ScanfFormatString.cpp 16 KB

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  1. //= ScanfFormatString.cpp - Analysis of printf format strings --*- C++ -*-===//
  2. //
  3. // The LLVM Compiler Infrastructure
  4. //
  5. // This file is distributed under the University of Illinois Open Source
  6. // License. See LICENSE.TXT for details.
  7. //
  8. //===----------------------------------------------------------------------===//
  9. //
  10. // Handling of format string in scanf and friends. The structure of format
  11. // strings for fscanf() are described in C99 7.19.6.2.
  12. //
  13. //===----------------------------------------------------------------------===//
  14. #include "clang/Analysis/Analyses/FormatString.h"
  15. #include "FormatStringParsing.h"
  16. using clang::analyze_format_string::ArgType;
  17. using clang::analyze_format_string::FormatStringHandler;
  18. using clang::analyze_format_string::LengthModifier;
  19. using clang::analyze_format_string::OptionalAmount;
  20. using clang::analyze_format_string::ConversionSpecifier;
  21. using clang::analyze_scanf::ScanfConversionSpecifier;
  22. using clang::analyze_scanf::ScanfSpecifier;
  23. using clang::UpdateOnReturn;
  24. using namespace clang;
  25. typedef clang::analyze_format_string::SpecifierResult<ScanfSpecifier>
  26. ScanfSpecifierResult;
  27. static bool ParseScanList(FormatStringHandler &H,
  28. ScanfConversionSpecifier &CS,
  29. const char *&Beg, const char *E) {
  30. const char *I = Beg;
  31. const char *start = I - 1;
  32. UpdateOnReturn <const char*> UpdateBeg(Beg, I);
  33. // No more characters?
  34. if (I == E) {
  35. H.HandleIncompleteScanList(start, I);
  36. return true;
  37. }
  38. // Special case: ']' is the first character.
  39. if (*I == ']') {
  40. if (++I == E) {
  41. H.HandleIncompleteScanList(start, I - 1);
  42. return true;
  43. }
  44. }
  45. // Look for a ']' character which denotes the end of the scan list.
  46. while (*I != ']') {
  47. if (++I == E) {
  48. H.HandleIncompleteScanList(start, I - 1);
  49. return true;
  50. }
  51. }
  52. CS.setEndScanList(I);
  53. return false;
  54. }
  55. // FIXME: Much of this is copy-paste from ParsePrintfSpecifier.
  56. // We can possibly refactor.
  57. static ScanfSpecifierResult ParseScanfSpecifier(FormatStringHandler &H,
  58. const char *&Beg,
  59. const char *E,
  60. unsigned &argIndex,
  61. const LangOptions &LO) {
  62. using namespace clang::analyze_scanf;
  63. const char *I = Beg;
  64. const char *Start = 0;
  65. UpdateOnReturn <const char*> UpdateBeg(Beg, I);
  66. // Look for a '%' character that indicates the start of a format specifier.
  67. for ( ; I != E ; ++I) {
  68. char c = *I;
  69. if (c == '\0') {
  70. // Detect spurious null characters, which are likely errors.
  71. H.HandleNullChar(I);
  72. return true;
  73. }
  74. if (c == '%') {
  75. Start = I++; // Record the start of the format specifier.
  76. break;
  77. }
  78. }
  79. // No format specifier found?
  80. if (!Start)
  81. return false;
  82. if (I == E) {
  83. // No more characters left?
  84. H.HandleIncompleteSpecifier(Start, E - Start);
  85. return true;
  86. }
  87. ScanfSpecifier FS;
  88. if (ParseArgPosition(H, FS, Start, I, E))
  89. return true;
  90. if (I == E) {
  91. // No more characters left?
  92. H.HandleIncompleteSpecifier(Start, E - Start);
  93. return true;
  94. }
  95. // Look for '*' flag if it is present.
  96. if (*I == '*') {
  97. FS.setSuppressAssignment(I);
  98. if (++I == E) {
  99. H.HandleIncompleteSpecifier(Start, E - Start);
  100. return true;
  101. }
  102. }
  103. // Look for the field width (if any). Unlike printf, this is either
  104. // a fixed integer or isn't present.
  105. const OptionalAmount &Amt = clang::analyze_format_string::ParseAmount(I, E);
  106. if (Amt.getHowSpecified() != OptionalAmount::NotSpecified) {
  107. assert(Amt.getHowSpecified() == OptionalAmount::Constant);
  108. FS.setFieldWidth(Amt);
  109. if (I == E) {
  110. // No more characters left?
  111. H.HandleIncompleteSpecifier(Start, E - Start);
  112. return true;
  113. }
  114. }
  115. // Look for the length modifier.
  116. if (ParseLengthModifier(FS, I, E, LO, /*scanf=*/true) && I == E) {
  117. // No more characters left?
  118. H.HandleIncompleteSpecifier(Start, E - Start);
  119. return true;
  120. }
  121. // Detect spurious null characters, which are likely errors.
  122. if (*I == '\0') {
  123. H.HandleNullChar(I);
  124. return true;
  125. }
  126. // Finally, look for the conversion specifier.
  127. const char *conversionPosition = I++;
  128. ScanfConversionSpecifier::Kind k = ScanfConversionSpecifier::InvalidSpecifier;
  129. switch (*conversionPosition) {
  130. default:
  131. break;
  132. case '%': k = ConversionSpecifier::PercentArg; break;
  133. case 'A': k = ConversionSpecifier::AArg; break;
  134. case 'E': k = ConversionSpecifier::EArg; break;
  135. case 'F': k = ConversionSpecifier::FArg; break;
  136. case 'G': k = ConversionSpecifier::GArg; break;
  137. case 'X': k = ConversionSpecifier::XArg; break;
  138. case 'a': k = ConversionSpecifier::aArg; break;
  139. case 'd': k = ConversionSpecifier::dArg; break;
  140. case 'e': k = ConversionSpecifier::eArg; break;
  141. case 'f': k = ConversionSpecifier::fArg; break;
  142. case 'g': k = ConversionSpecifier::gArg; break;
  143. case 'i': k = ConversionSpecifier::iArg; break;
  144. case 'n': k = ConversionSpecifier::nArg; break;
  145. case 'c': k = ConversionSpecifier::cArg; break;
  146. case 'C': k = ConversionSpecifier::CArg; break;
  147. case 'S': k = ConversionSpecifier::SArg; break;
  148. case '[': k = ConversionSpecifier::ScanListArg; break;
  149. case 'u': k = ConversionSpecifier::uArg; break;
  150. case 'x': k = ConversionSpecifier::xArg; break;
  151. case 'o': k = ConversionSpecifier::oArg; break;
  152. case 's': k = ConversionSpecifier::sArg; break;
  153. case 'p': k = ConversionSpecifier::pArg; break;
  154. }
  155. ScanfConversionSpecifier CS(conversionPosition, k);
  156. if (k == ScanfConversionSpecifier::ScanListArg) {
  157. if (ParseScanList(H, CS, I, E))
  158. return true;
  159. }
  160. FS.setConversionSpecifier(CS);
  161. if (CS.consumesDataArgument() && !FS.getSuppressAssignment()
  162. && !FS.usesPositionalArg())
  163. FS.setArgIndex(argIndex++);
  164. // FIXME: '%' and '*' doesn't make sense. Issue a warning.
  165. // FIXME: 'ConsumedSoFar' and '*' doesn't make sense.
  166. if (k == ScanfConversionSpecifier::InvalidSpecifier) {
  167. // Assume the conversion takes one argument.
  168. return !H.HandleInvalidScanfConversionSpecifier(FS, Beg, I - Beg);
  169. }
  170. return ScanfSpecifierResult(Start, FS);
  171. }
  172. ArgType ScanfSpecifier::getArgType(ASTContext &Ctx) const {
  173. const ScanfConversionSpecifier &CS = getConversionSpecifier();
  174. if (!CS.consumesDataArgument())
  175. return ArgType::Invalid();
  176. switch(CS.getKind()) {
  177. // Signed int.
  178. case ConversionSpecifier::dArg:
  179. case ConversionSpecifier::iArg:
  180. switch (LM.getKind()) {
  181. case LengthModifier::None:
  182. return ArgType::PtrTo(Ctx.IntTy);
  183. case LengthModifier::AsChar:
  184. return ArgType::PtrTo(ArgType::AnyCharTy);
  185. case LengthModifier::AsShort:
  186. return ArgType::PtrTo(Ctx.ShortTy);
  187. case LengthModifier::AsLong:
  188. return ArgType::PtrTo(Ctx.LongTy);
  189. case LengthModifier::AsLongLong:
  190. case LengthModifier::AsQuad:
  191. return ArgType::PtrTo(Ctx.LongLongTy);
  192. case LengthModifier::AsIntMax:
  193. return ArgType::PtrTo(ArgType(Ctx.getIntMaxType(), "intmax_t"));
  194. case LengthModifier::AsSizeT:
  195. // FIXME: ssize_t.
  196. return ArgType();
  197. case LengthModifier::AsPtrDiff:
  198. return ArgType::PtrTo(ArgType(Ctx.getPointerDiffType(), "ptrdiff_t"));
  199. case LengthModifier::AsLongDouble:
  200. // GNU extension.
  201. return ArgType::PtrTo(Ctx.LongLongTy);
  202. case LengthModifier::AsAllocate:
  203. return ArgType::Invalid();
  204. case LengthModifier::AsMAllocate:
  205. return ArgType::Invalid();
  206. }
  207. // Unsigned int.
  208. case ConversionSpecifier::oArg:
  209. case ConversionSpecifier::uArg:
  210. case ConversionSpecifier::xArg:
  211. case ConversionSpecifier::XArg:
  212. switch (LM.getKind()) {
  213. case LengthModifier::None:
  214. return ArgType::PtrTo(Ctx.UnsignedIntTy);
  215. case LengthModifier::AsChar:
  216. return ArgType::PtrTo(Ctx.UnsignedCharTy);
  217. case LengthModifier::AsShort:
  218. return ArgType::PtrTo(Ctx.UnsignedShortTy);
  219. case LengthModifier::AsLong:
  220. return ArgType::PtrTo(Ctx.UnsignedLongTy);
  221. case LengthModifier::AsLongLong:
  222. case LengthModifier::AsQuad:
  223. return ArgType::PtrTo(Ctx.UnsignedLongLongTy);
  224. case LengthModifier::AsIntMax:
  225. return ArgType::PtrTo(ArgType(Ctx.getUIntMaxType(), "uintmax_t"));
  226. case LengthModifier::AsSizeT:
  227. return ArgType::PtrTo(ArgType(Ctx.getSizeType(), "size_t"));
  228. case LengthModifier::AsPtrDiff:
  229. // FIXME: Unsigned version of ptrdiff_t?
  230. return ArgType();
  231. case LengthModifier::AsLongDouble:
  232. // GNU extension.
  233. return ArgType::PtrTo(Ctx.UnsignedLongLongTy);
  234. case LengthModifier::AsAllocate:
  235. return ArgType::Invalid();
  236. case LengthModifier::AsMAllocate:
  237. return ArgType::Invalid();
  238. }
  239. // Float.
  240. case ConversionSpecifier::aArg:
  241. case ConversionSpecifier::AArg:
  242. case ConversionSpecifier::eArg:
  243. case ConversionSpecifier::EArg:
  244. case ConversionSpecifier::fArg:
  245. case ConversionSpecifier::FArg:
  246. case ConversionSpecifier::gArg:
  247. case ConversionSpecifier::GArg:
  248. switch (LM.getKind()) {
  249. case LengthModifier::None:
  250. return ArgType::PtrTo(Ctx.FloatTy);
  251. case LengthModifier::AsLong:
  252. return ArgType::PtrTo(Ctx.DoubleTy);
  253. case LengthModifier::AsLongDouble:
  254. return ArgType::PtrTo(Ctx.LongDoubleTy);
  255. default:
  256. return ArgType::Invalid();
  257. }
  258. // Char, string and scanlist.
  259. case ConversionSpecifier::cArg:
  260. case ConversionSpecifier::sArg:
  261. case ConversionSpecifier::ScanListArg:
  262. switch (LM.getKind()) {
  263. case LengthModifier::None:
  264. return ArgType::PtrTo(ArgType::AnyCharTy);
  265. case LengthModifier::AsLong:
  266. return ArgType::PtrTo(ArgType(Ctx.getWCharType(), "wchar_t"));
  267. case LengthModifier::AsAllocate:
  268. case LengthModifier::AsMAllocate:
  269. return ArgType::PtrTo(ArgType::CStrTy);
  270. default:
  271. return ArgType::Invalid();
  272. }
  273. case ConversionSpecifier::CArg:
  274. case ConversionSpecifier::SArg:
  275. // FIXME: Mac OS X specific?
  276. switch (LM.getKind()) {
  277. case LengthModifier::None:
  278. return ArgType::PtrTo(ArgType(Ctx.getWCharType(), "wchar_t"));
  279. case LengthModifier::AsAllocate:
  280. case LengthModifier::AsMAllocate:
  281. return ArgType::PtrTo(ArgType(ArgType::WCStrTy, "wchar_t *"));
  282. default:
  283. return ArgType::Invalid();
  284. }
  285. // Pointer.
  286. case ConversionSpecifier::pArg:
  287. return ArgType::PtrTo(ArgType::CPointerTy);
  288. // Write-back.
  289. case ConversionSpecifier::nArg:
  290. switch (LM.getKind()) {
  291. case LengthModifier::None:
  292. return ArgType::PtrTo(Ctx.IntTy);
  293. case LengthModifier::AsChar:
  294. return ArgType::PtrTo(Ctx.SignedCharTy);
  295. case LengthModifier::AsShort:
  296. return ArgType::PtrTo(Ctx.ShortTy);
  297. case LengthModifier::AsLong:
  298. return ArgType::PtrTo(Ctx.LongTy);
  299. case LengthModifier::AsLongLong:
  300. case LengthModifier::AsQuad:
  301. return ArgType::PtrTo(Ctx.LongLongTy);
  302. case LengthModifier::AsIntMax:
  303. return ArgType::PtrTo(ArgType(Ctx.getIntMaxType(), "intmax_t"));
  304. case LengthModifier::AsSizeT:
  305. return ArgType(); // FIXME: ssize_t
  306. case LengthModifier::AsPtrDiff:
  307. return ArgType::PtrTo(ArgType(Ctx.getPointerDiffType(), "ptrdiff_t"));
  308. case LengthModifier::AsLongDouble:
  309. return ArgType(); // FIXME: Is this a known extension?
  310. case LengthModifier::AsAllocate:
  311. case LengthModifier::AsMAllocate:
  312. return ArgType::Invalid();
  313. }
  314. default:
  315. break;
  316. }
  317. return ArgType();
  318. }
  319. bool ScanfSpecifier::fixType(QualType QT, const LangOptions &LangOpt,
  320. ASTContext &Ctx) {
  321. if (!QT->isPointerType())
  322. return false;
  323. // %n is different from other conversion specifiers; don't try to fix it.
  324. if (CS.getKind() == ConversionSpecifier::nArg)
  325. return false;
  326. QualType PT = QT->getPointeeType();
  327. // If it's an enum, get its underlying type.
  328. if (const EnumType *ETy = QT->getAs<EnumType>())
  329. QT = ETy->getDecl()->getIntegerType();
  330. const BuiltinType *BT = PT->getAs<BuiltinType>();
  331. if (!BT)
  332. return false;
  333. // Pointer to a character.
  334. if (PT->isAnyCharacterType()) {
  335. CS.setKind(ConversionSpecifier::sArg);
  336. if (PT->isWideCharType())
  337. LM.setKind(LengthModifier::AsWideChar);
  338. else
  339. LM.setKind(LengthModifier::None);
  340. return true;
  341. }
  342. // Figure out the length modifier.
  343. switch (BT->getKind()) {
  344. // no modifier
  345. case BuiltinType::UInt:
  346. case BuiltinType::Int:
  347. case BuiltinType::Float:
  348. LM.setKind(LengthModifier::None);
  349. break;
  350. // hh
  351. case BuiltinType::Char_U:
  352. case BuiltinType::UChar:
  353. case BuiltinType::Char_S:
  354. case BuiltinType::SChar:
  355. LM.setKind(LengthModifier::AsChar);
  356. break;
  357. // h
  358. case BuiltinType::Short:
  359. case BuiltinType::UShort:
  360. LM.setKind(LengthModifier::AsShort);
  361. break;
  362. // l
  363. case BuiltinType::Long:
  364. case BuiltinType::ULong:
  365. case BuiltinType::Double:
  366. LM.setKind(LengthModifier::AsLong);
  367. break;
  368. // ll
  369. case BuiltinType::LongLong:
  370. case BuiltinType::ULongLong:
  371. LM.setKind(LengthModifier::AsLongLong);
  372. break;
  373. // L
  374. case BuiltinType::LongDouble:
  375. LM.setKind(LengthModifier::AsLongDouble);
  376. break;
  377. // Don't know.
  378. default:
  379. return false;
  380. }
  381. // Handle size_t, ptrdiff_t, etc. that have dedicated length modifiers in C99.
  382. if (isa<TypedefType>(PT) && (LangOpt.C99 || LangOpt.CPlusPlus0x))
  383. namedTypeToLengthModifier(PT, LM);
  384. // If fixing the length modifier was enough, we are done.
  385. if (hasValidLengthModifier(Ctx.getTargetInfo())) {
  386. const analyze_scanf::ArgType &AT = getArgType(Ctx);
  387. if (AT.isValid() && AT.matchesType(Ctx, QT))
  388. return true;
  389. }
  390. // Figure out the conversion specifier.
  391. if (PT->isRealFloatingType())
  392. CS.setKind(ConversionSpecifier::fArg);
  393. else if (PT->isSignedIntegerType())
  394. CS.setKind(ConversionSpecifier::dArg);
  395. else if (PT->isUnsignedIntegerType())
  396. CS.setKind(ConversionSpecifier::uArg);
  397. else
  398. llvm_unreachable("Unexpected type");
  399. return true;
  400. }
  401. void ScanfSpecifier::toString(raw_ostream &os) const {
  402. os << "%";
  403. if (usesPositionalArg())
  404. os << getPositionalArgIndex() << "$";
  405. if (SuppressAssignment)
  406. os << "*";
  407. FieldWidth.toString(os);
  408. os << LM.toString();
  409. os << CS.toString();
  410. }
  411. bool clang::analyze_format_string::ParseScanfString(FormatStringHandler &H,
  412. const char *I,
  413. const char *E,
  414. const LangOptions &LO) {
  415. unsigned argIndex = 0;
  416. // Keep looking for a format specifier until we have exhausted the string.
  417. while (I != E) {
  418. const ScanfSpecifierResult &FSR = ParseScanfSpecifier(H, I, E, argIndex,
  419. LO);
  420. // Did a fail-stop error of any kind occur when parsing the specifier?
  421. // If so, don't do any more processing.
  422. if (FSR.shouldStop())
  423. return true;;
  424. // Did we exhaust the string or encounter an error that
  425. // we can recover from?
  426. if (!FSR.hasValue())
  427. continue;
  428. // We have a format specifier. Pass it to the callback.
  429. if (!H.HandleScanfSpecifier(FSR.getValue(), FSR.getStart(),
  430. I - FSR.getStart())) {
  431. return true;
  432. }
  433. }
  434. assert(I == E && "Format string not exhausted");
  435. return false;
  436. }