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Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +00001//===--- AMDGPUCodeObjectMetadataStreamer.cpp -------------------*- 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/// \brief AMDGPU Code Object Metadata Streamer.
12///
13//
14//===----------------------------------------------------------------------===//
15
16#include "AMDGPU.h"
17#include "AMDGPUCodeObjectMetadataStreamer.h"
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +000018#include "llvm/ADT/StringSwitch.h"
19#include "llvm/IR/Constants.h"
20#include "llvm/IR/Module.h"
21#include "llvm/Support/YAMLTraits.h"
22
23using namespace llvm::AMDGPU;
24using namespace llvm::AMDGPU::CodeObject;
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +000025
26LLVM_YAML_IS_FLOW_SEQUENCE_VECTOR(uint32_t)
27LLVM_YAML_IS_FLOW_SEQUENCE_VECTOR(std::string)
28LLVM_YAML_IS_SEQUENCE_VECTOR(Kernel::Arg::Metadata)
29LLVM_YAML_IS_SEQUENCE_VECTOR(Kernel::Metadata)
30
31namespace llvm {
32
33static cl::opt<bool> DumpCodeObjectMetadata(
34 "amdgpu-dump-comd",
35 cl::desc("Dump AMDGPU Code Object Metadata"));
36static cl::opt<bool> VerifyCodeObjectMetadata(
37 "amdgpu-verify-comd",
38 cl::desc("Verify AMDGPU Code Object Metadata"));
39
40namespace yaml {
41
42template <>
43struct ScalarEnumerationTraits<AccessQualifier> {
44 static void enumeration(IO &YIO, AccessQualifier &EN) {
45 YIO.enumCase(EN, "Default", AccessQualifier::Default);
46 YIO.enumCase(EN, "ReadOnly", AccessQualifier::ReadOnly);
47 YIO.enumCase(EN, "WriteOnly", AccessQualifier::WriteOnly);
48 YIO.enumCase(EN, "ReadWrite", AccessQualifier::ReadWrite);
49 }
50};
51
52template <>
53struct ScalarEnumerationTraits<AddressSpaceQualifier> {
54 static void enumeration(IO &YIO, AddressSpaceQualifier &EN) {
55 YIO.enumCase(EN, "Private", AddressSpaceQualifier::Private);
56 YIO.enumCase(EN, "Global", AddressSpaceQualifier::Global);
57 YIO.enumCase(EN, "Constant", AddressSpaceQualifier::Constant);
58 YIO.enumCase(EN, "Local", AddressSpaceQualifier::Local);
59 YIO.enumCase(EN, "Generic", AddressSpaceQualifier::Generic);
60 YIO.enumCase(EN, "Region", AddressSpaceQualifier::Region);
61 }
62};
63
64template <>
65struct ScalarEnumerationTraits<ValueKind> {
66 static void enumeration(IO &YIO, ValueKind &EN) {
67 YIO.enumCase(EN, "ByValue", ValueKind::ByValue);
68 YIO.enumCase(EN, "GlobalBuffer", ValueKind::GlobalBuffer);
69 YIO.enumCase(EN, "DynamicSharedPointer", ValueKind::DynamicSharedPointer);
70 YIO.enumCase(EN, "Sampler", ValueKind::Sampler);
71 YIO.enumCase(EN, "Image", ValueKind::Image);
72 YIO.enumCase(EN, "Pipe", ValueKind::Pipe);
73 YIO.enumCase(EN, "Queue", ValueKind::Queue);
74 YIO.enumCase(EN, "HiddenGlobalOffsetX", ValueKind::HiddenGlobalOffsetX);
75 YIO.enumCase(EN, "HiddenGlobalOffsetY", ValueKind::HiddenGlobalOffsetY);
76 YIO.enumCase(EN, "HiddenGlobalOffsetZ", ValueKind::HiddenGlobalOffsetZ);
77 YIO.enumCase(EN, "HiddenNone", ValueKind::HiddenNone);
78 YIO.enumCase(EN, "HiddenPrintfBuffer", ValueKind::HiddenPrintfBuffer);
79 YIO.enumCase(EN, "HiddenDefaultQueue", ValueKind::HiddenDefaultQueue);
80 YIO.enumCase(EN, "HiddenCompletionAction",
81 ValueKind::HiddenCompletionAction);
82 }
83};
84
85template <>
86struct ScalarEnumerationTraits<ValueType> {
87 static void enumeration(IO &YIO, ValueType &EN) {
88 YIO.enumCase(EN, "Struct", ValueType::Struct);
89 YIO.enumCase(EN, "I8", ValueType::I8);
90 YIO.enumCase(EN, "U8", ValueType::U8);
91 YIO.enumCase(EN, "I16", ValueType::I16);
92 YIO.enumCase(EN, "U16", ValueType::U16);
93 YIO.enumCase(EN, "F16", ValueType::F16);
94 YIO.enumCase(EN, "I32", ValueType::I32);
95 YIO.enumCase(EN, "U32", ValueType::U32);
96 YIO.enumCase(EN, "F32", ValueType::F32);
97 YIO.enumCase(EN, "I64", ValueType::I64);
98 YIO.enumCase(EN, "U64", ValueType::U64);
99 YIO.enumCase(EN, "F64", ValueType::F64);
100 }
101};
102
103template <>
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000104struct MappingTraits<Kernel::Attrs::Metadata> {
105 static void mapping(IO &YIO, Kernel::Attrs::Metadata &MD) {
106 YIO.mapOptional(Kernel::Attrs::Key::ReqdWorkGroupSize,
107 MD.mReqdWorkGroupSize, std::vector<uint32_t>());
108 YIO.mapOptional(Kernel::Attrs::Key::WorkGroupSizeHint,
109 MD.mWorkGroupSizeHint, std::vector<uint32_t>());
110 YIO.mapOptional(Kernel::Attrs::Key::VecTypeHint,
111 MD.mVecTypeHint, std::string());
112 }
113};
114
115template <>
116struct MappingTraits<Kernel::Arg::Metadata> {
117 static void mapping(IO &YIO, Kernel::Arg::Metadata &MD) {
118 YIO.mapRequired(Kernel::Arg::Key::Size, MD.mSize);
119 YIO.mapRequired(Kernel::Arg::Key::Align, MD.mAlign);
Konstantin Zhuravlyov4986d9f2017-03-24 18:43:15 +0000120 YIO.mapRequired(Kernel::Arg::Key::ValueKind, MD.mValueKind);
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000121 YIO.mapRequired(Kernel::Arg::Key::ValueType, MD.mValueType);
122 YIO.mapOptional(Kernel::Arg::Key::PointeeAlign, MD.mPointeeAlign,
123 uint32_t(0));
124 YIO.mapOptional(Kernel::Arg::Key::AccQual, MD.mAccQual,
125 AccessQualifier::Unknown);
126 YIO.mapOptional(Kernel::Arg::Key::AddrSpaceQual, MD.mAddrSpaceQual,
127 AddressSpaceQualifier::Unknown);
128 YIO.mapOptional(Kernel::Arg::Key::IsConst, MD.mIsConst, false);
129 YIO.mapOptional(Kernel::Arg::Key::IsPipe, MD.mIsPipe, false);
130 YIO.mapOptional(Kernel::Arg::Key::IsRestrict, MD.mIsRestrict, false);
131 YIO.mapOptional(Kernel::Arg::Key::IsVolatile, MD.mIsVolatile, false);
132 YIO.mapOptional(Kernel::Arg::Key::Name, MD.mName, std::string());
133 YIO.mapOptional(Kernel::Arg::Key::TypeName, MD.mTypeName, std::string());
134 }
135};
136
137template <>
Konstantin Zhuravlyovca0e7f62017-03-22 22:54:39 +0000138struct MappingTraits<Kernel::CodeProps::Metadata> {
139 static void mapping(IO &YIO, Kernel::CodeProps::Metadata &MD) {
140 YIO.mapOptional(Kernel::CodeProps::Key::KernargSegmentSize,
141 MD.mKernargSegmentSize, uint64_t(0));
142 YIO.mapOptional(Kernel::CodeProps::Key::WorkgroupGroupSegmentSize,
143 MD.mWorkgroupGroupSegmentSize, uint32_t(0));
144 YIO.mapOptional(Kernel::CodeProps::Key::WorkitemPrivateSegmentSize,
145 MD.mWorkitemPrivateSegmentSize, uint32_t(0));
146 YIO.mapOptional(Kernel::CodeProps::Key::WavefrontNumSGPRs,
147 MD.mWavefrontNumSGPRs, uint16_t(0));
148 YIO.mapOptional(Kernel::CodeProps::Key::WorkitemNumVGPRs,
149 MD.mWorkitemNumVGPRs, uint16_t(0));
150 YIO.mapOptional(Kernel::CodeProps::Key::KernargSegmentAlign,
151 MD.mKernargSegmentAlign, uint8_t(0));
152 YIO.mapOptional(Kernel::CodeProps::Key::GroupSegmentAlign,
153 MD.mGroupSegmentAlign, uint8_t(0));
154 YIO.mapOptional(Kernel::CodeProps::Key::PrivateSegmentAlign,
155 MD.mPrivateSegmentAlign, uint8_t(0));
156 YIO.mapOptional(Kernel::CodeProps::Key::WavefrontSize,
157 MD.mWavefrontSize, uint8_t(0));
158 }
159};
160
161template <>
Konstantin Zhuravlyova780ffa2017-03-22 23:10:46 +0000162struct MappingTraits<Kernel::DebugProps::Metadata> {
163 static void mapping(IO &YIO, Kernel::DebugProps::Metadata &MD) {
164 YIO.mapOptional(Kernel::DebugProps::Key::DebuggerABIVersion,
165 MD.mDebuggerABIVersion, std::vector<uint32_t>());
166 YIO.mapOptional(Kernel::DebugProps::Key::ReservedNumVGPRs,
167 MD.mReservedNumVGPRs, uint16_t(0));
168 YIO.mapOptional(Kernel::DebugProps::Key::ReservedFirstVGPR,
169 MD.mReservedFirstVGPR, uint16_t(-1));
170 YIO.mapOptional(Kernel::DebugProps::Key::PrivateSegmentBufferSGPR,
171 MD.mPrivateSegmentBufferSGPR, uint16_t(-1));
172 YIO.mapOptional(Kernel::DebugProps::Key::WavefrontPrivateSegmentOffsetSGPR,
173 MD.mWavefrontPrivateSegmentOffsetSGPR, uint16_t(-1));
174 }
175};
176
177template <>
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000178struct MappingTraits<Kernel::Metadata> {
179 static void mapping(IO &YIO, Kernel::Metadata &MD) {
180 YIO.mapRequired(Kernel::Key::Name, MD.mName);
181 YIO.mapOptional(Kernel::Key::Language, MD.mLanguage, std::string());
182 YIO.mapOptional(Kernel::Key::LanguageVersion, MD.mLanguageVersion,
183 std::vector<uint32_t>());
184 if (!MD.mAttrs.empty() || !YIO.outputting())
185 YIO.mapOptional(Kernel::Key::Attrs, MD.mAttrs);
186 if (!MD.mArgs.empty() || !YIO.outputting())
187 YIO.mapOptional(Kernel::Key::Args, MD.mArgs);
Konstantin Zhuravlyovca0e7f62017-03-22 22:54:39 +0000188 if (!MD.mCodeProps.empty() || !YIO.outputting())
189 YIO.mapOptional(Kernel::Key::CodeProps, MD.mCodeProps);
Konstantin Zhuravlyova780ffa2017-03-22 23:10:46 +0000190 if (!MD.mDebugProps.empty() || !YIO.outputting())
191 YIO.mapOptional(Kernel::Key::DebugProps, MD.mDebugProps);
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000192 }
193};
194
195template <>
196struct MappingTraits<CodeObject::Metadata> {
197 static void mapping(IO &YIO, CodeObject::Metadata &MD) {
198 YIO.mapRequired(Key::Version, MD.mVersion);
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000199 YIO.mapOptional(Key::Printf, MD.mPrintf, std::vector<std::string>());
200 if (!MD.mKernels.empty() || !YIO.outputting())
201 YIO.mapOptional(Key::Kernels, MD.mKernels);
202 }
203};
204
205} // end namespace yaml
206
207namespace AMDGPU {
208
209/* static */
210std::error_code CodeObject::Metadata::fromYamlString(
211 std::string YamlString, CodeObject::Metadata &CodeObjectMetadata) {
212 yaml::Input YamlInput(YamlString);
213 YamlInput >> CodeObjectMetadata;
214 return YamlInput.error();
215}
216
217/* static */
218std::error_code CodeObject::Metadata::toYamlString(
219 CodeObject::Metadata CodeObjectMetadata, std::string &YamlString) {
220 raw_string_ostream YamlStream(YamlString);
221 yaml::Output YamlOutput(YamlStream, nullptr, std::numeric_limits<int>::max());
222 YamlOutput << CodeObjectMetadata;
223 return std::error_code();
224}
225
226namespace CodeObject {
227
228void MetadataStreamer::dump(StringRef YamlString) const {
229 errs() << "AMDGPU Code Object Metadata:\n" << YamlString << '\n';
230}
231
232void MetadataStreamer::verify(StringRef YamlString) const {
233 errs() << "AMDGPU Code Object Metadata Parser Test: ";
234
235 CodeObject::Metadata FromYamlString;
236 if (Metadata::fromYamlString(YamlString, FromYamlString)) {
237 errs() << "FAIL\n";
238 return;
239 }
240
241 std::string ToYamlString;
242 if (Metadata::toYamlString(FromYamlString, ToYamlString)) {
243 errs() << "FAIL\n";
244 return;
245 }
246
247 errs() << (YamlString == ToYamlString ? "PASS" : "FAIL") << '\n';
248 if (YamlString != ToYamlString) {
249 errs() << "Original input: " << YamlString << '\n'
250 << "Produced output: " << ToYamlString << '\n';
251 }
252}
253
254AccessQualifier MetadataStreamer::getAccessQualifier(StringRef AccQual) const {
255 if (AccQual.empty())
256 return AccessQualifier::Unknown;
257
258 return StringSwitch<AccessQualifier>(AccQual)
259 .Case("read_only", AccessQualifier::ReadOnly)
260 .Case("write_only", AccessQualifier::WriteOnly)
261 .Case("read_write", AccessQualifier::ReadWrite)
262 .Default(AccessQualifier::Default);
263}
264
265AddressSpaceQualifier MetadataStreamer::getAddressSpaceQualifer(
266 unsigned AddressSpace) const {
267 switch (AddressSpace) {
268 case AMDGPUAS::PRIVATE_ADDRESS:
269 return AddressSpaceQualifier::Private;
270 case AMDGPUAS::GLOBAL_ADDRESS:
271 return AddressSpaceQualifier::Global;
272 case AMDGPUAS::CONSTANT_ADDRESS:
273 return AddressSpaceQualifier::Constant;
274 case AMDGPUAS::LOCAL_ADDRESS:
275 return AddressSpaceQualifier::Local;
276 case AMDGPUAS::FLAT_ADDRESS:
277 return AddressSpaceQualifier::Generic;
278 case AMDGPUAS::REGION_ADDRESS:
279 return AddressSpaceQualifier::Region;
280 }
281
282 llvm_unreachable("Unknown address space qualifier");
283}
284
285ValueKind MetadataStreamer::getValueKind(Type *Ty, StringRef TypeQual,
286 StringRef BaseTypeName) const {
287 if (TypeQual.find("pipe") != StringRef::npos)
288 return ValueKind::Pipe;
289
290 return StringSwitch<ValueKind>(BaseTypeName)
291 .Case("sampler_t", ValueKind::Sampler)
292 .Case("queue_t", ValueKind::Queue)
293 .Cases("image1d_t",
294 "image1d_array_t",
295 "image1d_buffer_t",
296 "image2d_t" ,
297 "image2d_array_t",
298 "image2d_array_depth_t",
299 "image2d_array_msaa_t"
300 "image2d_array_msaa_depth_t"
301 "image2d_depth_t",
302 "image2d_msaa_t",
303 "image2d_msaa_depth_t",
304 "image3d_t", ValueKind::Image)
305 .Default(isa<PointerType>(Ty) ?
306 (Ty->getPointerAddressSpace() ==
307 AMDGPUAS::LOCAL_ADDRESS ?
308 ValueKind::DynamicSharedPointer :
309 ValueKind::GlobalBuffer) :
310 ValueKind::ByValue);
311}
312
313ValueType MetadataStreamer::getValueType(Type *Ty, StringRef TypeName) const {
314 switch (Ty->getTypeID()) {
315 case Type::IntegerTyID: {
316 auto Signed = !TypeName.startswith("u");
317 switch (Ty->getIntegerBitWidth()) {
318 case 8:
319 return Signed ? ValueType::I8 : ValueType::U8;
320 case 16:
321 return Signed ? ValueType::I16 : ValueType::U16;
322 case 32:
323 return Signed ? ValueType::I32 : ValueType::U32;
324 case 64:
325 return Signed ? ValueType::I64 : ValueType::U64;
326 default:
327 return ValueType::Struct;
328 }
329 }
330 case Type::HalfTyID:
331 return ValueType::F16;
332 case Type::FloatTyID:
333 return ValueType::F32;
334 case Type::DoubleTyID:
335 return ValueType::F64;
336 case Type::PointerTyID:
337 return getValueType(Ty->getPointerElementType(), TypeName);
338 case Type::VectorTyID:
339 return getValueType(Ty->getVectorElementType(), TypeName);
340 default:
341 return ValueType::Struct;
342 }
343}
344
345std::string MetadataStreamer::getTypeName(Type *Ty, bool Signed) const {
346 switch (Ty->getTypeID()) {
347 case Type::IntegerTyID: {
348 if (!Signed)
349 return (Twine('u') + getTypeName(Ty, true)).str();
350
351 auto BitWidth = Ty->getIntegerBitWidth();
352 switch (BitWidth) {
353 case 8:
354 return "char";
355 case 16:
356 return "short";
357 case 32:
358 return "int";
359 case 64:
360 return "long";
361 default:
362 return (Twine('i') + Twine(BitWidth)).str();
363 }
364 }
365 case Type::HalfTyID:
366 return "half";
367 case Type::FloatTyID:
368 return "float";
369 case Type::DoubleTyID:
370 return "double";
371 case Type::VectorTyID: {
372 auto VecTy = cast<VectorType>(Ty);
373 auto ElTy = VecTy->getElementType();
374 auto NumElements = VecTy->getVectorNumElements();
375 return (Twine(getTypeName(ElTy, Signed)) + Twine(NumElements)).str();
376 }
377 default:
378 return "unknown";
379 }
380}
381
382std::vector<uint32_t> MetadataStreamer::getWorkGroupDimensions(
383 MDNode *Node) const {
384 std::vector<uint32_t> Dims;
385 if (Node->getNumOperands() != 3)
386 return Dims;
387
388 for (auto &Op : Node->operands())
389 Dims.push_back(mdconst::extract<ConstantInt>(Op)->getZExtValue());
390 return Dims;
391}
392
393void MetadataStreamer::emitVersion() {
394 auto &Version = CodeObjectMetadata.mVersion;
395
396 Version.push_back(MetadataVersionMajor);
397 Version.push_back(MetadataVersionMinor);
398}
399
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000400void MetadataStreamer::emitPrintf(const Module &Mod) {
401 auto &Printf = CodeObjectMetadata.mPrintf;
402
403 auto Node = Mod.getNamedMetadata("llvm.printf.fmts");
404 if (!Node)
405 return;
406
407 for (auto Op : Node->operands())
408 if (Op->getNumOperands())
409 Printf.push_back(cast<MDString>(Op->getOperand(0))->getString());
410}
411
412void MetadataStreamer::emitKernelLanguage(const Function &Func) {
413 auto &Kernel = CodeObjectMetadata.mKernels.back();
414
415 // TODO: What about other languages?
416 auto Node = Func.getParent()->getNamedMetadata("opencl.ocl.version");
417 if (!Node || !Node->getNumOperands())
418 return;
419 auto Op0 = Node->getOperand(0);
420 if (Op0->getNumOperands() <= 1)
421 return;
422
423 Kernel.mLanguage = "OpenCL C";
424 Kernel.mLanguageVersion.push_back(
425 mdconst::extract<ConstantInt>(Op0->getOperand(0))->getZExtValue());
426 Kernel.mLanguageVersion.push_back(
427 mdconst::extract<ConstantInt>(Op0->getOperand(1))->getZExtValue());
428}
429
430void MetadataStreamer::emitKernelAttrs(const Function &Func) {
431 auto &Attrs = CodeObjectMetadata.mKernels.back().mAttrs;
432
433 if (auto Node = Func.getMetadata("reqd_work_group_size"))
434 Attrs.mReqdWorkGroupSize = getWorkGroupDimensions(Node);
435 if (auto Node = Func.getMetadata("work_group_size_hint"))
436 Attrs.mWorkGroupSizeHint = getWorkGroupDimensions(Node);
437 if (auto Node = Func.getMetadata("vec_type_hint")) {
438 Attrs.mVecTypeHint = getTypeName(
439 cast<ValueAsMetadata>(Node->getOperand(0))->getType(),
440 mdconst::extract<ConstantInt>(Node->getOperand(1))->getZExtValue());
441 }
442}
443
444void MetadataStreamer::emitKernelArgs(const Function &Func) {
445 for (auto &Arg : Func.args())
446 emitKernelArg(Arg);
447
448 // TODO: What about other languages?
449 if (!Func.getParent()->getNamedMetadata("opencl.ocl.version"))
450 return;
451
452 auto &DL = Func.getParent()->getDataLayout();
453 auto Int64Ty = Type::getInt64Ty(Func.getContext());
454
455 emitKernelArg(DL, Int64Ty, ValueKind::HiddenGlobalOffsetX);
456 emitKernelArg(DL, Int64Ty, ValueKind::HiddenGlobalOffsetY);
457 emitKernelArg(DL, Int64Ty, ValueKind::HiddenGlobalOffsetZ);
458
459 if (!Func.getParent()->getNamedMetadata("llvm.printf.fmts"))
460 return;
461
462 auto Int8PtrTy = Type::getInt8PtrTy(Func.getContext(),
463 AMDGPUAS::GLOBAL_ADDRESS);
464 emitKernelArg(DL, Int8PtrTy, ValueKind::HiddenPrintfBuffer);
465}
466
467void MetadataStreamer::emitKernelArg(const Argument &Arg) {
468 auto Func = Arg.getParent();
469 auto ArgNo = Arg.getArgNo();
470 const MDNode *Node;
471
472 StringRef TypeQual;
473 Node = Func->getMetadata("kernel_arg_type_qual");
474 if (Node && ArgNo < Node->getNumOperands())
475 TypeQual = cast<MDString>(Node->getOperand(ArgNo))->getString();
476
477 StringRef BaseTypeName;
478 Node = Func->getMetadata("kernel_arg_base_type");
479 if (Node && ArgNo < Node->getNumOperands())
480 BaseTypeName = cast<MDString>(Node->getOperand(ArgNo))->getString();
481
482 StringRef AccQual;
483 Node = Func->getMetadata("kernel_arg_access_qual");
484 if (Node && ArgNo < Node->getNumOperands())
485 AccQual = cast<MDString>(Node->getOperand(ArgNo))->getString();
486
487 StringRef Name;
488 Node = Func->getMetadata("kernel_arg_name");
489 if (Node && ArgNo < Node->getNumOperands())
490 Name = cast<MDString>(Node->getOperand(ArgNo))->getString();
491
492 StringRef TypeName;
493 Node = Func->getMetadata("kernel_arg_type");
494 if (Node && ArgNo < Node->getNumOperands())
495 TypeName = cast<MDString>(Node->getOperand(ArgNo))->getString();
496
497 emitKernelArg(Func->getParent()->getDataLayout(), Arg.getType(),
498 getValueKind(Arg.getType(), TypeQual, BaseTypeName), TypeQual,
499 BaseTypeName, AccQual, Name, TypeName);
500}
501
502void MetadataStreamer::emitKernelArg(const DataLayout &DL, Type *Ty,
503 ValueKind ValueKind, StringRef TypeQual,
504 StringRef BaseTypeName, StringRef AccQual,
505 StringRef Name, StringRef TypeName) {
506 CodeObjectMetadata.mKernels.back().mArgs.push_back(Kernel::Arg::Metadata());
507 auto &Arg = CodeObjectMetadata.mKernels.back().mArgs.back();
508
509 Arg.mSize = DL.getTypeAllocSize(Ty);
510 Arg.mAlign = DL.getABITypeAlignment(Ty);
511 Arg.mValueKind = ValueKind;
512 Arg.mValueType = getValueType(Ty, BaseTypeName);
513
514 if (auto PtrTy = dyn_cast<PointerType>(Ty)) {
515 auto ElTy = PtrTy->getElementType();
516 if (PtrTy->getAddressSpace() == AMDGPUAS::LOCAL_ADDRESS && ElTy->isSized())
517 Arg.mPointeeAlign = DL.getABITypeAlignment(ElTy);
518 }
519
520 Arg.mAccQual = getAccessQualifier(AccQual);
521
522 if (auto PtrTy = dyn_cast<PointerType>(Ty))
523 Arg.mAddrSpaceQual = getAddressSpaceQualifer(PtrTy->getAddressSpace());
524
525 SmallVector<StringRef, 1> SplitTypeQuals;
526 TypeQual.split(SplitTypeQuals, " ", -1, false);
527 for (StringRef Key : SplitTypeQuals) {
528 auto P = StringSwitch<bool*>(Key)
529 .Case("const", &Arg.mIsConst)
530 .Case("pipe", &Arg.mIsPipe)
531 .Case("restrict", &Arg.mIsRestrict)
532 .Case("volatile", &Arg.mIsVolatile)
533 .Default(nullptr);
534 if (P)
535 *P = true;
536 }
537
538 Arg.mName = Name;
539 Arg.mTypeName = TypeName;
540}
541
Konstantin Zhuravlyovca0e7f62017-03-22 22:54:39 +0000542void MetadataStreamer::emitKernelCodeProps(
543 const amd_kernel_code_t &KernelCode) {
544 auto &CodeProps = CodeObjectMetadata.mKernels.back().mCodeProps;
545
546 CodeProps.mKernargSegmentSize = KernelCode.kernarg_segment_byte_size;
547 CodeProps.mWorkgroupGroupSegmentSize =
548 KernelCode.workgroup_group_segment_byte_size;
549 CodeProps.mWorkitemPrivateSegmentSize =
550 KernelCode.workitem_private_segment_byte_size;
551 CodeProps.mWavefrontNumSGPRs = KernelCode.wavefront_sgpr_count;
552 CodeProps.mWorkitemNumVGPRs = KernelCode.workitem_vgpr_count;
553 CodeProps.mKernargSegmentAlign = KernelCode.kernarg_segment_alignment;
554 CodeProps.mGroupSegmentAlign = KernelCode.group_segment_alignment;
555 CodeProps.mPrivateSegmentAlign = KernelCode.private_segment_alignment;
556 CodeProps.mWavefrontSize = KernelCode.wavefront_size;
557}
558
Konstantin Zhuravlyova780ffa2017-03-22 23:10:46 +0000559void MetadataStreamer::emitKernelDebugProps(
560 const amd_kernel_code_t &KernelCode) {
561 if (!(KernelCode.code_properties & AMD_CODE_PROPERTY_IS_DEBUG_SUPPORTED))
562 return;
563
564 auto &DebugProps = CodeObjectMetadata.mKernels.back().mDebugProps;
565
566 // FIXME: Need to pass down debugger ABI version through features. This is ok
567 // for now because we only have one version.
568 DebugProps.mDebuggerABIVersion.push_back(1);
569 DebugProps.mDebuggerABIVersion.push_back(0);
570 DebugProps.mReservedNumVGPRs = KernelCode.reserved_vgpr_count;
571 DebugProps.mReservedFirstVGPR = KernelCode.reserved_vgpr_first;
572 DebugProps.mPrivateSegmentBufferSGPR =
573 KernelCode.debug_private_segment_buffer_sgpr;
574 DebugProps.mWavefrontPrivateSegmentOffsetSGPR =
575 KernelCode.debug_wavefront_private_segment_offset_sgpr;
576}
577
Konstantin Zhuravlyov4cbb6892017-03-22 23:27:09 +0000578void MetadataStreamer::begin(const Module &Mod) {
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000579 emitVersion();
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000580 emitPrintf(Mod);
581}
582
Konstantin Zhuravlyovca0e7f62017-03-22 22:54:39 +0000583void MetadataStreamer::emitKernel(const Function &Func,
584 const amd_kernel_code_t &KernelCode) {
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000585 if (Func.getCallingConv() != CallingConv::AMDGPU_KERNEL)
586 return;
587
588 CodeObjectMetadata.mKernels.push_back(Kernel::Metadata());
589 auto &Kernel = CodeObjectMetadata.mKernels.back();
590
591 Kernel.mName = Func.getName();
592 emitKernelLanguage(Func);
593 emitKernelAttrs(Func);
594 emitKernelArgs(Func);
Konstantin Zhuravlyovca0e7f62017-03-22 22:54:39 +0000595 emitKernelCodeProps(KernelCode);
Konstantin Zhuravlyova780ffa2017-03-22 23:10:46 +0000596 emitKernelDebugProps(KernelCode);
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000597}
598
599ErrorOr<std::string> MetadataStreamer::toYamlString() {
600 std::string YamlString;
601 if (auto Error = Metadata::toYamlString(CodeObjectMetadata, YamlString))
602 return Error;
603
604 if (DumpCodeObjectMetadata)
605 dump(YamlString);
606 if (VerifyCodeObjectMetadata)
607 verify(YamlString);
608
609 return YamlString;
610}
611
Konstantin Zhuravlyov4cbb6892017-03-22 23:27:09 +0000612ErrorOr<std::string> MetadataStreamer::toYamlString(StringRef YamlString) {
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000613 if (auto Error = Metadata::fromYamlString(YamlString, CodeObjectMetadata))
614 return Error;
615
Konstantin Zhuravlyov7498cd62017-03-22 22:32:22 +0000616 return toYamlString();
617}
618
619} // end namespace CodeObject
620} // end namespace AMDGPU
621} // end namespace llvm