clang 20.0.0 (based on r547379) from build 12806354. Bug: http://b/379133546 Test: N/A Change-Id: I2eb8938af55d809de674be63cb30cf27e801862b Upstream-Commit: ad834e67b1105d15ef907f6255d4c96e8e733f57
163 lines
4.8 KiB
C++
163 lines
4.8 KiB
C++
//===-- llvm/ADT/SetOperations.h - Generic Set Operations -------*- C++ -*-===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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///
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/// \file
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/// This file defines generic set operations that may be used on set's of
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/// different types, and different element types.
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///
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//===----------------------------------------------------------------------===//
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#ifndef LLVM_ADT_SETOPERATIONS_H
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#define LLVM_ADT_SETOPERATIONS_H
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#include "llvm/ADT/STLExtras.h"
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namespace llvm {
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namespace detail {
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template <typename Set, typename Fn>
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using check_has_member_remove_if_t =
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decltype(std::declval<Set>().remove_if(std::declval<Fn>()));
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template <typename Set, typename Fn>
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static constexpr bool HasMemberRemoveIf =
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is_detected<check_has_member_remove_if_t, Set, Fn>::value;
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template <typename Set>
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using check_has_member_erase_iter_t =
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decltype(std::declval<Set>().erase(std::declval<Set>().begin()));
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template <typename Set>
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static constexpr bool HasMemberEraseIter =
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is_detected<check_has_member_erase_iter_t, Set>::value;
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} // namespace detail
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/// set_union(A, B) - Compute A := A u B, return whether A changed.
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///
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template <class S1Ty, class S2Ty> bool set_union(S1Ty &S1, const S2Ty &S2) {
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bool Changed = false;
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for (const auto &E : S2)
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if (S1.insert(E).second)
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Changed = true;
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return Changed;
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}
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/// set_intersect(A, B) - Compute A := A ^ B
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/// Identical to set_intersection, except that it works on set<>'s and
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/// is nicer to use. Functionally, this iterates through S1, removing
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/// elements that are not contained in S2.
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///
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template <class S1Ty, class S2Ty> void set_intersect(S1Ty &S1, const S2Ty &S2) {
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auto Pred = [&S2](const auto &E) { return !S2.count(E); };
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if constexpr (detail::HasMemberRemoveIf<S1Ty, decltype(Pred)>) {
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S1.remove_if(Pred);
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} else {
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typename S1Ty::iterator Next;
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for (typename S1Ty::iterator I = S1.begin(); I != S1.end(); I = Next) {
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Next = std::next(I);
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if (!S2.count(*I))
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S1.erase(I); // Erase element if not in S2
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}
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}
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}
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template <class S1Ty, class S2Ty>
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S1Ty set_intersection_impl(const S1Ty &S1, const S2Ty &S2) {
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S1Ty Result;
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for (const auto &E : S1)
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if (S2.count(E))
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Result.insert(E);
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return Result;
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}
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/// set_intersection(A, B) - Return A ^ B
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template <class S1Ty, class S2Ty>
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S1Ty set_intersection(const S1Ty &S1, const S2Ty &S2) {
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if (S1.size() < S2.size())
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return set_intersection_impl(S1, S2);
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else
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return set_intersection_impl(S2, S1);
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}
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/// set_difference(A, B) - Return A - B
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///
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template <class S1Ty, class S2Ty>
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S1Ty set_difference(const S1Ty &S1, const S2Ty &S2) {
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S1Ty Result;
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for (const auto &E : S1)
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if (!S2.count(E)) // if the element is not in set2
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Result.insert(E);
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return Result;
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}
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/// set_subtract(A, B) - Compute A := A - B
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///
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/// Selects the set to iterate based on the relative sizes of A and B for better
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/// efficiency.
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///
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template <class S1Ty, class S2Ty> void set_subtract(S1Ty &S1, const S2Ty &S2) {
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// If S1 is smaller than S2, iterate on S1 provided that S2 supports efficient
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// lookups via contains(). Note that a couple callers pass a vector for S2,
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// which doesn't support contains(), and wouldn't be efficient if it did.
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using ElemTy = decltype(*S1.begin());
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if constexpr (detail::HasMemberContains<S2Ty, ElemTy>) {
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auto Pred = [&S2](const auto &E) { return S2.contains(E); };
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if constexpr (detail::HasMemberRemoveIf<S1Ty, decltype(Pred)>) {
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if (S1.size() < S2.size()) {
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S1.remove_if(Pred);
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return;
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}
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} else if constexpr (detail::HasMemberEraseIter<S1Ty>) {
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if (S1.size() < S2.size()) {
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typename S1Ty::iterator Next;
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for (typename S1Ty::iterator SI = S1.begin(), SE = S1.end(); SI != SE;
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SI = Next) {
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Next = std::next(SI);
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if (S2.contains(*SI))
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S1.erase(SI);
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}
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return;
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}
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}
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}
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for (const auto &E : S2)
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S1.erase(E);
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}
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/// set_subtract(A, B, C, D) - Compute A := A - B, set C to the elements of B
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/// removed from A (A ^ B), and D to the elements of B not found in and removed
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/// from A (B - A).
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template <class S1Ty, class S2Ty>
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void set_subtract(S1Ty &S1, const S2Ty &S2, S1Ty &Removed, S1Ty &Remaining) {
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for (const auto &E : S2)
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if (S1.erase(E))
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Removed.insert(E);
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else
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Remaining.insert(E);
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}
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/// set_is_subset(A, B) - Return true iff A in B
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///
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template <class S1Ty, class S2Ty>
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bool set_is_subset(const S1Ty &S1, const S2Ty &S2) {
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if (S1.size() > S2.size())
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return false;
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for (const auto It : S1)
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if (!S2.count(It))
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return false;
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return true;
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}
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} // namespace llvm
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#endif
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