FormatString.cpp 23 KB

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  1. // FormatString.cpp - Common stuff for handling printf/scanf formats -*- 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. // Shared details for processing format strings of printf and scanf
  11. // (and friends).
  12. //
  13. //===----------------------------------------------------------------------===//
  14. #include "FormatStringParsing.h"
  15. #include "clang/Basic/LangOptions.h"
  16. #include "clang/Basic/TargetInfo.h"
  17. using clang::analyze_format_string::ArgType;
  18. using clang::analyze_format_string::FormatStringHandler;
  19. using clang::analyze_format_string::FormatSpecifier;
  20. using clang::analyze_format_string::LengthModifier;
  21. using clang::analyze_format_string::OptionalAmount;
  22. using clang::analyze_format_string::PositionContext;
  23. using clang::analyze_format_string::ConversionSpecifier;
  24. using namespace clang;
  25. // Key function to FormatStringHandler.
  26. FormatStringHandler::~FormatStringHandler() {}
  27. //===----------------------------------------------------------------------===//
  28. // Functions for parsing format strings components in both printf and
  29. // scanf format strings.
  30. //===----------------------------------------------------------------------===//
  31. OptionalAmount
  32. clang::analyze_format_string::ParseAmount(const char *&Beg, const char *E) {
  33. const char *I = Beg;
  34. UpdateOnReturn <const char*> UpdateBeg(Beg, I);
  35. unsigned accumulator = 0;
  36. bool hasDigits = false;
  37. for ( ; I != E; ++I) {
  38. char c = *I;
  39. if (c >= '0' && c <= '9') {
  40. hasDigits = true;
  41. accumulator = (accumulator * 10) + (c - '0');
  42. continue;
  43. }
  44. if (hasDigits)
  45. return OptionalAmount(OptionalAmount::Constant, accumulator, Beg, I - Beg,
  46. false);
  47. break;
  48. }
  49. return OptionalAmount();
  50. }
  51. OptionalAmount
  52. clang::analyze_format_string::ParseNonPositionAmount(const char *&Beg,
  53. const char *E,
  54. unsigned &argIndex) {
  55. if (*Beg == '*') {
  56. ++Beg;
  57. return OptionalAmount(OptionalAmount::Arg, argIndex++, Beg, 0, false);
  58. }
  59. return ParseAmount(Beg, E);
  60. }
  61. OptionalAmount
  62. clang::analyze_format_string::ParsePositionAmount(FormatStringHandler &H,
  63. const char *Start,
  64. const char *&Beg,
  65. const char *E,
  66. PositionContext p) {
  67. if (*Beg == '*') {
  68. const char *I = Beg + 1;
  69. const OptionalAmount &Amt = ParseAmount(I, E);
  70. if (Amt.getHowSpecified() == OptionalAmount::NotSpecified) {
  71. H.HandleInvalidPosition(Beg, I - Beg, p);
  72. return OptionalAmount(false);
  73. }
  74. if (I == E) {
  75. // No more characters left?
  76. H.HandleIncompleteSpecifier(Start, E - Start);
  77. return OptionalAmount(false);
  78. }
  79. assert(Amt.getHowSpecified() == OptionalAmount::Constant);
  80. if (*I == '$') {
  81. // Handle positional arguments
  82. // Special case: '*0$', since this is an easy mistake.
  83. if (Amt.getConstantAmount() == 0) {
  84. H.HandleZeroPosition(Beg, I - Beg + 1);
  85. return OptionalAmount(false);
  86. }
  87. const char *Tmp = Beg;
  88. Beg = ++I;
  89. return OptionalAmount(OptionalAmount::Arg, Amt.getConstantAmount() - 1,
  90. Tmp, 0, true);
  91. }
  92. H.HandleInvalidPosition(Beg, I - Beg, p);
  93. return OptionalAmount(false);
  94. }
  95. return ParseAmount(Beg, E);
  96. }
  97. bool
  98. clang::analyze_format_string::ParseFieldWidth(FormatStringHandler &H,
  99. FormatSpecifier &CS,
  100. const char *Start,
  101. const char *&Beg, const char *E,
  102. unsigned *argIndex) {
  103. // FIXME: Support negative field widths.
  104. if (argIndex) {
  105. CS.setFieldWidth(ParseNonPositionAmount(Beg, E, *argIndex));
  106. }
  107. else {
  108. const OptionalAmount Amt =
  109. ParsePositionAmount(H, Start, Beg, E,
  110. analyze_format_string::FieldWidthPos);
  111. if (Amt.isInvalid())
  112. return true;
  113. CS.setFieldWidth(Amt);
  114. }
  115. return false;
  116. }
  117. bool
  118. clang::analyze_format_string::ParseArgPosition(FormatStringHandler &H,
  119. FormatSpecifier &FS,
  120. const char *Start,
  121. const char *&Beg,
  122. const char *E) {
  123. const char *I = Beg;
  124. const OptionalAmount &Amt = ParseAmount(I, E);
  125. if (I == E) {
  126. // No more characters left?
  127. H.HandleIncompleteSpecifier(Start, E - Start);
  128. return true;
  129. }
  130. if (Amt.getHowSpecified() == OptionalAmount::Constant && *(I++) == '$') {
  131. // Warn that positional arguments are non-standard.
  132. H.HandlePosition(Start, I - Start);
  133. // Special case: '%0$', since this is an easy mistake.
  134. if (Amt.getConstantAmount() == 0) {
  135. H.HandleZeroPosition(Start, I - Start);
  136. return true;
  137. }
  138. FS.setArgIndex(Amt.getConstantAmount() - 1);
  139. FS.setUsesPositionalArg();
  140. // Update the caller's pointer if we decided to consume
  141. // these characters.
  142. Beg = I;
  143. return false;
  144. }
  145. return false;
  146. }
  147. bool
  148. clang::analyze_format_string::ParseLengthModifier(FormatSpecifier &FS,
  149. const char *&I,
  150. const char *E,
  151. const LangOptions &LO,
  152. bool IsScanf) {
  153. LengthModifier::Kind lmKind = LengthModifier::None;
  154. const char *lmPosition = I;
  155. switch (*I) {
  156. default:
  157. return false;
  158. case 'h':
  159. ++I;
  160. lmKind = (I != E && *I == 'h') ? (++I, LengthModifier::AsChar)
  161. : LengthModifier::AsShort;
  162. break;
  163. case 'l':
  164. ++I;
  165. lmKind = (I != E && *I == 'l') ? (++I, LengthModifier::AsLongLong)
  166. : LengthModifier::AsLong;
  167. break;
  168. case 'j': lmKind = LengthModifier::AsIntMax; ++I; break;
  169. case 'z': lmKind = LengthModifier::AsSizeT; ++I; break;
  170. case 't': lmKind = LengthModifier::AsPtrDiff; ++I; break;
  171. case 'L': lmKind = LengthModifier::AsLongDouble; ++I; break;
  172. case 'q': lmKind = LengthModifier::AsQuad; ++I; break;
  173. case 'a':
  174. if (IsScanf && !LO.C99 && !LO.CPlusPlus11) {
  175. // For scanf in C90, look at the next character to see if this should
  176. // be parsed as the GNU extension 'a' length modifier. If not, this
  177. // will be parsed as a conversion specifier.
  178. ++I;
  179. if (I != E && (*I == 's' || *I == 'S' || *I == '[')) {
  180. lmKind = LengthModifier::AsAllocate;
  181. break;
  182. }
  183. --I;
  184. }
  185. return false;
  186. case 'm':
  187. if (IsScanf) {
  188. lmKind = LengthModifier::AsMAllocate;
  189. ++I;
  190. break;
  191. }
  192. return false;
  193. }
  194. LengthModifier lm(lmPosition, lmKind);
  195. FS.setLengthModifier(lm);
  196. return true;
  197. }
  198. //===----------------------------------------------------------------------===//
  199. // Methods on ArgType.
  200. //===----------------------------------------------------------------------===//
  201. bool ArgType::matchesType(ASTContext &C, QualType argTy) const {
  202. if (Ptr) {
  203. // It has to be a pointer.
  204. const PointerType *PT = argTy->getAs<PointerType>();
  205. if (!PT)
  206. return false;
  207. // We cannot write through a const qualified pointer.
  208. if (PT->getPointeeType().isConstQualified())
  209. return false;
  210. argTy = PT->getPointeeType();
  211. }
  212. switch (K) {
  213. case InvalidTy:
  214. llvm_unreachable("ArgType must be valid");
  215. case UnknownTy:
  216. return true;
  217. case AnyCharTy: {
  218. if (const EnumType *ETy = argTy->getAs<EnumType>())
  219. argTy = ETy->getDecl()->getIntegerType();
  220. if (const BuiltinType *BT = argTy->getAs<BuiltinType>())
  221. switch (BT->getKind()) {
  222. default:
  223. break;
  224. case BuiltinType::Char_S:
  225. case BuiltinType::SChar:
  226. case BuiltinType::UChar:
  227. case BuiltinType::Char_U:
  228. return true;
  229. }
  230. return false;
  231. }
  232. case SpecificTy: {
  233. if (const EnumType *ETy = argTy->getAs<EnumType>())
  234. argTy = ETy->getDecl()->getIntegerType();
  235. argTy = C.getCanonicalType(argTy).getUnqualifiedType();
  236. if (T == argTy)
  237. return true;
  238. // Check for "compatible types".
  239. if (const BuiltinType *BT = argTy->getAs<BuiltinType>())
  240. switch (BT->getKind()) {
  241. default:
  242. break;
  243. case BuiltinType::Char_S:
  244. case BuiltinType::SChar:
  245. case BuiltinType::Char_U:
  246. case BuiltinType::UChar:
  247. return T == C.UnsignedCharTy || T == C.SignedCharTy;
  248. case BuiltinType::Short:
  249. return T == C.UnsignedShortTy;
  250. case BuiltinType::UShort:
  251. return T == C.ShortTy;
  252. case BuiltinType::Int:
  253. return T == C.UnsignedIntTy;
  254. case BuiltinType::UInt:
  255. return T == C.IntTy;
  256. case BuiltinType::Long:
  257. return T == C.UnsignedLongTy;
  258. case BuiltinType::ULong:
  259. return T == C.LongTy;
  260. case BuiltinType::LongLong:
  261. return T == C.UnsignedLongLongTy;
  262. case BuiltinType::ULongLong:
  263. return T == C.LongLongTy;
  264. }
  265. return false;
  266. }
  267. case CStrTy: {
  268. const PointerType *PT = argTy->getAs<PointerType>();
  269. if (!PT)
  270. return false;
  271. QualType pointeeTy = PT->getPointeeType();
  272. if (const BuiltinType *BT = pointeeTy->getAs<BuiltinType>())
  273. switch (BT->getKind()) {
  274. case BuiltinType::Void:
  275. case BuiltinType::Char_U:
  276. case BuiltinType::UChar:
  277. case BuiltinType::Char_S:
  278. case BuiltinType::SChar:
  279. return true;
  280. default:
  281. break;
  282. }
  283. return false;
  284. }
  285. case WCStrTy: {
  286. const PointerType *PT = argTy->getAs<PointerType>();
  287. if (!PT)
  288. return false;
  289. QualType pointeeTy =
  290. C.getCanonicalType(PT->getPointeeType()).getUnqualifiedType();
  291. return pointeeTy == C.getWCharType();
  292. }
  293. case WIntTy: {
  294. QualType PromoArg =
  295. argTy->isPromotableIntegerType()
  296. ? C.getPromotedIntegerType(argTy) : argTy;
  297. QualType WInt = C.getCanonicalType(C.getWIntType()).getUnqualifiedType();
  298. PromoArg = C.getCanonicalType(PromoArg).getUnqualifiedType();
  299. // If the promoted argument is the corresponding signed type of the
  300. // wint_t type, then it should match.
  301. if (PromoArg->hasSignedIntegerRepresentation() &&
  302. C.getCorrespondingUnsignedType(PromoArg) == WInt)
  303. return true;
  304. return WInt == PromoArg;
  305. }
  306. case CPointerTy:
  307. return argTy->isPointerType() || argTy->isObjCObjectPointerType() ||
  308. argTy->isBlockPointerType() || argTy->isNullPtrType();
  309. case ObjCPointerTy: {
  310. if (argTy->getAs<ObjCObjectPointerType>() ||
  311. argTy->getAs<BlockPointerType>())
  312. return true;
  313. // Handle implicit toll-free bridging.
  314. if (const PointerType *PT = argTy->getAs<PointerType>()) {
  315. // Things such as CFTypeRef are really just opaque pointers
  316. // to C structs representing CF types that can often be bridged
  317. // to Objective-C objects. Since the compiler doesn't know which
  318. // structs can be toll-free bridged, we just accept them all.
  319. QualType pointee = PT->getPointeeType();
  320. if (pointee->getAsStructureType() || pointee->isVoidType())
  321. return true;
  322. }
  323. return false;
  324. }
  325. }
  326. llvm_unreachable("Invalid ArgType Kind!");
  327. }
  328. QualType ArgType::getRepresentativeType(ASTContext &C) const {
  329. QualType Res;
  330. switch (K) {
  331. case InvalidTy:
  332. llvm_unreachable("No representative type for Invalid ArgType");
  333. case UnknownTy:
  334. llvm_unreachable("No representative type for Unknown ArgType");
  335. case AnyCharTy:
  336. Res = C.CharTy;
  337. break;
  338. case SpecificTy:
  339. Res = T;
  340. break;
  341. case CStrTy:
  342. Res = C.getPointerType(C.CharTy);
  343. break;
  344. case WCStrTy:
  345. Res = C.getPointerType(C.getWCharType());
  346. break;
  347. case ObjCPointerTy:
  348. Res = C.ObjCBuiltinIdTy;
  349. break;
  350. case CPointerTy:
  351. Res = C.VoidPtrTy;
  352. break;
  353. case WIntTy: {
  354. Res = C.getWIntType();
  355. break;
  356. }
  357. }
  358. if (Ptr)
  359. Res = C.getPointerType(Res);
  360. return Res;
  361. }
  362. std::string ArgType::getRepresentativeTypeName(ASTContext &C) const {
  363. std::string S = getRepresentativeType(C).getAsString();
  364. std::string Alias;
  365. if (Name) {
  366. // Use a specific name for this type, e.g. "size_t".
  367. Alias = Name;
  368. if (Ptr) {
  369. // If ArgType is actually a pointer to T, append an asterisk.
  370. Alias += (Alias[Alias.size()-1] == '*') ? "*" : " *";
  371. }
  372. // If Alias is the same as the underlying type, e.g. wchar_t, then drop it.
  373. if (S == Alias)
  374. Alias.clear();
  375. }
  376. if (!Alias.empty())
  377. return std::string("'") + Alias + "' (aka '" + S + "')";
  378. return std::string("'") + S + "'";
  379. }
  380. //===----------------------------------------------------------------------===//
  381. // Methods on OptionalAmount.
  382. //===----------------------------------------------------------------------===//
  383. ArgType
  384. analyze_format_string::OptionalAmount::getArgType(ASTContext &Ctx) const {
  385. return Ctx.IntTy;
  386. }
  387. //===----------------------------------------------------------------------===//
  388. // Methods on LengthModifier.
  389. //===----------------------------------------------------------------------===//
  390. const char *
  391. analyze_format_string::LengthModifier::toString() const {
  392. switch (kind) {
  393. case AsChar:
  394. return "hh";
  395. case AsShort:
  396. return "h";
  397. case AsLong: // or AsWideChar
  398. return "l";
  399. case AsLongLong:
  400. return "ll";
  401. case AsQuad:
  402. return "q";
  403. case AsIntMax:
  404. return "j";
  405. case AsSizeT:
  406. return "z";
  407. case AsPtrDiff:
  408. return "t";
  409. case AsLongDouble:
  410. return "L";
  411. case AsAllocate:
  412. return "a";
  413. case AsMAllocate:
  414. return "m";
  415. case None:
  416. return "";
  417. }
  418. return NULL;
  419. }
  420. //===----------------------------------------------------------------------===//
  421. // Methods on ConversionSpecifier.
  422. //===----------------------------------------------------------------------===//
  423. const char *ConversionSpecifier::toString() const {
  424. switch (kind) {
  425. case dArg: return "d";
  426. case DArg: return "D";
  427. case iArg: return "i";
  428. case oArg: return "o";
  429. case OArg: return "O";
  430. case uArg: return "u";
  431. case UArg: return "U";
  432. case xArg: return "x";
  433. case XArg: return "X";
  434. case fArg: return "f";
  435. case FArg: return "F";
  436. case eArg: return "e";
  437. case EArg: return "E";
  438. case gArg: return "g";
  439. case GArg: return "G";
  440. case aArg: return "a";
  441. case AArg: return "A";
  442. case cArg: return "c";
  443. case sArg: return "s";
  444. case pArg: return "p";
  445. case nArg: return "n";
  446. case PercentArg: return "%";
  447. case ScanListArg: return "[";
  448. case InvalidSpecifier: return NULL;
  449. // MacOS X unicode extensions.
  450. case CArg: return "C";
  451. case SArg: return "S";
  452. // Objective-C specific specifiers.
  453. case ObjCObjArg: return "@";
  454. // GlibC specific specifiers.
  455. case PrintErrno: return "m";
  456. }
  457. return NULL;
  458. }
  459. Optional<ConversionSpecifier>
  460. ConversionSpecifier::getStandardSpecifier() const {
  461. ConversionSpecifier::Kind NewKind;
  462. switch (getKind()) {
  463. default:
  464. return None;
  465. case DArg:
  466. NewKind = dArg;
  467. break;
  468. case UArg:
  469. NewKind = uArg;
  470. break;
  471. case OArg:
  472. NewKind = oArg;
  473. break;
  474. }
  475. ConversionSpecifier FixedCS(*this);
  476. FixedCS.setKind(NewKind);
  477. return FixedCS;
  478. }
  479. //===----------------------------------------------------------------------===//
  480. // Methods on OptionalAmount.
  481. //===----------------------------------------------------------------------===//
  482. void OptionalAmount::toString(raw_ostream &os) const {
  483. switch (hs) {
  484. case Invalid:
  485. case NotSpecified:
  486. return;
  487. case Arg:
  488. if (UsesDotPrefix)
  489. os << ".";
  490. if (usesPositionalArg())
  491. os << "*" << getPositionalArgIndex() << "$";
  492. else
  493. os << "*";
  494. break;
  495. case Constant:
  496. if (UsesDotPrefix)
  497. os << ".";
  498. os << amt;
  499. break;
  500. }
  501. }
  502. bool FormatSpecifier::hasValidLengthModifier(const TargetInfo &Target) const {
  503. switch (LM.getKind()) {
  504. case LengthModifier::None:
  505. return true;
  506. // Handle most integer flags
  507. case LengthModifier::AsChar:
  508. case LengthModifier::AsShort:
  509. case LengthModifier::AsLongLong:
  510. case LengthModifier::AsQuad:
  511. case LengthModifier::AsIntMax:
  512. case LengthModifier::AsSizeT:
  513. case LengthModifier::AsPtrDiff:
  514. switch (CS.getKind()) {
  515. case ConversionSpecifier::dArg:
  516. case ConversionSpecifier::DArg:
  517. case ConversionSpecifier::iArg:
  518. case ConversionSpecifier::oArg:
  519. case ConversionSpecifier::OArg:
  520. case ConversionSpecifier::uArg:
  521. case ConversionSpecifier::UArg:
  522. case ConversionSpecifier::xArg:
  523. case ConversionSpecifier::XArg:
  524. case ConversionSpecifier::nArg:
  525. return true;
  526. default:
  527. return false;
  528. }
  529. // Handle 'l' flag
  530. case LengthModifier::AsLong:
  531. switch (CS.getKind()) {
  532. case ConversionSpecifier::dArg:
  533. case ConversionSpecifier::DArg:
  534. case ConversionSpecifier::iArg:
  535. case ConversionSpecifier::oArg:
  536. case ConversionSpecifier::OArg:
  537. case ConversionSpecifier::uArg:
  538. case ConversionSpecifier::UArg:
  539. case ConversionSpecifier::xArg:
  540. case ConversionSpecifier::XArg:
  541. case ConversionSpecifier::aArg:
  542. case ConversionSpecifier::AArg:
  543. case ConversionSpecifier::fArg:
  544. case ConversionSpecifier::FArg:
  545. case ConversionSpecifier::eArg:
  546. case ConversionSpecifier::EArg:
  547. case ConversionSpecifier::gArg:
  548. case ConversionSpecifier::GArg:
  549. case ConversionSpecifier::nArg:
  550. case ConversionSpecifier::cArg:
  551. case ConversionSpecifier::sArg:
  552. case ConversionSpecifier::ScanListArg:
  553. return true;
  554. default:
  555. return false;
  556. }
  557. case LengthModifier::AsLongDouble:
  558. switch (CS.getKind()) {
  559. case ConversionSpecifier::aArg:
  560. case ConversionSpecifier::AArg:
  561. case ConversionSpecifier::fArg:
  562. case ConversionSpecifier::FArg:
  563. case ConversionSpecifier::eArg:
  564. case ConversionSpecifier::EArg:
  565. case ConversionSpecifier::gArg:
  566. case ConversionSpecifier::GArg:
  567. return true;
  568. // GNU libc extension.
  569. case ConversionSpecifier::dArg:
  570. case ConversionSpecifier::iArg:
  571. case ConversionSpecifier::oArg:
  572. case ConversionSpecifier::uArg:
  573. case ConversionSpecifier::xArg:
  574. case ConversionSpecifier::XArg:
  575. return !Target.getTriple().isOSDarwin() &&
  576. !Target.getTriple().isOSWindows();
  577. default:
  578. return false;
  579. }
  580. case LengthModifier::AsAllocate:
  581. switch (CS.getKind()) {
  582. case ConversionSpecifier::sArg:
  583. case ConversionSpecifier::SArg:
  584. case ConversionSpecifier::ScanListArg:
  585. return true;
  586. default:
  587. return false;
  588. }
  589. case LengthModifier::AsMAllocate:
  590. switch (CS.getKind()) {
  591. case ConversionSpecifier::cArg:
  592. case ConversionSpecifier::CArg:
  593. case ConversionSpecifier::sArg:
  594. case ConversionSpecifier::SArg:
  595. case ConversionSpecifier::ScanListArg:
  596. return true;
  597. default:
  598. return false;
  599. }
  600. }
  601. llvm_unreachable("Invalid LengthModifier Kind!");
  602. }
  603. bool FormatSpecifier::hasStandardLengthModifier() const {
  604. switch (LM.getKind()) {
  605. case LengthModifier::None:
  606. case LengthModifier::AsChar:
  607. case LengthModifier::AsShort:
  608. case LengthModifier::AsLong:
  609. case LengthModifier::AsLongLong:
  610. case LengthModifier::AsIntMax:
  611. case LengthModifier::AsSizeT:
  612. case LengthModifier::AsPtrDiff:
  613. case LengthModifier::AsLongDouble:
  614. return true;
  615. case LengthModifier::AsAllocate:
  616. case LengthModifier::AsMAllocate:
  617. case LengthModifier::AsQuad:
  618. return false;
  619. }
  620. llvm_unreachable("Invalid LengthModifier Kind!");
  621. }
  622. bool FormatSpecifier::hasStandardConversionSpecifier(const LangOptions &LangOpt) const {
  623. switch (CS.getKind()) {
  624. case ConversionSpecifier::cArg:
  625. case ConversionSpecifier::dArg:
  626. case ConversionSpecifier::iArg:
  627. case ConversionSpecifier::oArg:
  628. case ConversionSpecifier::uArg:
  629. case ConversionSpecifier::xArg:
  630. case ConversionSpecifier::XArg:
  631. case ConversionSpecifier::fArg:
  632. case ConversionSpecifier::FArg:
  633. case ConversionSpecifier::eArg:
  634. case ConversionSpecifier::EArg:
  635. case ConversionSpecifier::gArg:
  636. case ConversionSpecifier::GArg:
  637. case ConversionSpecifier::aArg:
  638. case ConversionSpecifier::AArg:
  639. case ConversionSpecifier::sArg:
  640. case ConversionSpecifier::pArg:
  641. case ConversionSpecifier::nArg:
  642. case ConversionSpecifier::ObjCObjArg:
  643. case ConversionSpecifier::ScanListArg:
  644. case ConversionSpecifier::PercentArg:
  645. return true;
  646. case ConversionSpecifier::CArg:
  647. case ConversionSpecifier::SArg:
  648. return LangOpt.ObjC1 || LangOpt.ObjC2;
  649. case ConversionSpecifier::InvalidSpecifier:
  650. case ConversionSpecifier::PrintErrno:
  651. case ConversionSpecifier::DArg:
  652. case ConversionSpecifier::OArg:
  653. case ConversionSpecifier::UArg:
  654. return false;
  655. }
  656. llvm_unreachable("Invalid ConversionSpecifier Kind!");
  657. }
  658. bool FormatSpecifier::hasStandardLengthConversionCombination() const {
  659. if (LM.getKind() == LengthModifier::AsLongDouble) {
  660. switch(CS.getKind()) {
  661. case ConversionSpecifier::dArg:
  662. case ConversionSpecifier::iArg:
  663. case ConversionSpecifier::oArg:
  664. case ConversionSpecifier::uArg:
  665. case ConversionSpecifier::xArg:
  666. case ConversionSpecifier::XArg:
  667. return false;
  668. default:
  669. return true;
  670. }
  671. }
  672. return true;
  673. }
  674. Optional<LengthModifier> FormatSpecifier::getCorrectedLengthModifier() const {
  675. if (CS.isAnyIntArg() || CS.getKind() == ConversionSpecifier::nArg) {
  676. if (LM.getKind() == LengthModifier::AsLongDouble ||
  677. LM.getKind() == LengthModifier::AsQuad) {
  678. LengthModifier FixedLM(LM);
  679. FixedLM.setKind(LengthModifier::AsLongLong);
  680. return FixedLM;
  681. }
  682. }
  683. return None;
  684. }
  685. bool FormatSpecifier::namedTypeToLengthModifier(QualType QT,
  686. LengthModifier &LM) {
  687. assert(isa<TypedefType>(QT) && "Expected a TypedefType");
  688. const TypedefNameDecl *Typedef = cast<TypedefType>(QT)->getDecl();
  689. for (;;) {
  690. const IdentifierInfo *Identifier = Typedef->getIdentifier();
  691. if (Identifier->getName() == "size_t") {
  692. LM.setKind(LengthModifier::AsSizeT);
  693. return true;
  694. } else if (Identifier->getName() == "ssize_t") {
  695. // Not C99, but common in Unix.
  696. LM.setKind(LengthModifier::AsSizeT);
  697. return true;
  698. } else if (Identifier->getName() == "intmax_t") {
  699. LM.setKind(LengthModifier::AsIntMax);
  700. return true;
  701. } else if (Identifier->getName() == "uintmax_t") {
  702. LM.setKind(LengthModifier::AsIntMax);
  703. return true;
  704. } else if (Identifier->getName() == "ptrdiff_t") {
  705. LM.setKind(LengthModifier::AsPtrDiff);
  706. return true;
  707. }
  708. QualType T = Typedef->getUnderlyingType();
  709. if (!isa<TypedefType>(T))
  710. break;
  711. Typedef = cast<TypedefType>(T)->getDecl();
  712. }
  713. return false;
  714. }