forked from OSchip/llvm-project
204 lines
7.3 KiB
C++
204 lines
7.3 KiB
C++
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//===--- TextDiagnosticPrinter.cpp - Diagnostic Printer -------------------===//
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//
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// The LLVM Compiler Infrastructure
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//
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// This file is distributed under the University of Illinois Open Source
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// License. See LICENSE.TXT for details.
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//
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//===----------------------------------------------------------------------===//
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//
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// This diagnostic client prints out their diagnostic messages.
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//
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//===----------------------------------------------------------------------===//
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#include "clang/Driver/TextDiagnosticPrinter.h"
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#include "clang/Basic/FileManager.h"
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#include "clang/Basic/SourceManager.h"
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#include "clang/Lex/HeaderSearch.h"
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#include "clang/Lex/Lexer.h"
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#include "llvm/Support/MemoryBuffer.h"
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#include <string>
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using namespace clang;
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void TextDiagnosticPrinter::
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PrintIncludeStack(FullSourceLoc Pos) {
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if (Pos.isInvalid()) return;
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Pos = Pos.getLogicalLoc();
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// Print out the other include frames first.
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PrintIncludeStack(Pos.getIncludeLoc());
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unsigned LineNo = Pos.getLineNumber();
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OS << "In file included from " << Pos.getSourceName()
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<< ":" << LineNo << ":\n";
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}
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/// HighlightRange - Given a SourceRange and a line number, highlight (with ~'s)
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/// any characters in LineNo that intersect the SourceRange.
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void TextDiagnosticPrinter::HighlightRange(const SourceRange &R,
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SourceManager& SourceMgr,
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unsigned LineNo, unsigned FileID,
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std::string &CaratLine,
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const std::string &SourceLine) {
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assert(CaratLine.size() == SourceLine.size() &&
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"Expect a correspondence between source and carat line!");
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if (!R.isValid()) return;
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SourceLocation LogicalStart = SourceMgr.getLogicalLoc(R.getBegin());
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unsigned StartLineNo = SourceMgr.getLineNumber(LogicalStart);
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if (StartLineNo > LineNo || LogicalStart.getFileID() != FileID)
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return; // No intersection.
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SourceLocation LogicalEnd = SourceMgr.getLogicalLoc(R.getEnd());
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unsigned EndLineNo = SourceMgr.getLineNumber(LogicalEnd);
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if (EndLineNo < LineNo || LogicalEnd.getFileID() != FileID)
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return; // No intersection.
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// Compute the column number of the start.
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unsigned StartColNo = 0;
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if (StartLineNo == LineNo) {
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StartColNo = SourceMgr.getLogicalColumnNumber(R.getBegin());
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if (StartColNo) --StartColNo; // Zero base the col #.
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}
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// Pick the first non-whitespace column.
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while (StartColNo < SourceLine.size() &&
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(SourceLine[StartColNo] == ' ' || SourceLine[StartColNo] == '\t'))
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++StartColNo;
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// Compute the column number of the end.
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unsigned EndColNo = CaratLine.size();
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if (EndLineNo == LineNo) {
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EndColNo = SourceMgr.getLogicalColumnNumber(R.getEnd());
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if (EndColNo) {
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--EndColNo; // Zero base the col #.
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// Add in the length of the token, so that we cover multi-char tokens.
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EndColNo += Lexer::MeasureTokenLength(R.getEnd(), SourceMgr);
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} else {
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EndColNo = CaratLine.size();
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}
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}
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// Pick the last non-whitespace column.
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if (EndColNo <= SourceLine.size())
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while (EndColNo-1 &&
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(SourceLine[EndColNo-1] == ' ' || SourceLine[EndColNo-1] == '\t'))
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--EndColNo;
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else
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EndColNo = SourceLine.size();
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// Fill the range with ~'s.
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assert(StartColNo <= EndColNo && "Invalid range!");
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for (unsigned i = StartColNo; i < EndColNo; ++i)
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CaratLine[i] = '~';
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}
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void TextDiagnosticPrinter::HandleDiagnostic(Diagnostic &Diags,
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Diagnostic::Level Level,
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FullSourceLoc Pos,
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diag::kind ID,
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const std::string *Strs,
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unsigned NumStrs,
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const SourceRange *Ranges,
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unsigned NumRanges) {
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unsigned LineNo = 0, ColNo = 0;
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unsigned FileID = 0;
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const char *LineStart = 0, *LineEnd = 0;
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if (Pos.isValid()) {
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FullSourceLoc LPos = Pos.getLogicalLoc();
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LineNo = LPos.getLineNumber();
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FileID = LPos.getLocation().getFileID();
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// First, if this diagnostic is not in the main file, print out the
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// "included from" lines.
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if (LastWarningLoc != LPos.getIncludeLoc()) {
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LastWarningLoc = LPos.getIncludeLoc();
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PrintIncludeStack(LastWarningLoc);
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}
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// Compute the column number. Rewind from the current position to the start
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// of the line.
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ColNo = LPos.getColumnNumber();
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const char *TokLogicalPtr = LPos.getCharacterData();
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LineStart = TokLogicalPtr-ColNo+1; // Column # is 1-based
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// Compute the line end. Scan forward from the error position to the end of
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// the line.
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const llvm::MemoryBuffer *Buffer = LPos.getBuffer();
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const char *BufEnd = Buffer->getBufferEnd();
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LineEnd = TokLogicalPtr;
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while (LineEnd != BufEnd &&
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*LineEnd != '\n' && *LineEnd != '\r')
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++LineEnd;
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OS << Buffer->getBufferIdentifier() << ":" << LineNo << ":";
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if (ColNo && ShowColumn)
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OS << ColNo << ":";
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OS << " ";
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}
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switch (Level) {
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default: assert(0 && "Unknown diagnostic type!");
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case Diagnostic::Note: OS << "note: "; break;
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case Diagnostic::Warning: OS << "warning: "; break;
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case Diagnostic::Error: OS << "error: "; break;
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case Diagnostic::Fatal: OS << "fatal error: "; break;
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break;
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}
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OS << FormatDiagnostic(Diags, Level, ID, Strs, NumStrs) << "\n";
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if (CaretDiagnostics && Pos.isValid() && ((LastLoc != Pos) || Ranges)) {
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// Cache the LastLoc, it allows us to omit duplicate source/caret spewage.
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LastLoc = Pos;
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// Get the line of the source file.
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std::string SourceLine(LineStart, LineEnd);
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// Create a line for the carat that is filled with spaces that is the same
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// length as the line of source code.
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std::string CaratLine(LineEnd-LineStart, ' ');
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// Highlight all of the characters covered by Ranges with ~ characters.
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for (unsigned i = 0; i != NumRanges; ++i)
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HighlightRange(Ranges[i], Pos.getManager(), LineNo, FileID,
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CaratLine, SourceLine);
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// Next, insert the carat itself.
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if (ColNo-1 < CaratLine.size())
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CaratLine[ColNo-1] = '^';
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else
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CaratLine.push_back('^');
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// Scan the source line, looking for tabs. If we find any, manually expand
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// them to 8 characters and update the CaratLine to match.
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for (unsigned i = 0; i != SourceLine.size(); ++i) {
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if (SourceLine[i] != '\t') continue;
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// Replace this tab with at least one space.
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SourceLine[i] = ' ';
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// Compute the number of spaces we need to insert.
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unsigned NumSpaces = ((i+8)&~7) - (i+1);
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assert(NumSpaces < 8 && "Invalid computation of space amt");
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// Insert spaces into the SourceLine.
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SourceLine.insert(i+1, NumSpaces, ' ');
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// Insert spaces or ~'s into CaratLine.
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CaratLine.insert(i+1, NumSpaces, CaratLine[i] == '~' ? '~' : ' ');
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}
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// Finally, remove any blank spaces from the end of CaratLine.
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while (CaratLine[CaratLine.size()-1] == ' ')
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CaratLine.erase(CaratLine.end()-1);
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// Emit what we have computed.
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OS << SourceLine << "\n";
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OS << CaratLine << "\n";
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}
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}
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