angular-cn/packages/core/schematics/migrations/static-queries/index.ts

240 lines
9.7 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 {logging} from '@angular-devkit/core';
import {Rule, SchematicContext, SchematicsException, Tree} from '@angular-devkit/schematics';
import {dirname, relative} from 'path';
import {from} from 'rxjs';
import * as ts from 'typescript';
import {NgComponentTemplateVisitor} from '../../utils/ng_component_template';
import {getProjectTsConfigPaths} from '../../utils/project_tsconfig_paths';
import {parseTsconfigFile} from '../../utils/typescript/parse_tsconfig';
import {NgQueryResolveVisitor} from './angular/ng_query_visitor';
import {QueryTemplateStrategy} from './strategies/template_strategy/template_strategy';
import {QueryTestStrategy} from './strategies/test_strategy/test_strategy';
import {TimingStrategy} from './strategies/timing-strategy';
import {QueryUsageStrategy} from './strategies/usage_strategy/usage_strategy';
import {SELECTED_STRATEGY, promptForMigrationStrategy} from './strategy_prompt';
import {getTransformedQueryCallExpr} from './transform';
interface AnalyzedProject {
program: ts.Program;
host: ts.CompilerHost;
queryVisitor: NgQueryResolveVisitor;
sourceFiles: ts.SourceFile[];
basePath: string;
typeChecker: ts.TypeChecker;
tsconfigPath: string;
}
/** Entry point for the V8 static-query migration. */
export default function(): Rule {
return (tree: Tree, context: SchematicContext) => {
// We need to cast the returned "Observable" to "any" as there is a
// RxJS version mismatch that breaks the TS compilation.
return from(runMigration(tree, context).then(() => tree)) as any;
};
}
/** Runs the V8 migration static-query migration for all determined TypeScript projects. */
async function runMigration(tree: Tree, context: SchematicContext) {
const {buildPaths, testPaths} = getProjectTsConfigPaths(tree);
const basePath = process.cwd();
const logger = context.logger;
logger.info('------ Static Query migration ------');
logger.info('In preparation for Ivy, developers can now explicitly specify the');
logger.info('timing of their queries. Read more about this here:');
logger.info('https://github.com/angular/angular/pull/28810');
logger.info('');
if (!buildPaths.length && !testPaths.length) {
throw new SchematicsException(
'Could not find any tsconfig file. Cannot migrate queries ' +
'to explicit timing.');
}
const buildProjects = new Set<AnalyzedProject>();
const failures = [];
for (const tsconfigPath of buildPaths) {
const project = analyzeProject(tree, tsconfigPath, basePath);
if (project) {
buildProjects.add(project);
}
}
// In case there are projects which contain queries that need to be migrated,
// we want to prompt for the migration strategy and run the migration.
if (buildProjects.size) {
const strategy = await promptForMigrationStrategy(logger);
for (let project of Array.from(buildProjects.values())) {
failures.push(...await runStaticQueryMigration(tree, project, strategy, logger));
}
}
// For the "test" tsconfig projects we always want to use the test strategy as
// we can't detect the proper timing within spec files.
for (const tsconfigPath of testPaths) {
const project = await analyzeProject(tree, tsconfigPath, basePath);
if (project) {
failures.push(
...await runStaticQueryMigration(tree, project, SELECTED_STRATEGY.TESTS, logger));
}
}
if (failures.length) {
logger.info('Some queries could not be migrated automatically. Please go');
logger.info('through those manually and apply the appropriate timing:');
failures.forEach(failure => logger.warn(`${failure}`));
}
logger.info('------------------------------------------------');
}
/**
* Analyzes the given TypeScript project by looking for queries that need to be
* migrated. In case there are no queries that can be migrated, null is returned.
*/
function analyzeProject(tree: Tree, tsconfigPath: string, basePath: string):
AnalyzedProject|null {
const parsed = parseTsconfigFile(tsconfigPath, dirname(tsconfigPath));
const host = ts.createCompilerHost(parsed.options, true);
// We need to overwrite the host "readFile" method, as we want the TypeScript
// program to be based on the file contents in the virtual file tree. Otherwise
// if we run the migration for multiple tsconfig files which have intersecting
// source files, it can end up updating query definitions multiple times.
host.readFile = fileName => {
const buffer = tree.read(relative(basePath, fileName));
return buffer ? buffer.toString() : undefined;
};
const program = ts.createProgram(parsed.fileNames, parsed.options, host);
const typeChecker = program.getTypeChecker();
const sourceFiles = program.getSourceFiles().filter(
f => !f.isDeclarationFile && !program.isSourceFileFromExternalLibrary(f));
const queryVisitor = new NgQueryResolveVisitor(typeChecker);
// Analyze all project source-files and collect all queries that
// need to be migrated.
sourceFiles.forEach(sourceFile => queryVisitor.visitNode(sourceFile));
if (queryVisitor.resolvedQueries.size === 0) {
return null;
}
return {program, host, tsconfigPath, typeChecker, basePath, queryVisitor, sourceFiles};
}
/**
* Runs the static query migration for the given project. The schematic analyzes all
* queries within the project and sets up the query timing based on the current usage
* of the query property. e.g. a view query that is not used in any lifecycle hook does
* not need to be static and can be set up with "static: false".
*/
async function runStaticQueryMigration(
tree: Tree, project: AnalyzedProject, selectedStrategy: SELECTED_STRATEGY,
logger: logging.LoggerApi) {
const {sourceFiles, typeChecker, host, queryVisitor, tsconfigPath, basePath} = project;
const printer = ts.createPrinter();
const failureMessages: string[] = [];
const templateVisitor = new NgComponentTemplateVisitor(typeChecker);
// If the "usage" strategy is selected, we also need to add the query visitor
// to the analysis visitors so that query usage in templates can be also checked.
if (selectedStrategy === SELECTED_STRATEGY.USAGE) {
sourceFiles.forEach(s => templateVisitor.visitNode(s));
}
const {resolvedQueries, classMetadata} = queryVisitor;
const {resolvedTemplates} = templateVisitor;
if (selectedStrategy === SELECTED_STRATEGY.USAGE) {
// Add all resolved templates to the class metadata if the usage strategy is used. This
// is necessary in order to be able to check component templates for static query usage.
resolvedTemplates.forEach(template => {
if (classMetadata.has(template.container)) {
classMetadata.get(template.container) !.template = template;
}
});
}
let strategy: TimingStrategy;
if (selectedStrategy === SELECTED_STRATEGY.USAGE) {
strategy = new QueryUsageStrategy(classMetadata, typeChecker);
} else if (selectedStrategy === SELECTED_STRATEGY.TESTS) {
strategy = new QueryTestStrategy();
} else {
strategy = new QueryTemplateStrategy(tsconfigPath, classMetadata, host);
}
try {
strategy.setup();
} catch (e) {
// In case the strategy could not be set up properly, we just exit the
// migration. We don't want to throw an exception as this could mean
// that other migrations are interrupted.
logger.warn(
`Could not setup migration strategy for "${project.tsconfigPath}". The ` +
`following error has been reported:`);
if (selectedStrategy === SELECTED_STRATEGY.TEMPLATE) {
logger.warn(
`The template migration strategy uses the Angular compiler ` +
`internally and therefore projects that no longer build successfully after ` +
`the update cannot use the template migration strategy. Please ensure ` +
`there are no AOT compilation errors.`);
}
logger.error(e);
logger.info(
'Migration can be rerun with: "ng update @angular/core --from 7 --to 8 --migrate-only"');
return [];
}
// Walk through all source files that contain resolved queries and update
// the source files if needed. Note that we need to update multiple queries
// within a source file within the same recorder in order to not throw off
// the TypeScript node offsets.
resolvedQueries.forEach((queries, sourceFile) => {
const relativePath = relative(basePath, sourceFile.fileName);
const update = tree.beginUpdate(relativePath);
// Compute the query timing for all resolved queries and update the
// query definitions to explicitly set the determined query timing.
queries.forEach(q => {
const queryExpr = q.decorator.node.expression;
const {timing, message} = strategy.detectTiming(q);
const result = getTransformedQueryCallExpr(q, timing, !!message);
if (!result) {
return;
}
const newText = printer.printNode(ts.EmitHint.Unspecified, result.node, sourceFile);
// Replace the existing query decorator call expression with the updated
// call expression node.
update.remove(queryExpr.getStart(), queryExpr.getWidth());
update.insertRight(queryExpr.getStart(), newText);
if (result.failureMessage || message) {
const {line, character} =
ts.getLineAndCharacterOfPosition(sourceFile, q.decorator.node.getStart());
failureMessages.push(
`${relativePath}@${line + 1}:${character + 1}: ${result.failureMessage || message}`);
}
});
tree.commitUpdate(update);
});
return failureMessages;
}