зеркало из https://github.com/microsoft/clang.git
592 строки
21 KiB
C++
592 строки
21 KiB
C++
//===--- DiagnosticIDs.cpp - Diagnostic IDs Handling ----------------------===//
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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 file implements the Diagnostic IDs-related interfaces.
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//
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//===----------------------------------------------------------------------===//
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#include "clang/AST/ASTDiagnostic.h"
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#include "clang/Analysis/AnalysisDiagnostic.h"
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#include "clang/Basic/DiagnosticIDs.h"
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#include "clang/Basic/SourceManager.h"
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#include "clang/Driver/DriverDiagnostic.h"
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#include "clang/Frontend/FrontendDiagnostic.h"
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#include "clang/Lex/LexDiagnostic.h"
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#include "clang/Parse/ParseDiagnostic.h"
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#include "clang/Sema/SemaDiagnostic.h"
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#include <map>
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using namespace clang;
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//===----------------------------------------------------------------------===//
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// Builtin Diagnostic information
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//===----------------------------------------------------------------------===//
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namespace {
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// Diagnostic classes.
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enum {
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CLASS_NOTE = 0x01,
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CLASS_WARNING = 0x02,
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CLASS_EXTENSION = 0x03,
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CLASS_ERROR = 0x04
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};
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struct StaticDiagInfoRec {
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unsigned short DiagID;
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unsigned Mapping : 3;
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unsigned Class : 3;
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unsigned SFINAE : 1;
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unsigned AccessControl : 1;
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unsigned Category : 5;
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const char *Description;
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const char *OptionGroup;
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bool operator<(const StaticDiagInfoRec &RHS) const {
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return DiagID < RHS.DiagID;
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}
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};
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}
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static const StaticDiagInfoRec StaticDiagInfo[] = {
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#define DIAG(ENUM,CLASS,DEFAULT_MAPPING,DESC,GROUP,SFINAE,ACCESS,CATEGORY) \
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{ diag::ENUM, DEFAULT_MAPPING, CLASS, SFINAE, ACCESS, CATEGORY, DESC, GROUP },
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#include "clang/Basic/DiagnosticCommonKinds.inc"
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#include "clang/Basic/DiagnosticDriverKinds.inc"
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#include "clang/Basic/DiagnosticFrontendKinds.inc"
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#include "clang/Basic/DiagnosticLexKinds.inc"
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#include "clang/Basic/DiagnosticParseKinds.inc"
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#include "clang/Basic/DiagnosticASTKinds.inc"
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#include "clang/Basic/DiagnosticSemaKinds.inc"
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#include "clang/Basic/DiagnosticAnalysisKinds.inc"
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{ 0, 0, 0, 0, 0, 0, 0, 0}
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};
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#undef DIAG
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/// GetDiagInfo - Return the StaticDiagInfoRec entry for the specified DiagID,
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/// or null if the ID is invalid.
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static const StaticDiagInfoRec *GetDiagInfo(unsigned DiagID) {
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unsigned NumDiagEntries = sizeof(StaticDiagInfo)/sizeof(StaticDiagInfo[0])-1;
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// If assertions are enabled, verify that the StaticDiagInfo array is sorted.
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#ifndef NDEBUG
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static bool IsFirst = true;
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if (IsFirst) {
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for (unsigned i = 1; i != NumDiagEntries; ++i) {
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assert(StaticDiagInfo[i-1].DiagID != StaticDiagInfo[i].DiagID &&
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"Diag ID conflict, the enums at the start of clang::diag (in "
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"DiagnosticIDs.h) probably need to be increased");
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assert(StaticDiagInfo[i-1] < StaticDiagInfo[i] &&
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"Improperly sorted diag info");
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}
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IsFirst = false;
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}
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#endif
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// Search the diagnostic table with a binary search.
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StaticDiagInfoRec Find = { DiagID, 0, 0, 0, 0, 0, 0, 0 };
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const StaticDiagInfoRec *Found =
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std::lower_bound(StaticDiagInfo, StaticDiagInfo + NumDiagEntries, Find);
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if (Found == StaticDiagInfo + NumDiagEntries ||
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Found->DiagID != DiagID)
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return 0;
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return Found;
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}
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static unsigned GetDefaultDiagMapping(unsigned DiagID) {
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if (const StaticDiagInfoRec *Info = GetDiagInfo(DiagID))
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return Info->Mapping;
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return diag::MAP_FATAL;
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}
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/// getWarningOptionForDiag - Return the lowest-level warning option that
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/// enables the specified diagnostic. If there is no -Wfoo flag that controls
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/// the diagnostic, this returns null.
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const char *DiagnosticIDs::getWarningOptionForDiag(unsigned DiagID) {
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if (const StaticDiagInfoRec *Info = GetDiagInfo(DiagID))
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return Info->OptionGroup;
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return 0;
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}
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/// getWarningOptionForDiag - Return the category number that a specified
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/// DiagID belongs to, or 0 if no category.
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unsigned DiagnosticIDs::getCategoryNumberForDiag(unsigned DiagID) {
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if (const StaticDiagInfoRec *Info = GetDiagInfo(DiagID))
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return Info->Category;
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return 0;
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}
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/// getCategoryNameFromID - Given a category ID, return the name of the
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/// category, an empty string if CategoryID is zero, or null if CategoryID is
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/// invalid.
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const char *DiagnosticIDs::getCategoryNameFromID(unsigned CategoryID) {
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// Second the table of options, sorted by name for fast binary lookup.
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static const char *CategoryNameTable[] = {
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#define GET_CATEGORY_TABLE
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#define CATEGORY(X) X,
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#include "clang/Basic/DiagnosticGroups.inc"
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#undef GET_CATEGORY_TABLE
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"<<END>>"
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};
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static const size_t CategoryNameTableSize =
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sizeof(CategoryNameTable) / sizeof(CategoryNameTable[0])-1;
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if (CategoryID >= CategoryNameTableSize) return 0;
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return CategoryNameTable[CategoryID];
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}
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DiagnosticIDs::SFINAEResponse
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DiagnosticIDs::getDiagnosticSFINAEResponse(unsigned DiagID) {
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if (const StaticDiagInfoRec *Info = GetDiagInfo(DiagID)) {
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if (Info->AccessControl)
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return SFINAE_AccessControl;
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if (!Info->SFINAE)
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return SFINAE_Report;
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if (Info->Class == CLASS_ERROR)
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return SFINAE_SubstitutionFailure;
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// Suppress notes, warnings, and extensions;
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return SFINAE_Suppress;
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}
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return SFINAE_Report;
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}
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/// getDiagClass - Return the class field of the diagnostic.
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///
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static unsigned getBuiltinDiagClass(unsigned DiagID) {
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if (const StaticDiagInfoRec *Info = GetDiagInfo(DiagID))
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return Info->Class;
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return ~0U;
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}
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//===----------------------------------------------------------------------===//
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// Custom Diagnostic information
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//===----------------------------------------------------------------------===//
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namespace clang {
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namespace diag {
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class CustomDiagInfo {
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typedef std::pair<DiagnosticIDs::Level, std::string> DiagDesc;
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std::vector<DiagDesc> DiagInfo;
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std::map<DiagDesc, unsigned> DiagIDs;
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public:
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/// getDescription - Return the description of the specified custom
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/// diagnostic.
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const char *getDescription(unsigned DiagID) const {
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assert(this && DiagID-DIAG_UPPER_LIMIT < DiagInfo.size() &&
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"Invalid diagnosic ID");
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return DiagInfo[DiagID-DIAG_UPPER_LIMIT].second.c_str();
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}
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/// getLevel - Return the level of the specified custom diagnostic.
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DiagnosticIDs::Level getLevel(unsigned DiagID) const {
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assert(this && DiagID-DIAG_UPPER_LIMIT < DiagInfo.size() &&
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"Invalid diagnosic ID");
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return DiagInfo[DiagID-DIAG_UPPER_LIMIT].first;
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}
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unsigned getOrCreateDiagID(DiagnosticIDs::Level L, llvm::StringRef Message,
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DiagnosticIDs &Diags) {
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DiagDesc D(L, Message);
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// Check to see if it already exists.
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std::map<DiagDesc, unsigned>::iterator I = DiagIDs.lower_bound(D);
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if (I != DiagIDs.end() && I->first == D)
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return I->second;
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// If not, assign a new ID.
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unsigned ID = DiagInfo.size()+DIAG_UPPER_LIMIT;
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DiagIDs.insert(std::make_pair(D, ID));
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DiagInfo.push_back(D);
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return ID;
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}
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};
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} // end diag namespace
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} // end clang namespace
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//===----------------------------------------------------------------------===//
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// Common Diagnostic implementation
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//===----------------------------------------------------------------------===//
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DiagnosticIDs::DiagnosticIDs() {
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CustomDiagInfo = 0;
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}
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DiagnosticIDs::~DiagnosticIDs() {
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delete CustomDiagInfo;
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}
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/// getCustomDiagID - Return an ID for a diagnostic with the specified message
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/// and level. If this is the first request for this diagnosic, it is
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/// registered and created, otherwise the existing ID is returned.
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unsigned DiagnosticIDs::getCustomDiagID(Level L, llvm::StringRef Message) {
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if (CustomDiagInfo == 0)
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CustomDiagInfo = new diag::CustomDiagInfo();
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return CustomDiagInfo->getOrCreateDiagID(L, Message, *this);
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}
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/// isBuiltinWarningOrExtension - Return true if the unmapped diagnostic
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/// level of the specified diagnostic ID is a Warning or Extension.
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/// This only works on builtin diagnostics, not custom ones, and is not legal to
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/// call on NOTEs.
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bool DiagnosticIDs::isBuiltinWarningOrExtension(unsigned DiagID) {
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return DiagID < diag::DIAG_UPPER_LIMIT &&
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getBuiltinDiagClass(DiagID) != CLASS_ERROR;
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}
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/// \brief Determine whether the given built-in diagnostic ID is a
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/// Note.
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bool DiagnosticIDs::isBuiltinNote(unsigned DiagID) {
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return DiagID < diag::DIAG_UPPER_LIMIT &&
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getBuiltinDiagClass(DiagID) == CLASS_NOTE;
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}
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/// isBuiltinExtensionDiag - Determine whether the given built-in diagnostic
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/// ID is for an extension of some sort. This also returns EnabledByDefault,
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/// which is set to indicate whether the diagnostic is ignored by default (in
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/// which case -pedantic enables it) or treated as a warning/error by default.
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///
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bool DiagnosticIDs::isBuiltinExtensionDiag(unsigned DiagID,
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bool &EnabledByDefault) {
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if (DiagID >= diag::DIAG_UPPER_LIMIT ||
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getBuiltinDiagClass(DiagID) != CLASS_EXTENSION)
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return false;
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EnabledByDefault = GetDefaultDiagMapping(DiagID) != diag::MAP_IGNORE;
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return true;
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}
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/// getDescription - Given a diagnostic ID, return a description of the
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/// issue.
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const char *DiagnosticIDs::getDescription(unsigned DiagID) const {
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if (const StaticDiagInfoRec *Info = GetDiagInfo(DiagID))
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return Info->Description;
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return CustomDiagInfo->getDescription(DiagID);
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}
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/// getDiagnosticLevel - Based on the way the client configured the Diagnostic
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/// object, classify the specified diagnostic ID into a Level, consumable by
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/// the DiagnosticClient.
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DiagnosticIDs::Level
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DiagnosticIDs::getDiagnosticLevel(unsigned DiagID, SourceLocation Loc,
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const Diagnostic &Diag,
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diag::Mapping *mapping) const {
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// Handle custom diagnostics, which cannot be mapped.
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if (DiagID >= diag::DIAG_UPPER_LIMIT)
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return CustomDiagInfo->getLevel(DiagID);
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unsigned DiagClass = getBuiltinDiagClass(DiagID);
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assert(DiagClass != CLASS_NOTE && "Cannot get diagnostic level of a note!");
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return getDiagnosticLevel(DiagID, DiagClass, Loc, Diag, mapping);
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}
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/// \brief Based on the way the client configured the Diagnostic
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/// object, classify the specified diagnostic ID into a Level, consumable by
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/// the DiagnosticClient.
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///
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/// \param Loc The source location we are interested in finding out the
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/// diagnostic state. Can be null in order to query the latest state.
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DiagnosticIDs::Level
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DiagnosticIDs::getDiagnosticLevel(unsigned DiagID, unsigned DiagClass,
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SourceLocation Loc,
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const Diagnostic &Diag,
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diag::Mapping *mapping) const {
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// Specific non-error diagnostics may be mapped to various levels from ignored
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// to error. Errors can only be mapped to fatal.
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DiagnosticIDs::Level Result = DiagnosticIDs::Fatal;
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Diagnostic::DiagStatePointsTy::iterator
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Pos = Diag.GetDiagStatePointForLoc(Loc);
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Diagnostic::DiagState *State = Pos->State;
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// Get the mapping information, if unset, compute it lazily.
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unsigned MappingInfo = Diag.getDiagnosticMappingInfo((diag::kind)DiagID,
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State);
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if (MappingInfo == 0) {
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MappingInfo = GetDefaultDiagMapping(DiagID);
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Diag.setDiagnosticMappingInternal(DiagID, MappingInfo, State, false, false);
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}
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if (mapping)
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*mapping = (diag::Mapping) (MappingInfo & 7);
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switch (MappingInfo & 7) {
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default: assert(0 && "Unknown mapping!");
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case diag::MAP_IGNORE:
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// Ignore this, unless this is an extension diagnostic and we're mapping
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// them onto warnings or errors.
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if (!isBuiltinExtensionDiag(DiagID) || // Not an extension
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Diag.ExtBehavior == Diagnostic::Ext_Ignore || // Ext ignored
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(MappingInfo & 8) != 0) // User explicitly mapped it.
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return DiagnosticIDs::Ignored;
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Result = DiagnosticIDs::Warning;
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if (Diag.ExtBehavior == Diagnostic::Ext_Error) Result = DiagnosticIDs::Error;
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if (Result == DiagnosticIDs::Error && Diag.ErrorsAsFatal)
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Result = DiagnosticIDs::Fatal;
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break;
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case diag::MAP_ERROR:
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Result = DiagnosticIDs::Error;
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if (Diag.ErrorsAsFatal)
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Result = DiagnosticIDs::Fatal;
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break;
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case diag::MAP_FATAL:
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Result = DiagnosticIDs::Fatal;
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break;
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case diag::MAP_WARNING:
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// If warnings are globally mapped to ignore or error, do it.
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if (Diag.IgnoreAllWarnings)
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return DiagnosticIDs::Ignored;
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Result = DiagnosticIDs::Warning;
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// If this is an extension diagnostic and we're in -pedantic-error mode, and
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// if the user didn't explicitly map it, upgrade to an error.
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if (Diag.ExtBehavior == Diagnostic::Ext_Error &&
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(MappingInfo & 8) == 0 &&
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isBuiltinExtensionDiag(DiagID))
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Result = DiagnosticIDs::Error;
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if (Diag.WarningsAsErrors)
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Result = DiagnosticIDs::Error;
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if (Result == DiagnosticIDs::Error && Diag.ErrorsAsFatal)
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Result = DiagnosticIDs::Fatal;
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break;
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case diag::MAP_WARNING_NO_WERROR:
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// Diagnostics specified with -Wno-error=foo should be set to warnings, but
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// not be adjusted by -Werror or -pedantic-errors.
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Result = DiagnosticIDs::Warning;
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// If warnings are globally mapped to ignore or error, do it.
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if (Diag.IgnoreAllWarnings)
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return DiagnosticIDs::Ignored;
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break;
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case diag::MAP_ERROR_NO_WFATAL:
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// Diagnostics specified as -Wno-fatal-error=foo should be errors, but
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// unaffected by -Wfatal-errors.
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Result = DiagnosticIDs::Error;
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break;
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}
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// Okay, we're about to return this as a "diagnostic to emit" one last check:
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// if this is any sort of extension warning, and if we're in an __extension__
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// block, silence it.
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if (Diag.AllExtensionsSilenced && isBuiltinExtensionDiag(DiagID))
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return DiagnosticIDs::Ignored;
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return Result;
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}
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struct WarningOption {
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const char *Name;
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const short *Members;
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const short *SubGroups;
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};
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#define GET_DIAG_ARRAYS
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#include "clang/Basic/DiagnosticGroups.inc"
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#undef GET_DIAG_ARRAYS
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// Second the table of options, sorted by name for fast binary lookup.
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static const WarningOption OptionTable[] = {
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#define GET_DIAG_TABLE
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#include "clang/Basic/DiagnosticGroups.inc"
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#undef GET_DIAG_TABLE
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};
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static const size_t OptionTableSize =
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sizeof(OptionTable) / sizeof(OptionTable[0]);
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static bool WarningOptionCompare(const WarningOption &LHS,
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const WarningOption &RHS) {
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return strcmp(LHS.Name, RHS.Name) < 0;
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}
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static void MapGroupMembers(const WarningOption *Group, diag::Mapping Mapping,
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SourceLocation Loc, Diagnostic &Diag) {
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// Option exists, poke all the members of its diagnostic set.
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if (const short *Member = Group->Members) {
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for (; *Member != -1; ++Member)
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Diag.setDiagnosticMapping(*Member, Mapping, Loc);
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}
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// Enable/disable all subgroups along with this one.
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if (const short *SubGroups = Group->SubGroups) {
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for (; *SubGroups != (short)-1; ++SubGroups)
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MapGroupMembers(&OptionTable[(short)*SubGroups], Mapping, Loc, Diag);
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}
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}
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/// setDiagnosticGroupMapping - Change an entire diagnostic group (e.g.
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/// "unknown-pragmas" to have the specified mapping. This returns true and
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/// ignores the request if "Group" was unknown, false otherwise.
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bool DiagnosticIDs::setDiagnosticGroupMapping(const char *Group,
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diag::Mapping Map,
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SourceLocation Loc,
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Diagnostic &Diag) const {
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assert((Loc.isValid() ||
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Diag.DiagStatePoints.empty() ||
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Diag.DiagStatePoints.back().Loc.isInvalid()) &&
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"Loc should be invalid only when the mapping comes from command-line");
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assert((Loc.isInvalid() || Diag.DiagStatePoints.empty() ||
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Diag.DiagStatePoints.back().Loc.isInvalid() ||
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!Diag.SourceMgr->isBeforeInTranslationUnit(Loc,
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Diag.DiagStatePoints.back().Loc)) &&
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"Source location of new mapping is before the previous one!");
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WarningOption Key = { Group, 0, 0 };
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const WarningOption *Found =
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std::lower_bound(OptionTable, OptionTable + OptionTableSize, Key,
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WarningOptionCompare);
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if (Found == OptionTable + OptionTableSize ||
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strcmp(Found->Name, Group) != 0)
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return true; // Option not found.
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MapGroupMembers(Found, Map, Loc, Diag);
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return false;
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}
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/// ProcessDiag - This is the method used to report a diagnostic that is
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/// finally fully formed.
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bool DiagnosticIDs::ProcessDiag(Diagnostic &Diag) const {
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DiagnosticInfo Info(&Diag);
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if (Diag.SuppressAllDiagnostics)
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return false;
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assert(Diag.getClient() && "DiagnosticClient not set!");
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// Figure out the diagnostic level of this message.
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DiagnosticIDs::Level DiagLevel;
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unsigned DiagID = Info.getID();
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// ShouldEmitInSystemHeader - True if this diagnostic should be produced even
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// in a system header.
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bool ShouldEmitInSystemHeader;
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if (DiagID >= diag::DIAG_UPPER_LIMIT) {
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// Handle custom diagnostics, which cannot be mapped.
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DiagLevel = CustomDiagInfo->getLevel(DiagID);
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// Custom diagnostics always are emitted in system headers.
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ShouldEmitInSystemHeader = true;
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} else {
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// Get the class of the diagnostic. If this is a NOTE, map it onto whatever
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// the diagnostic level was for the previous diagnostic so that it is
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// filtered the same as the previous diagnostic.
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|
unsigned DiagClass = getBuiltinDiagClass(DiagID);
|
|
if (DiagClass == CLASS_NOTE) {
|
|
DiagLevel = DiagnosticIDs::Note;
|
|
ShouldEmitInSystemHeader = false; // extra consideration is needed
|
|
} else {
|
|
// If this is not an error and we are in a system header, we ignore it.
|
|
// Check the original Diag ID here, because we also want to ignore
|
|
// extensions and warnings in -Werror and -pedantic-errors modes, which
|
|
// *map* warnings/extensions to errors.
|
|
ShouldEmitInSystemHeader = DiagClass == CLASS_ERROR;
|
|
|
|
DiagLevel = getDiagnosticLevel(DiagID, DiagClass, Info.getLocation(),
|
|
Diag);
|
|
}
|
|
}
|
|
|
|
if (DiagLevel != DiagnosticIDs::Note) {
|
|
// Record that a fatal error occurred only when we see a second
|
|
// non-note diagnostic. This allows notes to be attached to the
|
|
// fatal error, but suppresses any diagnostics that follow those
|
|
// notes.
|
|
if (Diag.LastDiagLevel == DiagnosticIDs::Fatal)
|
|
Diag.FatalErrorOccurred = true;
|
|
|
|
Diag.LastDiagLevel = DiagLevel;
|
|
}
|
|
|
|
// If a fatal error has already been emitted, silence all subsequent
|
|
// diagnostics.
|
|
if (Diag.FatalErrorOccurred) {
|
|
if (DiagLevel >= DiagnosticIDs::Error &&
|
|
Diag.Client->IncludeInDiagnosticCounts()) {
|
|
++Diag.NumErrors;
|
|
++Diag.NumErrorsSuppressed;
|
|
}
|
|
|
|
return false;
|
|
}
|
|
|
|
// If the client doesn't care about this message, don't issue it. If this is
|
|
// a note and the last real diagnostic was ignored, ignore it too.
|
|
if (DiagLevel == DiagnosticIDs::Ignored ||
|
|
(DiagLevel == DiagnosticIDs::Note &&
|
|
Diag.LastDiagLevel == DiagnosticIDs::Ignored))
|
|
return false;
|
|
|
|
// If this diagnostic is in a system header and is not a clang error, suppress
|
|
// it.
|
|
if (Diag.SuppressSystemWarnings && !ShouldEmitInSystemHeader &&
|
|
Info.getLocation().isValid() &&
|
|
Diag.getSourceManager().isInSystemHeader(
|
|
Diag.getSourceManager().getInstantiationLoc(Info.getLocation())) &&
|
|
(DiagLevel != DiagnosticIDs::Note ||
|
|
Diag.LastDiagLevel == DiagnosticIDs::Ignored)) {
|
|
Diag.LastDiagLevel = DiagnosticIDs::Ignored;
|
|
return false;
|
|
}
|
|
|
|
if (DiagLevel >= DiagnosticIDs::Error) {
|
|
if (Diag.Client->IncludeInDiagnosticCounts()) {
|
|
Diag.ErrorOccurred = true;
|
|
++Diag.NumErrors;
|
|
}
|
|
|
|
// If we've emitted a lot of errors, emit a fatal error after it to stop a
|
|
// flood of bogus errors.
|
|
if (Diag.ErrorLimit && Diag.NumErrors >= Diag.ErrorLimit &&
|
|
DiagLevel == DiagnosticIDs::Error)
|
|
Diag.SetDelayedDiagnostic(diag::fatal_too_many_errors);
|
|
}
|
|
|
|
// If we have any Fix-Its, make sure that all of the Fix-Its point into
|
|
// source locations that aren't macro instantiations. If any point into
|
|
// macro instantiations, remove all of the Fix-Its.
|
|
for (unsigned I = 0, N = Diag.NumFixItHints; I != N; ++I) {
|
|
const FixItHint &FixIt = Diag.FixItHints[I];
|
|
if (FixIt.RemoveRange.isInvalid() ||
|
|
FixIt.RemoveRange.getBegin().isMacroID() ||
|
|
FixIt.RemoveRange.getEnd().isMacroID()) {
|
|
Diag.NumFixItHints = 0;
|
|
break;
|
|
}
|
|
}
|
|
|
|
// Finally, report it.
|
|
Diag.Client->HandleDiagnostic((Diagnostic::Level)DiagLevel, Info);
|
|
if (Diag.Client->IncludeInDiagnosticCounts()) {
|
|
if (DiagLevel == DiagnosticIDs::Warning)
|
|
++Diag.NumWarnings;
|
|
}
|
|
|
|
Diag.CurDiagID = ~0U;
|
|
|
|
return true;
|
|
}
|