module. Intended for modules that no one
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should link against, but should still be included in soong-built partitions.
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* `["//some/package:__pkg__", "//other/package:__pkg__"]`: Only modules in
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`some/package` and `other/package` (defined in `some/package/*.bp` and
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`other/package/*.bp`) have access to this module. Note that sub-packages do not
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@ -250,8 +250,8 @@ func (s *singletonContextAdaptor) FinalModule(module Module) Module {
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}
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func (s *singletonContextAdaptor) ModuleVariantsFromName(referer Module, name string) []Module {
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// get qualified module name for visibility enforcement
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qualified := createQualifiedModuleName(s.ModuleName(referer), s.ModuleDir(referer))
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// get module reference for visibility enforcement
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qualified := createVisibilityModuleReference(s.ModuleName(referer), s.ModuleDir(referer), s.ModuleType(referer))
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modules := s.SingletonContext.ModuleVariantsFromName(referer, name)
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result := make([]Module, 0, len(modules))
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@ -262,7 +262,7 @@ func (s *singletonContextAdaptor) ModuleVariantsFromName(referer Module, name st
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depDir := s.ModuleDir(module)
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depQualified := qualifiedModuleName{depDir, depName}
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// Targets are always visible to other targets in their own package.
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if depQualified.pkg != qualified.pkg {
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if depQualified.pkg != qualified.name.pkg {
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rule := effectiveVisibilityRules(s.Config(), depQualified)
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if !rule.matches(qualified) {
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s.ModuleErrorf(referer, "module %q references %q which is not visible to this module\nYou may need to add %q to its visibility",
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@ -57,12 +57,29 @@ const (
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var visibilityRuleRegexp = regexp.MustCompile(visibilityRulePattern)
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type visibilityModuleReference struct {
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name qualifiedModuleName
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isPartitionModule bool
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}
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func createVisibilityModuleReference(name, dir, typ string) visibilityModuleReference {
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isPartitionModule := false
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switch typ {
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case "android_filesystem", "android_system_image":
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isPartitionModule = true
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}
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return visibilityModuleReference{
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name: createQualifiedModuleName(name, dir),
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isPartitionModule: isPartitionModule,
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}
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}
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// A visibility rule is associated with a module and determines which other modules it is visible
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// to, i.e. which other modules can depend on the rule's module.
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type visibilityRule interface {
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// Check to see whether this rules matches m.
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// Returns true if it does, false otherwise.
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matches(m qualifiedModuleName) bool
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matches(m visibilityModuleReference) bool
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String() string
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}
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@ -108,8 +125,10 @@ func (p visibilityPropertyImpl) getStrings() []string {
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// ["//visibility:private"].
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type compositeRule []visibilityRule
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var _ visibilityRule = compositeRule{}
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// A compositeRule matches if and only if any of its rules matches.
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func (c compositeRule) matches(m qualifiedModuleName) bool {
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func (c compositeRule) matches(m visibilityModuleReference) bool {
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for _, r := range c {
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if r.matches(m) {
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return true
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@ -135,8 +154,10 @@ type packageRule struct {
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pkg string
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}
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func (r packageRule) matches(m qualifiedModuleName) bool {
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return m.pkg == r.pkg
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var _ visibilityRule = packageRule{}
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func (r packageRule) matches(m visibilityModuleReference) bool {
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return m.name.pkg == r.pkg
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}
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func (r packageRule) String() string {
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@ -149,8 +170,10 @@ type subpackagesRule struct {
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pkgPrefix string
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}
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func (r subpackagesRule) matches(m qualifiedModuleName) bool {
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return isAncestor(r.pkgPrefix, m.pkg)
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var _ visibilityRule = subpackagesRule{}
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func (r subpackagesRule) matches(m visibilityModuleReference) bool {
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return isAncestor(r.pkgPrefix, m.name.pkg)
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}
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func isAncestor(p1 string, p2 string) bool {
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@ -168,7 +191,9 @@ func (r subpackagesRule) String() string {
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// visibilityRule for //visibility:public
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type publicRule struct{}
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func (r publicRule) matches(_ qualifiedModuleName) bool {
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var _ visibilityRule = publicRule{}
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func (r publicRule) matches(_ visibilityModuleReference) bool {
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return true
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}
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@ -179,7 +204,9 @@ func (r publicRule) String() string {
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// visibilityRule for //visibility:private
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type privateRule struct{}
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func (r privateRule) matches(_ qualifiedModuleName) bool {
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var _ visibilityRule = privateRule{}
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func (r privateRule) matches(_ visibilityModuleReference) bool {
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return false
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}
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@ -187,6 +214,19 @@ func (r privateRule) String() string {
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return "//visibility:private"
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}
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// visibilityRule for //visibility:any_partition
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type anyPartitionRule struct{}
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var _ visibilityRule = anyPartitionRule{}
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func (r anyPartitionRule) matches(m visibilityModuleReference) bool {
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return m.isPartitionModule
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}
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func (r anyPartitionRule) String() string {
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return "//visibility:any_partition"
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}
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var visibilityRuleMap = NewOnceKey("visibilityRuleMap")
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// The map from qualifiedModuleName to visibilityRule.
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@ -237,13 +277,10 @@ func RegisterVisibilityRuleEnforcer(ctx RegisterMutatorsContext) {
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// Checks the per-module visibility rule lists before defaults expansion.
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func visibilityRuleChecker(ctx BottomUpMutatorContext) {
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qualified := createQualifiedModuleName(ctx.ModuleName(), ctx.ModuleDir())
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if m, ok := ctx.Module().(Module); ok {
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visibilityProperties := m.visibilityProperties()
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visibilityProperties := ctx.Module().visibilityProperties()
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for _, p := range visibilityProperties {
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if visibility := p.getStrings(); visibility != nil {
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checkRules(ctx, qualified.pkg, p.getName(), visibility)
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}
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checkRules(ctx, ctx.ModuleDir(), p.getName(), visibility)
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}
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}
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}
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@ -266,7 +303,7 @@ func checkRules(ctx BaseModuleContext, currentPkg, property string, visibility [
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if pkg == "visibility" {
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switch name {
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case "private", "public":
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case "private", "public", "any_partition":
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case "legacy_public":
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ctx.PropertyErrorf(property, "//visibility:legacy_public must not be used")
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continue
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@ -305,10 +342,7 @@ func checkRules(ctx BaseModuleContext, currentPkg, property string, visibility [
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//
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// See ../README.md#Visibility for information on the format of the visibility rules.
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func visibilityRuleGatherer(ctx BottomUpMutatorContext) {
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m, ok := ctx.Module().(Module)
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if !ok {
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return
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}
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m := ctx.Module()
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qualifiedModuleId := m.qualifiedModuleId(ctx)
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currentPkg := qualifiedModuleId.pkg
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@ -355,6 +389,8 @@ func parseRules(ctx BaseModuleContext, currentPkg, property string, visibility [
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hasNonPrivateRule = false
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// This does not actually create a rule so continue onto the next rule.
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continue
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case "any_partition":
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r = anyPartitionRule{}
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}
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} else {
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switch name {
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@ -395,10 +431,7 @@ func parseRules(ctx BaseModuleContext, currentPkg, property string, visibility [
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func isAllowedFromOutsideVendor(pkg string, name string) bool {
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if pkg == "vendor" {
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if name == "__subpackages__" {
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return true
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}
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return false
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return name == "__subpackages__"
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}
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return !isAncestor("vendor", pkg)
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@ -434,11 +467,7 @@ func splitRule(ctx BaseModuleContext, ruleExpression string, currentPkg, propert
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}
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func visibilityRuleEnforcer(ctx TopDownMutatorContext) {
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if _, ok := ctx.Module().(Module); !ok {
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return
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}
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qualified := createQualifiedModuleName(ctx.ModuleName(), ctx.ModuleDir())
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qualified := createVisibilityModuleReference(ctx.ModuleName(), ctx.ModuleDir(), ctx.ModuleType())
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// Visit all the dependencies making sure that this module has access to them all.
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ctx.VisitDirectDeps(func(dep Module) {
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depQualified := qualifiedModuleName{depDir, depName}
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// Targets are always visible to other targets in their own package.
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if depQualified.pkg == qualified.pkg {
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if depQualified.pkg == qualified.name.pkg {
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return
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}
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if ok {
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rule = value.(compositeRule)
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} else {
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rule = packageDefaultVisibility(config, qualified)
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rule = packageDefaultVisibility(moduleToVisibilityRule, qualified)
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}
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// If no rule is specified then return the default visibility rule to avoid
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@ -494,8 +523,7 @@ func createQualifiedModuleName(moduleName, dir string) qualifiedModuleName {
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return qualified
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}
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func packageDefaultVisibility(config Config, moduleId qualifiedModuleName) compositeRule {
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moduleToVisibilityRule := moduleToVisibilityRuleMap(config)
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func packageDefaultVisibility(moduleToVisibilityRule *sync.Map, moduleId qualifiedModuleName) compositeRule {
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packageQualifiedId := moduleId.getContainingPackageId()
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for {
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value, ok := moduleToVisibilityRule.Load(packageQualifiedId)
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rule := effectiveVisibilityRules(ctx.Config(), qualified)
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currentModule := createVisibilityModuleReference(moduleName, dir, ctx.OtherModuleType(module))
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// Modules are implicitly visible to other modules in the same package,
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// without checking the visibility rules. Here we need to add that visibility
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// explicitly.
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if !rule.matches(qualified) {
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if !rule.matches(currentModule) {
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if len(rule) == 1 {
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if _, ok := rule[0].(privateRule); ok {
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// If the rule is //visibility:private we can't append another
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@ -1904,6 +1904,38 @@ var visibilityTests = []struct {
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}`),
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},
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},
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{
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name: "any_partition visibility works",
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fs: MockFS{
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"top/Android.bp": []byte(`
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android_filesystem {
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name: "foo",
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deps: ["bar"],
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}`),
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"top/nested/Android.bp": []byte(`
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package(default_visibility=["//visibility:private"])
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mock_library {
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name: "bar",
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visibility: ["//visibility:any_partition"],
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}`),
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},
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},
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{
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name: "any_partition visibility doesn't work for non-partitions",
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fs: MockFS{
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"top/Android.bp": []byte(`
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mock_library {
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name: "foo",
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deps: ["bar"],
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}`),
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"top/nested/Android.bp": []byte(`
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mock_library {
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name: "bar",
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visibility: ["//visibility:any_partition"],
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}`),
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},
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expectedErrors: []string{`module "foo" variant "android_common": depends on //top/nested:bar which is not visible to this module`},
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},
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}
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func TestVisibility(t *testing.T) {
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ctx.RegisterModuleType("mock_library", newMockLibraryModule)
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ctx.RegisterModuleType("mock_parent", newMockParentFactory)
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ctx.RegisterModuleType("mock_defaults", defaultsFactory)
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// For testing //visibility:any_partition. The module type doesn't matter, just that it's registered under the name "android_filesystem"
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ctx.RegisterModuleType("android_filesystem", newMockLibraryModule)
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}),
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prepareForTestWithFakePrebuiltModules,
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// Add additional files to the mock filesystem
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