OLD | NEW |
1 //===-- NaClObjDump.cpp - Dump PNaCl bitcode contents ---------------------===// | 1 //===-- NaClObjDump.cpp - Dump PNaCl bitcode contents ---------------------===// |
2 // | 2 // |
3 // The LLVM Compiler Infrastructure | 3 // The LLVM Compiler Infrastructure |
4 // | 4 // |
5 // This file is distributed under the University of Illinois Open Source | 5 // This file is distributed under the University of Illinois Open Source |
6 // License. See LICENSE.TXT for details. | 6 // License. See LICENSE.TXT for details. |
7 // | 7 // |
8 //===----------------------------------------------------------------------===// | 8 //===----------------------------------------------------------------------===// |
9 | 9 |
10 #include "llvm/ADT/STLExtras.h" | 10 #include "llvm/ADT/STLExtras.h" |
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32 namespace { | 32 namespace { |
33 | 33 |
34 using namespace llvm; | 34 using namespace llvm; |
35 | 35 |
36 static cl::opt<bool> | 36 static cl::opt<bool> |
37 ReportWarningsAsErrors( | 37 ReportWarningsAsErrors( |
38 "Werror", | 38 "Werror", |
39 cl::desc("Report warnings as errors."), | 39 cl::desc("Report warnings as errors."), |
40 cl::init(false)); | 40 cl::init(false)); |
41 | 41 |
| 42 static cl::opt<bool> |
| 43 IgnorePNaClABIChecks( |
| 44 "ignore-pnaclabi-checks", |
| 45 cl::desc("Ignore checking bitcode for PNaCl ABI violations"), |
| 46 cl::init(false)); |
| 47 |
42 /// Class to handle sign rotations in a human readable form. That is, | 48 /// Class to handle sign rotations in a human readable form. That is, |
43 /// the sign is in the low bit. The two special cases are: | 49 /// the sign is in the low bit. The two special cases are: |
44 /// 1) -1 is true for i1. | 50 /// 1) -1 is true for i1. |
45 /// 2) The representation allows -0 (which is different than 0). | 51 /// 2) The representation allows -0 (which is different than 0). |
46 class SignRotatedInt { | 52 class SignRotatedInt { |
47 public: | 53 public: |
48 SignRotatedInt(uint64_t Value, Type* ValueType) | 54 SignRotatedInt(uint64_t Value, Type* ValueType) |
49 : SignedValue(Value >> 1), | 55 : SignedValue(Value >> 1), |
50 IsNegated((Value & 0x1) | 56 IsNegated((Value & 0x1) |
51 && !(ValueType->isIntegerTy() | 57 && !(ValueType->isIntegerTy() |
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926 } | 932 } |
927 | 933 |
928 /// Increments the current number of defined global abbreviations. | 934 /// Increments the current number of defined global abbreviations. |
929 void IncNumGlobalAbbreviations(unsigned BlockID) { | 935 void IncNumGlobalAbbreviations(unsigned BlockID) { |
930 ++GlobalAbbrevsCountMap[BlockID]; | 936 ++GlobalAbbrevsCountMap[BlockID]; |
931 } | 937 } |
932 | 938 |
933 /// Verifies the given integer operator has the right type. Returns | 939 /// Verifies the given integer operator has the right type. Returns |
934 /// the operator. | 940 /// the operator. |
935 const char *VerifyIntArithmeticOp(const char *Op, Type *OpTy) { | 941 const char *VerifyIntArithmeticOp(const char *Op, Type *OpTy) { |
936 if (!PNaClABITypeChecker::isValidIntArithmeticType(OpTy)) { | 942 if (!IgnorePNaClABIChecks && |
| 943 !PNaClABITypeChecker::isValidIntArithmeticType(OpTy)) { |
937 Errors() << Op << ": Invalid integer arithmetic type: " << *OpTy; | 944 Errors() << Op << ": Invalid integer arithmetic type: " << *OpTy; |
938 } | 945 } |
939 return Op; | 946 return Op; |
940 } | 947 } |
941 | 948 |
942 // Checks the Alignment for loading/storing a value of type Ty. If | 949 // Checks the Alignment for loading/storing a value of type Ty. If |
943 // invalid, generates an appropriate error message. | 950 // invalid, generates an appropriate error message. |
944 void VerifyMemoryAccessAlignment(const char *Op, Type *Ty, | 951 void VerifyMemoryAccessAlignment(const char *Op, Type *Ty, |
945 uint64_t Alignment) { | 952 unsigned Alignment) { |
| 953 if (IgnorePNaClABIChecks) return; |
946 if (!PNaClABIProps::isAllowedAlignment(&DL, Alignment, Ty)) { | 954 if (!PNaClABIProps::isAllowedAlignment(&DL, Alignment, Ty)) { |
947 if (unsigned Expected = NaClGetExpectedLoadStoreAlignment(DL, Ty)) { | 955 if (unsigned Expected = NaClGetExpectedLoadStoreAlignment(DL, Ty)) { |
948 Errors() << Op << ": Illegal alignment for " << *Ty | 956 Errors() << Op << ": Illegal alignment for " << *Ty |
949 << ". Expects: " << Expected << "\n"; | 957 << ". Expects: " << Expected << "\n"; |
950 } else { | 958 } else { |
951 Errors() << Op << ": Not allowed for type: " << *Ty << "\n"; | 959 Errors() << Op << ": Not allowed for type: " << *Ty << "\n"; |
952 } | 960 } |
953 } | 961 } |
954 } | 962 } |
955 | 963 |
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1790 Errors() << "Integer record should have one argument. Found: " | 1798 Errors() << "Integer record should have one argument. Found: " |
1791 << Values.size() << "\n"; | 1799 << Values.size() << "\n"; |
1792 Size = 32; | 1800 Size = 32; |
1793 } | 1801 } |
1794 switch (Size) { | 1802 switch (Size) { |
1795 case 1: | 1803 case 1: |
1796 case 8: | 1804 case 8: |
1797 case 16: | 1805 case 16: |
1798 case 32: | 1806 case 32: |
1799 case 64: { | 1807 case 64: { |
1800 break; | 1808 break; |
| 1809 } |
| 1810 default: |
| 1811 if (!IgnorePNaClABIChecks) { |
| 1812 Errors() << "Integer record contains bad integer size: " |
| 1813 << Size << "\n"; |
| 1814 Size = 32; |
1801 } | 1815 } |
1802 default: | |
1803 Errors() << "Integer record contains bad integer size: " | |
1804 << Size << "\n"; | |
1805 Size = 32; | |
1806 break; | 1816 break; |
1807 } | 1817 } |
1808 Type *IntType = GetIntegerType(Size); | 1818 Type *IntType = GetIntegerType(Size); |
1809 Tokens() << NextTypeId() << Space() << "=" << Space() | 1819 Tokens() << NextTypeId() << Space() << "=" << Space() |
1810 << TokenizeType(IntType) << Semicolon() | 1820 << TokenizeType(IntType) << Semicolon() |
1811 << TokenizeAbbrevIndex() << Endline(); | 1821 << TokenizeAbbrevIndex() << Endline(); |
1812 InstallType(IntType); | 1822 InstallType(IntType); |
1813 break; | 1823 break; |
1814 } | 1824 } |
1815 case naclbitc::TYPE_CODE_VECTOR: { | 1825 case naclbitc::TYPE_CODE_VECTOR: { |
1816 // VECTOR: [numelts, eltty] | 1826 // VECTOR: [numelts, eltty] |
1817 if (Values.size() != 2) { | 1827 if (Values.size() != 2) { |
1818 Errors() << "Vector record should contain two arguments. Found: " | 1828 Errors() << "Vector record should contain two arguments. Found: " |
1819 << Values.size() << "\n"; | 1829 << Values.size() << "\n"; |
1820 InstallUnknownTypeForNextId(); | 1830 InstallUnknownTypeForNextId(); |
1821 break; | 1831 break; |
1822 } | 1832 } |
1823 Type *BaseType = GetType(Values[1]); | 1833 Type *BaseType = GetType(Values[1]); |
1824 if (!(BaseType->isIntegerTy() | 1834 if (!(BaseType->isIntegerTy() |
1825 || BaseType->isFloatTy() | 1835 || BaseType->isFloatTy() |
1826 || BaseType->isDoubleTy())) { | 1836 || BaseType->isDoubleTy())) { |
1827 Type *ErrorRecoveryTy = GetIntegerType(32); | 1837 Type *ErrorRecoveryTy = GetIntegerType(32); |
1828 Errors() << "Vectors can only be defined on primitive types. Found " | 1838 Errors() << "Vectors can only be defined on primitive types. Found " |
1829 << *BaseType << ". Assuming " << *ErrorRecoveryTy | 1839 << *BaseType << ". Assuming " << *ErrorRecoveryTy |
1830 << " instead.\n"; | 1840 << " instead.\n"; |
1831 BaseType = ErrorRecoveryTy; | 1841 BaseType = ErrorRecoveryTy; |
1832 } | 1842 } |
1833 uint64_t NumElements = Values[0]; | 1843 uint64_t NumElements = Values[0]; |
1834 Type *VecType = VectorType::get(BaseType, NumElements); | 1844 Type *VecType = VectorType::get(BaseType, NumElements); |
1835 if (!PNaClABITypeChecker::isValidVectorType(VecType)) { | 1845 if (!IgnorePNaClABIChecks && |
| 1846 !PNaClABITypeChecker::isValidVectorType(VecType)) { |
1836 Errors() << "Vector type " << *VecType << " not allowed.\n"; | 1847 Errors() << "Vector type " << *VecType << " not allowed.\n"; |
1837 } | 1848 } |
1838 Tokens() << NextTypeId() << Space() << "=" << Space() | 1849 Tokens() << NextTypeId() << Space() << "=" << Space() |
1839 << TokenizeType(VecType) << Semicolon() | 1850 << TokenizeType(VecType) << Semicolon() |
1840 << TokenizeAbbrevIndex() << Endline(); | 1851 << TokenizeAbbrevIndex() << Endline(); |
1841 InstallType(VecType); | 1852 InstallType(VecType); |
1842 break; | 1853 break; |
1843 } | 1854 } |
1844 case naclbitc::TYPE_CODE_FUNCTION: { | 1855 case naclbitc::TYPE_CODE_FUNCTION: { |
1845 // FUNCTION: [vararg, retty, paramty x N] | 1856 // FUNCTION: [vararg, retty, paramty x N] |
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2200 // Verify that expected intrinsic function type matches declared | 2211 // Verify that expected intrinsic function type matches declared |
2201 // type signature. | 2212 // type signature. |
2202 FunctionType *FcnTy = GetFunctionType(ValID); | 2213 FunctionType *FcnTy = GetFunctionType(ValID); |
2203 if (FcnTy->getNumParams() != IntrinTy->getNumParams()) { | 2214 if (FcnTy->getNumParams() != IntrinTy->getNumParams()) { |
2204 Errors() << "Intrinsic " << Name | 2215 Errors() << "Intrinsic " << Name |
2205 << " expects " << IntrinTy->getNumParams() | 2216 << " expects " << IntrinTy->getNumParams() |
2206 << " arguments. Found: " << FcnTy->getNumParams() | 2217 << " arguments. Found: " << FcnTy->getNumParams() |
2207 << "\n"; | 2218 << "\n"; |
2208 break; | 2219 break; |
2209 } | 2220 } |
2210 if (!PNaClABITypeChecker::IsPointerEquivType( | 2221 if (!IgnorePNaClABIChecks && !PNaClABITypeChecker::IsPointerEquivType( |
2211 IntrinTy->getReturnType(), FcnTy->getReturnType())) { | 2222 IntrinTy->getReturnType(), FcnTy->getReturnType())) { |
2212 Errors() << "Intrinsic " << Name | 2223 Errors() << "Intrinsic " << Name |
2213 << " expects return type " << *IntrinTy->getReturnType() | 2224 << " expects return type " << *IntrinTy->getReturnType() |
2214 << ". Found: " << *FcnTy->getReturnType() << "\n"; | 2225 << ". Found: " << *FcnTy->getReturnType() << "\n"; |
2215 break; | 2226 break; |
2216 } | 2227 } |
2217 for (size_t i = 0; i < FcnTy->getNumParams(); ++i) { | 2228 for (size_t i = 0; i < FcnTy->getNumParams(); ++i) { |
2218 if (!PNaClABITypeChecker::IsPointerEquivType( | 2229 if (!IgnorePNaClABIChecks && !PNaClABITypeChecker::IsPointerEquivType( |
2219 IntrinTy->getParamType(i), | 2230 IntrinTy->getParamType(i), |
2220 FcnTy->getParamType(i))) { | 2231 FcnTy->getParamType(i))) { |
2221 Errors() << "Intrinsic " << Name | 2232 Errors() << "Intrinsic " << Name |
2222 << " expects " << *IntrinTy->getParamType(i) | 2233 << " expects " << *IntrinTy->getParamType(i) |
2223 << " for argument " << (i+1) << ". Found: " | 2234 << " for argument " << (i+1) << ". Found: " |
2224 << *FcnTy->getParamType(i) << "\n"; | 2235 << *FcnTy->getParamType(i) << "\n"; |
2225 break; | 2236 break; |
2226 } | 2237 } |
2227 } | 2238 } |
2228 } | 2239 } |
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2456 | 2467 |
2457 bool isFloatingType(Type *Ty) { | 2468 bool isFloatingType(Type *Ty) { |
2458 return Ty->isFloatTy() || Ty->isDoubleTy(); | 2469 return Ty->isFloatTy() || Ty->isDoubleTy(); |
2459 } | 2470 } |
2460 | 2471 |
2461 /// Verifies that OpTy is an integer, or a vector of integers, for | 2472 /// Verifies that OpTy is an integer, or a vector of integers, for |
2462 /// operator Op. Generates error messages if appropriate. Returns Op. | 2473 /// operator Op. Generates error messages if appropriate. Returns Op. |
2463 const char *VerifyIntegerOrVectorOp(const char *Op, Type *OpTy) { | 2474 const char *VerifyIntegerOrVectorOp(const char *Op, Type *OpTy) { |
2464 Type *BaseTy = OpTy; | 2475 Type *BaseTy = OpTy; |
2465 if (OpTy->isVectorTy()) { | 2476 if (OpTy->isVectorTy()) { |
2466 if (!PNaClABITypeChecker::isValidVectorType(OpTy)) { | 2477 if (!IgnorePNaClABIChecks && |
| 2478 !PNaClABITypeChecker::isValidVectorType(OpTy)) { |
2467 Errors() << Op << ": invalid vector type: " << *OpTy << "\n"; | 2479 Errors() << Op << ": invalid vector type: " << *OpTy << "\n"; |
2468 return Op; | 2480 return Op; |
2469 } | 2481 } |
2470 BaseTy = OpTy->getVectorElementType(); | 2482 BaseTy = OpTy->getVectorElementType(); |
2471 } | 2483 } |
2472 if (BaseTy->isIntegerTy()) { | 2484 if (BaseTy->isIntegerTy()) { |
2473 if (PNaClABITypeChecker::isValidScalarType(BaseTy)) return Op; | 2485 if (IgnorePNaClABIChecks || |
| 2486 PNaClABITypeChecker::isValidScalarType(BaseTy)) { |
| 2487 return Op; |
| 2488 } |
2474 Errors() << Op << ": Invalid integer type: " << *OpTy << "\n"; | 2489 Errors() << Op << ": Invalid integer type: " << *OpTy << "\n"; |
2475 } else { | 2490 } else { |
2476 Errors() << Op << ": Expects integer type. Found: " << *OpTy << "\n"; | 2491 Errors() << Op << ": Expects integer type. Found: " << *OpTy << "\n"; |
2477 } | 2492 } |
2478 return Op; | 2493 return Op; |
2479 } | 2494 } |
2480 | 2495 |
2481 /// Verifies that Opty is a floating point type, or a vector of a | 2496 /// Verifies that Opty is a floating point type, or a vector of a |
2482 /// floating points, for operator Op. Generates error messages if | 2497 /// floating points, for operator Op. Generates error messages if |
2483 /// appropriate. Returns Op. | 2498 /// appropriate. Returns Op. |
2484 const char *VerifyFloatingOrVectorOp(const char *Op, Type *OpTy) { | 2499 const char *VerifyFloatingOrVectorOp(const char *Op, Type *OpTy) { |
2485 Type *BaseTy = OpTy; | 2500 Type *BaseTy = OpTy; |
2486 if (OpTy->isVectorTy()) { | 2501 if (OpTy->isVectorTy()) { |
2487 if (!PNaClABITypeChecker::isValidVectorType(OpTy)) { | 2502 if (!IgnorePNaClABIChecks && |
| 2503 !PNaClABITypeChecker::isValidVectorType(OpTy)) { |
2488 Errors() << Op << ": invalid vector type: " << *OpTy << "\n"; | 2504 Errors() << Op << ": invalid vector type: " << *OpTy << "\n"; |
2489 return Op; | 2505 return Op; |
2490 } | 2506 } |
2491 BaseTy = OpTy->getVectorElementType(); | 2507 BaseTy = OpTy->getVectorElementType(); |
2492 } | 2508 } |
2493 if (!isFloatingType(BaseTy)) { | 2509 if (!isFloatingType(BaseTy)) { |
2494 Errors() << Op << ": Expects floating point. Found " | 2510 Errors() << Op << ": Expects floating point. Found " |
2495 << OpTy << "\n"; | 2511 << OpTy << "\n"; |
2496 return Op; | 2512 return Op; |
2497 } | 2513 } |
2498 if (!PNaClABITypeChecker::isValidScalarType(BaseTy)) { | 2514 if (!IgnorePNaClABIChecks && |
| 2515 !PNaClABITypeChecker::isValidScalarType(BaseTy)) { |
2499 Errors() << Op << ": type not allowed: " << OpTy << "\n"; | 2516 Errors() << Op << ": type not allowed: " << OpTy << "\n"; |
2500 } | 2517 } |
2501 return Op; | 2518 return Op; |
2502 } | 2519 } |
2503 | 2520 |
2504 /// Op is the name of the operation that called this. Checks if | 2521 /// Op is the name of the operation that called this. Checks if |
2505 /// OpTy is either a (non-void) scalar, or a vector of scalars. If | 2522 /// OpTy is either a (non-void) scalar, or a vector of scalars. If |
2506 /// not, generates an appropriate error message. Always returns Op. | 2523 /// not, generates an appropriate error message. Always returns Op. |
2507 const char *VerifyScalarOrVectorOp(const char *Op, Type *OpTy) { | 2524 const char *VerifyScalarOrVectorOp(const char *Op, Type *OpTy) { |
| 2525 if (IgnorePNaClABIChecks) return Op; |
2508 if (PNaClABITypeChecker::isValidScalarType(OpTy)) { | 2526 if (PNaClABITypeChecker::isValidScalarType(OpTy)) { |
2509 if (OpTy->isVoidTy()) | 2527 if (OpTy->isVoidTy()) |
2510 Errors() << Op << ": Type void not allowed\n"; | 2528 Errors() << Op << ": Type void not allowed\n"; |
2511 } else if (!PNaClABITypeChecker::isValidVectorType(OpTy)) { | 2529 } else if (!PNaClABITypeChecker::isValidVectorType(OpTy)) { |
2512 Errors() << Op << ": Expects scalar/vector type. Found: " | 2530 Errors() << Op << ": Expects scalar/vector type. Found: " |
2513 << OpTy << "\n"; | 2531 << OpTy << "\n"; |
2514 } | 2532 } |
2515 return Op; | 2533 return Op; |
2516 } | 2534 } |
2517 | 2535 |
2518 void VerifyIndexedVector(const char *Op, uint32_t VecValue, | 2536 void VerifyIndexedVector(const char *Op, uint32_t VecValue, |
2519 uint32_t IdxValue) { | 2537 uint32_t IdxValue) { |
2520 Type *VecType = GetValueType(VecValue); | 2538 Type *VecType = GetValueType(VecValue); |
2521 Type *IdxType = GetValueType(IdxValue); | 2539 Type *IdxType = GetValueType(IdxValue); |
2522 if (!PNaClABITypeChecker::isValidVectorType(VecType)){ | 2540 if (!IgnorePNaClABIChecks && |
| 2541 !PNaClABITypeChecker::isValidVectorType(VecType)){ |
2523 if (VecType->isVectorTy()) | 2542 if (VecType->isVectorTy()) |
2524 Errors() << Op << ": Vector type " << *VecType << " not allowed\n"; | 2543 Errors() << Op << ": Vector type " << *VecType << " not allowed\n"; |
2525 else | 2544 else |
2526 Errors() << Op << ": Vector type expected. Found: " << *VecType << "\n"; | 2545 Errors() << Op << ": Vector type expected. Found: " << *VecType << "\n"; |
2527 } | 2546 } |
2528 // Note: This restriction appears to be LLVM specific. | 2547 // Note: This restriction appears to be LLVM specific. |
2529 if (!IdxType->isIntegerTy(32)) { | 2548 if (!IdxType->isIntegerTy(32)) { |
2530 Errors() << Op << ": Index not i32. Found: " << *IdxType << "\n"; | 2549 Errors() << Op << ": Index not i32. Found: " << *IdxType << "\n"; |
2531 } | 2550 } |
2532 BitcodeId IdxId(GetBitcodeId(IdxValue)); | 2551 BitcodeId IdxId(GetBitcodeId(IdxValue)); |
2533 if (IdxId.GetKind() != 'c') { | 2552 if (IdxId.GetKind() != 'c') { |
2534 Errors() << Op << ": Vector index not constant: " << IdxId << "\n"; | 2553 Errors() << Op << ": Vector index not constant: " << IdxId << "\n"; |
2535 // TODO(kschimpf): We should check that Idx is a constant with | 2554 // TODO(kschimpf): We should check that Idx is a constant with |
2536 // valid access. However, we currently don't store constant | 2555 // valid access. However, we currently don't store constant |
2537 // values, so it can't be tested. | 2556 // values, so it can't be tested. |
2538 } | 2557 } |
2539 } | 2558 } |
2540 | 2559 |
2541 /// Checks if block Value is a valid branch target for the current | 2560 /// Checks if block Value is a valid branch target for the current |
2542 /// function block. If not, generates an appropriate error message. | 2561 /// function block. If not, generates an appropriate error message. |
2543 void VerifyBranchRange(uint64_t Value) { | 2562 void VerifyBranchRange(uint64_t Value) { |
2544 if (0 == Value || Value >= ExpectedNumBbs) { | 2563 if (0 == Value || Value >= ExpectedNumBbs) { |
2545 Errors() << "Branch " << BitcodeId('b', Value) | 2564 Errors() << "Branch " << BitcodeId('b', Value) |
2546 << " out of range. Not in [1," << ExpectedNumBbs << "]\n"; | 2565 << " out of range. Not in [1," << ExpectedNumBbs << "]\n"; |
2547 } | 2566 } |
2548 } | 2567 } |
| 2568 |
| 2569 /// Convert alignment exponent (i.e. power of two (or zero)) to the |
| 2570 /// corresponding alignment to use. If alignment is too large, it generates |
| 2571 /// an error message and returns 0. |
| 2572 unsigned getAlignmentValue(uint64_t Exponent); |
2549 }; | 2573 }; |
2550 | 2574 |
2551 NaClDisFunctionParser::NaClDisFunctionParser( | 2575 NaClDisFunctionParser::NaClDisFunctionParser( |
2552 unsigned BlockID, | 2576 unsigned BlockID, |
2553 NaClDisBlockParser *EnclosingParser) | 2577 NaClDisBlockParser *EnclosingParser) |
2554 : NaClDisBlockParser(BlockID, EnclosingParser), | 2578 : NaClDisBlockParser(BlockID, EnclosingParser), |
2555 CurrentBbIndex(-1), | 2579 CurrentBbIndex(-1), |
2556 ExpectedNumBbs(0), | 2580 ExpectedNumBbs(0), |
2557 InstIsTerminating(false) { | 2581 InstIsTerminating(false) { |
2558 Context->ResetLocalCounters(); | 2582 Context->ResetLocalCounters(); |
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2571 | 2595 |
2572 // Now install parameters. | 2596 // Now install parameters. |
2573 for (size_t Index = 0; Index < FcnTy->getFunctionNumParams(); ++Index) { | 2597 for (size_t Index = 0; Index < FcnTy->getFunctionNumParams(); ++Index) { |
2574 InstallParamType(FcnTy->getFunctionParamType(Index)); | 2598 InstallParamType(FcnTy->getFunctionParamType(Index)); |
2575 } | 2599 } |
2576 } | 2600 } |
2577 | 2601 |
2578 void NaClDisFunctionParser::PrintBlockHeader() { | 2602 void NaClDisFunctionParser::PrintBlockHeader() { |
2579 Tokens() << "function" << Space(); | 2603 Tokens() << "function" << Space(); |
2580 BitcodeId FunctionId('f', FcnId); | 2604 BitcodeId FunctionId('f', FcnId); |
2581 if (!(Context->IsFunctionIntrinsic(FcnId) | 2605 bool InvalidSignature = true; // until proven otherwise. |
2582 || PNaClABITypeChecker::isValidFunctionType(FcnTy))) { | 2606 if (Context->IsFunctionIntrinsic(FcnId)) |
| 2607 InvalidSignature = false; |
| 2608 else if (IgnorePNaClABIChecks || |
| 2609 PNaClABITypeChecker::isValidFunctionType(FcnTy)) { |
| 2610 InvalidSignature = false; |
| 2611 } |
| 2612 if (InvalidSignature) { |
2583 Errors() << "Invalid type signature for " | 2613 Errors() << "Invalid type signature for " |
2584 << BitcodeId('f', FcnId) << ": " << *FcnTy << "\n"; | 2614 << BitcodeId('f', FcnId) << ": " << *FcnTy << "\n"; |
2585 } | 2615 } |
2586 Tokens() << TokenizeFunctionSignature(FcnTy, &FunctionId) | 2616 Tokens() << TokenizeFunctionSignature(FcnTy, &FunctionId) |
2587 << Space() << OpenCurly() | 2617 << Space() << OpenCurly() |
2588 << Space() << Space() << "// BlockID = " << GetBlockID() | 2618 << Space() << Space() << "// BlockID = " << GetBlockID() |
2589 << Endline(); | 2619 << Endline(); |
2590 } | 2620 } |
2591 | 2621 |
2592 const char *NaClDisFunctionParser::GetBinop(uint32_t Opcode, Type *Ty) { | 2622 const char *NaClDisFunctionParser::GetBinop(uint32_t Opcode, Type *Ty) { |
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2759 return "ult"; | 2789 return "ult"; |
2760 case CmpInst::FCMP_ULE: | 2790 case CmpInst::FCMP_ULE: |
2761 return "ule"; | 2791 return "ule"; |
2762 case CmpInst::FCMP_UNE: | 2792 case CmpInst::FCMP_UNE: |
2763 return "une"; | 2793 return "une"; |
2764 case CmpInst::FCMP_TRUE: | 2794 case CmpInst::FCMP_TRUE: |
2765 return "true"; | 2795 return "true"; |
2766 } | 2796 } |
2767 } | 2797 } |
2768 | 2798 |
| 2799 namespace { |
| 2800 |
| 2801 static const unsigned MaxAlignmentExponent = 29; |
| 2802 static_assert( |
| 2803 (1u << MaxAlignmentExponent) == Value::MaximumAlignment, |
| 2804 "Inconsistency between Value.MaxAlignment and PNaCl alignment limit"); |
| 2805 } |
| 2806 |
| 2807 unsigned NaClDisFunctionParser::getAlignmentValue(uint64_t Exponent) { |
| 2808 if (Exponent > MaxAlignmentExponent + 1) { |
| 2809 Errors() << "Alignment can't be greater than 2**" << MaxAlignmentExponent |
| 2810 << ". Found: 2**" << (Exponent - 1) << "\n"; |
| 2811 return 0; |
| 2812 } |
| 2813 return (1 << static_cast<unsigned>(Exponent)) >> 1; |
| 2814 } |
| 2815 |
2769 bool NaClDisFunctionParser::ParseBlock(unsigned BlockID) { | 2816 bool NaClDisFunctionParser::ParseBlock(unsigned BlockID) { |
2770 ObjDumpSetRecordBitAddress(GetBlock().GetStartBit()); | 2817 ObjDumpSetRecordBitAddress(GetBlock().GetStartBit()); |
2771 switch (BlockID) { | 2818 switch (BlockID) { |
2772 case naclbitc::CONSTANTS_BLOCK_ID: { | 2819 case naclbitc::CONSTANTS_BLOCK_ID: { |
2773 NaClDisConstantsParser Parser(BlockID, this); | 2820 NaClDisConstantsParser Parser(BlockID, this); |
2774 return Parser.ParseThisBlock(); | 2821 return Parser.ParseThisBlock(); |
2775 } | 2822 } |
2776 case naclbitc::VALUE_SYMTAB_BLOCK_ID: { | 2823 case naclbitc::VALUE_SYMTAB_BLOCK_ID: { |
2777 if (!PNaClAllowLocalSymbolTables) break; | 2824 if (!PNaClAllowLocalSymbolTables) break; |
2778 NaClDisValueSymtabParser Parser(BlockID, this); | 2825 NaClDisValueSymtabParser Parser(BlockID, this); |
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2907 << "Function switch record expects at least 4 arguments. Found: " | 2954 << "Function switch record expects at least 4 arguments. Found: " |
2908 << Values.size() << "\n"; | 2955 << Values.size() << "\n"; |
2909 break; | 2956 break; |
2910 } | 2957 } |
2911 Type *OpType = GetType(Values[0]); | 2958 Type *OpType = GetType(Values[0]); |
2912 uint32_t CondId = RelativeToAbsId(Values[1]); | 2959 uint32_t CondId = RelativeToAbsId(Values[1]); |
2913 Type *CondType = GetValueType(CondId); | 2960 Type *CondType = GetValueType(CondId); |
2914 if (OpType != CondType) | 2961 if (OpType != CondType) |
2915 Errors() << "Specified select type " << *OpType << " but found: " | 2962 Errors() << "Specified select type " << *OpType << " but found: " |
2916 << *CondType << "\n"; | 2963 << *CondType << "\n"; |
2917 if (!PNaClABITypeChecker::isValidSwitchConditionType(CondType)) | 2964 if (!IgnorePNaClABIChecks && |
| 2965 !PNaClABITypeChecker::isValidSwitchConditionType(CondType)) { |
2918 Errors() << PNaClABITypeChecker::ExpectedSwitchConditionType(CondType) | 2966 Errors() << PNaClABITypeChecker::ExpectedSwitchConditionType(CondType) |
2919 << "\n"; | 2967 << "\n"; |
| 2968 } |
2920 uint32_t DefaultBb = Values[2]; | 2969 uint32_t DefaultBb = Values[2]; |
2921 unsigned NumCases = Values[3]; | 2970 unsigned NumCases = Values[3]; |
2922 VerifyBranchRange(DefaultBb); | 2971 VerifyBranchRange(DefaultBb); |
2923 Tokens() << "switch" << Space() << StartCluster() << StartCluster() | 2972 Tokens() << "switch" << Space() << StartCluster() << StartCluster() |
2924 << TokenizeType(OpType) << Space() << GetBitcodeId(CondId) | 2973 << TokenizeType(OpType) << Space() << GetBitcodeId(CondId) |
2925 << FinishCluster() << Space() << "{" << FinishCluster() | 2974 << FinishCluster() << Space() << "{" << FinishCluster() |
2926 << Endline(); | 2975 << Endline(); |
2927 IncAssemblyIndent(); | 2976 IncAssemblyIndent(); |
2928 Tokens() << StartCluster() << "default" << ":" << Space() | 2977 Tokens() << StartCluster() << "default" << ":" << Space() |
2929 << FinishCluster() << StartCluster() << "br" << Space() << "label" | 2978 << FinishCluster() << StartCluster() << "br" << Space() << "label" |
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2988 case naclbitc::FUNC_CODE_INST_ALLOCA: { | 3037 case naclbitc::FUNC_CODE_INST_ALLOCA: { |
2989 // ALLOCA: [size, align] | 3038 // ALLOCA: [size, align] |
2990 if (Values.size() != 2) { | 3039 if (Values.size() != 2) { |
2991 Errors() << "Function alloca record expects 2 arguments. Found: " | 3040 Errors() << "Function alloca record expects 2 arguments. Found: " |
2992 << Values.size() << "\n"; | 3041 << Values.size() << "\n"; |
2993 break; | 3042 break; |
2994 } | 3043 } |
2995 uint32_t SizeOp = RelativeToAbsId(Values[0]); | 3044 uint32_t SizeOp = RelativeToAbsId(Values[0]); |
2996 Type* SizeType = GetValueType(SizeOp); | 3045 Type* SizeType = GetValueType(SizeOp); |
2997 BitcodeId SizeId(GetBitcodeId(SizeOp)); | 3046 BitcodeId SizeId(GetBitcodeId(SizeOp)); |
2998 uint64_t Alignment = (1 << Values[1]) >> 1; | 3047 unsigned Alignment = getAlignmentValue(Values[1]); |
2999 if (!PNaClABIProps::isAllocaSizeType(SizeType)) | 3048 if (!IgnorePNaClABIChecks && !PNaClABIProps::isAllocaSizeType(SizeType)) |
3000 Errors() << PNaClABIProps::ExpectedAllocaSizeType() << "\n"; | 3049 Errors() << PNaClABIProps::ExpectedAllocaSizeType() << "\n"; |
3001 // TODO(kschimpf) Are there any constraints on alignment? | 3050 // TODO(kschimpf) Are there any constraints on alignment? |
3002 Tokens() << NextInstId() << Space() << "=" << Space() << StartCluster() | 3051 Tokens() << NextInstId() << Space() << "=" << Space() << StartCluster() |
3003 << "alloca" << Space() << "i8" << Comma() << FinishCluster() | 3052 << "alloca" << Space() << "i8" << Comma() << FinishCluster() |
3004 << Space() << StartCluster() << TokenizeType(SizeType) << Space() | 3053 << Space() << StartCluster() << TokenizeType(SizeType) << Space() |
3005 << SizeId << Comma() << FinishCluster() << Space() | 3054 << SizeId << Comma() << FinishCluster() << Space() |
3006 << StartCluster() <<"align" << Space() << Alignment << Semicolon() | 3055 << StartCluster() <<"align" << Space() << Alignment << Semicolon() |
3007 << FinishCluster(); | 3056 << FinishCluster(); |
3008 InstallInstType(GetPointerType()); | 3057 InstallInstType(GetPointerType()); |
3009 break; | 3058 break; |
3010 } | 3059 } |
3011 case naclbitc::FUNC_CODE_INST_LOAD: { | 3060 case naclbitc::FUNC_CODE_INST_LOAD: { |
3012 // LOAD: [op, align, ty] | 3061 // LOAD: [op, align, ty] |
3013 if (Values.size() != 3) { | 3062 if (Values.size() != 3) { |
3014 Errors() << "Function load record expects 3 arguments. Found: " | 3063 Errors() << "Function load record expects 3 arguments. Found: " |
3015 << Values.size() << "\n"; | 3064 << Values.size() << "\n"; |
3016 break; | 3065 break; |
3017 } | 3066 } |
3018 uint64_t Alignment = (1 << Values[1]) >> 1; | 3067 unsigned Alignment = getAlignmentValue(Values[1]); |
3019 Type *LoadType = GetType(Values[2]); | 3068 Type *LoadType = GetType(Values[2]); |
3020 VerifyScalarOrVectorOp("load", LoadType); | 3069 VerifyScalarOrVectorOp("load", LoadType); |
3021 Context->VerifyMemoryAccessAlignment("load", LoadType, Alignment); | 3070 Context->VerifyMemoryAccessAlignment("load", LoadType, Alignment); |
3022 Tokens() << NextInstId() << Space() << "=" << Space() << StartCluster() | 3071 Tokens() << NextInstId() << Space() << "=" << Space() << StartCluster() |
3023 << "load" << Space() << TokenizeType(LoadType) << "*" << Space() | 3072 << "load" << Space() << TokenizeType(LoadType) << "*" << Space() |
3024 << GetBitcodeId(RelativeToAbsId(Values[0])) << Comma() | 3073 << GetBitcodeId(RelativeToAbsId(Values[0])) << Comma() |
3025 << FinishCluster() << Space() << StartCluster() | 3074 << FinishCluster() << Space() << StartCluster() |
3026 << "align" << Space() << Alignment << Semicolon() | 3075 << "align" << Space() << Alignment << Semicolon() |
3027 << FinishCluster(); | 3076 << FinishCluster(); |
3028 InstallInstType(LoadType); | 3077 InstallInstType(LoadType); |
3029 break; | 3078 break; |
3030 } | 3079 } |
3031 case naclbitc::FUNC_CODE_INST_STORE: { | 3080 case naclbitc::FUNC_CODE_INST_STORE: { |
3032 // STORE: [ptr, val, align] | 3081 // STORE: [ptr, val, align] |
3033 if (Values.size() != 3) { | 3082 if (Values.size() != 3) { |
3034 Errors() << "Function store record expects 3 arguments. Found: " | 3083 Errors() << "Function store record expects 3 arguments. Found: " |
3035 << Values.size() << "\n"; | 3084 << Values.size() << "\n"; |
3036 break; | 3085 break; |
3037 } | 3086 } |
3038 uint64_t Alignment = (1 << Values[2]) >> 1; | 3087 unsigned Alignment = getAlignmentValue(Values[2]); |
3039 uint32_t Val = RelativeToAbsId(Values[1]); | 3088 uint32_t Val = RelativeToAbsId(Values[1]); |
3040 Type *ValType = GetValueType(Val); | 3089 Type *ValType = GetValueType(Val); |
3041 VerifyScalarOrVectorOp("store", ValType); | 3090 VerifyScalarOrVectorOp("store", ValType); |
3042 Context->VerifyMemoryAccessAlignment("store", ValType, Alignment); | 3091 Context->VerifyMemoryAccessAlignment("store", ValType, Alignment); |
3043 Tokens() << StartCluster() << "store" << Space() << TokenizeType(ValType) | 3092 Tokens() << StartCluster() << "store" << Space() << TokenizeType(ValType) |
3044 << Space() << GetBitcodeId(Val) << Comma() << FinishCluster() | 3093 << Space() << GetBitcodeId(Val) << Comma() << FinishCluster() |
3045 << Space() << StartCluster() << TokenizeType(ValType) << "*" | 3094 << Space() << StartCluster() << TokenizeType(ValType) << "*" |
3046 << Space() << GetBitcodeId(RelativeToAbsId(Values[0])) << Comma() | 3095 << Space() << GetBitcodeId(RelativeToAbsId(Values[0])) << Comma() |
3047 << FinishCluster() << Space() << StartCluster() << "align" | 3096 << FinishCluster() << Space() << StartCluster() << "align" |
3048 << Space() << Alignment << Semicolon() << FinishCluster(); | 3097 << Space() << Alignment << Semicolon() << FinishCluster(); |
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3179 Errors() << "Call indirect record expects at least 3 arguments. Found: " | 3228 Errors() << "Call indirect record expects at least 3 arguments. Found: " |
3180 << Values.size() << "\n"; | 3229 << Values.size() << "\n"; |
3181 break; | 3230 break; |
3182 } | 3231 } |
3183 } | 3232 } |
3184 unsigned IsTailCall = (Values[0] & 0x1); | 3233 unsigned IsTailCall = (Values[0] & 0x1); |
3185 CallingConv::ID CallingConv; | 3234 CallingConv::ID CallingConv; |
3186 uint32_t FcnId = RelativeToAbsId(Values[1]); | 3235 uint32_t FcnId = RelativeToAbsId(Values[1]); |
3187 if (!naclbitc::DecodeCallingConv(Values[0]>>1, CallingConv)) | 3236 if (!naclbitc::DecodeCallingConv(Values[0]>>1, CallingConv)) |
3188 Errors() << "Call unknown calling convention:" << (Values[0]>>1) << "\n"; | 3237 Errors() << "Call unknown calling convention:" << (Values[0]>>1) << "\n"; |
3189 if (!PNaClABIProps::isValidCallingConv(CallingConv)) { | 3238 if (!IgnorePNaClABIChecks && |
| 3239 !PNaClABIProps::isValidCallingConv(CallingConv)) { |
3190 Errors() << "Call uses disallowed calling convention: " | 3240 Errors() << "Call uses disallowed calling convention: " |
3191 << PNaClABIProps::CallingConvName(CallingConv) << "(" | 3241 << PNaClABIProps::CallingConvName(CallingConv) << "(" |
3192 << CallingConv << ")\n"; | 3242 << CallingConv << ")\n"; |
3193 } | 3243 } |
3194 FunctionType *FcnType = 0; | 3244 FunctionType *FcnType = 0; |
3195 Type *ReturnType = 0; | 3245 Type *ReturnType = 0; |
3196 size_t ArgIndex = 2; | 3246 size_t ArgIndex = 2; |
3197 // Flag defining if type checking should be done on argument/return | 3247 // Flag defining if type checking should be done on argument/return |
3198 // types. | 3248 // types. |
3199 bool CheckArgRetTypes = true; | 3249 bool CheckArgRetTypes = true; |
(...skipping 13 matching lines...) Expand all Loading... |
3213 } else { | 3263 } else { |
3214 ReturnType = GetType(Values[2]); | 3264 ReturnType = GetType(Values[2]); |
3215 ArgIndex = 3; | 3265 ArgIndex = 3; |
3216 } | 3266 } |
3217 if (!ReturnType->isVoidTy()) { | 3267 if (!ReturnType->isVoidTy()) { |
3218 Tokens() << NextInstId() << Space() << "=" << Space(); | 3268 Tokens() << NextInstId() << Space() << "=" << Space(); |
3219 } | 3269 } |
3220 if (IsTailCall) { | 3270 if (IsTailCall) { |
3221 Tokens() << "tail" << Space(); | 3271 Tokens() << "tail" << Space(); |
3222 } | 3272 } |
3223 if (CheckArgRetTypes && !PNaClABITypeChecker::isValidParamType(ReturnType)) | 3273 if (CheckArgRetTypes && |
| 3274 !IgnorePNaClABIChecks && |
| 3275 !PNaClABITypeChecker::isValidParamType(ReturnType)) { |
3224 Errors() << "Invalid return type: " << *ReturnType << "\n"; | 3276 Errors() << "Invalid return type: " << *ReturnType << "\n"; |
| 3277 } |
3225 Tokens() << "call" << Space(); | 3278 Tokens() << "call" << Space(); |
3226 if (CallingConv != CallingConv::C) { | 3279 if (CallingConv != CallingConv::C) { |
3227 Tokens() << PNaClABIProps::CallingConvName(CallingConv) << Space(); | 3280 Tokens() << PNaClABIProps::CallingConvName(CallingConv) << Space(); |
3228 } | 3281 } |
3229 Tokens() << TokenizeType(ReturnType) << Space() | 3282 Tokens() << TokenizeType(ReturnType) << Space() |
3230 << StartCluster() << GetBitcodeId(FcnId) << OpenParen() | 3283 << StartCluster() << GetBitcodeId(FcnId) << OpenParen() |
3231 << StartCluster(); | 3284 << StartCluster(); |
3232 unsigned ParamIndex = 0; | 3285 unsigned ParamIndex = 0; |
3233 unsigned NumParams = Values.size() + 1 - ArgIndex; | 3286 unsigned NumParams = Values.size() + 1 - ArgIndex; |
3234 for (size_t i = ArgIndex; i < Values.size(); ++i, ++ParamIndex) { | 3287 for (size_t i = ArgIndex; i < Values.size(); ++i, ++ParamIndex) { |
3235 uint32_t ParamId = RelativeToAbsId(Values[i]); | 3288 uint32_t ParamId = RelativeToAbsId(Values[i]); |
3236 Type *ParamType = GetValueType(ParamId); | 3289 Type *ParamType = GetValueType(ParamId); |
3237 if (CheckArgRetTypes && !PNaClABITypeChecker::isValidParamType(ParamType)) | 3290 if (CheckArgRetTypes && |
| 3291 !IgnorePNaClABIChecks && |
| 3292 !PNaClABITypeChecker::isValidParamType(ParamType)) { |
3238 Errors() << "invalid type for parameter " << i << ": " | 3293 Errors() << "invalid type for parameter " << i << ": " |
3239 << *ParamType << "\n"; | 3294 << *ParamType << "\n"; |
| 3295 } |
3240 if (FcnType) { | 3296 if (FcnType) { |
3241 if (ParamIndex < FcnType->getNumParams()) { | 3297 if (ParamIndex < FcnType->getNumParams()) { |
3242 Type *ExpectedType = FcnType->getParamType(ParamIndex); | 3298 Type *ExpectedType = FcnType->getParamType(ParamIndex); |
3243 if (ParamType != ExpectedType) { | 3299 if (ParamType != ExpectedType) { |
3244 Warnings() << "Parameter " << (ParamIndex + 1) << " mismatch: " | 3300 Warnings() << "Parameter " << (ParamIndex + 1) << " mismatch: " |
3245 << *ParamType << " and " << *ExpectedType << "\n"; | 3301 << *ParamType << " and " << *ExpectedType << "\n"; |
3246 } | 3302 } |
3247 } | 3303 } |
3248 else if (ParamIndex == FcnType->getNumParams()) { | 3304 else if (ParamIndex == FcnType->getNumParams()) { |
3249 Warnings() << "Call expects " << FcnType->getNumParams() | 3305 Warnings() << "Call expects " << FcnType->getNumParams() |
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3309 // was checked in method ProcessRecord. | 3365 // was checked in method ProcessRecord. |
3310 // Note: If the function was defined, the type was checked in | 3366 // Note: If the function was defined, the type was checked in |
3311 // NaClDisFunctionParser::PrintBlockHeader. | 3367 // NaClDisFunctionParser::PrintBlockHeader. |
3312 if (Context->HasDefinedFunctionIndex(NextFcnDefinedId) | 3368 if (Context->HasDefinedFunctionIndex(NextFcnDefinedId) |
3313 && i == Context->GetDefinedFunctionIndex(NextFcnDefinedId)) { | 3369 && i == Context->GetDefinedFunctionIndex(NextFcnDefinedId)) { |
3314 ++NextFcnDefinedId; | 3370 ++NextFcnDefinedId; |
3315 continue; | 3371 continue; |
3316 } | 3372 } |
3317 if (FunctionType *FcnTy = dyn_cast<FunctionType>(GetFunctionValueType(i))) { | 3373 if (FunctionType *FcnTy = dyn_cast<FunctionType>(GetFunctionValueType(i))) { |
3318 if (!Context->IsFunctionIntrinsic(i) && | 3374 if (!Context->IsFunctionIntrinsic(i) && |
| 3375 !IgnorePNaClABIChecks && |
3319 !PNaClABITypeChecker::isValidFunctionType(FcnTy)) { | 3376 !PNaClABITypeChecker::isValidFunctionType(FcnTy)) { |
3320 Context->SetRecordAddressToFunctionIdAddress(i); | 3377 Context->SetRecordAddressToFunctionIdAddress(i); |
3321 Errors() << "Invalid type signature for " | 3378 Errors() << "Invalid type signature for " |
3322 << BitcodeId('f', i) << ": " << *FcnTy << "\n"; | 3379 << BitcodeId('f', i) << ": " << *FcnTy << "\n"; |
3323 } | 3380 } |
3324 } | 3381 } |
3325 } | 3382 } |
3326 } | 3383 } |
3327 | 3384 |
3328 bool NaClDisModuleParser::ParseBlock(unsigned BlockID) { | 3385 bool NaClDisModuleParser::ParseBlock(unsigned BlockID) { |
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3382 } | 3439 } |
3383 bool IsProto = (Values[2] != 0); | 3440 bool IsProto = (Values[2] != 0); |
3384 Tokens() << StartCluster() << (IsProto ? "declare" : "define"); | 3441 Tokens() << StartCluster() << (IsProto ? "declare" : "define"); |
3385 uint32_t FcnId = GetNumFunctions(); | 3442 uint32_t FcnId = GetNumFunctions(); |
3386 BitcodeId FcnName('f', FcnId); | 3443 BitcodeId FcnName('f', FcnId); |
3387 std::string FcnStrName(FcnName.GetName()); | 3444 std::string FcnStrName(FcnName.GetName()); |
3388 GlobalValue::LinkageTypes Linkage; | 3445 GlobalValue::LinkageTypes Linkage; |
3389 if (!naclbitc::DecodeLinkage(Values[3], Linkage)) { | 3446 if (!naclbitc::DecodeLinkage(Values[3], Linkage)) { |
3390 Errors() << "Unknown linkage value: " << Values[3] << "\n"; | 3447 Errors() << "Unknown linkage value: " << Values[3] << "\n"; |
3391 } else { | 3448 } else { |
3392 if (!PNaClABIProps::isValidGlobalLinkage(Linkage)) | 3449 if (!IgnorePNaClABIChecks && |
| 3450 !PNaClABIProps::isValidGlobalLinkage(Linkage)) { |
3393 Errors() << "Disallowed linkage type: " | 3451 Errors() << "Disallowed linkage type: " |
3394 << PNaClABIProps::LinkageName(Linkage) << "\n"; | 3452 << PNaClABIProps::LinkageName(Linkage) << "\n"; |
| 3453 } |
3395 Tokens() << Space() << PNaClABIProps::LinkageName(Linkage); | 3454 Tokens() << Space() << PNaClABIProps::LinkageName(Linkage); |
3396 } | 3455 } |
3397 CallingConv::ID CallingConv; | 3456 CallingConv::ID CallingConv; |
3398 if (!naclbitc::DecodeCallingConv(Values[1], CallingConv)) { | 3457 if (!naclbitc::DecodeCallingConv(Values[1], CallingConv)) { |
3399 Errors() << "Unknown calling convention value: " << Values[1] << "\n"; | 3458 Errors() << "Unknown calling convention value: " << Values[1] << "\n"; |
3400 } else if (PNaClABIProps::isValidCallingConv(CallingConv)) { | 3459 } else if (PNaClABIProps::isValidCallingConv(CallingConv)) { |
3401 if (CallingConv != CallingConv::C) { | 3460 if (CallingConv != CallingConv::C) { |
3402 Tokens() << Space() << PNaClABIProps::CallingConvName(CallingConv); | 3461 Tokens() << Space() << PNaClABIProps::CallingConvName(CallingConv); |
3403 } | 3462 } |
3404 } else { | 3463 } else { |
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3515 ObjDump.Error() << "Expected 1 top level block in bitcode: Found:" | 3574 ObjDump.Error() << "Expected 1 top level block in bitcode: Found:" |
3516 << NumBlocksRead << "\n"; | 3575 << NumBlocksRead << "\n"; |
3517 ErrorsFound = true; | 3576 ErrorsFound = true; |
3518 } | 3577 } |
3519 | 3578 |
3520 ObjDump.Flush(); | 3579 ObjDump.Flush(); |
3521 return ErrorsFound || Parser.GetNumErrors() > 0; | 3580 return ErrorsFound || Parser.GetNumErrors() > 0; |
3522 } | 3581 } |
3523 | 3582 |
3524 } | 3583 } |
OLD | NEW |