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If enabled using the environment variable SOURCEKIT_INCREMENTAL_PARSE_VALIDATION, the incrementally parsed syntax tree will be compared to the from-scratch parsing syntax tree. If they differ a warning is emitted and log files showing the difference written to a temporary directory.
171 lines
5.4 KiB
C++
171 lines
5.4 KiB
C++
//===--- SyntaxSerialization.h - Swift Syntax Serialization -----*- C++ -*-===//
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//
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// This source file is part of the Swift.org open source project
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//
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// Copyright (c) 2014 - 2017 Apple Inc. and the Swift project authors
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// Licensed under Apache License v2.0 with Runtime Library Exception
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//
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// See https://swift.org/LICENSE.txt for license information
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// See https://swift.org/CONTRIBUTORS.txt for the list of Swift project authors
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//
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//===----------------------------------------------------------------------===//
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//
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// This file provides the serialization of RawSyntax nodes and their
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// constituent parts to JSON.
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//
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//===----------------------------------------------------------------------===//
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#ifndef SWIFT_SYNTAX_SERIALIZATION_SYNTAXSERIALIZATION_H
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#define SWIFT_SYNTAX_SERIALIZATION_SYNTAXSERIALIZATION_H
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#include "swift/Syntax/RawSyntax.h"
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#include "swift/Basic/JSONSerialization.h"
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#include "swift/Basic/StringExtras.h"
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#include "llvm/ADT/StringSwitch.h"
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#include <forward_list>
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namespace swift {
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namespace json {
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/// The associated value will be interpreted as \c bool. If \c true the node IDs
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/// will not be included in the serialized JSON.
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static void *DontSerializeNodeIdsUserInfoKey = &DontSerializeNodeIdsUserInfoKey;
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/// Serialization traits for SourcePresence.
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template <>
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struct ScalarEnumerationTraits<syntax::SourcePresence> {
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static void enumeration(json::Output &out, syntax::SourcePresence &value) {
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out.enumCase(value, "Present", syntax::SourcePresence::Present);
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out.enumCase(value, "Missing", syntax::SourcePresence::Missing);
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}
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};
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/// Serialization traits for swift::tok.
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template <>
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struct ScalarEnumerationTraits<tok> {
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static void enumeration(Output &out, tok &value) {
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#define TOKEN(name) \
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out.enumCase(value, #name, tok::name);
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#include "swift/Syntax/TokenKinds.def"
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}
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};
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/// Serialization traits for Trivia.
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/// Trivia will serialize as an array of the underlying TriviaPieces.
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template<>
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struct ArrayTraits<ArrayRef<syntax::TriviaPiece>> {
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static size_t size(Output &out, ArrayRef<syntax::TriviaPiece> &seq) {
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return seq.size();
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}
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static syntax::TriviaPiece &
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element(Output &out, ArrayRef<syntax::TriviaPiece> &seq, size_t index) {
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return const_cast<syntax::TriviaPiece &>(seq[index]);
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}
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};
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/// Serialization traits for RawSyntax list.
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template<>
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struct ArrayTraits<ArrayRef<RC<syntax::RawSyntax>>> {
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static size_t size(Output &out, ArrayRef<RC<syntax::RawSyntax>> &seq) {
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return seq.size();
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}
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static RC<syntax::RawSyntax> &
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element(Output &out, ArrayRef<RC<syntax::RawSyntax>> &seq, size_t index) {
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return const_cast<RC<syntax::RawSyntax> &>(seq[index]);
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}
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};
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/// An adapter struct that provides a nested structure for token content.
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struct TokenDescription {
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tok Kind;
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StringRef Text;
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};
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/// Serialization traits for TokenDescription.
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/// TokenDescriptions always serialized with a token kind, which is
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/// the stringified version of their name in the tok:: enum.
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/// ```
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/// {
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/// "kind": <token name, e.g. "kw_struct">,
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/// }
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/// ```
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///
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/// For tokens that have some kind of text attached, like literals or
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/// identifiers, the serialized form will also have a "text" key containing
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/// that text as the value.
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template<>
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struct ObjectTraits<TokenDescription> {
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static void mapping(Output &out, TokenDescription &value) {
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out.mapRequired("kind", value.Kind);
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if (!isTokenTextDetermined(value.Kind)) {
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out.mapRequired("text", value.Text);
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}
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}
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};
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/// Serialization traits for RC<RawSyntax>.
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/// This will be different depending if the raw syntax node is a Token or not.
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/// Token nodes will always have this structure:
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/// ```
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/// {
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/// "tokenKind": { "kind": <token kind>, "text": <token text> },
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/// "leadingTrivia": [ <trivia pieces...> ],
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/// "trailingTrivia": [ <trivia pieces...> ],
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/// "presence": <"Present" or "Missing">
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/// }
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/// ```
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/// All other raw syntax nodes will have this structure:
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/// ```
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/// {
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/// "kind": <syntax kind>,
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/// "layout": [ <raw syntax nodes...> ],
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/// "presence": <"Present" or "Missing">
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/// }
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/// ```
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template<>
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struct ObjectTraits<syntax::RawSyntax> {
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static void mapping(Output &out, syntax::RawSyntax &value) {
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if (value.isToken()) {
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auto tokenKind = value.getTokenKind();
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auto text = value.getTokenText();
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auto description = TokenDescription { tokenKind, text };
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out.mapRequired("tokenKind", description);
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auto leadingTrivia = value.getLeadingTrivia();
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out.mapRequired("leadingTrivia", leadingTrivia);
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auto trailingTrivia = value.getTrailingTrivia();
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out.mapRequired("trailingTrivia", trailingTrivia);
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} else {
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auto kind = value.getKind();
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out.mapRequired("kind", kind);
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auto layout = value.getLayout();
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out.mapRequired("layout", layout);
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}
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auto presence = value.getPresence();
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out.mapRequired("presence", presence);
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bool omitNodeId = (bool)out.getUserInfo()[DontSerializeNodeIdsUserInfoKey];
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if (!omitNodeId) {
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auto nodeId = value.getId();
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out.mapRequired("id", nodeId);
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}
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}
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};
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template<>
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struct NullableTraits<RC<syntax::RawSyntax>> {
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using value_type = syntax::RawSyntax;
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static bool isNull(RC<syntax::RawSyntax> &value) {
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return value == nullptr;
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}
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static syntax::RawSyntax &get(RC<syntax::RawSyntax> &value) {
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return *value;
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}
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};
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} // end namespace json
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} // end namespace swift
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#endif /* SWIFT_SYNTAX_SERIALIZATION_SYNTAXSERIALIZATION_H */
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