1 //===- Action.cpp - Abstract compilation steps ----------------------------===//
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 "clang/Driver/Action.h"
10 #include "llvm/Support/ErrorHandling.h"
11 #include <cassert>
12 #include <string>
13
14 using namespace clang;
15 using namespace driver;
16 using namespace llvm::opt;
17
18 Action::~Action() = default;
19
getClassName(ActionClass AC)20 const char *Action::getClassName(ActionClass AC) {
21 switch (AC) {
22 case InputClass: return "input";
23 case BindArchClass: return "bind-arch";
24 case OffloadClass:
25 return "offload";
26 case PreprocessJobClass: return "preprocessor";
27 case PrecompileJobClass: return "precompiler";
28 case HeaderModulePrecompileJobClass: return "header-module-precompiler";
29 case AnalyzeJobClass: return "analyzer";
30 case MigrateJobClass: return "migrator";
31 case CompileJobClass: return "compiler";
32 case BackendJobClass: return "backend";
33 case AssembleJobClass: return "assembler";
34 case IfsMergeJobClass: return "interface-stub-merger";
35 case LinkJobClass: return "linker";
36 case LipoJobClass: return "lipo";
37 case DsymutilJobClass: return "dsymutil";
38 case VerifyDebugInfoJobClass: return "verify-debug-info";
39 case VerifyPCHJobClass: return "verify-pch";
40 case OffloadBundlingJobClass:
41 return "clang-offload-bundler";
42 case OffloadUnbundlingJobClass:
43 return "clang-offload-unbundler";
44 case OffloadWrapperJobClass:
45 return "clang-offload-wrapper";
46 }
47
48 llvm_unreachable("invalid class");
49 }
50
propagateDeviceOffloadInfo(OffloadKind OKind,const char * OArch)51 void Action::propagateDeviceOffloadInfo(OffloadKind OKind, const char *OArch) {
52 // Offload action set its own kinds on their dependences.
53 if (Kind == OffloadClass)
54 return;
55 // Unbundling actions use the host kinds.
56 if (Kind == OffloadUnbundlingJobClass)
57 return;
58
59 assert((OffloadingDeviceKind == OKind || OffloadingDeviceKind == OFK_None) &&
60 "Setting device kind to a different device??");
61 assert(!ActiveOffloadKindMask && "Setting a device kind in a host action??");
62 OffloadingDeviceKind = OKind;
63 OffloadingArch = OArch;
64
65 for (auto *A : Inputs)
66 A->propagateDeviceOffloadInfo(OffloadingDeviceKind, OArch);
67 }
68
propagateHostOffloadInfo(unsigned OKinds,const char * OArch)69 void Action::propagateHostOffloadInfo(unsigned OKinds, const char *OArch) {
70 // Offload action set its own kinds on their dependences.
71 if (Kind == OffloadClass)
72 return;
73
74 assert(OffloadingDeviceKind == OFK_None &&
75 "Setting a host kind in a device action.");
76 ActiveOffloadKindMask |= OKinds;
77 OffloadingArch = OArch;
78
79 for (auto *A : Inputs)
80 A->propagateHostOffloadInfo(ActiveOffloadKindMask, OArch);
81 }
82
propagateOffloadInfo(const Action * A)83 void Action::propagateOffloadInfo(const Action *A) {
84 if (unsigned HK = A->getOffloadingHostActiveKinds())
85 propagateHostOffloadInfo(HK, A->getOffloadingArch());
86 else
87 propagateDeviceOffloadInfo(A->getOffloadingDeviceKind(),
88 A->getOffloadingArch());
89 }
90
getOffloadingKindPrefix() const91 std::string Action::getOffloadingKindPrefix() const {
92 switch (OffloadingDeviceKind) {
93 case OFK_None:
94 break;
95 case OFK_Host:
96 llvm_unreachable("Host kind is not an offloading device kind.");
97 break;
98 case OFK_Cuda:
99 return "device-cuda";
100 case OFK_OpenMP:
101 return "device-openmp";
102 case OFK_HIP:
103 return "device-hip";
104
105 // TODO: Add other programming models here.
106 }
107
108 if (!ActiveOffloadKindMask)
109 return {};
110
111 std::string Res("host");
112 assert(!((ActiveOffloadKindMask & OFK_Cuda) &&
113 (ActiveOffloadKindMask & OFK_HIP)) &&
114 "Cannot offload CUDA and HIP at the same time");
115 if (ActiveOffloadKindMask & OFK_Cuda)
116 Res += "-cuda";
117 if (ActiveOffloadKindMask & OFK_HIP)
118 Res += "-hip";
119 if (ActiveOffloadKindMask & OFK_OpenMP)
120 Res += "-openmp";
121
122 // TODO: Add other programming models here.
123
124 return Res;
125 }
126
127 /// Return a string that can be used as prefix in order to generate unique files
128 /// for each offloading kind.
129 std::string
GetOffloadingFileNamePrefix(OffloadKind Kind,StringRef NormalizedTriple,bool CreatePrefixForHost)130 Action::GetOffloadingFileNamePrefix(OffloadKind Kind,
131 StringRef NormalizedTriple,
132 bool CreatePrefixForHost) {
133 // Don't generate prefix for host actions unless required.
134 if (!CreatePrefixForHost && (Kind == OFK_None || Kind == OFK_Host))
135 return {};
136
137 std::string Res("-");
138 Res += GetOffloadKindName(Kind);
139 Res += "-";
140 Res += NormalizedTriple;
141 return Res;
142 }
143
144 /// Return a string with the offload kind name. If that is not defined, we
145 /// assume 'host'.
GetOffloadKindName(OffloadKind Kind)146 StringRef Action::GetOffloadKindName(OffloadKind Kind) {
147 switch (Kind) {
148 case OFK_None:
149 case OFK_Host:
150 return "host";
151 case OFK_Cuda:
152 return "cuda";
153 case OFK_OpenMP:
154 return "openmp";
155 case OFK_HIP:
156 return "hip";
157
158 // TODO: Add other programming models here.
159 }
160
161 llvm_unreachable("invalid offload kind");
162 }
163
anchor()164 void InputAction::anchor() {}
165
InputAction(const Arg & _Input,types::ID _Type)166 InputAction::InputAction(const Arg &_Input, types::ID _Type)
167 : Action(InputClass, _Type), Input(_Input) {}
168
anchor()169 void BindArchAction::anchor() {}
170
BindArchAction(Action * Input,StringRef ArchName)171 BindArchAction::BindArchAction(Action *Input, StringRef ArchName)
172 : Action(BindArchClass, Input), ArchName(ArchName) {}
173
anchor()174 void OffloadAction::anchor() {}
175
OffloadAction(const HostDependence & HDep)176 OffloadAction::OffloadAction(const HostDependence &HDep)
177 : Action(OffloadClass, HDep.getAction()), HostTC(HDep.getToolChain()) {
178 OffloadingArch = HDep.getBoundArch();
179 ActiveOffloadKindMask = HDep.getOffloadKinds();
180 HDep.getAction()->propagateHostOffloadInfo(HDep.getOffloadKinds(),
181 HDep.getBoundArch());
182 }
183
OffloadAction(const DeviceDependences & DDeps,types::ID Ty)184 OffloadAction::OffloadAction(const DeviceDependences &DDeps, types::ID Ty)
185 : Action(OffloadClass, DDeps.getActions(), Ty),
186 DevToolChains(DDeps.getToolChains()) {
187 auto &OKinds = DDeps.getOffloadKinds();
188 auto &BArchs = DDeps.getBoundArchs();
189
190 // If all inputs agree on the same kind, use it also for this action.
191 if (llvm::all_of(OKinds, [&](OffloadKind K) { return K == OKinds.front(); }))
192 OffloadingDeviceKind = OKinds.front();
193
194 // If we have a single dependency, inherit the architecture from it.
195 if (OKinds.size() == 1)
196 OffloadingArch = BArchs.front();
197
198 // Propagate info to the dependencies.
199 for (unsigned i = 0, e = getInputs().size(); i != e; ++i)
200 getInputs()[i]->propagateDeviceOffloadInfo(OKinds[i], BArchs[i]);
201 }
202
OffloadAction(const HostDependence & HDep,const DeviceDependences & DDeps)203 OffloadAction::OffloadAction(const HostDependence &HDep,
204 const DeviceDependences &DDeps)
205 : Action(OffloadClass, HDep.getAction()), HostTC(HDep.getToolChain()),
206 DevToolChains(DDeps.getToolChains()) {
207 // We use the kinds of the host dependence for this action.
208 OffloadingArch = HDep.getBoundArch();
209 ActiveOffloadKindMask = HDep.getOffloadKinds();
210 HDep.getAction()->propagateHostOffloadInfo(HDep.getOffloadKinds(),
211 HDep.getBoundArch());
212
213 // Add device inputs and propagate info to the device actions. Do work only if
214 // we have dependencies.
215 for (unsigned i = 0, e = DDeps.getActions().size(); i != e; ++i)
216 if (auto *A = DDeps.getActions()[i]) {
217 getInputs().push_back(A);
218 A->propagateDeviceOffloadInfo(DDeps.getOffloadKinds()[i],
219 DDeps.getBoundArchs()[i]);
220 }
221 }
222
doOnHostDependence(const OffloadActionWorkTy & Work) const223 void OffloadAction::doOnHostDependence(const OffloadActionWorkTy &Work) const {
224 if (!HostTC)
225 return;
226 assert(!getInputs().empty() && "No dependencies for offload action??");
227 auto *A = getInputs().front();
228 Work(A, HostTC, A->getOffloadingArch());
229 }
230
doOnEachDeviceDependence(const OffloadActionWorkTy & Work) const231 void OffloadAction::doOnEachDeviceDependence(
232 const OffloadActionWorkTy &Work) const {
233 auto I = getInputs().begin();
234 auto E = getInputs().end();
235 if (I == E)
236 return;
237
238 // We expect to have the same number of input dependences and device tool
239 // chains, except if we also have a host dependence. In that case we have one
240 // more dependence than we have device tool chains.
241 assert(getInputs().size() == DevToolChains.size() + (HostTC ? 1 : 0) &&
242 "Sizes of action dependences and toolchains are not consistent!");
243
244 // Skip host action
245 if (HostTC)
246 ++I;
247
248 auto TI = DevToolChains.begin();
249 for (; I != E; ++I, ++TI)
250 Work(*I, *TI, (*I)->getOffloadingArch());
251 }
252
doOnEachDependence(const OffloadActionWorkTy & Work) const253 void OffloadAction::doOnEachDependence(const OffloadActionWorkTy &Work) const {
254 doOnHostDependence(Work);
255 doOnEachDeviceDependence(Work);
256 }
257
doOnEachDependence(bool IsHostDependence,const OffloadActionWorkTy & Work) const258 void OffloadAction::doOnEachDependence(bool IsHostDependence,
259 const OffloadActionWorkTy &Work) const {
260 if (IsHostDependence)
261 doOnHostDependence(Work);
262 else
263 doOnEachDeviceDependence(Work);
264 }
265
hasHostDependence() const266 bool OffloadAction::hasHostDependence() const { return HostTC != nullptr; }
267
getHostDependence() const268 Action *OffloadAction::getHostDependence() const {
269 assert(hasHostDependence() && "Host dependence does not exist!");
270 assert(!getInputs().empty() && "No dependencies for offload action??");
271 return HostTC ? getInputs().front() : nullptr;
272 }
273
hasSingleDeviceDependence(bool DoNotConsiderHostActions) const274 bool OffloadAction::hasSingleDeviceDependence(
275 bool DoNotConsiderHostActions) const {
276 if (DoNotConsiderHostActions)
277 return getInputs().size() == (HostTC ? 2 : 1);
278 return !HostTC && getInputs().size() == 1;
279 }
280
281 Action *
getSingleDeviceDependence(bool DoNotConsiderHostActions) const282 OffloadAction::getSingleDeviceDependence(bool DoNotConsiderHostActions) const {
283 assert(hasSingleDeviceDependence(DoNotConsiderHostActions) &&
284 "Single device dependence does not exist!");
285 // The previous assert ensures the number of entries in getInputs() is
286 // consistent with what we are doing here.
287 return HostTC ? getInputs()[1] : getInputs().front();
288 }
289
add(Action & A,const ToolChain & TC,const char * BoundArch,OffloadKind OKind)290 void OffloadAction::DeviceDependences::add(Action &A, const ToolChain &TC,
291 const char *BoundArch,
292 OffloadKind OKind) {
293 DeviceActions.push_back(&A);
294 DeviceToolChains.push_back(&TC);
295 DeviceBoundArchs.push_back(BoundArch);
296 DeviceOffloadKinds.push_back(OKind);
297 }
298
HostDependence(Action & A,const ToolChain & TC,const char * BoundArch,const DeviceDependences & DDeps)299 OffloadAction::HostDependence::HostDependence(Action &A, const ToolChain &TC,
300 const char *BoundArch,
301 const DeviceDependences &DDeps)
302 : HostAction(A), HostToolChain(TC), HostBoundArch(BoundArch) {
303 for (auto K : DDeps.getOffloadKinds())
304 HostOffloadKinds |= K;
305 }
306
anchor()307 void JobAction::anchor() {}
308
JobAction(ActionClass Kind,Action * Input,types::ID Type)309 JobAction::JobAction(ActionClass Kind, Action *Input, types::ID Type)
310 : Action(Kind, Input, Type) {}
311
JobAction(ActionClass Kind,const ActionList & Inputs,types::ID Type)312 JobAction::JobAction(ActionClass Kind, const ActionList &Inputs, types::ID Type)
313 : Action(Kind, Inputs, Type) {}
314
anchor()315 void PreprocessJobAction::anchor() {}
316
PreprocessJobAction(Action * Input,types::ID OutputType)317 PreprocessJobAction::PreprocessJobAction(Action *Input, types::ID OutputType)
318 : JobAction(PreprocessJobClass, Input, OutputType) {}
319
anchor()320 void PrecompileJobAction::anchor() {}
321
PrecompileJobAction(Action * Input,types::ID OutputType)322 PrecompileJobAction::PrecompileJobAction(Action *Input, types::ID OutputType)
323 : JobAction(PrecompileJobClass, Input, OutputType) {}
324
PrecompileJobAction(ActionClass Kind,Action * Input,types::ID OutputType)325 PrecompileJobAction::PrecompileJobAction(ActionClass Kind, Action *Input,
326 types::ID OutputType)
327 : JobAction(Kind, Input, OutputType) {
328 assert(isa<PrecompileJobAction>((Action*)this) && "invalid action kind");
329 }
330
anchor()331 void HeaderModulePrecompileJobAction::anchor() {}
332
HeaderModulePrecompileJobAction(Action * Input,types::ID OutputType,const char * ModuleName)333 HeaderModulePrecompileJobAction::HeaderModulePrecompileJobAction(
334 Action *Input, types::ID OutputType, const char *ModuleName)
335 : PrecompileJobAction(HeaderModulePrecompileJobClass, Input, OutputType),
336 ModuleName(ModuleName) {}
337
anchor()338 void AnalyzeJobAction::anchor() {}
339
AnalyzeJobAction(Action * Input,types::ID OutputType)340 AnalyzeJobAction::AnalyzeJobAction(Action *Input, types::ID OutputType)
341 : JobAction(AnalyzeJobClass, Input, OutputType) {}
342
anchor()343 void MigrateJobAction::anchor() {}
344
MigrateJobAction(Action * Input,types::ID OutputType)345 MigrateJobAction::MigrateJobAction(Action *Input, types::ID OutputType)
346 : JobAction(MigrateJobClass, Input, OutputType) {}
347
anchor()348 void CompileJobAction::anchor() {}
349
CompileJobAction(Action * Input,types::ID OutputType)350 CompileJobAction::CompileJobAction(Action *Input, types::ID OutputType)
351 : JobAction(CompileJobClass, Input, OutputType) {}
352
anchor()353 void BackendJobAction::anchor() {}
354
BackendJobAction(Action * Input,types::ID OutputType)355 BackendJobAction::BackendJobAction(Action *Input, types::ID OutputType)
356 : JobAction(BackendJobClass, Input, OutputType) {}
357
anchor()358 void AssembleJobAction::anchor() {}
359
AssembleJobAction(Action * Input,types::ID OutputType)360 AssembleJobAction::AssembleJobAction(Action *Input, types::ID OutputType)
361 : JobAction(AssembleJobClass, Input, OutputType) {}
362
anchor()363 void IfsMergeJobAction::anchor() {}
364
IfsMergeJobAction(ActionList & Inputs,types::ID Type)365 IfsMergeJobAction::IfsMergeJobAction(ActionList &Inputs, types::ID Type)
366 : JobAction(IfsMergeJobClass, Inputs, Type) {}
367
anchor()368 void LinkJobAction::anchor() {}
369
LinkJobAction(ActionList & Inputs,types::ID Type)370 LinkJobAction::LinkJobAction(ActionList &Inputs, types::ID Type)
371 : JobAction(LinkJobClass, Inputs, Type) {}
372
anchor()373 void LipoJobAction::anchor() {}
374
LipoJobAction(ActionList & Inputs,types::ID Type)375 LipoJobAction::LipoJobAction(ActionList &Inputs, types::ID Type)
376 : JobAction(LipoJobClass, Inputs, Type) {}
377
anchor()378 void DsymutilJobAction::anchor() {}
379
DsymutilJobAction(ActionList & Inputs,types::ID Type)380 DsymutilJobAction::DsymutilJobAction(ActionList &Inputs, types::ID Type)
381 : JobAction(DsymutilJobClass, Inputs, Type) {}
382
anchor()383 void VerifyJobAction::anchor() {}
384
VerifyJobAction(ActionClass Kind,Action * Input,types::ID Type)385 VerifyJobAction::VerifyJobAction(ActionClass Kind, Action *Input,
386 types::ID Type)
387 : JobAction(Kind, Input, Type) {
388 assert((Kind == VerifyDebugInfoJobClass || Kind == VerifyPCHJobClass) &&
389 "ActionClass is not a valid VerifyJobAction");
390 }
391
anchor()392 void VerifyDebugInfoJobAction::anchor() {}
393
VerifyDebugInfoJobAction(Action * Input,types::ID Type)394 VerifyDebugInfoJobAction::VerifyDebugInfoJobAction(Action *Input,
395 types::ID Type)
396 : VerifyJobAction(VerifyDebugInfoJobClass, Input, Type) {}
397
anchor()398 void VerifyPCHJobAction::anchor() {}
399
VerifyPCHJobAction(Action * Input,types::ID Type)400 VerifyPCHJobAction::VerifyPCHJobAction(Action *Input, types::ID Type)
401 : VerifyJobAction(VerifyPCHJobClass, Input, Type) {}
402
anchor()403 void OffloadBundlingJobAction::anchor() {}
404
OffloadBundlingJobAction(ActionList & Inputs)405 OffloadBundlingJobAction::OffloadBundlingJobAction(ActionList &Inputs)
406 : JobAction(OffloadBundlingJobClass, Inputs, Inputs.back()->getType()) {}
407
anchor()408 void OffloadUnbundlingJobAction::anchor() {}
409
OffloadUnbundlingJobAction(Action * Input)410 OffloadUnbundlingJobAction::OffloadUnbundlingJobAction(Action *Input)
411 : JobAction(OffloadUnbundlingJobClass, Input, Input->getType()) {}
412
anchor()413 void OffloadWrapperJobAction::anchor() {}
414
OffloadWrapperJobAction(ActionList & Inputs,types::ID Type)415 OffloadWrapperJobAction::OffloadWrapperJobAction(ActionList &Inputs,
416 types::ID Type)
417 : JobAction(OffloadWrapperJobClass, Inputs, Type) {}
418