33#if LLVM_ENABLE_THREADS
34#define GET_THREAD_INDEX_IMPL \
35 if (parallel::strategy.ThreadsRequested == 1) \
37 assert((threadIndex != UINT_MAX) && \
38 "getThreadIndex() must be called from a thread created by " \
39 "ThreadPoolExecutor"); \
48LLVM_ABI extern thread_local unsigned threadIndex;
62 mutable std::mutex Mutex;
63 mutable std::condition_variable Cond;
73 std::lock_guard<std::mutex> lock(Mutex);
78 std::lock_guard<std::mutex> lock(Mutex);
84 std::unique_lock<std::mutex> lock(Mutex);
85 Cond.wait(lock, [&] {
return Count == 0; });
103 void sync()
const { L.sync(); }
110#if LLVM_ENABLE_THREADS
114template <
class RandomAccessIterator,
class Comparator>
115RandomAccessIterator medianOf3(RandomAccessIterator Start,
116 RandomAccessIterator End,
117 const Comparator &Comp) {
118 RandomAccessIterator Mid = Start + (std::distance(Start, End) / 2);
119 return Comp(*Start, *(End - 1))
120 ? (Comp(*Mid, *(End - 1)) ? (Comp(*Start, *Mid) ? Mid : Start)
122 : (Comp(*Mid, *Start) ? (Comp(*(End - 1), *Mid) ? Mid : End - 1)
126template <
class RandomAccessIterator,
class Comparator>
127void parallel_quick_sort(RandomAccessIterator Start, RandomAccessIterator End,
128 const Comparator &Comp, TaskGroup &TG,
size_t Depth) {
130 if (std::distance(Start, End) < detail::MinParallelSize ||
Depth == 0) {
136 auto Pivot = medianOf3(Start, End, Comp);
139 Pivot = std::partition(Start, End - 1, [&Comp, End](
decltype(*Start) V) {
140 return Comp(V, *(End - 1));
146 TG.spawn([=, &Comp, &TG] {
147 parallel_quick_sort(Start, Pivot, Comp, TG,
Depth - 1);
149 parallel_quick_sort(Pivot + 1, End, Comp, TG,
Depth - 1);
152template <
class RandomAccessIterator,
class Comparator>
153void parallel_sort(RandomAccessIterator Start, RandomAccessIterator End,
154 const Comparator &Comp) {
156 parallel_quick_sort(Start, End, Comp, TG,
164enum { MaxTasksPerGroup = 1024 };
166template <
class IterTy,
class ResultTy,
class ReduceFuncTy,
167 class TransformFuncTy>
168ResultTy parallel_transform_reduce(IterTy Begin, IterTy End, ResultTy Init,
170 TransformFuncTy Transform) {
173 size_t NumInputs = std::distance(Begin, End);
175 return std::move(Init);
176 size_t NumTasks = std::min(
static_cast<size_t>(MaxTasksPerGroup), NumInputs);
177 std::vector<ResultTy>
Results(NumTasks, Init);
183 size_t TaskSize = NumInputs / NumTasks;
184 size_t RemainingInputs = NumInputs % NumTasks;
185 IterTy TBegin = Begin;
186 for (
size_t TaskId = 0; TaskId < NumTasks; ++TaskId) {
187 IterTy TEnd = TBegin + TaskSize + (TaskId < RemainingInputs ? 1 : 0);
188 TG.spawn([=, &Transform, &Reduce, &
Results] {
191 for (IterTy It = TBegin; It != TEnd; ++It)
192 R = Reduce(R, Transform(*It));
203 ResultTy FinalResult = std::move(
Results.front());
204 for (ResultTy &PartialResult :
206 FinalResult = Reduce(FinalResult, std::move(PartialResult));
207 return std::move(FinalResult);