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| 1 //===- subzero/src/IceTypes.cpp - Primitive type properties ---------------===// | 1 //===- subzero/src/IceTypes.cpp - Primitive type properties ---------------===// |
| 2 // | 2 // |
| 3 // The Subzero Code Generator | 3 // The Subzero Code Generator |
| 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 /// \file | 10 /// \file |
| (...skipping 19 matching lines...) Expand all Loading... |
| 30 | 30 |
| 31 // Define a temporary set of enum values based on ICETYPE_TABLE | 31 // Define a temporary set of enum values based on ICETYPE_TABLE |
| 32 enum { | 32 enum { |
| 33 #define X(tag, sizeLog2, align, elts, elty, str) _table_tag_##tag, | 33 #define X(tag, sizeLog2, align, elts, elty, str) _table_tag_##tag, |
| 34 ICETYPE_TABLE | 34 ICETYPE_TABLE |
| 35 #undef X | 35 #undef X |
| 36 _enum_table_tag_Names | 36 _enum_table_tag_Names |
| 37 }; | 37 }; |
| 38 // Define a temporary set of enum values based on ICETYPE_PROPS_TABLE | 38 // Define a temporary set of enum values based on ICETYPE_PROPS_TABLE |
| 39 enum { | 39 enum { |
| 40 #define X(tag, IsVec, IsInt, IsFloat, IsIntArith, IsLoadStore, CompareResult) \ | 40 #define X(tag, IsVec, IsInt, IsFloat, IsIntArith, IsLoadStore, IsParam, \ |
| 41 CompareResult) \ |
| 41 _props_table_tag_##tag, | 42 _props_table_tag_##tag, |
| 42 ICETYPE_PROPS_TABLE | 43 ICETYPE_PROPS_TABLE |
| 43 #undef X | 44 #undef X |
| 44 _enum_props_table_tag_Names | 45 _enum_props_table_tag_Names |
| 45 }; | 46 }; |
| 46 // Assert that tags in ICETYPE_TABLE are also in ICETYPE_PROPS_TABLE. | 47 // Assert that tags in ICETYPE_TABLE are also in ICETYPE_PROPS_TABLE. |
| 47 #define X(tag, sizeLog2, align, elts, elty, str) \ | 48 #define X(tag, sizeLog2, align, elts, elty, str) \ |
| 48 static_assert( \ | 49 static_assert( \ |
| 49 (unsigned)_table_tag_##tag == (unsigned)_props_table_tag_##tag, \ | 50 (unsigned)_table_tag_##tag == (unsigned)_props_table_tag_##tag, \ |
| 50 "Inconsistency between ICETYPE_PROPS_TABLE and ICETYPE_TABLE"); | 51 "Inconsistency between ICETYPE_PROPS_TABLE and ICETYPE_TABLE"); |
| 51 ICETYPE_TABLE | 52 ICETYPE_TABLE |
| 52 #undef X | 53 #undef X |
| 53 // Assert that tags in ICETYPE_PROPS_TABLE is in ICETYPE_TABLE. | 54 // Assert that tags in ICETYPE_PROPS_TABLE is in ICETYPE_TABLE. |
| 54 #define X(tag, IsVec, IsInt, IsFloat, IsIntArith, IsLoadStore, CompareResult) \ | 55 #define X(tag, IsVec, IsInt, IsFloat, IsIntArith, IsLoadStore, IsParam, \ |
| 56 CompareResult) \ |
| 55 static_assert( \ | 57 static_assert( \ |
| 56 (unsigned)_table_tag_##tag == (unsigned)_props_table_tag_##tag, \ | 58 (unsigned)_table_tag_##tag == (unsigned)_props_table_tag_##tag, \ |
| 57 "Inconsistency between ICETYPE_PROPS_TABLE and ICETYPE_TABLE"); | 59 "Inconsistency between ICETYPE_PROPS_TABLE and ICETYPE_TABLE"); |
| 58 ICETYPE_PROPS_TABLE | 60 ICETYPE_PROPS_TABLE |
| 59 #undef X | 61 #undef X |
| 60 | 62 |
| 61 // Show vector definitions match in ICETYPE_TABLE and ICETYPE_PROPS_TABLE. | 63 // Show vector definitions match in ICETYPE_TABLE and ICETYPE_PROPS_TABLE. |
| 62 | 64 |
| 63 // Define constants for each element size in ICETYPE_TABLE. | 65 // Define constants for each element size in ICETYPE_TABLE. |
| 64 enum { | 66 enum { |
| 65 #define X(tag, sizeLog2, align, elts, elty, str) _table_elts_##tag = elts, | 67 #define X(tag, sizeLog2, align, elts, elty, str) _table_elts_##tag = elts, |
| 66 ICETYPE_TABLE | 68 ICETYPE_TABLE |
| 67 #undef X | 69 #undef X |
| 68 _enum_table_elts_Elements = 0 | 70 _enum_table_elts_Elements = 0 |
| 69 }; | 71 }; |
| 70 // Define constants for boolean flag if vector in ICETYPE_PROPS_TABLE. | 72 // Define constants for boolean flag if vector in ICETYPE_PROPS_TABLE. |
| 71 enum { | 73 enum { |
| 72 #define X(tag, IsVec, IsInt, IsFloat, IsIntArith, IsLoadStore, CompareResult) \ | 74 #define X(tag, IsVec, IsInt, IsFloat, IsIntArith, IsLoadStore, IsParam, \ |
| 75 CompareResult) \ |
| 73 _props_table_IsVec_##tag = IsVec, | 76 _props_table_IsVec_##tag = IsVec, |
| 74 ICETYPE_PROPS_TABLE | 77 ICETYPE_PROPS_TABLE |
| 75 #undef X | 78 #undef X |
| 76 }; | 79 }; |
| 77 // Verify that the number of vector elements is consistent with IsVec. | 80 // Verify that the number of vector elements is consistent with IsVec. |
| 78 #define X(tag, IsVec, IsInt, IsFloat, IsIntArith, IsLoadStore, CompareResult) \ | 81 #define X(tag, IsVec, IsInt, IsFloat, IsIntArith, IsLoadStore, IsParam, \ |
| 82 CompareResult) \ |
| 79 static_assert((_table_elts_##tag > 1) == _props_table_IsVec_##tag, \ | 83 static_assert((_table_elts_##tag > 1) == _props_table_IsVec_##tag, \ |
| 80 "Inconsistent vector specification in ICETYPE_PROPS_TABLE"); | 84 "Inconsistent vector specification in ICETYPE_PROPS_TABLE"); |
| 81 ICETYPE_PROPS_TABLE | 85 ICETYPE_PROPS_TABLE |
| 82 #undef X | 86 #undef X |
| 83 | 87 |
| 84 struct TypeAttributeFields { | 88 struct TypeAttributeFields { |
| 85 int8_t TypeWidthInBytesLog2; | 89 int8_t TypeWidthInBytesLog2; |
| 86 size_t TypeAlignInBytes; | 90 size_t TypeAlignInBytes; |
| 87 size_t TypeNumElements; | 91 size_t TypeNumElements; |
| 88 Type TypeElementType; | 92 Type TypeElementType; |
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| 100 struct TypePropertyFields { | 104 struct TypePropertyFields { |
| 101 bool TypeIsVectorType; | 105 bool TypeIsVectorType; |
| 102 bool TypeIsIntegerType; | 106 bool TypeIsIntegerType; |
| 103 bool TypeIsScalarIntegerType; | 107 bool TypeIsScalarIntegerType; |
| 104 bool TypeIsVectorIntegerType; | 108 bool TypeIsVectorIntegerType; |
| 105 bool TypeIsIntegerArithmeticType; | 109 bool TypeIsIntegerArithmeticType; |
| 106 bool TypeIsFloatingType; | 110 bool TypeIsFloatingType; |
| 107 bool TypeIsScalarFloatingType; | 111 bool TypeIsScalarFloatingType; |
| 108 bool TypeIsVectorFloatingType; | 112 bool TypeIsVectorFloatingType; |
| 109 bool TypeIsLoadStoreType; | 113 bool TypeIsLoadStoreType; |
| 114 bool TypeIsCallParameterType; |
| 110 Type CompareResultType; | 115 Type CompareResultType; |
| 111 }; | 116 }; |
| 112 | 117 |
| 113 const TypePropertyFields TypePropertiesTable[] = { | 118 const TypePropertyFields TypePropertiesTable[] = { |
| 114 #define X(tag, IsVec, IsInt, IsFloat, IsIntArith, IsLoadStore, CompareResult) \ | 119 #define X(tag, IsVec, IsInt, IsFloat, IsIntArith, IsLoadStore, IsParam, \ |
| 120 CompareResult) \ |
| 115 { \ | 121 { \ |
| 116 IsVec, IsInt, IsInt & !IsVec, IsInt & IsVec, IsIntArith, IsFloat, \ | 122 IsVec, IsInt, IsInt & !IsVec, IsInt & IsVec, IsIntArith, IsFloat, \ |
| 117 IsFloat & !IsVec, IsFloat & IsVec, IsLoadStore, CompareResult \ | 123 IsFloat & !IsVec, IsFloat & IsVec, IsLoadStore, IsParam, CompareResult \ |
| 118 } \ | 124 } \ |
| 119 , | 125 , |
| 120 ICETYPE_PROPS_TABLE | 126 ICETYPE_PROPS_TABLE |
| 121 #undef X | 127 #undef X |
| 122 }; | 128 }; |
| 123 | 129 |
| 124 } // end anonymous namespace | 130 } // end anonymous namespace |
| 125 | 131 |
| 126 const char *targetArchString(const TargetArch Arch) { | 132 const char *targetArchString(const TargetArch Arch) { |
| 127 size_t Index = static_cast<size_t>(Arch); | 133 size_t Index = static_cast<size_t>(Arch); |
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| 233 } | 239 } |
| 234 | 240 |
| 235 bool isLoadStoreType(Type Ty) { | 241 bool isLoadStoreType(Type Ty) { |
| 236 size_t Index = static_cast<size_t>(Ty); | 242 size_t Index = static_cast<size_t>(Ty); |
| 237 if (Index < IceType_NUM) | 243 if (Index < IceType_NUM) |
| 238 return TypePropertiesTable[Index].TypeIsLoadStoreType; | 244 return TypePropertiesTable[Index].TypeIsLoadStoreType; |
| 239 llvm_unreachable("Invalid type for isLoadStoreType()"); | 245 llvm_unreachable("Invalid type for isLoadStoreType()"); |
| 240 return false; | 246 return false; |
| 241 } | 247 } |
| 242 | 248 |
| 249 bool isCallParameterType(Type Ty) { |
| 250 size_t Index = static_cast<size_t>(Ty); |
| 251 if (Index < IceType_NUM) |
| 252 return TypePropertiesTable[Index].TypeIsCallParameterType; |
| 253 llvm_unreachable("Invalid type for isCallParameterType()"); |
| 254 return false; |
| 255 } |
| 256 |
| 243 Type getCompareResultType(Type Ty) { | 257 Type getCompareResultType(Type Ty) { |
| 244 size_t Index = static_cast<size_t>(Ty); | 258 size_t Index = static_cast<size_t>(Ty); |
| 245 if (Index < IceType_NUM) | 259 if (Index < IceType_NUM) |
| 246 return TypePropertiesTable[Index].CompareResultType; | 260 return TypePropertiesTable[Index].CompareResultType; |
| 247 llvm_unreachable("Invalid type for getCompareResultType"); | 261 llvm_unreachable("Invalid type for getCompareResultType"); |
| 248 return IceType_void; | 262 return IceType_void; |
| 249 } | 263 } |
| 250 | 264 |
| 251 SizeT getScalarIntBitWidth(Type Ty) { | 265 SizeT getScalarIntBitWidth(Type Ty) { |
| 252 assert(isScalarIntegerType(Ty)); | 266 assert(isScalarIntegerType(Ty)); |
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| 275 IsFirst = false; | 289 IsFirst = false; |
| 276 } else { | 290 } else { |
| 277 Stream << ", "; | 291 Stream << ", "; |
| 278 } | 292 } |
| 279 Stream << ArgTy; | 293 Stream << ArgTy; |
| 280 } | 294 } |
| 281 Stream << ")"; | 295 Stream << ")"; |
| 282 } | 296 } |
| 283 | 297 |
| 284 } // end of namespace Ice | 298 } // end of namespace Ice |
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