1 //===- DXContainer.cpp - DXContainer object file implementation -----------===// 2 // 3 // Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions. 4 // See https://llvm.org/LICENSE.txt for license information. 5 // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception 6 // 7 //===----------------------------------------------------------------------===// 8 9 #include "llvm/Object/DXContainer.h" 10 #include "llvm/BinaryFormat/DXContainer.h" 11 #include "llvm/Object/Error.h" 12 #include "llvm/Support/Endian.h" 13 #include "llvm/Support/FormatVariadic.h" 14 15 using namespace llvm; 16 using namespace llvm::object; 17 18 static Error parseFailed(const Twine &Msg) { 19 return make_error<GenericBinaryError>(Msg.str(), object_error::parse_failed); 20 } 21 22 template <typename T> 23 static Error readStruct(StringRef Buffer, const char *Src, T &Struct) { 24 // Don't read before the beginning or past the end of the file 25 if (Src < Buffer.begin() || Src + sizeof(T) > Buffer.end()) 26 return parseFailed("Reading structure out of file bounds"); 27 28 memcpy(&Struct, Src, sizeof(T)); 29 // DXContainer is always little endian 30 if (sys::IsBigEndianHost) 31 Struct.swapBytes(); 32 return Error::success(); 33 } 34 35 template <typename T> 36 static Error readInteger(StringRef Buffer, const char *Src, T &Val, 37 Twine Str = "structure") { 38 static_assert(std::is_integral_v<T>, 39 "Cannot call readInteger on non-integral type."); 40 // Don't read before the beginning or past the end of the file 41 if (Src < Buffer.begin() || Src + sizeof(T) > Buffer.end()) 42 return parseFailed(Twine("Reading ") + Str + " out of file bounds"); 43 44 // The DXContainer offset table is comprised of uint32_t values but not padded 45 // to a 64-bit boundary. So Parts may start unaligned if there is an odd 46 // number of parts and part data itself is not required to be padded. 47 if (reinterpret_cast<uintptr_t>(Src) % alignof(T) != 0) 48 memcpy(reinterpret_cast<char *>(&Val), Src, sizeof(T)); 49 else 50 Val = *reinterpret_cast<const T *>(Src); 51 // DXContainer is always little endian 52 if (sys::IsBigEndianHost) 53 sys::swapByteOrder(Val); 54 return Error::success(); 55 } 56 57 DXContainer::DXContainer(MemoryBufferRef O) : Data(O) {} 58 59 Error DXContainer::parseHeader() { 60 return readStruct(Data.getBuffer(), Data.getBuffer().data(), Header); 61 } 62 63 Error DXContainer::parseDXILHeader(StringRef Part) { 64 if (DXIL) 65 return parseFailed("More than one DXIL part is present in the file"); 66 const char *Current = Part.begin(); 67 dxbc::ProgramHeader Header; 68 if (Error Err = readStruct(Part, Current, Header)) 69 return Err; 70 Current += offsetof(dxbc::ProgramHeader, Bitcode) + Header.Bitcode.Offset; 71 DXIL.emplace(std::make_pair(Header, Current)); 72 return Error::success(); 73 } 74 75 Error DXContainer::parseShaderFeatureFlags(StringRef Part) { 76 if (ShaderFeatureFlags) 77 return parseFailed("More than one SFI0 part is present in the file"); 78 uint64_t FlagValue = 0; 79 if (Error Err = readInteger(Part, Part.begin(), FlagValue)) 80 return Err; 81 ShaderFeatureFlags = FlagValue; 82 return Error::success(); 83 } 84 85 Error DXContainer::parseHash(StringRef Part) { 86 if (Hash) 87 return parseFailed("More than one HASH part is present in the file"); 88 dxbc::ShaderHash ReadHash; 89 if (Error Err = readStruct(Part, Part.begin(), ReadHash)) 90 return Err; 91 Hash = ReadHash; 92 return Error::success(); 93 } 94 95 Error DXContainer::parseRootSignature(StringRef Part) { 96 if (RootSignature) 97 return parseFailed("More than one RTS0 part is present in the file"); 98 RootSignature = DirectX::RootSignature(Part); 99 if (Error Err = RootSignature->parse()) 100 return Err; 101 return Error::success(); 102 } 103 104 Error DXContainer::parsePSVInfo(StringRef Part) { 105 if (PSVInfo) 106 return parseFailed("More than one PSV0 part is present in the file"); 107 PSVInfo = DirectX::PSVRuntimeInfo(Part); 108 // Parsing the PSVRuntime info occurs late because we need to read data from 109 // other parts first. 110 return Error::success(); 111 } 112 113 Error DirectX::Signature::initialize(StringRef Part) { 114 dxbc::ProgramSignatureHeader SigHeader; 115 if (Error Err = readStruct(Part, Part.begin(), SigHeader)) 116 return Err; 117 size_t Size = sizeof(dxbc::ProgramSignatureElement) * SigHeader.ParamCount; 118 119 if (Part.size() < Size + SigHeader.FirstParamOffset) 120 return parseFailed("Signature parameters extend beyond the part boundary"); 121 122 Parameters.Data = Part.substr(SigHeader.FirstParamOffset, Size); 123 124 StringTableOffset = SigHeader.FirstParamOffset + static_cast<uint32_t>(Size); 125 StringTable = Part.substr(SigHeader.FirstParamOffset + Size); 126 127 for (const auto &Param : Parameters) { 128 if (Param.NameOffset < StringTableOffset) 129 return parseFailed("Invalid parameter name offset: name starts before " 130 "the first name offset"); 131 if (Param.NameOffset - StringTableOffset > StringTable.size()) 132 return parseFailed("Invalid parameter name offset: name starts after the " 133 "end of the part data"); 134 } 135 return Error::success(); 136 } 137 138 Error DXContainer::parsePartOffsets() { 139 uint32_t LastOffset = 140 sizeof(dxbc::Header) + (Header.PartCount * sizeof(uint32_t)); 141 const char *Current = Data.getBuffer().data() + sizeof(dxbc::Header); 142 for (uint32_t Part = 0; Part < Header.PartCount; ++Part) { 143 uint32_t PartOffset; 144 if (Error Err = readInteger(Data.getBuffer(), Current, PartOffset)) 145 return Err; 146 if (PartOffset < LastOffset) 147 return parseFailed( 148 formatv( 149 "Part offset for part {0} begins before the previous part ends", 150 Part) 151 .str()); 152 Current += sizeof(uint32_t); 153 if (PartOffset >= Data.getBufferSize()) 154 return parseFailed("Part offset points beyond boundary of the file"); 155 // To prevent overflow when reading the part name, we subtract the part name 156 // size from the buffer size, rather than adding to the offset. Since the 157 // file header is larger than the part header we can't reach this code 158 // unless the buffer is at least as large as a part header, so this 159 // subtraction can't underflow. 160 if (PartOffset >= Data.getBufferSize() - sizeof(dxbc::PartHeader::Name)) 161 return parseFailed("File not large enough to read part name"); 162 PartOffsets.push_back(PartOffset); 163 164 dxbc::PartType PT = 165 dxbc::parsePartType(Data.getBuffer().substr(PartOffset, 4)); 166 uint32_t PartDataStart = PartOffset + sizeof(dxbc::PartHeader); 167 uint32_t PartSize; 168 if (Error Err = readInteger(Data.getBuffer(), 169 Data.getBufferStart() + PartOffset + 4, 170 PartSize, "part size")) 171 return Err; 172 StringRef PartData = Data.getBuffer().substr(PartDataStart, PartSize); 173 LastOffset = PartOffset + PartSize; 174 switch (PT) { 175 case dxbc::PartType::DXIL: 176 if (Error Err = parseDXILHeader(PartData)) 177 return Err; 178 break; 179 case dxbc::PartType::SFI0: 180 if (Error Err = parseShaderFeatureFlags(PartData)) 181 return Err; 182 break; 183 case dxbc::PartType::HASH: 184 if (Error Err = parseHash(PartData)) 185 return Err; 186 break; 187 case dxbc::PartType::PSV0: 188 if (Error Err = parsePSVInfo(PartData)) 189 return Err; 190 break; 191 case dxbc::PartType::ISG1: 192 if (Error Err = InputSignature.initialize(PartData)) 193 return Err; 194 break; 195 case dxbc::PartType::OSG1: 196 if (Error Err = OutputSignature.initialize(PartData)) 197 return Err; 198 break; 199 case dxbc::PartType::PSG1: 200 if (Error Err = PatchConstantSignature.initialize(PartData)) 201 return Err; 202 break; 203 case dxbc::PartType::Unknown: 204 break; 205 case dxbc::PartType::RTS0: 206 if (Error Err = parseRootSignature(PartData)) 207 return Err; 208 break; 209 } 210 } 211 212 // Fully parsing the PSVInfo requires knowing the shader kind which we read 213 // out of the program header in the DXIL part. 214 if (PSVInfo) { 215 if (!DXIL) 216 return parseFailed("Cannot fully parse pipeline state validation " 217 "information without DXIL part."); 218 if (Error Err = PSVInfo->parse(DXIL->first.ShaderKind)) 219 return Err; 220 } 221 return Error::success(); 222 } 223 224 Expected<DXContainer> DXContainer::create(MemoryBufferRef Object) { 225 DXContainer Container(Object); 226 if (Error Err = Container.parseHeader()) 227 return std::move(Err); 228 if (Error Err = Container.parsePartOffsets()) 229 return std::move(Err); 230 return Container; 231 } 232 233 void DXContainer::PartIterator::updateIteratorImpl(const uint32_t Offset) { 234 StringRef Buffer = Container.Data.getBuffer(); 235 const char *Current = Buffer.data() + Offset; 236 // Offsets are validated during parsing, so all offsets in the container are 237 // valid and contain enough readable data to read a header. 238 cantFail(readStruct(Buffer, Current, IteratorState.Part)); 239 IteratorState.Data = 240 StringRef(Current + sizeof(dxbc::PartHeader), IteratorState.Part.Size); 241 IteratorState.Offset = Offset; 242 } 243 244 Error DirectX::RootSignature::parse() { 245 const char *Current = PartData.begin(); 246 247 // Root Signature headers expects 6 integers to be present. 248 if (PartData.size() < 6 * sizeof(uint32_t)) 249 return parseFailed( 250 "Invalid root signature, insufficient space for header."); 251 252 Version = support::endian::read<uint32_t, llvm::endianness::little>(Current); 253 Current += sizeof(uint32_t); 254 255 NumParameters = 256 support::endian::read<uint32_t, llvm::endianness::little>(Current); 257 Current += sizeof(uint32_t); 258 259 RootParametersOffset = 260 support::endian::read<uint32_t, llvm::endianness::little>(Current); 261 Current += sizeof(uint32_t); 262 263 NumStaticSamplers = 264 support::endian::read<uint32_t, llvm::endianness::little>(Current); 265 Current += sizeof(uint32_t); 266 267 StaticSamplersOffset = 268 support::endian::read<uint32_t, llvm::endianness::little>(Current); 269 Current += sizeof(uint32_t); 270 271 Flags = support::endian::read<uint32_t, llvm::endianness::little>(Current); 272 Current += sizeof(uint32_t); 273 274 ParametersHeaders.Data = PartData.substr( 275 RootParametersOffset, 276 NumParameters * sizeof(dxbc::RTS0::v1::RootParameterHeader)); 277 278 StaticSamplers.Stride = sizeof(dxbc::RTS0::v1::StaticSampler); 279 StaticSamplers.Data = PartData.substr( 280 StaticSamplersOffset, 281 NumStaticSamplers * sizeof(dxbc::RTS0::v1::StaticSampler)); 282 283 return Error::success(); 284 } 285 286 Error DirectX::PSVRuntimeInfo::parse(uint16_t ShaderKind) { 287 Triple::EnvironmentType ShaderStage = dxbc::getShaderStage(ShaderKind); 288 289 const char *Current = Data.begin(); 290 if (Error Err = readInteger(Data, Current, Size)) 291 return Err; 292 Current += sizeof(uint32_t); 293 294 StringRef PSVInfoData = Data.substr(sizeof(uint32_t), Size); 295 296 if (PSVInfoData.size() < Size) 297 return parseFailed( 298 "Pipeline state data extends beyond the bounds of the part"); 299 300 using namespace dxbc::PSV; 301 302 const uint32_t PSVVersion = getVersion(); 303 304 // Detect the PSVVersion by looking at the size field. 305 if (PSVVersion == 3) { 306 v3::RuntimeInfo Info; 307 if (Error Err = readStruct(PSVInfoData, Current, Info)) 308 return Err; 309 if (sys::IsBigEndianHost) 310 Info.swapBytes(ShaderStage); 311 BasicInfo = Info; 312 } else if (PSVVersion == 2) { 313 v2::RuntimeInfo Info; 314 if (Error Err = readStruct(PSVInfoData, Current, Info)) 315 return Err; 316 if (sys::IsBigEndianHost) 317 Info.swapBytes(ShaderStage); 318 BasicInfo = Info; 319 } else if (PSVVersion == 1) { 320 v1::RuntimeInfo Info; 321 if (Error Err = readStruct(PSVInfoData, Current, Info)) 322 return Err; 323 if (sys::IsBigEndianHost) 324 Info.swapBytes(ShaderStage); 325 BasicInfo = Info; 326 } else if (PSVVersion == 0) { 327 v0::RuntimeInfo Info; 328 if (Error Err = readStruct(PSVInfoData, Current, Info)) 329 return Err; 330 if (sys::IsBigEndianHost) 331 Info.swapBytes(ShaderStage); 332 BasicInfo = Info; 333 } else 334 return parseFailed( 335 "Cannot read PSV Runtime Info, unsupported PSV version."); 336 337 Current += Size; 338 339 uint32_t ResourceCount = 0; 340 if (Error Err = readInteger(Data, Current, ResourceCount)) 341 return Err; 342 Current += sizeof(uint32_t); 343 344 if (ResourceCount > 0) { 345 if (Error Err = readInteger(Data, Current, Resources.Stride)) 346 return Err; 347 Current += sizeof(uint32_t); 348 349 size_t BindingDataSize = Resources.Stride * ResourceCount; 350 Resources.Data = Data.substr(Current - Data.begin(), BindingDataSize); 351 352 if (Resources.Data.size() < BindingDataSize) 353 return parseFailed( 354 "Resource binding data extends beyond the bounds of the part"); 355 356 Current += BindingDataSize; 357 } else 358 Resources.Stride = sizeof(v2::ResourceBindInfo); 359 360 // PSV version 0 ends after the resource bindings. 361 if (PSVVersion == 0) 362 return Error::success(); 363 364 // String table starts at a 4-byte offset. 365 Current = reinterpret_cast<const char *>( 366 alignTo<4>(reinterpret_cast<uintptr_t>(Current))); 367 368 uint32_t StringTableSize = 0; 369 if (Error Err = readInteger(Data, Current, StringTableSize)) 370 return Err; 371 if (StringTableSize % 4 != 0) 372 return parseFailed("String table misaligned"); 373 Current += sizeof(uint32_t); 374 StringTable = StringRef(Current, StringTableSize); 375 376 Current += StringTableSize; 377 378 uint32_t SemanticIndexTableSize = 0; 379 if (Error Err = readInteger(Data, Current, SemanticIndexTableSize)) 380 return Err; 381 Current += sizeof(uint32_t); 382 383 SemanticIndexTable.reserve(SemanticIndexTableSize); 384 for (uint32_t I = 0; I < SemanticIndexTableSize; ++I) { 385 uint32_t Index = 0; 386 if (Error Err = readInteger(Data, Current, Index)) 387 return Err; 388 Current += sizeof(uint32_t); 389 SemanticIndexTable.push_back(Index); 390 } 391 392 uint8_t InputCount = getSigInputCount(); 393 uint8_t OutputCount = getSigOutputCount(); 394 uint8_t PatchOrPrimCount = getSigPatchOrPrimCount(); 395 396 uint32_t ElementCount = InputCount + OutputCount + PatchOrPrimCount; 397 398 if (ElementCount > 0) { 399 if (Error Err = readInteger(Data, Current, SigInputElements.Stride)) 400 return Err; 401 Current += sizeof(uint32_t); 402 // Assign the stride to all the arrays. 403 SigOutputElements.Stride = SigPatchOrPrimElements.Stride = 404 SigInputElements.Stride; 405 406 if (Data.end() - Current < 407 (ptrdiff_t)(ElementCount * SigInputElements.Stride)) 408 return parseFailed( 409 "Signature elements extend beyond the size of the part"); 410 411 size_t InputSize = SigInputElements.Stride * InputCount; 412 SigInputElements.Data = Data.substr(Current - Data.begin(), InputSize); 413 Current += InputSize; 414 415 size_t OutputSize = SigOutputElements.Stride * OutputCount; 416 SigOutputElements.Data = Data.substr(Current - Data.begin(), OutputSize); 417 Current += OutputSize; 418 419 size_t PSize = SigPatchOrPrimElements.Stride * PatchOrPrimCount; 420 SigPatchOrPrimElements.Data = Data.substr(Current - Data.begin(), PSize); 421 Current += PSize; 422 } 423 424 ArrayRef<uint8_t> OutputVectorCounts = getOutputVectorCounts(); 425 uint8_t PatchConstOrPrimVectorCount = getPatchConstOrPrimVectorCount(); 426 uint8_t InputVectorCount = getInputVectorCount(); 427 428 auto maskDwordSize = [](uint8_t Vector) { 429 return (static_cast<uint32_t>(Vector) + 7) >> 3; 430 }; 431 432 auto mapTableSize = [maskDwordSize](uint8_t X, uint8_t Y) { 433 return maskDwordSize(Y) * X * 4; 434 }; 435 436 if (usesViewID()) { 437 for (uint32_t I = 0; I < OutputVectorCounts.size(); ++I) { 438 // The vector mask is one bit per component and 4 components per vector. 439 // We can compute the number of dwords required by rounding up to the next 440 // multiple of 8. 441 uint32_t NumDwords = 442 maskDwordSize(static_cast<uint32_t>(OutputVectorCounts[I])); 443 size_t NumBytes = NumDwords * sizeof(uint32_t); 444 OutputVectorMasks[I].Data = Data.substr(Current - Data.begin(), NumBytes); 445 Current += NumBytes; 446 } 447 448 if (ShaderStage == Triple::Hull && PatchConstOrPrimVectorCount > 0) { 449 uint32_t NumDwords = maskDwordSize(PatchConstOrPrimVectorCount); 450 size_t NumBytes = NumDwords * sizeof(uint32_t); 451 PatchOrPrimMasks.Data = Data.substr(Current - Data.begin(), NumBytes); 452 Current += NumBytes; 453 } 454 } 455 456 // Input/Output mapping table 457 for (uint32_t I = 0; I < OutputVectorCounts.size(); ++I) { 458 if (InputVectorCount == 0 || OutputVectorCounts[I] == 0) 459 continue; 460 uint32_t NumDwords = mapTableSize(InputVectorCount, OutputVectorCounts[I]); 461 size_t NumBytes = NumDwords * sizeof(uint32_t); 462 InputOutputMap[I].Data = Data.substr(Current - Data.begin(), NumBytes); 463 Current += NumBytes; 464 } 465 466 // Hull shader: Input/Patch mapping table 467 if (ShaderStage == Triple::Hull && PatchConstOrPrimVectorCount > 0 && 468 InputVectorCount > 0) { 469 uint32_t NumDwords = 470 mapTableSize(InputVectorCount, PatchConstOrPrimVectorCount); 471 size_t NumBytes = NumDwords * sizeof(uint32_t); 472 InputPatchMap.Data = Data.substr(Current - Data.begin(), NumBytes); 473 Current += NumBytes; 474 } 475 476 // Domain Shader: Patch/Output mapping table 477 if (ShaderStage == Triple::Domain && PatchConstOrPrimVectorCount > 0 && 478 OutputVectorCounts[0] > 0) { 479 uint32_t NumDwords = 480 mapTableSize(PatchConstOrPrimVectorCount, OutputVectorCounts[0]); 481 size_t NumBytes = NumDwords * sizeof(uint32_t); 482 PatchOutputMap.Data = Data.substr(Current - Data.begin(), NumBytes); 483 Current += NumBytes; 484 } 485 486 return Error::success(); 487 } 488 489 uint8_t DirectX::PSVRuntimeInfo::getSigInputCount() const { 490 if (const auto *P = std::get_if<dxbc::PSV::v3::RuntimeInfo>(&BasicInfo)) 491 return P->SigInputElements; 492 if (const auto *P = std::get_if<dxbc::PSV::v2::RuntimeInfo>(&BasicInfo)) 493 return P->SigInputElements; 494 if (const auto *P = std::get_if<dxbc::PSV::v1::RuntimeInfo>(&BasicInfo)) 495 return P->SigInputElements; 496 return 0; 497 } 498 499 uint8_t DirectX::PSVRuntimeInfo::getSigOutputCount() const { 500 if (const auto *P = std::get_if<dxbc::PSV::v3::RuntimeInfo>(&BasicInfo)) 501 return P->SigOutputElements; 502 if (const auto *P = std::get_if<dxbc::PSV::v2::RuntimeInfo>(&BasicInfo)) 503 return P->SigOutputElements; 504 if (const auto *P = std::get_if<dxbc::PSV::v1::RuntimeInfo>(&BasicInfo)) 505 return P->SigOutputElements; 506 return 0; 507 } 508 509 uint8_t DirectX::PSVRuntimeInfo::getSigPatchOrPrimCount() const { 510 if (const auto *P = std::get_if<dxbc::PSV::v3::RuntimeInfo>(&BasicInfo)) 511 return P->SigPatchOrPrimElements; 512 if (const auto *P = std::get_if<dxbc::PSV::v2::RuntimeInfo>(&BasicInfo)) 513 return P->SigPatchOrPrimElements; 514 if (const auto *P = std::get_if<dxbc::PSV::v1::RuntimeInfo>(&BasicInfo)) 515 return P->SigPatchOrPrimElements; 516 return 0; 517 } 518