6acb187d4a
Change-Id: Iebf3a85920f141cff1595529b55b7cbac240434a Reviewed-on: https://dart-review.googlesource.com/c/sdk/+/176601 Reviewed-by: Sigmund Cherem <sigmund@google.com> Commit-Queue: Stephen Adams <sra@google.com>
200 lines
6.9 KiB
Dart
200 lines
6.9 KiB
Dart
// Copyright (c) 2015, the Dart project authors. Please see the AUTHORS file
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// for details. All rights reserved. Use of this source code is governed by a
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// BSD-style license that can be found in the LICENSE file.
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/// New Compiler API. This API is under construction, use only internally or
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/// in unittests.
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library compiler_new;
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import 'dart:async';
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import 'package:front_end/src/api_unstable/dart2js.dart' as fe;
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import 'compiler.dart' show Diagnostic;
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import 'src/apiimpl.dart';
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import 'src/options.dart' show CompilerOptions;
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export 'compiler.dart' show Diagnostic;
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// Unless explicitly allowed, passing `null` for any argument to the
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// methods of library will result in an Error being thrown.
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/// Input kinds used by [CompilerInput.readFromUri].
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enum InputKind {
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/// Data is read as UTF8 either as a [String] or a zero-terminated
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/// `List<int>`.
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UTF8,
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/// Data is read as bytes in a `List<int>`.
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binary,
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}
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/// Interface for data read through [CompilerInput.readFromUri].
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abstract class Input<T> {
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/// The URI from which data was read.
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Uri get uri;
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/// The format of the read [data].
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InputKind get inputKind;
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/// The raw data read from [uri].
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T get data;
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/// Release any resources held by the input. After releasing, a call to `get
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/// data` will fail, and previously returned data may be invalid.
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void release();
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}
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/// Interface for providing the compiler with input. That is, Dart source files,
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/// package config files, etc.
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abstract class CompilerInput {
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/// Returns a future that completes to the source corresponding to [uri].
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/// If an exception occurs, the future completes with this exception.
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///
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/// If [inputKind] is `InputKind.UTF8` the source can be represented either as
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/// a zero-terminated `List<int>` of UTF-8 bytes or as a [String]. If
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/// [inputKind] is `InputKind.binary` the source is a read a `List<int>`.
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///
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/// The following text is non-normative:
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///
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/// It is recommended to return a UTF-8 encoded list of bytes because the
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/// scanner is more efficient in this case. In either case, the data structure
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/// is expected to hold a zero element at the last position. If this is not
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/// the case, the entire data structure is copied before scanning.
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Future<Input> readFromUri(Uri uri, {InputKind inputKind: InputKind.UTF8});
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}
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/// Output types used in `CompilerOutput.createOutputSink`.
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enum OutputType {
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/// The main JavaScript output.
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js,
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/// A deferred JavaScript output part.
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jsPart,
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/// A source map for a JavaScript output.
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sourceMap,
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/// Dump info output.
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dumpInfo,
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/// Deferred map output.
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deferredMap,
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/// Implementation specific output used for debugging the compiler.
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debug,
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}
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/// Sink interface used for generating output from the compiler.
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abstract class OutputSink {
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/// Adds [text] to the sink.
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void add(String text);
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/// Closes the sink.
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void close();
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}
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/// Sink interface used for generating binary data from the compiler.
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abstract class BinaryOutputSink {
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/// Writes indices [start] to [end] of [buffer] to the sink.
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void write(List<int> buffer, [int start = 0, int end]);
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/// Closes the sink.
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void close();
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}
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/// Interface for producing output from the compiler. That is, JavaScript target
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/// files, source map files, dump info files, etc.
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abstract class CompilerOutput {
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/// Returns an [OutputSink] that will serve as compiler output for the given
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/// component.
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///
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/// Components are identified by [name], [extension], and [type]. By
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/// convention, the empty string `""` will represent the main output of the
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/// provided [type]. [name] and [extension] are otherwise suggestive.
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// TODO(johnniwinther): Replace [name] and [extension] with something like
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// [id] and [uri].
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OutputSink createOutputSink(String name, String extension, OutputType type);
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/// Returns an [BinaryOutputSink] that will serve as compiler output for the
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/// given URI.
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BinaryOutputSink createBinarySink(Uri uri);
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}
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/// Interface for receiving diagnostic message from the compiler. That is,
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/// errors, warnings, hints, etc.
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abstract class CompilerDiagnostics {
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/// Invoked by the compiler to report diagnostics. If [uri] is `null`, so are
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/// [begin] and [end]. No other arguments may be `null`. If [uri] is not
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/// `null`, neither are [begin] and [end]. [uri] indicates the compilation
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/// unit from where the diagnostic originates. [begin] and [end] are
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/// zero-based character offsets from the beginning of the compilation unit.
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/// [message] is the diagnostic message, and [kind] indicates indicates what
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/// kind of diagnostic it is.
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///
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/// Experimental: [code] gives access to an id for the messages. Currently it
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/// is the [Message] used to create the diagnostic, if available, from which
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/// the [MessageKind] is accessible.
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void report(
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var code, Uri uri, int begin, int end, String text, Diagnostic kind);
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}
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/// Information resulting from the compilation.
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class CompilationResult {
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/// `true` if the compilation succeeded, that is, compilation didn't fail due
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/// to compile-time errors and/or internal errors.
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final bool isSuccess;
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/// The compiler object used for the compilation.
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///
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/// Note: The type of [compiler] is implementation dependent and may vary.
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/// Use only for debugging and testing.
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final compiler;
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/// Shared state between compilations.
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///
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/// This is used to speed up batch mode.
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final fe.InitializedCompilerState kernelInitializedCompilerState;
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CompilationResult(this.compiler,
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{this.isSuccess: true, this.kernelInitializedCompilerState: null});
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}
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/// Returns a future that completes to a [CompilationResult] when the Dart
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/// sources in [options] have been compiled.
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///
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/// The generated compiler output is obtained by providing a [compilerOutput].
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///
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/// If the compilation fails, the future's `CompilationResult.isSuccess` is
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/// `false` and [CompilerDiagnostics.report] on [compilerDiagnostics]
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/// is invoked at least once with `kind == Diagnostic.ERROR` or
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/// `kind == Diagnostic.CRASH`.
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Future<CompilationResult> compile(
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CompilerOptions compilerOptions,
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CompilerInput compilerInput,
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CompilerDiagnostics compilerDiagnostics,
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CompilerOutput compilerOutput) {
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if (compilerOptions == null) {
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throw new ArgumentError("compilerOptions must be non-null");
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}
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if (compilerInput == null) {
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throw new ArgumentError("compilerInput must be non-null");
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}
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if (compilerDiagnostics == null) {
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throw new ArgumentError("compilerDiagnostics must be non-null");
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}
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if (compilerOutput == null) {
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throw new ArgumentError("compilerOutput must be non-null");
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}
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CompilerImpl compiler = new CompilerImpl(
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compilerInput, compilerOutput, compilerDiagnostics, compilerOptions);
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return compiler.run(compilerOptions.entryPoint).then((bool success) {
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return new CompilationResult(compiler,
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isSuccess: success,
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kernelInitializedCompilerState:
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compiler.kernelLoader.initializedCompilerState);
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});
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}
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