[clang-repl] [codegen] Reduce the state in TBAA. NFC for static compilation. (#98138)
[llvm-project.git] / polly / lib / CodeGen / IslAst.cpp
blob142a19d5e069ba2b68716cfbfa0e596cb7eaa4d2
1 //===- IslAst.cpp - isl code generator interface --------------------------===//
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 // The isl code generator interface takes a Scop and generates an isl_ast. This
10 // ist_ast can either be returned directly or it can be pretty printed to
11 // stdout.
13 // A typical isl_ast output looks like this:
15 // for (c2 = max(0, ceild(n + m, 2); c2 <= min(511, floord(5 * n, 3)); c2++) {
16 // bb2(c2);
17 // }
19 // An in-depth discussion of our AST generation approach can be found in:
21 // Polyhedral AST generation is more than scanning polyhedra
22 // Tobias Grosser, Sven Verdoolaege, Albert Cohen
23 // ACM Transactions on Programming Languages and Systems (TOPLAS),
24 // 37(4), July 2015
25 // http://www.grosser.es/#pub-polyhedral-AST-generation
27 //===----------------------------------------------------------------------===//
29 #include "polly/CodeGen/IslAst.h"
30 #include "polly/CodeGen/CodeGeneration.h"
31 #include "polly/DependenceInfo.h"
32 #include "polly/LinkAllPasses.h"
33 #include "polly/Options.h"
34 #include "polly/ScopDetection.h"
35 #include "polly/ScopInfo.h"
36 #include "polly/ScopPass.h"
37 #include "polly/Support/GICHelper.h"
38 #include "llvm/ADT/Statistic.h"
39 #include "llvm/IR/Function.h"
40 #include "llvm/Support/Debug.h"
41 #include "llvm/Support/raw_ostream.h"
42 #include "isl/aff.h"
43 #include "isl/ast.h"
44 #include "isl/ast_build.h"
45 #include "isl/id.h"
46 #include "isl/isl-noexceptions.h"
47 #include "isl/printer.h"
48 #include "isl/schedule.h"
49 #include "isl/set.h"
50 #include "isl/union_map.h"
51 #include "isl/val.h"
52 #include <cassert>
53 #include <cstdlib>
55 #include "polly/Support/PollyDebug.h"
56 #define DEBUG_TYPE "polly-ast"
58 using namespace llvm;
59 using namespace polly;
61 using IslAstUserPayload = IslAstInfo::IslAstUserPayload;
63 static cl::opt<bool>
64 PollyParallel("polly-parallel",
65 cl::desc("Generate thread parallel code (isl codegen only)"),
66 cl::cat(PollyCategory));
68 static cl::opt<bool> PrintAccesses("polly-ast-print-accesses",
69 cl::desc("Print memory access functions"),
70 cl::cat(PollyCategory));
72 static cl::opt<bool> PollyParallelForce(
73 "polly-parallel-force",
74 cl::desc(
75 "Force generation of thread parallel code ignoring any cost model"),
76 cl::cat(PollyCategory));
78 static cl::opt<bool> UseContext("polly-ast-use-context",
79 cl::desc("Use context"), cl::Hidden,
80 cl::init(true), cl::cat(PollyCategory));
82 static cl::opt<bool> DetectParallel("polly-ast-detect-parallel",
83 cl::desc("Detect parallelism"), cl::Hidden,
84 cl::cat(PollyCategory));
86 STATISTIC(ScopsProcessed, "Number of SCoPs processed");
87 STATISTIC(ScopsBeneficial, "Number of beneficial SCoPs");
88 STATISTIC(BeneficialAffineLoops, "Number of beneficial affine loops");
89 STATISTIC(BeneficialBoxedLoops, "Number of beneficial boxed loops");
91 STATISTIC(NumForLoops, "Number of for-loops");
92 STATISTIC(NumParallel, "Number of parallel for-loops");
93 STATISTIC(NumInnermostParallel, "Number of innermost parallel for-loops");
94 STATISTIC(NumOutermostParallel, "Number of outermost parallel for-loops");
95 STATISTIC(NumReductionParallel, "Number of reduction-parallel for-loops");
96 STATISTIC(NumExecutedInParallel, "Number of for-loops executed in parallel");
97 STATISTIC(NumIfConditions, "Number of if-conditions");
99 namespace polly {
101 /// Temporary information used when building the ast.
102 struct AstBuildUserInfo {
103 /// Construct and initialize the helper struct for AST creation.
104 AstBuildUserInfo() = default;
106 /// The dependence information used for the parallelism check.
107 const Dependences *Deps = nullptr;
109 /// Flag to indicate that we are inside a parallel for node.
110 bool InParallelFor = false;
112 /// Flag to indicate that we are inside an SIMD node.
113 bool InSIMD = false;
115 /// The last iterator id created for the current SCoP.
116 isl_id *LastForNodeId = nullptr;
118 } // namespace polly
120 /// Free an IslAstUserPayload object pointed to by @p Ptr.
121 static void freeIslAstUserPayload(void *Ptr) {
122 delete ((IslAstInfo::IslAstUserPayload *)Ptr);
125 /// Print a string @p str in a single line using @p Printer.
126 static isl_printer *printLine(__isl_take isl_printer *Printer,
127 const std::string &str,
128 __isl_keep isl_pw_aff *PWA = nullptr) {
129 Printer = isl_printer_start_line(Printer);
130 Printer = isl_printer_print_str(Printer, str.c_str());
131 if (PWA)
132 Printer = isl_printer_print_pw_aff(Printer, PWA);
133 return isl_printer_end_line(Printer);
136 /// Return all broken reductions as a string of clauses (OpenMP style).
137 static const std::string getBrokenReductionsStr(const isl::ast_node &Node) {
138 IslAstInfo::MemoryAccessSet *BrokenReductions;
139 std::string str;
141 BrokenReductions = IslAstInfo::getBrokenReductions(Node);
142 if (!BrokenReductions || BrokenReductions->empty())
143 return "";
145 // Map each type of reduction to a comma separated list of the base addresses.
146 std::map<MemoryAccess::ReductionType, std::string> Clauses;
147 for (MemoryAccess *MA : *BrokenReductions)
148 if (MA->isWrite())
149 Clauses[MA->getReductionType()] +=
150 ", " + MA->getScopArrayInfo()->getName();
152 // Now print the reductions sorted by type. Each type will cause a clause
153 // like: reduction (+ : sum0, sum1, sum2)
154 for (const auto &ReductionClause : Clauses) {
155 str += " reduction (";
156 str += MemoryAccess::getReductionOperatorStr(ReductionClause.first);
157 // Remove the first two symbols (", ") to make the output look pretty.
158 str += " : " + ReductionClause.second.substr(2) + ")";
161 return str;
164 /// Callback executed for each for node in the ast in order to print it.
165 static isl_printer *cbPrintFor(__isl_take isl_printer *Printer,
166 __isl_take isl_ast_print_options *Options,
167 __isl_keep isl_ast_node *Node, void *) {
168 isl::pw_aff DD =
169 IslAstInfo::getMinimalDependenceDistance(isl::manage_copy(Node));
170 const std::string BrokenReductionsStr =
171 getBrokenReductionsStr(isl::manage_copy(Node));
172 const std::string KnownParallelStr = "#pragma known-parallel";
173 const std::string DepDisPragmaStr = "#pragma minimal dependence distance: ";
174 const std::string SimdPragmaStr = "#pragma simd";
175 const std::string OmpPragmaStr = "#pragma omp parallel for";
177 if (!DD.is_null())
178 Printer = printLine(Printer, DepDisPragmaStr, DD.get());
180 if (IslAstInfo::isInnermostParallel(isl::manage_copy(Node)))
181 Printer = printLine(Printer, SimdPragmaStr + BrokenReductionsStr);
183 if (IslAstInfo::isExecutedInParallel(isl::manage_copy(Node)))
184 Printer = printLine(Printer, OmpPragmaStr);
185 else if (IslAstInfo::isOutermostParallel(isl::manage_copy(Node)))
186 Printer = printLine(Printer, KnownParallelStr + BrokenReductionsStr);
188 return isl_ast_node_for_print(Node, Printer, Options);
191 /// Check if the current scheduling dimension is parallel.
193 /// In case the dimension is parallel we also check if any reduction
194 /// dependences is broken when we exploit this parallelism. If so,
195 /// @p IsReductionParallel will be set to true. The reduction dependences we use
196 /// to check are actually the union of the transitive closure of the initial
197 /// reduction dependences together with their reversal. Even though these
198 /// dependences connect all iterations with each other (thus they are cyclic)
199 /// we can perform the parallelism check as we are only interested in a zero
200 /// (or non-zero) dependence distance on the dimension in question.
201 static bool astScheduleDimIsParallel(const isl::ast_build &Build,
202 const Dependences *D,
203 IslAstUserPayload *NodeInfo) {
204 if (!D->hasValidDependences())
205 return false;
207 isl::union_map Schedule = Build.get_schedule();
208 isl::union_map Dep = D->getDependences(
209 Dependences::TYPE_RAW | Dependences::TYPE_WAW | Dependences::TYPE_WAR);
211 if (!D->isParallel(Schedule.get(), Dep.release())) {
212 isl::union_map DepsAll =
213 D->getDependences(Dependences::TYPE_RAW | Dependences::TYPE_WAW |
214 Dependences::TYPE_WAR | Dependences::TYPE_TC_RED);
215 // TODO: We will need to change isParallel to stop the unwrapping
216 isl_pw_aff *MinimalDependenceDistanceIsl = nullptr;
217 D->isParallel(Schedule.get(), DepsAll.release(),
218 &MinimalDependenceDistanceIsl);
219 NodeInfo->MinimalDependenceDistance =
220 isl::manage(MinimalDependenceDistanceIsl);
221 return false;
224 isl::union_map RedDeps = D->getDependences(Dependences::TYPE_TC_RED);
225 if (!D->isParallel(Schedule.get(), RedDeps.release()))
226 NodeInfo->IsReductionParallel = true;
228 if (!NodeInfo->IsReductionParallel)
229 return true;
231 for (const auto &MaRedPair : D->getReductionDependences()) {
232 if (!MaRedPair.second)
233 continue;
234 isl::union_map MaRedDeps = isl::manage_copy(MaRedPair.second);
235 if (!D->isParallel(Schedule.get(), MaRedDeps.release()))
236 NodeInfo->BrokenReductions.insert(MaRedPair.first);
238 return true;
241 // This method is executed before the construction of a for node. It creates
242 // an isl_id that is used to annotate the subsequently generated ast for nodes.
244 // In this function we also run the following analyses:
246 // - Detection of openmp parallel loops
248 static __isl_give isl_id *astBuildBeforeFor(__isl_keep isl_ast_build *Build,
249 void *User) {
250 AstBuildUserInfo *BuildInfo = (AstBuildUserInfo *)User;
251 IslAstUserPayload *Payload = new IslAstUserPayload();
252 isl_id *Id = isl_id_alloc(isl_ast_build_get_ctx(Build), "", Payload);
253 Id = isl_id_set_free_user(Id, freeIslAstUserPayload);
254 BuildInfo->LastForNodeId = Id;
256 Payload->IsParallel = astScheduleDimIsParallel(isl::manage_copy(Build),
257 BuildInfo->Deps, Payload);
259 // Test for parallelism only if we are not already inside a parallel loop
260 if (!BuildInfo->InParallelFor && !BuildInfo->InSIMD)
261 BuildInfo->InParallelFor = Payload->IsOutermostParallel =
262 Payload->IsParallel;
264 return Id;
267 // This method is executed after the construction of a for node.
269 // It performs the following actions:
271 // - Reset the 'InParallelFor' flag, as soon as we leave a for node,
272 // that is marked as openmp parallel.
274 static __isl_give isl_ast_node *
275 astBuildAfterFor(__isl_take isl_ast_node *Node, __isl_keep isl_ast_build *Build,
276 void *User) {
277 isl_id *Id = isl_ast_node_get_annotation(Node);
278 assert(Id && "Post order visit assumes annotated for nodes");
279 IslAstUserPayload *Payload = (IslAstUserPayload *)isl_id_get_user(Id);
280 assert(Payload && "Post order visit assumes annotated for nodes");
282 AstBuildUserInfo *BuildInfo = (AstBuildUserInfo *)User;
283 assert(Payload->Build.is_null() && "Build environment already set");
284 Payload->Build = isl::manage_copy(Build);
285 Payload->IsInnermost = (Id == BuildInfo->LastForNodeId);
287 Payload->IsInnermostParallel =
288 Payload->IsInnermost && (BuildInfo->InSIMD || Payload->IsParallel);
289 if (Payload->IsOutermostParallel)
290 BuildInfo->InParallelFor = false;
292 isl_id_free(Id);
293 return Node;
296 static isl_stat astBuildBeforeMark(__isl_keep isl_id *MarkId,
297 __isl_keep isl_ast_build *Build,
298 void *User) {
299 if (!MarkId)
300 return isl_stat_error;
302 AstBuildUserInfo *BuildInfo = (AstBuildUserInfo *)User;
303 if (strcmp(isl_id_get_name(MarkId), "SIMD") == 0)
304 BuildInfo->InSIMD = true;
306 return isl_stat_ok;
309 static __isl_give isl_ast_node *
310 astBuildAfterMark(__isl_take isl_ast_node *Node,
311 __isl_keep isl_ast_build *Build, void *User) {
312 assert(isl_ast_node_get_type(Node) == isl_ast_node_mark);
313 AstBuildUserInfo *BuildInfo = (AstBuildUserInfo *)User;
314 auto *Id = isl_ast_node_mark_get_id(Node);
315 if (strcmp(isl_id_get_name(Id), "SIMD") == 0)
316 BuildInfo->InSIMD = false;
317 isl_id_free(Id);
318 return Node;
321 static __isl_give isl_ast_node *AtEachDomain(__isl_take isl_ast_node *Node,
322 __isl_keep isl_ast_build *Build,
323 void *User) {
324 assert(!isl_ast_node_get_annotation(Node) && "Node already annotated");
326 IslAstUserPayload *Payload = new IslAstUserPayload();
327 isl_id *Id = isl_id_alloc(isl_ast_build_get_ctx(Build), "", Payload);
328 Id = isl_id_set_free_user(Id, freeIslAstUserPayload);
330 Payload->Build = isl::manage_copy(Build);
332 return isl_ast_node_set_annotation(Node, Id);
335 // Build alias check condition given a pair of minimal/maximal access.
336 static isl::ast_expr buildCondition(Scop &S, isl::ast_build Build,
337 const Scop::MinMaxAccessTy *It0,
338 const Scop::MinMaxAccessTy *It1) {
340 isl::pw_multi_aff AFirst = It0->first;
341 isl::pw_multi_aff ASecond = It0->second;
342 isl::pw_multi_aff BFirst = It1->first;
343 isl::pw_multi_aff BSecond = It1->second;
345 isl::id Left = AFirst.get_tuple_id(isl::dim::set);
346 isl::id Right = BFirst.get_tuple_id(isl::dim::set);
348 isl::ast_expr True =
349 isl::ast_expr::from_val(isl::val::int_from_ui(Build.ctx(), 1));
350 isl::ast_expr False =
351 isl::ast_expr::from_val(isl::val::int_from_ui(Build.ctx(), 0));
353 const ScopArrayInfo *BaseLeft =
354 ScopArrayInfo::getFromId(Left)->getBasePtrOriginSAI();
355 const ScopArrayInfo *BaseRight =
356 ScopArrayInfo::getFromId(Right)->getBasePtrOriginSAI();
357 if (BaseLeft && BaseLeft == BaseRight)
358 return True;
360 isl::set Params = S.getContext();
362 isl::ast_expr NonAliasGroup, MinExpr, MaxExpr;
364 // In the following, we first check if any accesses will be empty under
365 // the execution context of the scop and do not code generate them if this
366 // is the case as isl will fail to derive valid AST expressions for such
367 // accesses.
369 if (!AFirst.intersect_params(Params).domain().is_empty() &&
370 !BSecond.intersect_params(Params).domain().is_empty()) {
371 MinExpr = Build.access_from(AFirst).address_of();
372 MaxExpr = Build.access_from(BSecond).address_of();
373 NonAliasGroup = MaxExpr.le(MinExpr);
376 if (!BFirst.intersect_params(Params).domain().is_empty() &&
377 !ASecond.intersect_params(Params).domain().is_empty()) {
378 MinExpr = Build.access_from(BFirst).address_of();
379 MaxExpr = Build.access_from(ASecond).address_of();
381 isl::ast_expr Result = MaxExpr.le(MinExpr);
382 if (!NonAliasGroup.is_null())
383 NonAliasGroup = isl::manage(
384 isl_ast_expr_or(NonAliasGroup.release(), Result.release()));
385 else
386 NonAliasGroup = Result;
389 if (NonAliasGroup.is_null())
390 NonAliasGroup = True;
392 return NonAliasGroup;
395 isl::ast_expr IslAst::buildRunCondition(Scop &S, const isl::ast_build &Build) {
396 isl::ast_expr RunCondition;
398 // The conditions that need to be checked at run-time for this scop are
399 // available as an isl_set in the runtime check context from which we can
400 // directly derive a run-time condition.
401 auto PosCond = Build.expr_from(S.getAssumedContext());
402 if (S.hasTrivialInvalidContext()) {
403 RunCondition = std::move(PosCond);
404 } else {
405 auto ZeroV = isl::val::zero(Build.ctx());
406 auto NegCond = Build.expr_from(S.getInvalidContext());
407 auto NotNegCond =
408 isl::ast_expr::from_val(std::move(ZeroV)).eq(std::move(NegCond));
409 RunCondition =
410 isl::manage(isl_ast_expr_and(PosCond.release(), NotNegCond.release()));
413 // Create the alias checks from the minimal/maximal accesses in each alias
414 // group which consists of read only and non read only (read write) accesses.
415 // This operation is by construction quadratic in the read-write pointers and
416 // linear in the read only pointers in each alias group.
417 for (const Scop::MinMaxVectorPairTy &MinMaxAccessPair : S.getAliasGroups()) {
418 auto &MinMaxReadWrite = MinMaxAccessPair.first;
419 auto &MinMaxReadOnly = MinMaxAccessPair.second;
420 auto RWAccEnd = MinMaxReadWrite.end();
422 for (auto RWAccIt0 = MinMaxReadWrite.begin(); RWAccIt0 != RWAccEnd;
423 ++RWAccIt0) {
424 for (auto RWAccIt1 = RWAccIt0 + 1; RWAccIt1 != RWAccEnd; ++RWAccIt1)
425 RunCondition = isl::manage(isl_ast_expr_and(
426 RunCondition.release(),
427 buildCondition(S, Build, RWAccIt0, RWAccIt1).release()));
428 for (const Scop::MinMaxAccessTy &ROAccIt : MinMaxReadOnly)
429 RunCondition = isl::manage(isl_ast_expr_and(
430 RunCondition.release(),
431 buildCondition(S, Build, RWAccIt0, &ROAccIt).release()));
435 return RunCondition;
438 /// Simple cost analysis for a given SCoP.
440 /// TODO: Improve this analysis and extract it to make it usable in other
441 /// places too.
442 /// In order to improve the cost model we could either keep track of
443 /// performed optimizations (e.g., tiling) or compute properties on the
444 /// original as well as optimized SCoP (e.g., #stride-one-accesses).
445 static bool benefitsFromPolly(Scop &Scop, bool PerformParallelTest) {
446 if (PollyProcessUnprofitable)
447 return true;
449 // Check if nothing interesting happened.
450 if (!PerformParallelTest && !Scop.isOptimized() &&
451 Scop.getAliasGroups().empty())
452 return false;
454 // The default assumption is that Polly improves the code.
455 return true;
458 /// Collect statistics for the syntax tree rooted at @p Ast.
459 static void walkAstForStatistics(const isl::ast_node &Ast) {
460 assert(!Ast.is_null());
461 isl_ast_node_foreach_descendant_top_down(
462 Ast.get(),
463 [](__isl_keep isl_ast_node *Node, void *User) -> isl_bool {
464 switch (isl_ast_node_get_type(Node)) {
465 case isl_ast_node_for:
466 NumForLoops++;
467 if (IslAstInfo::isParallel(isl::manage_copy(Node)))
468 NumParallel++;
469 if (IslAstInfo::isInnermostParallel(isl::manage_copy(Node)))
470 NumInnermostParallel++;
471 if (IslAstInfo::isOutermostParallel(isl::manage_copy(Node)))
472 NumOutermostParallel++;
473 if (IslAstInfo::isReductionParallel(isl::manage_copy(Node)))
474 NumReductionParallel++;
475 if (IslAstInfo::isExecutedInParallel(isl::manage_copy(Node)))
476 NumExecutedInParallel++;
477 break;
479 case isl_ast_node_if:
480 NumIfConditions++;
481 break;
483 default:
484 break;
487 // Continue traversing subtrees.
488 return isl_bool_true;
490 nullptr);
493 IslAst::IslAst(Scop &Scop) : S(Scop), Ctx(Scop.getSharedIslCtx()) {}
495 IslAst::IslAst(IslAst &&O)
496 : S(O.S), Ctx(O.Ctx), RunCondition(std::move(O.RunCondition)),
497 Root(std::move(O.Root)) {}
499 void IslAst::init(const Dependences &D) {
500 bool PerformParallelTest = PollyParallel || DetectParallel ||
501 PollyVectorizerChoice != VECTORIZER_NONE;
502 auto ScheduleTree = S.getScheduleTree();
504 // Skip AST and code generation if there was no benefit achieved.
505 if (!benefitsFromPolly(S, PerformParallelTest))
506 return;
508 auto ScopStats = S.getStatistics();
509 ScopsBeneficial++;
510 BeneficialAffineLoops += ScopStats.NumAffineLoops;
511 BeneficialBoxedLoops += ScopStats.NumBoxedLoops;
513 auto Ctx = S.getIslCtx();
514 isl_options_set_ast_build_atomic_upper_bound(Ctx.get(), true);
515 isl_options_set_ast_build_detect_min_max(Ctx.get(), true);
516 isl_ast_build *Build;
517 AstBuildUserInfo BuildInfo;
519 if (UseContext)
520 Build = isl_ast_build_from_context(S.getContext().release());
521 else
522 Build = isl_ast_build_from_context(
523 isl_set_universe(S.getParamSpace().release()));
525 Build = isl_ast_build_set_at_each_domain(Build, AtEachDomain, nullptr);
527 if (PerformParallelTest) {
528 BuildInfo.Deps = &D;
529 BuildInfo.InParallelFor = false;
530 BuildInfo.InSIMD = false;
532 Build = isl_ast_build_set_before_each_for(Build, &astBuildBeforeFor,
533 &BuildInfo);
534 Build =
535 isl_ast_build_set_after_each_for(Build, &astBuildAfterFor, &BuildInfo);
537 Build = isl_ast_build_set_before_each_mark(Build, &astBuildBeforeMark,
538 &BuildInfo);
540 Build = isl_ast_build_set_after_each_mark(Build, &astBuildAfterMark,
541 &BuildInfo);
544 RunCondition = buildRunCondition(S, isl::manage_copy(Build));
546 Root = isl::manage(
547 isl_ast_build_node_from_schedule(Build, S.getScheduleTree().release()));
548 walkAstForStatistics(Root);
550 isl_ast_build_free(Build);
553 IslAst IslAst::create(Scop &Scop, const Dependences &D) {
554 IslAst Ast{Scop};
555 Ast.init(D);
556 return Ast;
559 isl::ast_node IslAst::getAst() { return Root; }
560 isl::ast_expr IslAst::getRunCondition() { return RunCondition; }
562 isl::ast_node IslAstInfo::getAst() { return Ast.getAst(); }
563 isl::ast_expr IslAstInfo::getRunCondition() { return Ast.getRunCondition(); }
565 IslAstUserPayload *IslAstInfo::getNodePayload(const isl::ast_node &Node) {
566 isl::id Id = Node.get_annotation();
567 if (Id.is_null())
568 return nullptr;
569 IslAstUserPayload *Payload = (IslAstUserPayload *)Id.get_user();
570 return Payload;
573 bool IslAstInfo::isInnermost(const isl::ast_node &Node) {
574 IslAstUserPayload *Payload = getNodePayload(Node);
575 return Payload && Payload->IsInnermost;
578 bool IslAstInfo::isParallel(const isl::ast_node &Node) {
579 return IslAstInfo::isInnermostParallel(Node) ||
580 IslAstInfo::isOutermostParallel(Node);
583 bool IslAstInfo::isInnermostParallel(const isl::ast_node &Node) {
584 IslAstUserPayload *Payload = getNodePayload(Node);
585 return Payload && Payload->IsInnermostParallel;
588 bool IslAstInfo::isOutermostParallel(const isl::ast_node &Node) {
589 IslAstUserPayload *Payload = getNodePayload(Node);
590 return Payload && Payload->IsOutermostParallel;
593 bool IslAstInfo::isReductionParallel(const isl::ast_node &Node) {
594 IslAstUserPayload *Payload = getNodePayload(Node);
595 return Payload && Payload->IsReductionParallel;
598 bool IslAstInfo::isExecutedInParallel(const isl::ast_node &Node) {
599 if (!PollyParallel)
600 return false;
602 // Do not parallelize innermost loops.
604 // Parallelizing innermost loops is often not profitable, especially if
605 // they have a low number of iterations.
607 // TODO: Decide this based on the number of loop iterations that will be
608 // executed. This can possibly require run-time checks, which again
609 // raises the question of both run-time check overhead and code size
610 // costs.
611 if (!PollyParallelForce && isInnermost(Node))
612 return false;
614 return isOutermostParallel(Node) && !isReductionParallel(Node);
617 isl::union_map IslAstInfo::getSchedule(const isl::ast_node &Node) {
618 IslAstUserPayload *Payload = getNodePayload(Node);
619 return Payload ? Payload->Build.get_schedule() : isl::union_map();
622 isl::pw_aff
623 IslAstInfo::getMinimalDependenceDistance(const isl::ast_node &Node) {
624 IslAstUserPayload *Payload = getNodePayload(Node);
625 return Payload ? Payload->MinimalDependenceDistance : isl::pw_aff();
628 IslAstInfo::MemoryAccessSet *
629 IslAstInfo::getBrokenReductions(const isl::ast_node &Node) {
630 IslAstUserPayload *Payload = getNodePayload(Node);
631 return Payload ? &Payload->BrokenReductions : nullptr;
634 isl::ast_build IslAstInfo::getBuild(const isl::ast_node &Node) {
635 IslAstUserPayload *Payload = getNodePayload(Node);
636 return Payload ? Payload->Build : isl::ast_build();
639 static std::unique_ptr<IslAstInfo> runIslAst(
640 Scop &Scop,
641 function_ref<const Dependences &(Dependences::AnalysisLevel)> GetDeps) {
642 ScopsProcessed++;
644 const Dependences &D = GetDeps(Dependences::AL_Statement);
646 if (D.getSharedIslCtx() != Scop.getSharedIslCtx()) {
647 POLLY_DEBUG(
648 dbgs() << "Got dependence analysis for different SCoP/isl_ctx\n");
649 return {};
652 std::unique_ptr<IslAstInfo> Ast = std::make_unique<IslAstInfo>(Scop, D);
654 POLLY_DEBUG({
655 if (Ast)
656 Ast->print(dbgs());
659 return Ast;
662 IslAstInfo IslAstAnalysis::run(Scop &S, ScopAnalysisManager &SAM,
663 ScopStandardAnalysisResults &SAR) {
664 auto GetDeps = [&](Dependences::AnalysisLevel Lvl) -> const Dependences & {
665 return SAM.getResult<DependenceAnalysis>(S, SAR).getDependences(Lvl);
668 return std::move(*runIslAst(S, GetDeps));
671 static __isl_give isl_printer *cbPrintUser(__isl_take isl_printer *P,
672 __isl_take isl_ast_print_options *O,
673 __isl_keep isl_ast_node *Node,
674 void *User) {
675 isl::ast_node_user AstNode = isl::manage_copy(Node).as<isl::ast_node_user>();
676 isl::ast_expr NodeExpr = AstNode.expr();
677 isl::ast_expr CallExpr = NodeExpr.get_op_arg(0);
678 isl::id CallExprId = CallExpr.get_id();
679 ScopStmt *AccessStmt = (ScopStmt *)CallExprId.get_user();
681 P = isl_printer_start_line(P);
682 P = isl_printer_print_str(P, AccessStmt->getBaseName());
683 P = isl_printer_print_str(P, "(");
684 P = isl_printer_end_line(P);
685 P = isl_printer_indent(P, 2);
687 for (MemoryAccess *MemAcc : *AccessStmt) {
688 P = isl_printer_start_line(P);
690 if (MemAcc->isRead())
691 P = isl_printer_print_str(P, "/* read */ &");
692 else
693 P = isl_printer_print_str(P, "/* write */ ");
695 isl::ast_build Build = IslAstInfo::getBuild(isl::manage_copy(Node));
696 if (MemAcc->isAffine()) {
697 isl_pw_multi_aff *PwmaPtr =
698 MemAcc->applyScheduleToAccessRelation(Build.get_schedule()).release();
699 isl::pw_multi_aff Pwma = isl::manage(PwmaPtr);
700 isl::ast_expr AccessExpr = Build.access_from(Pwma);
701 P = isl_printer_print_ast_expr(P, AccessExpr.get());
702 } else {
703 P = isl_printer_print_str(
704 P, MemAcc->getLatestScopArrayInfo()->getName().c_str());
705 P = isl_printer_print_str(P, "[*]");
707 P = isl_printer_end_line(P);
710 P = isl_printer_indent(P, -2);
711 P = isl_printer_start_line(P);
712 P = isl_printer_print_str(P, ");");
713 P = isl_printer_end_line(P);
715 isl_ast_print_options_free(O);
716 return P;
719 void IslAstInfo::print(raw_ostream &OS) {
720 isl_ast_print_options *Options;
721 isl::ast_node RootNode = Ast.getAst();
722 Function &F = S.getFunction();
724 OS << ":: isl ast :: " << F.getName() << " :: " << S.getNameStr() << "\n";
726 if (RootNode.is_null()) {
727 OS << ":: isl ast generation and code generation was skipped!\n\n";
728 OS << ":: This is either because no useful optimizations could be applied "
729 "(use -polly-process-unprofitable to enforce code generation) or "
730 "because earlier passes such as dependence analysis timed out (use "
731 "-polly-dependences-computeout=0 to set dependence analysis timeout "
732 "to infinity)\n\n";
733 return;
736 isl::ast_expr RunCondition = Ast.getRunCondition();
737 char *RtCStr, *AstStr;
739 Options = isl_ast_print_options_alloc(S.getIslCtx().get());
741 if (PrintAccesses)
742 Options =
743 isl_ast_print_options_set_print_user(Options, cbPrintUser, nullptr);
744 Options = isl_ast_print_options_set_print_for(Options, cbPrintFor, nullptr);
746 isl_printer *P = isl_printer_to_str(S.getIslCtx().get());
747 P = isl_printer_set_output_format(P, ISL_FORMAT_C);
748 P = isl_printer_print_ast_expr(P, RunCondition.get());
749 RtCStr = isl_printer_get_str(P);
750 P = isl_printer_flush(P);
751 P = isl_printer_indent(P, 4);
752 P = isl_ast_node_print(RootNode.get(), P, Options);
753 AstStr = isl_printer_get_str(P);
755 POLLY_DEBUG({
756 dbgs() << S.getContextStr() << "\n";
757 dbgs() << stringFromIslObj(S.getScheduleTree(), "null");
759 OS << "\nif (" << RtCStr << ")\n\n";
760 OS << AstStr << "\n";
761 OS << "else\n";
762 OS << " { /* original code */ }\n\n";
764 free(RtCStr);
765 free(AstStr);
767 isl_printer_free(P);
770 AnalysisKey IslAstAnalysis::Key;
771 PreservedAnalyses IslAstPrinterPass::run(Scop &S, ScopAnalysisManager &SAM,
772 ScopStandardAnalysisResults &SAR,
773 SPMUpdater &U) {
774 auto &Ast = SAM.getResult<IslAstAnalysis>(S, SAR);
775 Ast.print(OS);
776 return PreservedAnalyses::all();
779 void IslAstInfoWrapperPass::releaseMemory() { Ast.reset(); }
781 bool IslAstInfoWrapperPass::runOnScop(Scop &Scop) {
782 auto GetDeps = [this](Dependences::AnalysisLevel Lvl) -> const Dependences & {
783 return getAnalysis<DependenceInfo>().getDependences(Lvl);
786 Ast = runIslAst(Scop, GetDeps);
788 return false;
791 void IslAstInfoWrapperPass::getAnalysisUsage(AnalysisUsage &AU) const {
792 // Get the Common analysis usage of ScopPasses.
793 ScopPass::getAnalysisUsage(AU);
794 AU.addRequiredTransitive<ScopInfoRegionPass>();
795 AU.addRequired<DependenceInfo>();
797 AU.addPreserved<DependenceInfo>();
800 void IslAstInfoWrapperPass::printScop(raw_ostream &OS, Scop &S) const {
801 OS << "Printing analysis 'Polly - Generate an AST of the SCoP (isl)'"
802 << S.getName() << "' in function '" << S.getFunction().getName() << "':\n";
803 if (Ast)
804 Ast->print(OS);
807 char IslAstInfoWrapperPass::ID = 0;
809 Pass *polly::createIslAstInfoWrapperPassPass() {
810 return new IslAstInfoWrapperPass();
813 INITIALIZE_PASS_BEGIN(IslAstInfoWrapperPass, "polly-ast",
814 "Polly - Generate an AST of the SCoP (isl)", false,
815 false);
816 INITIALIZE_PASS_DEPENDENCY(ScopInfoRegionPass);
817 INITIALIZE_PASS_DEPENDENCY(DependenceInfo);
818 INITIALIZE_PASS_END(IslAstInfoWrapperPass, "polly-ast",
819 "Polly - Generate an AST from the SCoP (isl)", false, false)
821 //===----------------------------------------------------------------------===//
823 namespace {
824 /// Print result from IslAstInfoWrapperPass.
825 class IslAstInfoPrinterLegacyPass final : public ScopPass {
826 public:
827 static char ID;
829 IslAstInfoPrinterLegacyPass() : IslAstInfoPrinterLegacyPass(outs()) {}
830 explicit IslAstInfoPrinterLegacyPass(llvm::raw_ostream &OS)
831 : ScopPass(ID), OS(OS) {}
833 bool runOnScop(Scop &S) override {
834 IslAstInfoWrapperPass &P = getAnalysis<IslAstInfoWrapperPass>();
836 OS << "Printing analysis '" << P.getPassName() << "' for region: '"
837 << S.getRegion().getNameStr() << "' in function '"
838 << S.getFunction().getName() << "':\n";
839 P.printScop(OS, S);
841 return false;
844 void getAnalysisUsage(AnalysisUsage &AU) const override {
845 ScopPass::getAnalysisUsage(AU);
846 AU.addRequired<IslAstInfoWrapperPass>();
847 AU.setPreservesAll();
850 private:
851 llvm::raw_ostream &OS;
854 char IslAstInfoPrinterLegacyPass::ID = 0;
855 } // namespace
857 Pass *polly::createIslAstInfoPrinterLegacyPass(raw_ostream &OS) {
858 return new IslAstInfoPrinterLegacyPass(OS);
861 INITIALIZE_PASS_BEGIN(IslAstInfoPrinterLegacyPass, "polly-print-ast",
862 "Polly - Print the AST from a SCoP (isl)", false, false);
863 INITIALIZE_PASS_DEPENDENCY(IslAstInfoWrapperPass);
864 INITIALIZE_PASS_END(IslAstInfoPrinterLegacyPass, "polly-print-ast",
865 "Polly - Print the AST from a SCoP (isl)", false, false)