angular/packages/compiler/src/render3/r3_module_compiler.ts
Alex Rickabaugh 5be186035f feat(ivy): enable inheritance of factory functions in definitions (#25392)
This commit creates an API for factory functions which allows them
to be inherited from one another. To do so, it differentiates between
the factory function as a wrapper for a constructor and the factory
function in ngInjectableDefs which is determined by a default
provider.

The new form is:

factory: (t?) => new (t || SomeType)(inject(Dep1), inject(Dep2))

The 't' parameter allows for constructor inheritance. A subclass with
no declared constructor inherits its constructor from the superclass.
With the 't' parameter, a subclass can call the superclass' factory
function and use it to create an instance of the subclass.

For @Injectables with configured providers, the factory function is
of the form:

factory: (t?) => t ? constructorInject(t) : provider();

where constructorInject(t) creates an instance of 't' using the
naturally declared constructor of the type, and where provider()
creates an instance of the base type using the special declared
provider on @Injectable.

PR Close #25392
2018-08-09 09:58:13 -07:00

155 lines
5.1 KiB
TypeScript

/**
* @license
* Copyright Google Inc. All Rights Reserved.
*
* Use of this source code is governed by an MIT-style license that can be
* found in the LICENSE file at https://angular.io/license
*/
import {StaticSymbol} from '../aot/static_symbol';
import {CompileShallowModuleMetadata, identifierName} from '../compile_metadata';
import {InjectableCompiler} from '../injectable_compiler';
import {mapLiteral} from '../output/map_util';
import * as o from '../output/output_ast';
import {OutputContext} from '../util';
import {R3DependencyMetadata, compileFactoryFunction} from './r3_factory';
import {Identifiers as R3} from './r3_identifiers';
import {R3Reference, convertMetaToOutput, mapToMapExpression} from './util';
export interface R3NgModuleDef {
expression: o.Expression;
type: o.Type;
additionalStatements: o.Statement[];
}
/**
* Metadata required by the module compiler to generate a `ngModuleDef` for a type.
*/
export interface R3NgModuleMetadata {
/**
* An expression representing the module type being compiled.
*/
type: o.Expression;
/**
* An array of expressions representing the bootstrap components specified by the module.
*/
bootstrap: o.Expression[];
/**
* An array of expressions representing the directives and pipes declared by the module.
*/
declarations: R3Reference[];
/**
* An array of expressions representing the imports of the module.
*/
imports: R3Reference[];
/**
* An array of expressions representing the exports of the module.
*/
exports: R3Reference[];
/**
* Whether to emit the selector scope values (declarations, imports, exports) inline into the
* module definition, or to generate additional statements which patch them on. Inline emission
* does not allow components to be tree-shaken, but is useful for JIT mode.
*/
emitInline: boolean;
}
/**
* Construct an `R3NgModuleDef` for the given `R3NgModuleMetadata`.
*/
export function compileNgModule(meta: R3NgModuleMetadata): R3NgModuleDef {
const {type: moduleType, bootstrap, declarations, imports, exports} = meta;
const expression = o.importExpr(R3.defineNgModule).callFn([mapToMapExpression({
type: moduleType,
bootstrap: o.literalArr(bootstrap),
declarations: o.literalArr(declarations.map(ref => ref.value)),
imports: o.literalArr(imports.map(ref => ref.value)),
exports: o.literalArr(exports.map(ref => ref.value)),
})]);
const type = new o.ExpressionType(o.importExpr(R3.NgModuleDef, [
new o.ExpressionType(moduleType), tupleTypeOf(declarations), tupleTypeOf(imports),
tupleTypeOf(exports)
]));
const additionalStatements: o.Statement[] = [];
return {expression, type, additionalStatements};
}
export interface R3InjectorDef {
expression: o.Expression;
type: o.Type;
statements: o.Statement[];
}
export interface R3InjectorMetadata {
name: string;
type: o.Expression;
deps: R3DependencyMetadata[]|null;
providers: o.Expression;
imports: o.Expression;
}
export function compileInjector(meta: R3InjectorMetadata): R3InjectorDef {
const result = compileFactoryFunction({
name: meta.name,
type: meta.type,
deps: meta.deps,
injectFn: R3.inject,
});
const expression = o.importExpr(R3.defineInjector).callFn([mapToMapExpression({
factory: result.factory,
providers: meta.providers,
imports: meta.imports,
})]);
const type =
new o.ExpressionType(o.importExpr(R3.InjectorDef, [new o.ExpressionType(meta.type)]));
return {expression, type, statements: result.statements};
}
// TODO(alxhub): integrate this with `compileNgModule`. Currently the two are separate operations.
export function compileNgModuleFromRender2(
ctx: OutputContext, ngModule: CompileShallowModuleMetadata,
injectableCompiler: InjectableCompiler): void {
const className = identifierName(ngModule.type) !;
const rawImports = ngModule.rawImports ? [ngModule.rawImports] : [];
const rawExports = ngModule.rawExports ? [ngModule.rawExports] : [];
const injectorDefArg = mapLiteral({
'factory':
injectableCompiler.factoryFor({type: ngModule.type, symbol: ngModule.type.reference}, ctx),
'providers': convertMetaToOutput(ngModule.rawProviders, ctx),
'imports': convertMetaToOutput([...rawImports, ...rawExports], ctx),
});
const injectorDef = o.importExpr(R3.defineInjector).callFn([injectorDefArg]);
ctx.statements.push(new o.ClassStmt(
/* name */ className,
/* parent */ null,
/* fields */[new o.ClassField(
/* name */ 'ngInjectorDef',
/* type */ o.INFERRED_TYPE,
/* modifiers */[o.StmtModifier.Static],
/* initializer */ injectorDef, )],
/* getters */[],
/* constructorMethod */ new o.ClassMethod(null, [], []),
/* methods */[]));
}
function accessExportScope(module: o.Expression): o.Expression {
const selectorScope = new o.ReadPropExpr(module, 'ngModuleDef');
return new o.ReadPropExpr(selectorScope, 'exported');
}
function tupleTypeOf(exp: R3Reference[]): o.Type {
const types = exp.map(ref => o.typeofExpr(ref.type));
return exp.length > 0 ? o.expressionType(o.literalArr(types)) : o.NONE_TYPE;
}