1 //===-- ubsan_diag.cc -----------------------------------------------------===//
2 //
3 // This file is distributed under the University of Illinois Open Source
4 // License. See LICENSE.TXT for details.
5 //
6 //===----------------------------------------------------------------------===//
7 //
8 // Diagnostic reporting for the UBSan runtime.
9 //
10 //===----------------------------------------------------------------------===//
11
12 #include "ubsan_platform.h"
13 #if CAN_SANITIZE_UB
14 #include "ubsan_diag.h"
15 #include "ubsan_init.h"
16 #include "ubsan_flags.h"
17 #include "sanitizer_common/sanitizer_placement_new.h"
18 #include "sanitizer_common/sanitizer_report_decorator.h"
19 #include "sanitizer_common/sanitizer_stacktrace.h"
20 #include "sanitizer_common/sanitizer_stacktrace_printer.h"
21 #include "sanitizer_common/sanitizer_suppressions.h"
22 #include "sanitizer_common/sanitizer_symbolizer.h"
23 #include <stdio.h>
24
25 using namespace __ubsan;
26
GetStackTraceWithPcBpAndContext(BufferedStackTrace * stack,uptr max_depth,uptr pc,uptr bp,void * context,bool fast)27 void __ubsan::GetStackTraceWithPcBpAndContext(BufferedStackTrace *stack,
28 uptr max_depth, uptr pc, uptr bp,
29 void *context, bool fast) {
30 uptr top = 0;
31 uptr bottom = 0;
32 if (fast)
33 GetThreadStackTopAndBottom(false, &top, &bottom);
34 stack->Unwind(max_depth, pc, bp, context, top, bottom, fast);
35 }
36
MaybePrintStackTrace(uptr pc,uptr bp)37 static void MaybePrintStackTrace(uptr pc, uptr bp) {
38 // We assume that flags are already parsed, as UBSan runtime
39 // will definitely be called when we print the first diagnostics message.
40 if (!flags()->print_stacktrace)
41 return;
42
43 BufferedStackTrace stack;
44 GetStackTraceWithPcBpAndContext(&stack, kStackTraceMax, pc, bp, nullptr,
45 common_flags()->fast_unwind_on_fatal);
46 stack.Print();
47 }
48
ConvertTypeToString(ErrorType Type)49 static const char *ConvertTypeToString(ErrorType Type) {
50 switch (Type) {
51 #define UBSAN_CHECK(Name, SummaryKind, FSanitizeFlagName) \
52 case ErrorType::Name: \
53 return SummaryKind;
54 #include "ubsan_checks.inc"
55 #undef UBSAN_CHECK
56 }
57 UNREACHABLE("unknown ErrorType!");
58 }
59
ConvertTypeToFlagName(ErrorType Type)60 static const char *ConvertTypeToFlagName(ErrorType Type) {
61 switch (Type) {
62 #define UBSAN_CHECK(Name, SummaryKind, FSanitizeFlagName) \
63 case ErrorType::Name: \
64 return FSanitizeFlagName;
65 #include "ubsan_checks.inc"
66 #undef UBSAN_CHECK
67 }
68 UNREACHABLE("unknown ErrorType!");
69 }
70
MaybeReportErrorSummary(Location Loc,ErrorType Type)71 static void MaybeReportErrorSummary(Location Loc, ErrorType Type) {
72 if (!common_flags()->print_summary)
73 return;
74 if (!flags()->report_error_type)
75 Type = ErrorType::GenericUB;
76 const char *ErrorKind = ConvertTypeToString(Type);
77 if (Loc.isSourceLocation()) {
78 SourceLocation SLoc = Loc.getSourceLocation();
79 if (!SLoc.isInvalid()) {
80 AddressInfo AI;
81 AI.file = internal_strdup(SLoc.getFilename());
82 AI.line = SLoc.getLine();
83 AI.column = SLoc.getColumn();
84 AI.function = internal_strdup(""); // Avoid printing ?? as function name.
85 ReportErrorSummary(ErrorKind, AI, GetSanititizerToolName());
86 AI.Clear();
87 return;
88 }
89 } else if (Loc.isSymbolizedStack()) {
90 const AddressInfo &AI = Loc.getSymbolizedStack()->info;
91 ReportErrorSummary(ErrorKind, AI, GetSanititizerToolName());
92 return;
93 }
94 ReportErrorSummary(ErrorKind, GetSanititizerToolName());
95 }
96
97 namespace {
98 class Decorator : public SanitizerCommonDecorator {
99 public:
Decorator()100 Decorator() : SanitizerCommonDecorator() {}
Highlight() const101 const char *Highlight() const { return Green(); }
Note() const102 const char *Note() const { return Black(); }
103 };
104 }
105
getSymbolizedLocation(uptr PC)106 SymbolizedStack *__ubsan::getSymbolizedLocation(uptr PC) {
107 InitAsStandaloneIfNecessary();
108 return Symbolizer::GetOrInit()->SymbolizePC(PC);
109 }
110
operator <<(const TypeDescriptor & V)111 Diag &Diag::operator<<(const TypeDescriptor &V) {
112 return AddArg(V.getTypeName());
113 }
114
operator <<(const Value & V)115 Diag &Diag::operator<<(const Value &V) {
116 if (V.getType().isSignedIntegerTy())
117 AddArg(V.getSIntValue());
118 else if (V.getType().isUnsignedIntegerTy())
119 AddArg(V.getUIntValue());
120 else if (V.getType().isFloatTy())
121 AddArg(V.getFloatValue());
122 else
123 AddArg("<unknown>");
124 return *this;
125 }
126
127 /// Hexadecimal printing for numbers too large for Printf to handle directly.
RenderHex(InternalScopedString * Buffer,UIntMax Val)128 static void RenderHex(InternalScopedString *Buffer, UIntMax Val) {
129 #if HAVE_INT128_T
130 Buffer->append("0x%08x%08x%08x%08x", (unsigned int)(Val >> 96),
131 (unsigned int)(Val >> 64), (unsigned int)(Val >> 32),
132 (unsigned int)(Val));
133 #else
134 UNREACHABLE("long long smaller than 64 bits?");
135 #endif
136 }
137
RenderLocation(InternalScopedString * Buffer,Location Loc)138 static void RenderLocation(InternalScopedString *Buffer, Location Loc) {
139 switch (Loc.getKind()) {
140 case Location::LK_Source: {
141 SourceLocation SLoc = Loc.getSourceLocation();
142 if (SLoc.isInvalid())
143 Buffer->append("<unknown>");
144 else
145 RenderSourceLocation(Buffer, SLoc.getFilename(), SLoc.getLine(),
146 SLoc.getColumn(), common_flags()->symbolize_vs_style,
147 common_flags()->strip_path_prefix);
148 return;
149 }
150 case Location::LK_Memory:
151 Buffer->append("%p", Loc.getMemoryLocation());
152 return;
153 case Location::LK_Symbolized: {
154 const AddressInfo &Info = Loc.getSymbolizedStack()->info;
155 if (Info.file)
156 RenderSourceLocation(Buffer, Info.file, Info.line, Info.column,
157 common_flags()->symbolize_vs_style,
158 common_flags()->strip_path_prefix);
159 else if (Info.module)
160 RenderModuleLocation(Buffer, Info.module, Info.module_offset,
161 Info.module_arch, common_flags()->strip_path_prefix);
162 else
163 Buffer->append("%p", Info.address);
164 return;
165 }
166 case Location::LK_Null:
167 Buffer->append("<unknown>");
168 return;
169 }
170 }
171
RenderText(InternalScopedString * Buffer,const char * Message,const Diag::Arg * Args)172 static void RenderText(InternalScopedString *Buffer, const char *Message,
173 const Diag::Arg *Args) {
174 for (const char *Msg = Message; *Msg; ++Msg) {
175 if (*Msg != '%') {
176 Buffer->append("%c", *Msg);
177 continue;
178 }
179 const Diag::Arg &A = Args[*++Msg - '0'];
180 switch (A.Kind) {
181 case Diag::AK_String:
182 Buffer->append("%s", A.String);
183 break;
184 case Diag::AK_TypeName: {
185 if (SANITIZER_WINDOWS)
186 // The Windows implementation demangles names early.
187 Buffer->append("'%s'", A.String);
188 else
189 Buffer->append("'%s'", Symbolizer::GetOrInit()->Demangle(A.String));
190 break;
191 }
192 case Diag::AK_SInt:
193 // 'long long' is guaranteed to be at least 64 bits wide.
194 if (A.SInt >= INT64_MIN && A.SInt <= INT64_MAX)
195 Buffer->append("%lld", (long long)A.SInt);
196 else
197 RenderHex(Buffer, A.SInt);
198 break;
199 case Diag::AK_UInt:
200 if (A.UInt <= UINT64_MAX)
201 Buffer->append("%llu", (unsigned long long)A.UInt);
202 else
203 RenderHex(Buffer, A.UInt);
204 break;
205 case Diag::AK_Float: {
206 // FIXME: Support floating-point formatting in sanitizer_common's
207 // printf, and stop using snprintf here.
208 char FloatBuffer[32];
209 #if SANITIZER_WINDOWS
210 sprintf_s(FloatBuffer, sizeof(FloatBuffer), "%Lg", (long double)A.Float);
211 #else
212 snprintf(FloatBuffer, sizeof(FloatBuffer), "%Lg", (long double)A.Float);
213 #endif
214 Buffer->append("%s", FloatBuffer);
215 break;
216 }
217 case Diag::AK_Pointer:
218 Buffer->append("%p", A.Pointer);
219 break;
220 }
221 }
222 }
223
224 /// Find the earliest-starting range in Ranges which ends after Loc.
upperBound(MemoryLocation Loc,Range * Ranges,unsigned NumRanges)225 static Range *upperBound(MemoryLocation Loc, Range *Ranges,
226 unsigned NumRanges) {
227 Range *Best = 0;
228 for (unsigned I = 0; I != NumRanges; ++I)
229 if (Ranges[I].getEnd().getMemoryLocation() > Loc &&
230 (!Best ||
231 Best->getStart().getMemoryLocation() >
232 Ranges[I].getStart().getMemoryLocation()))
233 Best = &Ranges[I];
234 return Best;
235 }
236
subtractNoOverflow(uptr LHS,uptr RHS)237 static inline uptr subtractNoOverflow(uptr LHS, uptr RHS) {
238 return (LHS < RHS) ? 0 : LHS - RHS;
239 }
240
addNoOverflow(uptr LHS,uptr RHS)241 static inline uptr addNoOverflow(uptr LHS, uptr RHS) {
242 const uptr Limit = (uptr)-1;
243 return (LHS > Limit - RHS) ? Limit : LHS + RHS;
244 }
245
246 /// Render a snippet of the address space near a location.
PrintMemorySnippet(const Decorator & Decor,MemoryLocation Loc,Range * Ranges,unsigned NumRanges,const Diag::Arg * Args)247 static void PrintMemorySnippet(const Decorator &Decor, MemoryLocation Loc,
248 Range *Ranges, unsigned NumRanges,
249 const Diag::Arg *Args) {
250 // Show at least the 8 bytes surrounding Loc.
251 const unsigned MinBytesNearLoc = 4;
252 MemoryLocation Min = subtractNoOverflow(Loc, MinBytesNearLoc);
253 MemoryLocation Max = addNoOverflow(Loc, MinBytesNearLoc);
254 MemoryLocation OrigMin = Min;
255 for (unsigned I = 0; I < NumRanges; ++I) {
256 Min = __sanitizer::Min(Ranges[I].getStart().getMemoryLocation(), Min);
257 Max = __sanitizer::Max(Ranges[I].getEnd().getMemoryLocation(), Max);
258 }
259
260 // If we have too many interesting bytes, prefer to show bytes after Loc.
261 const unsigned BytesToShow = 32;
262 if (Max - Min > BytesToShow)
263 Min = __sanitizer::Min(Max - BytesToShow, OrigMin);
264 Max = addNoOverflow(Min, BytesToShow);
265
266 if (!IsAccessibleMemoryRange(Min, Max - Min)) {
267 Printf("<memory cannot be printed>\n");
268 return;
269 }
270
271 // Emit data.
272 InternalScopedString Buffer(1024);
273 for (uptr P = Min; P != Max; ++P) {
274 unsigned char C = *reinterpret_cast<const unsigned char*>(P);
275 Buffer.append("%s%02x", (P % 8 == 0) ? " " : " ", C);
276 }
277 Buffer.append("\n");
278
279 // Emit highlights.
280 Buffer.append(Decor.Highlight());
281 Range *InRange = upperBound(Min, Ranges, NumRanges);
282 for (uptr P = Min; P != Max; ++P) {
283 char Pad = ' ', Byte = ' ';
284 if (InRange && InRange->getEnd().getMemoryLocation() == P)
285 InRange = upperBound(P, Ranges, NumRanges);
286 if (!InRange && P > Loc)
287 break;
288 if (InRange && InRange->getStart().getMemoryLocation() < P)
289 Pad = '~';
290 if (InRange && InRange->getStart().getMemoryLocation() <= P)
291 Byte = '~';
292 if (P % 8 == 0)
293 Buffer.append("%c", Pad);
294 Buffer.append("%c", Pad);
295 Buffer.append("%c", P == Loc ? '^' : Byte);
296 Buffer.append("%c", Byte);
297 }
298 Buffer.append("%s\n", Decor.Default());
299
300 // Go over the line again, and print names for the ranges.
301 InRange = 0;
302 unsigned Spaces = 0;
303 for (uptr P = Min; P != Max; ++P) {
304 if (!InRange || InRange->getEnd().getMemoryLocation() == P)
305 InRange = upperBound(P, Ranges, NumRanges);
306 if (!InRange)
307 break;
308
309 Spaces += (P % 8) == 0 ? 2 : 1;
310
311 if (InRange && InRange->getStart().getMemoryLocation() == P) {
312 while (Spaces--)
313 Buffer.append(" ");
314 RenderText(&Buffer, InRange->getText(), Args);
315 Buffer.append("\n");
316 // FIXME: We only support naming one range for now!
317 break;
318 }
319
320 Spaces += 2;
321 }
322
323 Printf("%s", Buffer.data());
324 // FIXME: Print names for anything we can identify within the line:
325 //
326 // * If we can identify the memory itself as belonging to a particular
327 // global, stack variable, or dynamic allocation, then do so.
328 //
329 // * If we have a pointer-size, pointer-aligned range highlighted,
330 // determine whether the value of that range is a pointer to an
331 // entity which we can name, and if so, print that name.
332 //
333 // This needs an external symbolizer, or (preferably) ASan instrumentation.
334 }
335
~Diag()336 Diag::~Diag() {
337 // All diagnostics should be printed under report mutex.
338 ScopedReport::CheckLocked();
339 Decorator Decor;
340 InternalScopedString Buffer(1024);
341
342 Buffer.append(Decor.Bold());
343 RenderLocation(&Buffer, Loc);
344 Buffer.append(":");
345
346 switch (Level) {
347 case DL_Error:
348 Buffer.append("%s runtime error: %s%s", Decor.Warning(), Decor.Default(),
349 Decor.Bold());
350 break;
351
352 case DL_Note:
353 Buffer.append("%s note: %s", Decor.Note(), Decor.Default());
354 break;
355 }
356
357 RenderText(&Buffer, Message, Args);
358
359 Buffer.append("%s\n", Decor.Default());
360 Printf("%s", Buffer.data());
361
362 if (Loc.isMemoryLocation())
363 PrintMemorySnippet(Decor, Loc.getMemoryLocation(), Ranges, NumRanges, Args);
364 }
365
Initializer()366 ScopedReport::Initializer::Initializer() { InitAsStandaloneIfNecessary(); }
367
ScopedReport(ReportOptions Opts,Location SummaryLoc,ErrorType Type)368 ScopedReport::ScopedReport(ReportOptions Opts, Location SummaryLoc,
369 ErrorType Type)
370 : Opts(Opts), SummaryLoc(SummaryLoc), Type(Type) {}
371
~ScopedReport()372 ScopedReport::~ScopedReport() {
373 MaybePrintStackTrace(Opts.pc, Opts.bp);
374 MaybeReportErrorSummary(SummaryLoc, Type);
375 if (flags()->halt_on_error)
376 Die();
377 }
378
379 ALIGNED(64) static char suppression_placeholder[sizeof(SuppressionContext)];
380 static SuppressionContext *suppression_ctx = nullptr;
381 static const char kVptrCheck[] = "vptr_check";
382 static const char *kSuppressionTypes[] = {
383 #define UBSAN_CHECK(Name, SummaryKind, FSanitizeFlagName) FSanitizeFlagName,
384 #include "ubsan_checks.inc"
385 #undef UBSAN_CHECK
386 kVptrCheck,
387 };
388
InitializeSuppressions()389 void __ubsan::InitializeSuppressions() {
390 CHECK_EQ(nullptr, suppression_ctx);
391 suppression_ctx = new (suppression_placeholder) // NOLINT
392 SuppressionContext(kSuppressionTypes, ARRAY_SIZE(kSuppressionTypes));
393 suppression_ctx->ParseFromFile(flags()->suppressions);
394 }
395
IsVptrCheckSuppressed(const char * TypeName)396 bool __ubsan::IsVptrCheckSuppressed(const char *TypeName) {
397 InitAsStandaloneIfNecessary();
398 CHECK(suppression_ctx);
399 Suppression *s;
400 return suppression_ctx->Match(TypeName, kVptrCheck, &s);
401 }
402
IsPCSuppressed(ErrorType ET,uptr PC,const char * Filename)403 bool __ubsan::IsPCSuppressed(ErrorType ET, uptr PC, const char *Filename) {
404 InitAsStandaloneIfNecessary();
405 CHECK(suppression_ctx);
406 const char *SuppType = ConvertTypeToFlagName(ET);
407 // Fast path: don't symbolize PC if there is no suppressions for given UB
408 // type.
409 if (!suppression_ctx->HasSuppressionType(SuppType))
410 return false;
411 Suppression *s = nullptr;
412 // Suppress by file name known to runtime.
413 if (Filename != nullptr && suppression_ctx->Match(Filename, SuppType, &s))
414 return true;
415 // Suppress by module name.
416 if (const char *Module = Symbolizer::GetOrInit()->GetModuleNameForPc(PC)) {
417 if (suppression_ctx->Match(Module, SuppType, &s))
418 return true;
419 }
420 // Suppress by function or source file name from debug info.
421 SymbolizedStackHolder Stack(Symbolizer::GetOrInit()->SymbolizePC(PC));
422 const AddressInfo &AI = Stack.get()->info;
423 return suppression_ctx->Match(AI.function, SuppType, &s) ||
424 suppression_ctx->Match(AI.file, SuppType, &s);
425 }
426
427 #endif // CAN_SANITIZE_UB
428