mirror of
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640 lines
23 KiB
C++
640 lines
23 KiB
C++
//===--- swift-syntax-test.cpp - Reflection Syntax testing application ----===//
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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 is a host-side tool to perform round-trip testing of "full-fidelity"
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// lexing and parsing. That is, when this application ingests a .swift file,
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// it should be able to create a list of full tokens, or a full-fidelity AST,
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// print them, and get the same file back out. This ensures that we aren't
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// losing any source information in these structures.
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//
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//===----------------------------------------------------------------------===//
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#include "swift/AST/DiagnosticEngine.h"
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#include "swift/AST/DiagnosticsFrontend.h"
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#include "swift/Basic/Defer.h"
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#include "swift/Basic/LLVMInitialize.h"
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#include "swift/Basic/LangOptions.h"
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#include "swift/Basic/SourceManager.h"
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#include "swift/Frontend/Frontend.h"
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#include "swift/Frontend/PrintingDiagnosticConsumer.h"
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#include "swift/Parse/Lexer.h"
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#include "swift/Parse/Parser.h"
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#include "swift/Subsystems.h"
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#include "swift/Syntax/Serialization/SyntaxDeserialization.h"
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#include "swift/Syntax/Serialization/SyntaxSerialization.h"
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#include "swift/Syntax/SyntaxData.h"
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#include "swift/Syntax/SyntaxNodes.h"
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#include "llvm/Support/CommandLine.h"
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#include "llvm/Support/FileSystem.h"
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#include "llvm/Support/Regex.h"
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#include "llvm/Support/raw_ostream.h"
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using namespace swift;
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using namespace swift::syntax;
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using llvm::StringRef;
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enum class ActionType {
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DumpRawTokenSyntax,
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FullLexRoundTrip,
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FullParseRoundTrip,
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SerializeRawTree,
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DeserializeRawTree,
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ParseOnly,
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ParserGen,
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EOFPos,
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None
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};
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namespace options {
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static llvm::cl::OptionCategory Category("swift-syntax-test Options");
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static llvm::cl::opt<ActionType>
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Action(llvm::cl::desc("Action (required):"),
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llvm::cl::init(ActionType::None),
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llvm::cl::values(
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clEnumValN(ActionType::DumpRawTokenSyntax,
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"dump-full-tokens",
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"Lex the source file and dump the tokens "
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"and their absolute line/column locations"),
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clEnumValN(ActionType::FullLexRoundTrip,
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"round-trip-lex",
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"Lex the source file and print it back out for "
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"comparing against the original"),
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clEnumValN(ActionType::FullParseRoundTrip,
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"round-trip-parse",
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"Parse the source file and print it back out for "
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"comparing against the input"),
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clEnumValN(ActionType::ParseOnly,
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"parse-only",
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"Parse the source file with syntax nodes and exit"),
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clEnumValN(ActionType::ParserGen,
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"parse-gen",
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"Parse the source file and print it back out for "
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"comparing against the input"),
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clEnumValN(ActionType::SerializeRawTree,
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"serialize-raw-tree",
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"Parse the source file and serialize the raw tree "
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"to JSON"),
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clEnumValN(ActionType::DeserializeRawTree,
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"deserialize-raw-tree",
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"Parse the JSON file from the serialized raw tree "
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"to the original"),
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clEnumValN(ActionType::EOFPos,
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"eof",
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"Parse the source file, calculate the absolute position"
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"of the EOF token, and dump the buffer from the start of the"
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"file to the EOF token")));
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static llvm::cl::opt<std::string>
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InputSourceFilename("input-source-filename",
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llvm::cl::desc("Path to the input .swift file"));
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static llvm::cl::opt<std::string>
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InputSourceDirectory("input-source-directory",
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llvm::cl::desc("Directory to be scanned recursively and "
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"run the selected action on every .swift "
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"file"));
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static llvm::cl::opt<std::string>
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OldSyntaxTreeFilename("old-syntax-tree-filename",
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llvm::cl::desc("Path to the serialized syntax tree of "
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"the pre-edit file"));
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static llvm::cl::opt<std::string>
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OldSourceFilename("old-source-filename",
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llvm::cl::desc("Path to the pre-edit source file to "
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"translate line:column edits into the "
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"file's byte offsets"));
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static llvm::cl::list<std::string>
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IncrementalEdits("incremental-edit",
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llvm::cl::desc("An edit that was applied to reach the input "
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"file from the source file that generated the "
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"old syntax tree in the format <start-line>:"
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"<start-column>-<end-line>:<end-column>="
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"<replacement> where start and end are defined "
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"in terms of the pre-edit file and "
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"<replacement> is the string that shall "
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"replace the selected range. "
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"Can be passed multiple times."));
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static llvm::cl::opt<std::string>
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IncrementalReuseLog("incremental-reuse-log",
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llvm::cl::desc("Path to which a log should be written that "
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"describes all the nodes reused during "
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"incremental parsing."));
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static llvm::cl::opt<std::string>
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OutputFilename("output-filename",
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llvm::cl::desc("Path to the output file"));
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static llvm::cl::opt<bool>
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PrintVisualReuseInfo("print-visual-reuse-info",
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llvm::cl::desc("Print a coloured output of which parts of "
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"the source file have been reused from the "
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"old syntax tree."),
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llvm::cl::cat(Category),
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llvm::cl::init(false));
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static llvm::cl::opt<bool>
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ForceColoredOutput("force-colored-output",
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llvm::cl::desc("Print colored output even if the shell "
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"does not support it."),
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llvm::cl::cat(Category),
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llvm::cl::init(false));
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static llvm::cl::opt<bool>
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PrintNodeKind("print-node-kind",
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llvm::cl::desc("To print syntax node kind"),
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llvm::cl::cat(Category),
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llvm::cl::init(false));
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static llvm::cl::opt<bool>
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PrintTrivialNodeKind("print-trivial-node-kind",
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llvm::cl::desc("To print trivial syntax node kind"),
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llvm::cl::cat(Category),
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llvm::cl::init(false));
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static llvm::cl::opt<bool>
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VerifySyntaxTree("verify-syntax-tree",
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llvm::cl::desc("Emit warnings for unknown nodes"),
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llvm::cl::cat(Category),
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llvm::cl::init(true));
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static llvm::cl::opt<bool>
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Visual("v",
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llvm::cl::desc("Print visually"),
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llvm::cl::cat(Category),
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llvm::cl::init(false));
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} // end namespace options
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namespace {
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int getTokensFromFile(unsigned BufferID,
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LangOptions &LangOpts,
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SourceManager &SourceMgr,
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swift::DiagnosticEngine &Diags,
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std::vector<std::pair<RC<syntax::RawSyntax>,
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syntax::AbsolutePosition>> &Tokens) {
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Tokens = tokenizeWithTrivia(LangOpts, SourceMgr, BufferID,
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/*Offset=*/0, /*EndOffset=*/0,
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&Diags);
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return EXIT_SUCCESS;
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}
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int
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getTokensFromFile(const StringRef InputFilename,
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LangOptions &LangOpts,
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SourceManager &SourceMgr,
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DiagnosticEngine &Diags,
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std::vector<std::pair<RC<syntax::RawSyntax>,
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syntax::AbsolutePosition>> &Tokens) {
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auto Buffer = llvm::MemoryBuffer::getFile(InputFilename);
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if (!Buffer) {
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Diags.diagnose(SourceLoc(), diag::cannot_open_file,
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InputFilename, Buffer.getError().message());
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return EXIT_FAILURE;
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}
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auto BufferID = SourceMgr.addNewSourceBuffer(std::move(Buffer.get()));
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return getTokensFromFile(BufferID, LangOpts, SourceMgr, Diags, Tokens);
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}
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void anchorForGetMainExecutable() {}
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bool parseIncrementalEditArguments(SyntaxParsingCache *Cache,
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StringRef OldFileName) {
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// Get a source manager for the old file
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InputFile OldFile = InputFile(OldFileName, true);
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auto OldFileBufferOrErrror = llvm::MemoryBuffer::getFileOrSTDIN(OldFileName);
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if (!OldFileBufferOrErrror) {
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llvm::errs() << "Unable to open old source file";
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return false;
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}
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SourceManager SourceMgr;
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unsigned BufferID = SourceMgr.addNewSourceBuffer(std::move(OldFileBufferOrErrror.get()));
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// Parse the source edits
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for (auto EditPattern : options::IncrementalEdits) {
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llvm::Regex MatchRegex("([0-9]+):([0-9]+)-([0-9]+):([0-9]+)=(.*)");
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SmallVector<StringRef, 4> Matches;
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if (!MatchRegex.match(EditPattern, &Matches)) {
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llvm::errs() << "Invalid edit pattern: " << EditPattern << '\n';
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return false;
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}
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int EditStartLine, EditStartColumn, EditEndLine, EditEndColumn;
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if (Matches[1].getAsInteger(10, EditStartLine)) {
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llvm::errs() << "Could not parse edit start line as integer: "
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<< EditStartLine << '\n';
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return false;
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}
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if (Matches[2].getAsInteger(10, EditStartColumn)) {
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llvm::errs() << "Could not parse edit start column as integer: "
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<< EditStartColumn << '\n';
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return false;
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}
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if (Matches[3].getAsInteger(10, EditEndLine)) {
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llvm::errs() << "Could not parse edit end line as integer: "
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<< EditEndLine << '\n';
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return false;
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}
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if (Matches[4].getAsInteger(10, EditEndColumn)) {
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llvm::errs() << "Could not parse edit end column as integer: "
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<< EditEndColumn << '\n';
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return false;
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}
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auto EditStartLoc =
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SourceMgr.getLocForLineCol(BufferID, EditStartLine, EditStartColumn);
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auto EditEndLoc =
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SourceMgr.getLocForLineCol(BufferID, EditEndLine, EditEndColumn);
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auto EditStartOffset =
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SourceMgr.getLocOffsetInBuffer(EditStartLoc, BufferID);
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auto EditEndOffset = SourceMgr.getLocOffsetInBuffer(EditEndLoc, BufferID);
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Cache->addEdit(EditStartOffset, EditEndOffset,
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/*ReplacmentLength=*/Matches[5].size());
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}
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return true;
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}
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bool useColoredOutput() {
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return llvm::outs().has_colors() || options::ForceColoredOutput;
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}
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void printVisualNodeReuseInformation(SourceManager &SourceMgr,
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unsigned BufferID,
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SyntaxParsingCache *Cache) {
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unsigned CurrentOffset = 0;
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auto SourceText = SourceMgr.getEntireTextForBuffer(BufferID);
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if (useColoredOutput()) {
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llvm::outs().changeColor(llvm::buffer_ostream::Colors::GREEN);
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}
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auto PrintReparsedRegion = [](StringRef SourceText, unsigned ReparseStart,
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unsigned ReparseEnd) {
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if (ReparseEnd != ReparseStart) {
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if (useColoredOutput()) {
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llvm::outs().changeColor(llvm::buffer_ostream::Colors::RED);
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} else {
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llvm::outs() << "<reparse>";
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}
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llvm::outs() << SourceText.substr(ReparseStart,
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ReparseEnd - ReparseStart);
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if (useColoredOutput()) {
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llvm::outs().changeColor(llvm::buffer_ostream::Colors::GREEN);
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} else {
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llvm::outs() << "</reparse>";
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}
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}
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};
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for (auto ReuseRange : Cache->getReusedRanges()) {
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// Print region that was not reused
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PrintReparsedRegion(SourceText, CurrentOffset, ReuseRange.first);
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llvm::outs() << SourceText.substr(ReuseRange.first,
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ReuseRange.second - ReuseRange.first);
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CurrentOffset = ReuseRange.second;
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}
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PrintReparsedRegion(SourceText, CurrentOffset, SourceText.size());
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if (useColoredOutput())
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llvm::outs().resetColor();
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llvm::outs() << '\n';
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}
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void saveReuseLog(SourceManager &SourceMgr, unsigned BufferID,
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SyntaxParsingCache *Cache) {
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std::error_code ErrorCode;
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llvm::raw_fd_ostream ReuseLog(options::IncrementalReuseLog, ErrorCode,
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llvm::sys::fs::OpenFlags::F_RW);
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assert(!ErrorCode && "Unable to open incremental usage log");
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for (auto ReuseRange : Cache->getReusedRanges()) {
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SourceLoc Start = SourceMgr.getLocForOffset(BufferID, ReuseRange.first);
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SourceLoc End = SourceMgr.getLocForOffset(BufferID, ReuseRange.second);
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ReuseLog << "Reused ";
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Start.printLineAndColumn(ReuseLog, SourceMgr, BufferID);
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ReuseLog << " to ";
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End.printLineAndColumn(ReuseLog, SourceMgr, BufferID);
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ReuseLog << '\n';
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}
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}
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/// Parse the given input file (incrementally if an old syntax tree was
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/// provided) and call the action specific callback with the new syntax tree
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int parseFile(const char *MainExecutablePath, const StringRef InputFileName,
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llvm::function_ref<int(SourceFile *)> ActionSpecificCallback) {
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// The cache needs to be a heap allocated pointer since we construct it inside
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// an if block but need to keep it alive until the end of the function.
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SyntaxParsingCache *SyntaxCache = nullptr;
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SWIFT_DEFER { delete SyntaxCache; };
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// We also need to hold on to the Deserializer and buffer since they keep
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// ownership of strings that are referenced from the old syntax tree
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swift::json::SyntaxDeserializer *Deserializer = nullptr;
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SWIFT_DEFER { delete Deserializer; };
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auto Buffer = llvm::MemoryBuffer::getFile(options::OldSyntaxTreeFilename);
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// Deserialise the old syntax tree
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if (!options::OldSyntaxTreeFilename.empty()) {
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Deserializer = new swift::json::SyntaxDeserializer(
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llvm::MemoryBufferRef(*(Buffer.get())));
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auto OldSyntaxTree = Deserializer->getSourceFileSyntax();
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if (!OldSyntaxTree.hasValue()) {
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llvm::errs() << "Could not deserialise old syntax tree.";
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return EXIT_FAILURE;
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}
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SyntaxCache = new SyntaxParsingCache(OldSyntaxTree.getValue());
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SyntaxCache->recordReuseInformation();
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if (options::OldSourceFilename.empty()) {
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llvm::errs() << "The old syntax file must be provided to translate "
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"line:column edits to byte offsets";
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return EXIT_FAILURE;
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}
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if (!parseIncrementalEditArguments(SyntaxCache,
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options::OldSourceFilename)) {
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return EXIT_FAILURE;
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}
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}
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// Set up the compiler invocation
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CompilerInvocation Invocation;
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Invocation.getLangOptions().BuildSyntaxTree = true;
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Invocation.getLangOptions().VerifySyntaxTree = options::VerifySyntaxTree;
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Invocation.getFrontendOptions().InputsAndOutputs.addInputFile(InputFileName);
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Invocation.setMainExecutablePath(
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llvm::sys::fs::getMainExecutable(MainExecutablePath,
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reinterpret_cast<void *>(&anchorForGetMainExecutable)));
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Invocation.setMainFileSyntaxParsingCache(SyntaxCache);
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Invocation.setModuleName("Test");
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PrintingDiagnosticConsumer DiagConsumer;
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CompilerInstance Instance;
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Instance.addDiagnosticConsumer(&DiagConsumer);
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if (Instance.setup(Invocation)) {
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llvm::errs() << "Unable to set up compiler instance";
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return EXIT_FAILURE;
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}
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// Parse incremental edit arguments
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auto BufferIDs = Instance.getInputBufferIDs();
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assert(BufferIDs.size() == 1 && "Only expecting to process one source file");
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unsigned BufferID = BufferIDs.front();
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// Parse the actual source file
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Instance.performParseOnly();
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SourceFile *SF = nullptr;
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for (auto Unit : Instance.getMainModule()->getFiles()) {
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SF = dyn_cast<SourceFile>(Unit);
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if (SF != nullptr) {
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break;
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}
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}
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assert(SF && "No source file");
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// If we have a syntax cache, output reuse information if requested
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if (SyntaxCache) {
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if (options::PrintVisualReuseInfo) {
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printVisualNodeReuseInformation(Instance.getSourceMgr(), BufferID,
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SyntaxCache);
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}
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if (!options::IncrementalReuseLog.empty()) {
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saveReuseLog(Instance.getSourceMgr(), BufferID, SyntaxCache);
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}
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}
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return ActionSpecificCallback(SF);
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}
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int doFullLexRoundTrip(const StringRef InputFilename) {
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LangOptions LangOpts;
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SourceManager SourceMgr;
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DiagnosticEngine Diags(SourceMgr);
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PrintingDiagnosticConsumer DiagPrinter;
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Diags.addConsumer(DiagPrinter);
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std::vector<std::pair<RC<syntax::RawSyntax>,
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syntax::AbsolutePosition>> Tokens;
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if (getTokensFromFile(InputFilename, LangOpts, SourceMgr,
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Diags, Tokens) == EXIT_FAILURE) {
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return EXIT_FAILURE;
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}
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for (auto TokAndPos : Tokens) {
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TokAndPos.first->print(llvm::outs(), {});
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}
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return EXIT_SUCCESS;
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}
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int doDumpRawTokenSyntax(const StringRef InputFile) {
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LangOptions LangOpts;
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SourceManager SourceMgr;
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DiagnosticEngine Diags(SourceMgr);
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PrintingDiagnosticConsumer DiagPrinter;
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Diags.addConsumer(DiagPrinter);
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std::vector<std::pair<RC<syntax::RawSyntax>,
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syntax::AbsolutePosition>> Tokens;
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if (getTokensFromFile(InputFile, LangOpts, SourceMgr, Diags, Tokens) ==
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EXIT_FAILURE) {
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return EXIT_FAILURE;
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}
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for (auto TokAndPos : Tokens) {
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TokAndPos.second.printLineAndColumn(llvm::outs());
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llvm::outs() << "\n";
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TokAndPos.first->dump(llvm::outs());
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llvm::outs() << "\n";
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}
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return EXIT_SUCCESS;
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}
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int doFullParseRoundTrip(const char *MainExecutablePath,
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const StringRef InputFile) {
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return parseFile(MainExecutablePath, InputFile, [](SourceFile *SF) -> int {
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SF->getSyntaxRoot().print(llvm::outs(), {});
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return EXIT_SUCCESS;
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});
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}
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int doSerializeRawTree(const char *MainExecutablePath,
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const StringRef InputFile) {
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return parseFile(MainExecutablePath, InputFile, [](SourceFile *SF) -> int {
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auto Root = SF->getSyntaxRoot().getRaw();
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if (!options::OutputFilename.empty()) {
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std::error_code errorCode;
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llvm::raw_fd_ostream os(options::OutputFilename, errorCode,
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llvm::sys::fs::F_None);
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assert(!errorCode && "Couldn't open output file");
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swift::json::Output out(os);
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out << *Root;
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os << "\n";
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} else {
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swift::json::Output out(llvm::outs());
|
|
out << *Root;
|
|
llvm::outs() << "\n";
|
|
}
|
|
return EXIT_SUCCESS;
|
|
});
|
|
}
|
|
|
|
int doDeserializeRawTree(const char *MainExecutablePath,
|
|
const StringRef InputFile,
|
|
const StringRef OutputFileName) {
|
|
|
|
auto Buffer = llvm::MemoryBuffer::getFile(InputFile);
|
|
std::error_code errorCode;
|
|
auto os = llvm::make_unique<llvm::raw_fd_ostream>(
|
|
OutputFileName, errorCode, llvm::sys::fs::F_None);
|
|
swift::json::SyntaxDeserializer deserializer(llvm::MemoryBufferRef(*(Buffer.get())));
|
|
deserializer.getSourceFileSyntax()->print(*os);
|
|
|
|
return EXIT_SUCCESS;
|
|
}
|
|
|
|
int doParseOnly(const char *MainExecutablePath, const StringRef InputFile) {
|
|
return parseFile(MainExecutablePath, InputFile, [](SourceFile *SF) {
|
|
return SF ? EXIT_SUCCESS : EXIT_FAILURE;
|
|
});
|
|
}
|
|
|
|
int dumpParserGen(const char *MainExecutablePath, const StringRef InputFile) {
|
|
return parseFile(MainExecutablePath, InputFile, [](SourceFile *SF) {
|
|
SyntaxPrintOptions Opts;
|
|
Opts.PrintSyntaxKind = options::PrintNodeKind;
|
|
Opts.Visual = options::Visual;
|
|
Opts.PrintTrivialNodeKind = options::PrintTrivialNodeKind;
|
|
SF->getSyntaxRoot().print(llvm::outs(), Opts);
|
|
return EXIT_SUCCESS;
|
|
});
|
|
}
|
|
|
|
int dumpEOFSourceLoc(const char *MainExecutablePath,
|
|
const StringRef InputFile) {
|
|
return parseFile(MainExecutablePath, InputFile, [](SourceFile *SF) -> int {
|
|
auto BufferId = *SF->getBufferID();
|
|
auto Root = SF->getSyntaxRoot();
|
|
auto AbPos = Root.getEOFToken().getAbsolutePosition();
|
|
|
|
SourceManager &SourceMgr = SF->getASTContext().SourceMgr;
|
|
auto StartLoc = SourceMgr.getLocForBufferStart(BufferId);
|
|
auto EndLoc = SourceMgr.getLocForOffset(BufferId, AbPos.getOffset());
|
|
|
|
// To ensure the correctness of position when translated to line & column
|
|
// pair.
|
|
if (SourceMgr.getLineAndColumn(EndLoc) != AbPos.getLineAndColumn()) {
|
|
llvm::outs() << "locations should be identical";
|
|
return EXIT_FAILURE;
|
|
}
|
|
llvm::outs() << CharSourceRange(SourceMgr, StartLoc, EndLoc).str();
|
|
return EXIT_SUCCESS;
|
|
});
|
|
}
|
|
}// end of anonymous namespace
|
|
|
|
int invokeCommand(const char *MainExecutablePath,
|
|
const StringRef InputSourceFilename) {
|
|
int ExitCode = EXIT_SUCCESS;
|
|
|
|
switch (options::Action) {
|
|
case ActionType::DumpRawTokenSyntax:
|
|
ExitCode = doDumpRawTokenSyntax(InputSourceFilename);
|
|
break;
|
|
case ActionType::FullLexRoundTrip:
|
|
ExitCode = doFullLexRoundTrip(InputSourceFilename);
|
|
break;
|
|
case ActionType::FullParseRoundTrip:
|
|
ExitCode = doFullParseRoundTrip(MainExecutablePath, InputSourceFilename);
|
|
break;
|
|
case ActionType::SerializeRawTree:
|
|
ExitCode = doSerializeRawTree(MainExecutablePath, InputSourceFilename);
|
|
break;
|
|
case ActionType::DeserializeRawTree:
|
|
ExitCode = doDeserializeRawTree(MainExecutablePath, InputSourceFilename,
|
|
options::OutputFilename);
|
|
break;
|
|
case ActionType::ParseOnly:
|
|
ExitCode = doParseOnly(MainExecutablePath, InputSourceFilename);
|
|
break;
|
|
case ActionType::ParserGen:
|
|
ExitCode = dumpParserGen(MainExecutablePath, InputSourceFilename);
|
|
break;
|
|
case ActionType::EOFPos:
|
|
ExitCode = dumpEOFSourceLoc(MainExecutablePath, InputSourceFilename);
|
|
break;
|
|
case ActionType::None:
|
|
llvm::errs() << "an action is required\n";
|
|
llvm::cl::PrintHelpMessage();
|
|
ExitCode = EXIT_FAILURE;
|
|
break;
|
|
}
|
|
|
|
return ExitCode;
|
|
}
|
|
|
|
int main(int argc, char *argv[]) {
|
|
PROGRAM_START(argc, argv);
|
|
llvm::cl::ParseCommandLineOptions(argc, argv, "Swift Syntax Test\n");
|
|
|
|
int ExitCode = EXIT_SUCCESS;
|
|
|
|
if (options::InputSourceFilename.empty() &&
|
|
options::InputSourceDirectory.empty()) {
|
|
llvm::errs() << "input source file is required\n";
|
|
ExitCode = EXIT_FAILURE;
|
|
}
|
|
|
|
if (!options::InputSourceFilename.empty() &&
|
|
!options::InputSourceDirectory.empty()) {
|
|
llvm::errs() << "input-source-filename and input-source-directory cannot "
|
|
"be used together\n\n";
|
|
ExitCode = EXIT_FAILURE;
|
|
}
|
|
|
|
if (options::Action == ActionType::None) {
|
|
llvm::errs() << "an action is required\n";
|
|
ExitCode = EXIT_FAILURE;
|
|
}
|
|
|
|
if (ExitCode == EXIT_FAILURE) {
|
|
llvm::cl::PrintHelpMessage();
|
|
return ExitCode;
|
|
}
|
|
|
|
if (!options::InputSourceFilename.empty()) {
|
|
ExitCode = invokeCommand(argv[0], options::InputSourceFilename);
|
|
} else {
|
|
assert(!options::InputSourceDirectory.empty());
|
|
std::error_code errorCode;
|
|
llvm::sys::fs::recursive_directory_iterator DI(options::InputSourceDirectory, errorCode);
|
|
llvm::sys::fs::recursive_directory_iterator endIterator;
|
|
for (; DI != endIterator; DI.increment(errorCode)) {
|
|
auto entry = *DI;
|
|
auto path = entry.path();
|
|
if (!llvm::sys::fs::is_directory(path) &&
|
|
StringRef(path).endswith(".swift")) {
|
|
ExitCode = invokeCommand(argv[0], path);
|
|
}
|
|
}
|
|
}
|
|
|
|
return ExitCode;
|
|
}
|