platform_build_blueprint/proptools/clone.go
Cole Faust 6437d4e737 Select statements
Select statements are a new blueprint feature inspired by bazel's select
statements. They are essentially alternative syntax for soong config
variables that require less boilerplate. In addition, they support
making decisions based on a module's variant, which will eliminate
the need for manual property struct manipulation, such as the arch
mutator's arch: and target: properties.

In order to support decisions based on the variant, select statements
cannot be evaluated as soon as they're parsed. Instead, they must be
stored in the property struct unevaluated. This means that individual
properties need to change their type from say, string, to
Configurable[string]. Currently, only configurable strings, bools, and
string slices are supported, but more types can be added later.
The module implementation must call my_property.Evaluate(ctx) in order
to get the final, resolved value of the select statement.

Bug: 323382414
Test: go tests
Change-Id: I62f8721d7f0ac3d1df4a06d7eaa260a5aa7fcba3
2024-03-06 15:00:39 -08:00

308 lines
9.6 KiB
Go

// Copyright 2014 Google Inc. All rights reserved.
//
// Licensed under the Apache License, Version 2.0 (the "License");
// you may not use this file except in compliance with the License.
// You may obtain a copy of the License at
//
// http://www.apache.org/licenses/LICENSE-2.0
//
// Unless required by applicable law or agreed to in writing, software
// distributed under the License is distributed on an "AS IS" BASIS,
// WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
// See the License for the specific language governing permissions and
// limitations under the License.
package proptools
import (
"fmt"
"reflect"
"sync"
)
// CloneProperties takes a reflect.Value of a pointer to a struct and returns a reflect.Value
// of a pointer to a new struct that copies of the values for its fields. It recursively clones
// struct pointers and interfaces that contain struct pointers.
func CloneProperties(structValue reflect.Value) reflect.Value {
if !isStructPtr(structValue.Type()) {
panic(fmt.Errorf("CloneProperties expected *struct, got %s", structValue.Type()))
}
result := reflect.New(structValue.Type().Elem())
copyProperties(result.Elem(), structValue.Elem())
return result
}
// CopyProperties takes destination and source reflect.Values of a pointer to structs and returns
// copies each field from the source into the destination. It recursively copies struct pointers
// and interfaces that contain struct pointers.
func CopyProperties(dstValue, srcValue reflect.Value) {
if !isStructPtr(dstValue.Type()) {
panic(fmt.Errorf("CopyProperties expected dstValue *struct, got %s", dstValue.Type()))
}
if !isStructPtr(srcValue.Type()) {
panic(fmt.Errorf("CopyProperties expected srcValue *struct, got %s", srcValue.Type()))
}
copyProperties(dstValue.Elem(), srcValue.Elem())
}
func copyProperties(dstValue, srcValue reflect.Value) {
typ := dstValue.Type()
if srcValue.Type() != typ {
panic(fmt.Errorf("can't copy mismatching types (%s <- %s)",
dstValue.Kind(), srcValue.Kind()))
}
for i, field := range typeFields(typ) {
if field.PkgPath != "" {
panic(fmt.Errorf("can't copy a private field %q", field.Name))
}
srcFieldValue := srcValue.Field(i)
dstFieldValue := dstValue.Field(i)
dstFieldInterfaceValue := reflect.Value{}
origDstFieldValue := dstFieldValue
switch srcFieldValue.Kind() {
case reflect.Bool, reflect.String, reflect.Int, reflect.Uint:
dstFieldValue.Set(srcFieldValue)
case reflect.Struct:
if isConfigurable(srcFieldValue.Type()) {
dstFieldValue.Set(srcFieldValue.Interface().(configurableReflection).cloneToReflectValuePtr().Elem())
} else {
copyProperties(dstFieldValue, srcFieldValue)
}
case reflect.Slice:
if !srcFieldValue.IsNil() {
if srcFieldValue != dstFieldValue {
newSlice := reflect.MakeSlice(field.Type, srcFieldValue.Len(),
srcFieldValue.Len())
reflect.Copy(newSlice, srcFieldValue)
dstFieldValue.Set(newSlice)
}
} else {
dstFieldValue.Set(srcFieldValue)
}
case reflect.Map:
if !srcFieldValue.IsNil() {
newMap := reflect.MakeMap(field.Type)
iter := srcFieldValue.MapRange()
for iter.Next() {
newMap.SetMapIndex(iter.Key(), iter.Value())
}
dstFieldValue.Set(newMap)
} else {
dstFieldValue.Set(srcFieldValue)
}
case reflect.Interface:
if srcFieldValue.IsNil() {
dstFieldValue.Set(srcFieldValue)
break
}
srcFieldValue = srcFieldValue.Elem()
if !isStructPtr(srcFieldValue.Type()) {
panic(fmt.Errorf("can't clone field %q: expected interface to contain *struct, found %s",
field.Name, srcFieldValue.Type()))
}
if dstFieldValue.IsNil() || dstFieldValue.Elem().Type() != srcFieldValue.Type() {
// We can't use the existing destination allocation, so
// clone a new one.
newValue := reflect.New(srcFieldValue.Type()).Elem()
dstFieldValue.Set(newValue)
dstFieldInterfaceValue = dstFieldValue
dstFieldValue = newValue
} else {
dstFieldValue = dstFieldValue.Elem()
}
fallthrough
case reflect.Ptr:
if srcFieldValue.IsNil() {
origDstFieldValue.Set(srcFieldValue)
break
}
switch srcFieldValue.Elem().Kind() {
case reflect.Struct:
if !dstFieldValue.IsNil() {
// Re-use the existing allocation.
copyProperties(dstFieldValue.Elem(), srcFieldValue.Elem())
break
} else {
newValue := CloneProperties(srcFieldValue)
if dstFieldInterfaceValue.IsValid() {
dstFieldInterfaceValue.Set(newValue)
} else {
origDstFieldValue.Set(newValue)
}
}
case reflect.Bool, reflect.Int64, reflect.String:
newValue := reflect.New(srcFieldValue.Elem().Type())
newValue.Elem().Set(srcFieldValue.Elem())
origDstFieldValue.Set(newValue)
default:
panic(fmt.Errorf("can't clone pointer field %q type %s",
field.Name, srcFieldValue.Type()))
}
default:
panic(fmt.Errorf("unexpected type for property struct field %q: %s",
field.Name, srcFieldValue.Type()))
}
}
}
// ZeroProperties takes a reflect.Value of a pointer to a struct and replaces all of its fields
// with zero values, recursing into struct, pointer to struct and interface fields.
func ZeroProperties(structValue reflect.Value) {
if !isStructPtr(structValue.Type()) {
panic(fmt.Errorf("ZeroProperties expected *struct, got %s", structValue.Type()))
}
zeroProperties(structValue.Elem())
}
func zeroProperties(structValue reflect.Value) {
typ := structValue.Type()
for i, field := range typeFields(typ) {
if field.PkgPath != "" {
// The field is not exported so just skip it.
continue
}
fieldValue := structValue.Field(i)
switch fieldValue.Kind() {
case reflect.Bool, reflect.String, reflect.Slice, reflect.Int, reflect.Uint, reflect.Map:
fieldValue.Set(reflect.Zero(fieldValue.Type()))
case reflect.Interface:
if fieldValue.IsNil() {
break
}
// We leave the pointer intact and zero out the struct that's
// pointed to.
fieldValue = fieldValue.Elem()
if !isStructPtr(fieldValue.Type()) {
panic(fmt.Errorf("can't zero field %q: expected interface to contain *struct, found %s",
field.Name, fieldValue.Type()))
}
fallthrough
case reflect.Ptr:
switch fieldValue.Type().Elem().Kind() {
case reflect.Struct:
if fieldValue.IsNil() {
break
}
zeroProperties(fieldValue.Elem())
case reflect.Bool, reflect.Int64, reflect.String:
fieldValue.Set(reflect.Zero(fieldValue.Type()))
default:
panic(fmt.Errorf("can't zero field %q: points to a %s",
field.Name, fieldValue.Elem().Kind()))
}
case reflect.Struct:
zeroProperties(fieldValue)
default:
panic(fmt.Errorf("unexpected kind for property struct field %q: %s",
field.Name, fieldValue.Kind()))
}
}
}
// CloneEmptyProperties takes a reflect.Value of a pointer to a struct and returns a reflect.Value
// of a pointer to a new struct that has the zero values for its fields. It recursively clones
// struct pointers and interfaces that contain struct pointers.
func CloneEmptyProperties(structValue reflect.Value) reflect.Value {
if !isStructPtr(structValue.Type()) {
panic(fmt.Errorf("CloneEmptyProperties expected *struct, got %s", structValue.Type()))
}
result := reflect.New(structValue.Type().Elem())
cloneEmptyProperties(result.Elem(), structValue.Elem())
return result
}
func cloneEmptyProperties(dstValue, srcValue reflect.Value) {
typ := srcValue.Type()
for i, field := range typeFields(typ) {
if field.PkgPath != "" {
// The field is not exported so just skip it.
continue
}
srcFieldValue := srcValue.Field(i)
dstFieldValue := dstValue.Field(i)
dstFieldInterfaceValue := reflect.Value{}
switch srcFieldValue.Kind() {
case reflect.Bool, reflect.String, reflect.Slice, reflect.Map, reflect.Int, reflect.Uint:
// Nothing
case reflect.Struct:
cloneEmptyProperties(dstFieldValue, srcFieldValue)
case reflect.Interface:
if srcFieldValue.IsNil() {
break
}
srcFieldValue = srcFieldValue.Elem()
if !isStructPtr(srcFieldValue.Type()) {
panic(fmt.Errorf("can't clone empty field %q: expected interface to contain *struct, found %s",
field.Name, srcFieldValue.Type()))
}
newValue := reflect.New(srcFieldValue.Type()).Elem()
dstFieldValue.Set(newValue)
dstFieldInterfaceValue = dstFieldValue
dstFieldValue = newValue
fallthrough
case reflect.Ptr:
switch srcFieldValue.Type().Elem().Kind() {
case reflect.Struct:
if srcFieldValue.IsNil() {
break
}
newValue := CloneEmptyProperties(srcFieldValue)
if dstFieldInterfaceValue.IsValid() {
dstFieldInterfaceValue.Set(newValue)
} else {
dstFieldValue.Set(newValue)
}
case reflect.Bool, reflect.Int64, reflect.String:
// Nothing
default:
panic(fmt.Errorf("can't clone empty field %q: points to a %s",
field.Name, srcFieldValue.Elem().Kind()))
}
default:
panic(fmt.Errorf("unexpected kind for property struct field %q: %s",
field.Name, srcFieldValue.Kind()))
}
}
}
var typeFieldCache sync.Map
func typeFields(typ reflect.Type) []reflect.StructField {
// reflect.Type.Field allocates a []int{} to hold the index every time it is called, which ends up
// being a significant portion of the GC pressure. It can't reuse the same one in case a caller
// modifies the backing array through the slice. Since we don't modify it, cache the result
// locally to reduce allocations.
// Fast path
if typeFields, ok := typeFieldCache.Load(typ); ok {
return typeFields.([]reflect.StructField)
}
// Slow path
typeFields := make([]reflect.StructField, typ.NumField())
for i := range typeFields {
typeFields[i] = typ.Field(i)
}
typeFieldCache.Store(typ, typeFields)
return typeFields
}