1//===-- llvm/BinaryFormat/Dwarf.h ---Dwarf Constants-------------*- 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/// \file 11/// This file contains constants used for implementing Dwarf 12/// debug support. 13/// 14/// For details on the Dwarf specfication see the latest DWARF Debugging 15/// Information Format standard document on http://www.dwarfstd.org. This 16/// file often includes support for non-released standard features. 17// 18//===----------------------------------------------------------------------===// 19 20#ifndef LLVM_BINARYFORMAT_DWARF_H 21#define LLVM_BINARYFORMAT_DWARF_H 22 23#include "llvm/Support/Compiler.h" 24#include "llvm/Support/DataTypes.h" 25 26namespace llvm { 27class StringRef; 28 29namespace dwarf { 30 31//===----------------------------------------------------------------------===// 32// DWARF constants as gleaned from the DWARF Debugging Information Format V.5 33// reference manual http://www.dwarfstd.org/. 34// 35 36// Do not mix the following two enumerations sets. DW_TAG_invalid changes the 37// enumeration base type. 38 39enum LLVMConstants : uint32_t { 40 // LLVM mock tags (see also llvm/BinaryFormat/Dwarf.def). 41 DW_TAG_invalid = ~0U, // Tag for invalid results. 42 DW_VIRTUALITY_invalid = ~0U, // Virtuality for invalid results. 43 DW_MACINFO_invalid = ~0U, // Macinfo type for invalid results. 44 45 // Other constants. 46 DWARF_VERSION = 4, // Default dwarf version we output. 47 DW_PUBTYPES_VERSION = 2, // Section version number for .debug_pubtypes. 48 DW_PUBNAMES_VERSION = 2, // Section version number for .debug_pubnames. 49 DW_ARANGES_VERSION = 2, // Section version number for .debug_aranges. 50 // Identifiers we use to distinguish vendor extensions. 51 DWARF_VENDOR_DWARF = 0, // Defined in v2 or later of the DWARF standard. 52 DWARF_VENDOR_APPLE = 1, 53 DWARF_VENDOR_BORLAND = 2, 54 DWARF_VENDOR_GNU = 3, 55 DWARF_VENDOR_GOOGLE = 4, 56 DWARF_VENDOR_LLVM = 5, 57 DWARF_VENDOR_MIPS = 6 58}; 59 60/// Special ID values that distinguish a CIE from a FDE in DWARF CFI. 61/// Not inside an enum because a 64-bit value is needed. 62/// @{ 63const uint32_t DW_CIE_ID = UINT32_MAX; 64const uint64_t DW64_CIE_ID = UINT64_MAX; 65/// @} 66 67/// Identifier of an invalid DIE offset in the .debug_info section. 68const uint32_t DW_INVALID_OFFSET = UINT32_MAX; 69 70enum Tag : uint16_t { 71#define HANDLE_DW_TAG(ID, NAME, VERSION, VENDOR) DW_TAG_##NAME = ID, 72#include "llvm/BinaryFormat/Dwarf.def" 73 DW_TAG_lo_user = 0x4080, 74 DW_TAG_hi_user = 0xffff, 75 DW_TAG_user_base = 0x1000 ///< Recommended base for user tags. 76}; 77 78inline bool isType(Tag T) { 79 switch (T) { 80 case DW_TAG_array_type: 81 case DW_TAG_class_type: 82 case DW_TAG_interface_type: 83 case DW_TAG_enumeration_type: 84 case DW_TAG_pointer_type: 85 case DW_TAG_reference_type: 86 case DW_TAG_rvalue_reference_type: 87 case DW_TAG_string_type: 88 case DW_TAG_structure_type: 89 case DW_TAG_subroutine_type: 90 case DW_TAG_union_type: 91 case DW_TAG_ptr_to_member_type: 92 case DW_TAG_set_type: 93 case DW_TAG_subrange_type: 94 case DW_TAG_base_type: 95 case DW_TAG_const_type: 96 case DW_TAG_file_type: 97 case DW_TAG_packed_type: 98 case DW_TAG_volatile_type: 99 case DW_TAG_typedef: 100 return true; 101 default: 102 return false; 103 } 104} 105 106/// Attributes. 107enum Attribute : uint16_t { 108#define HANDLE_DW_AT(ID, NAME, VERSION, VENDOR) DW_AT_##NAME = ID, 109#include "llvm/BinaryFormat/Dwarf.def" 110 DW_AT_lo_user = 0x2000, 111 DW_AT_hi_user = 0x3fff, 112}; 113 114enum Form : uint16_t { 115#define HANDLE_DW_FORM(ID, NAME, VERSION, VENDOR) DW_FORM_##NAME = ID, 116#include "llvm/BinaryFormat/Dwarf.def" 117 DW_FORM_lo_user = 0x1f00, ///< Not specified by DWARF. 118}; 119 120enum LocationAtom { 121#define HANDLE_DW_OP(ID, NAME, VERSION, VENDOR) DW_OP_##NAME = ID, 122#include "llvm/BinaryFormat/Dwarf.def" 123 DW_OP_lo_user = 0xe0, 124 DW_OP_hi_user = 0xff, 125 DW_OP_LLVM_fragment = 0x1000 ///< Only used in LLVM metadata. 126}; 127 128enum TypeKind { 129#define HANDLE_DW_ATE(ID, NAME, VERSION, VENDOR) DW_ATE_##NAME = ID, 130#include "llvm/BinaryFormat/Dwarf.def" 131 DW_ATE_lo_user = 0x80, 132 DW_ATE_hi_user = 0xff 133}; 134 135enum DecimalSignEncoding { 136 // Decimal sign attribute values 137 DW_DS_unsigned = 0x01, 138 DW_DS_leading_overpunch = 0x02, 139 DW_DS_trailing_overpunch = 0x03, 140 DW_DS_leading_separate = 0x04, 141 DW_DS_trailing_separate = 0x05 142}; 143 144enum EndianityEncoding { 145 // Endianity attribute values 146 DW_END_default = 0x00, 147 DW_END_big = 0x01, 148 DW_END_little = 0x02, 149 DW_END_lo_user = 0x40, 150 DW_END_hi_user = 0xff 151}; 152 153enum AccessAttribute { 154 // Accessibility codes 155 DW_ACCESS_public = 0x01, 156 DW_ACCESS_protected = 0x02, 157 DW_ACCESS_private = 0x03 158}; 159 160enum VisibilityAttribute { 161 // Visibility codes 162 DW_VIS_local = 0x01, 163 DW_VIS_exported = 0x02, 164 DW_VIS_qualified = 0x03 165}; 166 167enum VirtualityAttribute { 168#define HANDLE_DW_VIRTUALITY(ID, NAME) DW_VIRTUALITY_##NAME = ID, 169#include "llvm/BinaryFormat/Dwarf.def" 170 DW_VIRTUALITY_max = 0x02 171}; 172 173enum DefaultedMemberAttribute { 174#define HANDLE_DW_DEFAULTED(ID, NAME) DW_DEFAULTED_##NAME = ID, 175#include "llvm/BinaryFormat/Dwarf.def" 176 DW_DEFAULTED_max = 0x02 177}; 178 179enum SourceLanguage { 180#define HANDLE_DW_LANG(ID, NAME, VERSION, VENDOR) DW_LANG_##NAME = ID, 181#include "llvm/BinaryFormat/Dwarf.def" 182 DW_LANG_lo_user = 0x8000, 183 DW_LANG_hi_user = 0xffff 184}; 185 186enum CaseSensitivity { 187 // Identifier case codes 188 DW_ID_case_sensitive = 0x00, 189 DW_ID_up_case = 0x01, 190 DW_ID_down_case = 0x02, 191 DW_ID_case_insensitive = 0x03 192}; 193 194enum CallingConvention { 195// Calling convention codes 196#define HANDLE_DW_CC(ID, NAME) DW_CC_##NAME = ID, 197#include "llvm/BinaryFormat/Dwarf.def" 198 DW_CC_lo_user = 0x40, 199 DW_CC_hi_user = 0xff 200}; 201 202enum InlineAttribute { 203 // Inline codes 204 DW_INL_not_inlined = 0x00, 205 DW_INL_inlined = 0x01, 206 DW_INL_declared_not_inlined = 0x02, 207 DW_INL_declared_inlined = 0x03 208}; 209 210enum ArrayDimensionOrdering { 211 // Array ordering 212 DW_ORD_row_major = 0x00, 213 DW_ORD_col_major = 0x01 214}; 215 216enum DiscriminantList { 217 // Discriminant descriptor values 218 DW_DSC_label = 0x00, 219 DW_DSC_range = 0x01 220}; 221 222/// Line Number Standard Opcode Encodings. 223enum LineNumberOps : uint8_t { 224#define HANDLE_DW_LNS(ID, NAME) DW_LNS_##NAME = ID, 225#include "llvm/BinaryFormat/Dwarf.def" 226}; 227 228/// Line Number Extended Opcode Encodings. 229enum LineNumberExtendedOps { 230#define HANDLE_DW_LNE(ID, NAME) DW_LNE_##NAME = ID, 231#include "llvm/BinaryFormat/Dwarf.def" 232 DW_LNE_lo_user = 0x80, 233 DW_LNE_hi_user = 0xff 234}; 235 236enum LineNumberEntryFormat { 237#define HANDLE_DW_LNCT(ID, NAME) DW_LNCT_##NAME = ID, 238#include "llvm/BinaryFormat/Dwarf.def" 239 DW_LNCT_lo_user = 0x2000, 240 DW_LNCT_hi_user = 0x3fff, 241}; 242 243enum MacinfoRecordType { 244 // Macinfo Type Encodings 245 DW_MACINFO_define = 0x01, 246 DW_MACINFO_undef = 0x02, 247 DW_MACINFO_start_file = 0x03, 248 DW_MACINFO_end_file = 0x04, 249 DW_MACINFO_vendor_ext = 0xff 250}; 251 252/// DWARF v5 macro information entry type encodings. 253enum MacroEntryType { 254#define HANDLE_DW_MACRO(ID, NAME) DW_MACRO_##NAME = ID, 255#include "llvm/BinaryFormat/Dwarf.def" 256 DW_MACRO_lo_user = 0xe0, 257 DW_MACRO_hi_user = 0xff 258}; 259 260/// DWARF v5 range list entry encoding values. 261enum RangeListEntries { 262#define HANDLE_DW_RLE(ID, NAME) DW_RLE_##NAME = ID, 263#include "llvm/BinaryFormat/Dwarf.def" 264}; 265 266/// Call frame instruction encodings. 267enum CallFrameInfo { 268#define HANDLE_DW_CFA(ID, NAME) DW_CFA_##NAME = ID, 269#include "llvm/BinaryFormat/Dwarf.def" 270 DW_CFA_extended = 0x00, 271 272 DW_CFA_lo_user = 0x1c, 273 DW_CFA_hi_user = 0x3f 274}; 275 276enum Constants { 277 // Children flag 278 DW_CHILDREN_no = 0x00, 279 DW_CHILDREN_yes = 0x01, 280 281 DW_EH_PE_absptr = 0x00, 282 DW_EH_PE_omit = 0xff, 283 DW_EH_PE_uleb128 = 0x01, 284 DW_EH_PE_udata2 = 0x02, 285 DW_EH_PE_udata4 = 0x03, 286 DW_EH_PE_udata8 = 0x04, 287 DW_EH_PE_sleb128 = 0x09, 288 DW_EH_PE_sdata2 = 0x0A, 289 DW_EH_PE_sdata4 = 0x0B, 290 DW_EH_PE_sdata8 = 0x0C, 291 DW_EH_PE_signed = 0x08, 292 DW_EH_PE_pcrel = 0x10, 293 DW_EH_PE_textrel = 0x20, 294 DW_EH_PE_datarel = 0x30, 295 DW_EH_PE_funcrel = 0x40, 296 DW_EH_PE_aligned = 0x50, 297 DW_EH_PE_indirect = 0x80 298}; 299 300/// Constants for location lists in DWARF v5. 301enum LocationListEntry : unsigned char { 302 DW_LLE_end_of_list = 0x00, 303 DW_LLE_base_addressx = 0x01, 304 DW_LLE_startx_endx = 0x02, 305 DW_LLE_startx_length = 0x03, 306 DW_LLE_offset_pair = 0x04, 307 DW_LLE_default_location = 0x05, 308 DW_LLE_base_address = 0x06, 309 DW_LLE_start_end = 0x07, 310 DW_LLE_start_length = 0x08 311}; 312 313/// Constants for the DW_APPLE_PROPERTY_attributes attribute. 314/// Keep this list in sync with clang's DeclSpec.h ObjCPropertyAttributeKind! 315enum ApplePropertyAttributes { 316#define HANDLE_DW_APPLE_PROPERTY(ID, NAME) DW_APPLE_PROPERTY_##NAME = ID, 317#include "llvm/BinaryFormat/Dwarf.def" 318}; 319 320/// Constants for unit types in DWARF v5. 321enum UnitType : unsigned char { 322#define HANDLE_DW_UT(ID, NAME) DW_UT_##NAME = ID, 323#include "llvm/BinaryFormat/Dwarf.def" 324 DW_UT_lo_user = 0x80, 325 DW_UT_hi_user = 0xff 326}; 327 328inline bool isUnitType(uint8_t UnitType) { 329 switch (UnitType) { 330 case DW_UT_compile: 331 case DW_UT_type: 332 case DW_UT_partial: 333 case DW_UT_skeleton: 334 case DW_UT_split_compile: 335 case DW_UT_split_type: 336 return true; 337 default: 338 return false; 339 } 340} 341 342inline bool isUnitType(dwarf::Tag T) { 343 switch (T) { 344 case DW_TAG_compile_unit: 345 case DW_TAG_type_unit: 346 case DW_TAG_partial_unit: 347 case DW_TAG_skeleton_unit: 348 return true; 349 default: 350 return false; 351 } 352} 353 354// Constants for the DWARF v5 Accelerator Table Proposal 355enum AcceleratorTable { 356 // Data layout descriptors. 357 DW_ATOM_null = 0u, // Marker as the end of a list of atoms. 358 DW_ATOM_die_offset = 1u, // DIE offset in the debug_info section. 359 DW_ATOM_cu_offset = 2u, // Offset of the compile unit header that contains the 360 // item in question. 361 DW_ATOM_die_tag = 3u, // A tag entry. 362 DW_ATOM_type_flags = 4u, // Set of flags for a type. 363 364 // DW_ATOM_type_flags values. 365 366 // Always set for C++, only set for ObjC if this is the @implementation for a 367 // class. 368 DW_FLAG_type_implementation = 2u, 369 370 // Hash functions. 371 372 // Daniel J. Bernstein hash. 373 DW_hash_function_djb = 0u 374}; 375 376// Constants for the GNU pubnames/pubtypes extensions supporting gdb index. 377enum GDBIndexEntryKind { 378 GIEK_NONE, 379 GIEK_TYPE, 380 GIEK_VARIABLE, 381 GIEK_FUNCTION, 382 GIEK_OTHER, 383 GIEK_UNUSED5, 384 GIEK_UNUSED6, 385 GIEK_UNUSED7 386}; 387 388enum GDBIndexEntryLinkage { GIEL_EXTERNAL, GIEL_STATIC }; 389 390/// \defgroup DwarfConstantsDumping Dwarf constants dumping functions 391/// 392/// All these functions map their argument's value back to the 393/// corresponding enumerator name or return nullptr if the value isn't 394/// known. 395/// 396/// @{ 397StringRef TagString(unsigned Tag); 398StringRef ChildrenString(unsigned Children); 399StringRef AttributeString(unsigned Attribute); 400StringRef FormEncodingString(unsigned Encoding); 401StringRef OperationEncodingString(unsigned Encoding); 402StringRef AttributeEncodingString(unsigned Encoding); 403StringRef DecimalSignString(unsigned Sign); 404StringRef EndianityString(unsigned Endian); 405StringRef AccessibilityString(unsigned Access); 406StringRef VisibilityString(unsigned Visibility); 407StringRef VirtualityString(unsigned Virtuality); 408StringRef LanguageString(unsigned Language); 409StringRef CaseString(unsigned Case); 410StringRef ConventionString(unsigned Convention); 411StringRef InlineCodeString(unsigned Code); 412StringRef ArrayOrderString(unsigned Order); 413StringRef DiscriminantString(unsigned Discriminant); 414StringRef LNStandardString(unsigned Standard); 415StringRef LNExtendedString(unsigned Encoding); 416StringRef MacinfoString(unsigned Encoding); 417StringRef CallFrameString(unsigned Encoding); 418StringRef ApplePropertyString(unsigned); 419StringRef UnitTypeString(unsigned); 420StringRef AtomTypeString(unsigned Atom); 421StringRef GDBIndexEntryKindString(GDBIndexEntryKind Kind); 422StringRef GDBIndexEntryLinkageString(GDBIndexEntryLinkage Linkage); 423/// @} 424 425/// \defgroup DwarfConstantsParsing Dwarf constants parsing functions 426/// 427/// These functions map their strings back to the corresponding enumeration 428/// value or return 0 if there is none, except for these exceptions: 429/// 430/// \li \a getTag() returns \a DW_TAG_invalid on invalid input. 431/// \li \a getVirtuality() returns \a DW_VIRTUALITY_invalid on invalid input. 432/// \li \a getMacinfo() returns \a DW_MACINFO_invalid on invalid input. 433/// 434/// @{ 435unsigned getTag(StringRef TagString); 436unsigned getOperationEncoding(StringRef OperationEncodingString); 437unsigned getVirtuality(StringRef VirtualityString); 438unsigned getLanguage(StringRef LanguageString); 439unsigned getCallingConvention(StringRef LanguageString); 440unsigned getAttributeEncoding(StringRef EncodingString); 441unsigned getMacinfo(StringRef MacinfoString); 442/// @} 443 444/// \defgroup DwarfConstantsVersioning Dwarf version for constants 445/// 446/// For constants defined by DWARF, returns the DWARF version when the constant 447/// was first defined. For vendor extensions, if there is a version-related 448/// policy for when to emit it, returns a version number for that policy. 449/// Otherwise returns 0. 450/// 451/// @{ 452unsigned TagVersion(Tag T); 453unsigned AttributeVersion(Attribute A); 454unsigned FormVersion(Form F); 455unsigned OperationVersion(LocationAtom O); 456unsigned AttributeEncodingVersion(TypeKind E); 457unsigned LanguageVersion(SourceLanguage L); 458/// @} 459 460/// \defgroup DwarfConstantsVendor Dwarf "vendor" for constants 461/// 462/// These functions return an identifier describing "who" defined the constant, 463/// either the DWARF standard itself or the vendor who defined the extension. 464/// 465/// @{ 466unsigned TagVendor(Tag T); 467unsigned AttributeVendor(Attribute A); 468unsigned FormVendor(Form F); 469unsigned OperationVendor(LocationAtom O); 470unsigned AttributeEncodingVendor(TypeKind E); 471unsigned LanguageVendor(SourceLanguage L); 472/// @} 473 474/// Tells whether the specified form is defined in the specified version, 475/// or is an extension if extensions are allowed. 476bool isValidFormForVersion(Form F, unsigned Version, bool ExtensionsOk = true); 477 478/// Returns the symbolic string representing Val when used as a value 479/// for attribute Attr. 480StringRef AttributeValueString(uint16_t Attr, unsigned Val); 481 482/// Describes an entry of the various gnu_pub* debug sections. 483/// 484/// The gnu_pub* kind looks like: 485/// 486/// 0-3 reserved 487/// 4-6 symbol kind 488/// 7 0 == global, 1 == static 489/// 490/// A gdb_index descriptor includes the above kind, shifted 24 bits up with the 491/// offset of the cu within the debug_info section stored in those 24 bits. 492struct PubIndexEntryDescriptor { 493 GDBIndexEntryKind Kind; 494 GDBIndexEntryLinkage Linkage; 495 PubIndexEntryDescriptor(GDBIndexEntryKind Kind, GDBIndexEntryLinkage Linkage) 496 : Kind(Kind), Linkage(Linkage) {} 497 /* implicit */ PubIndexEntryDescriptor(GDBIndexEntryKind Kind) 498 : Kind(Kind), Linkage(GIEL_EXTERNAL) {} 499 explicit PubIndexEntryDescriptor(uint8_t Value) 500 : Kind( 501 static_cast<GDBIndexEntryKind>((Value & KIND_MASK) >> KIND_OFFSET)), 502 Linkage(static_cast<GDBIndexEntryLinkage>((Value & LINKAGE_MASK) >> 503 LINKAGE_OFFSET)) {} 504 uint8_t toBits() const { 505 return Kind << KIND_OFFSET | Linkage << LINKAGE_OFFSET; 506 } 507 508private: 509 enum { 510 KIND_OFFSET = 4, 511 KIND_MASK = 7 << KIND_OFFSET, 512 LINKAGE_OFFSET = 7, 513 LINKAGE_MASK = 1 << LINKAGE_OFFSET 514 }; 515}; 516 517/// Constants that define the DWARF format as 32 or 64 bit. 518enum DwarfFormat : uint8_t { DWARF32, DWARF64 }; 519 520/// The Bernstein hash function used by the accelerator tables. 521uint32_t djbHash(StringRef Buffer); 522 523} // End of namespace dwarf 524 525} // End of namespace llvm 526 527#endif 528