mc: parallel version of bloemen
* spot/mc/bloemen.hh, tests/ltsmin/modelcheck.cc: here.
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01093f992e
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2 changed files with 221 additions and 132 deletions
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@ -25,6 +25,7 @@
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#include <stdlib.h>
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#include <stdlib.h>
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#include <thread>
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#include <thread>
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#include <vector>
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#include <vector>
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#include <utility>
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#include <spot/misc/common.hh>
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#include <spot/misc/common.hh>
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#include <spot/kripke/kripke.hh>
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#include <spot/kripke/kripke.hh>
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#include <spot/misc/fixpool.hh>
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#include <spot/misc/fixpool.hh>
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@ -32,7 +33,6 @@
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namespace spot
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namespace spot
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{
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{
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template<typename State,
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template<typename State,
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typename StateHash,
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typename StateHash,
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typename StateEqual>
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typename StateEqual>
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@ -47,12 +47,18 @@ namespace spot
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/// \brief Represents an Union-Find element
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/// \brief Represents an Union-Find element
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struct uf_element
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struct uf_element
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{
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{
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State st; ///< \brief the state handled by the element
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/// \brief the state handled by the element
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uf_element* parent; ///< \brief reference to the pointer
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State st;
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int* workers; ///< \brief assign only once at allocation
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/// \brief reference to the pointer
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uf_element* next; ///< \brief next element for work stealing
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std::atomic<uf_element*> parent;
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uf_status uf_status; ///< \brief current status for the element
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/// The set of worker for a given state
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list_status list_status; ///< \brief current status for the list
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std::atomic<unsigned> worker;
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/// \brief next element for work stealing
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std::atomic<uf_element*> next;
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/// \brief current status for the element
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std::atomic<uf_status> uf_status;
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///< \brief current status for the list
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std::atomic<list_status> list_status;
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};
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};
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/// \brief The haser for the previous uf_element.
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/// \brief The haser for the previous uf_element.
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@ -86,7 +92,6 @@ namespace spot
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iterable_uf(shared_map& map, unsigned tid):
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iterable_uf(shared_map& map, unsigned tid):
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p_(sizeof(int)*std::thread::hardware_concurrency()),
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map_(map), tid_(tid), size_(std::thread::hardware_concurrency()),
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map_(map), tid_(tid), size_(std::thread::hardware_concurrency()),
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nb_th_(std::thread::hardware_concurrency())
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nb_th_(std::thread::hardware_concurrency())
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{
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{
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@ -97,17 +102,14 @@ namespace spot
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std::pair<claim_status, uf_element*>
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std::pair<claim_status, uf_element*>
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make_claim(State a)
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make_claim(State a)
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{
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{
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// Prepare data for a newer allocation
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unsigned w_id = (1U << tid_);
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int* ref = (int*) p_.allocate();
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for (unsigned i = 0; i < nb_th_; ++i)
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ref[i] = 0;
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// Setup and try to insert the new state in the shared map.
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// Setup and try to insert the new state in the shared map.
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uf_element* v = new uf_element();
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uf_element* v = new uf_element();
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v->st = a;
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v->st = a;
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v->parent = v;
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v->parent = v;
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v->workers = ref;
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v->next = v;
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v->next = v;
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v->worker = 0;
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v->uf_status = uf_status::LIVE;
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v->uf_status = uf_status::LIVE;
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v->list_status = list_status::BUSY;
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v->list_status = list_status::BUSY;
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@ -117,182 +119,265 @@ namespace spot
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// Insertion failed, delete element
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// Insertion failed, delete element
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// FIXME Should we add a local cache to avoid useless allocations?
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// FIXME Should we add a local cache to avoid useless allocations?
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if (!b)
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if (!b)
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delete v;
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uf_element* a_root = find(*it);
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if (a_root->uf_status.load() == uf_status::DEAD)
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return {claim_status::CLAIM_DEAD, *it};
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if ((a_root->worker.load() & w_id) != 0)
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return {claim_status::CLAIM_FOUND, *it};
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atomic_fetch_or(&(a_root->worker), w_id);
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while (a_root->parent.load() != a_root)
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{
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{
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p_.deallocate(ref);
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delete v;
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}
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uf_element* a_root = find(*it); // FIXME??
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if (a_root->uf_status == uf_status::DEAD)
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return {claim_status::CLAIM_DEAD, a_root};
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if (a_root->workers[tid_])
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return {claim_status::CLAIM_FOUND, a_root};
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while (!a_root->workers[tid_])
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{
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a_root->workers[tid_] = 1;
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a_root = find(a_root);
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a_root = find(a_root);
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atomic_fetch_or(&(a_root->worker), w_id);
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}
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}
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return {claim_status::CLAIM_NEW, a_root};
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return {claim_status::CLAIM_NEW, *it};
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}
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}
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uf_element* find(uf_element* a)
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uf_element* find(uf_element* a)
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{
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{
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if (a->parent != a)
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uf_element* parent = a->parent.load();
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a->parent = find(a->parent);
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uf_element* x = a;
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return a->parent;
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uf_element* y;
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}
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while (x != parent)
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{
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y = parent;
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parent = y->parent.load();
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if (parent == y)
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return y;
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x->parent.store(parent);
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x = parent;
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parent = x->parent.load();
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}
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return x;
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}
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bool sameset(uf_element* a, uf_element* b)
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bool sameset(uf_element* a, uf_element* b)
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{
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{
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uf_element* a_root = find(a);
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uf_element* a_root = find(a);
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uf_element* b_root = find(b);
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uf_element* b_root = find(b);
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assert(a_root != nullptr);
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assert(b_root != nullptr);
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if (a_root == b_root)
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if (a_root == b_root)
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return true;
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return true;
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if (a_root->parent == a_root)
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if (a_root->parent.load() == a_root)
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return false;
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return false;
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return sameset(a_root, b_root);
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return sameset(a_root, b_root);
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}
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}
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bool lock_root(uf_element* a)
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bool lock_root(uf_element* a)
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{
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{
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if (CAS(&(a->uf_status), uf_status::LIVE, uf_status::LOCK))
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uf_status expected = uf_status::LIVE;
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if (a->uf_status.load() == expected)
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{
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{
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if (a->parent == a)
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if (std::atomic_compare_exchange_strong
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return true;
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(&(a->uf_status), &expected, uf_status::LOCK))
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unlock_root(a);
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{
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if (a->parent.load() == a)
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return true;
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unlock_root(a);
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}
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}
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}
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return false;
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return false;
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}
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}
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void unlock_root(uf_element* a)
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inline void unlock_root(uf_element* a)
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{
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{
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a->uf_status = uf_status::LIVE;
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a->uf_status.store(uf_status::LIVE);
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}
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}
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uf_element* lock_list(uf_element* a)
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uf_element* lock_list(uf_element* a)
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{
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{
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assert(a != nullptr);
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uf_element* a_list = a;
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bool dontcare = false;
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while (true)
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uf_element* a_list = pick_from_list(a, &dontcare);
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{
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if (a_list == nullptr)
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bool dontcare = false;
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return nullptr;
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a_list = pick_from_list(a_list, &dontcare);
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if (a_list == nullptr)
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{
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assert(false);
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return nullptr;
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}
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if (CAS(&(a->list_status), list_status::BUSY, list_status::LOCK))
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auto expected = list_status::BUSY;
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return a_list;
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bool b = std::atomic_compare_exchange_strong
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(&(a_list->list_status), &expected, list_status::LOCK);
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return lock_list(a_list->next);
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if (b)
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return a_list;
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a_list = a_list->next.load();
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}
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}
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void unlock_list(uf_element* a)
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{
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a->list_status.store(list_status::BUSY);
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}
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}
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void unite(uf_element* a, uf_element* b)
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void unite(uf_element* a, uf_element* b)
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{
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{
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uf_element* a_root = find(a);
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uf_element* a_root;
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uf_element* b_root = find(b);
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uf_element* b_root;
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if (a_root == b_root)
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uf_element* q;
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return;
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uf_element* r;
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uf_element* r = std::max(a_root, b_root);
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while (true)
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uf_element* q = std::min(a_root, b_root);
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if (!lock_root(q))
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{
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{
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unite(a_root, b_root);
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a_root = find(a);
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return;
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b_root = find(b);
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if (a_root == b_root)
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return;
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r = std::max(a_root, b_root);
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q = std::min(a_root, b_root);
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if (!lock_root(q))
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continue;
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break;
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}
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}
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uf_element* a_list = lock_list(a);
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uf_element* a_list = lock_list(a);
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uf_element* b_list = lock_list(b);
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if (a_list == nullptr)
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if (a_list == nullptr || b_list == nullptr)
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return;
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return;
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// Swapping
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uf_element* b_list = lock_list(b);
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uf_element* tmp = a_list->next;
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if (b_list == nullptr)
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a_list->next = b_list->next;
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b_list->next = tmp;
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q->parent = r;
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do
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{
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{
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r = find(r);
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unlock_list(a_list);
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for(unsigned i = 0; i < nb_th_; ++i)
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return;
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r->workers[i] |= q->workers[i];
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}
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}
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while(r->parent != r);
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a_list->list_status = list_status::BUSY;
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assert(a_list->list_status.load() == list_status::LOCK);
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b_list->list_status = list_status::BUSY;
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assert(b_list->list_status.load() == list_status::LOCK);
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q->uf_status = uf_status::LIVE;
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// Swapping
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uf_element* a_next = a_list->next.load();
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uf_element* b_next = b_list->next.load();
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assert(a_next != 0);
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assert(b_next != 0);
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a_list->next.store(b_next);
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b_list->next.store(a_next);
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q->parent.store(r);
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// Update workers
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unsigned q_worker = q->worker.load();
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unsigned r_worker = r->worker.load();
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if ((q_worker|r_worker) != r_worker)
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{
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atomic_fetch_or(&(r->worker), q_worker);
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while(r->parent.load() != r)
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{
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r = find(r);
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atomic_fetch_or(&(r->worker), q_worker);
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}
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}
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unlock_list(a_list);
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unlock_list(b_list);
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unlock_root(q);
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}
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}
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uf_element* pick_from_list(uf_element* a, bool* sccfound)
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uf_element* pick_from_list(uf_element* u, bool* sccfound)
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{
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{
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assert(a != nullptr);
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uf_element* a = u;
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do
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while (true)
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{
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{
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if (a->list_status == list_status::BUSY)
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list_status a_status;
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return a;
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while (true)
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}
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{
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while (a->list_status == list_status::LOCK);
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a_status = a->list_status.load();
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uf_element* b = a->next;
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assert(b != nullptr);
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if (a_status == list_status::BUSY)
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if (a == b)
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{
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{
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return a;
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uf_element* a_root = find(a);
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}
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if (CAS(&(a_root->uf_status), uf_status::LIVE, uf_status::DEAD))
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*sccfound = true; // Report An SCC.
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return nullptr;
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}
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do
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if (a_status == list_status::DONE)
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{
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break;
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if (b->list_status == list_status::BUSY)
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}
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return b;
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}
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while (b->list_status == list_status::LOCK);
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uf_element* c = b->next;
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uf_element* b = a->next.load();
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a->next = c;
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return pick_from_list(c, sccfound);
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// ------------------------------ NO LAZY : start
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// if (b == u)
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// {
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// uf_element* a_root = find(a);
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// uf_status status = a_root->uf_status.load();
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// while (status != uf_status::DEAD)
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// {
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// if (status == uf_status::LIVE)
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// *sccfound = std::atomic_compare_exchange_strong
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// (&(a_root->uf_status), &status, uf_status::DEAD);
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// status = a_root->uf_status.load();
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// }
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// return nullptr;
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// }
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// a = b;
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// ------------------------------ NO LAZY : end
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if (a == b)
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{
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uf_element* a_root = find(u);
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uf_status status = a_root->uf_status.load();
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while (status != uf_status::DEAD)
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{
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if (status == uf_status::LIVE)
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*sccfound = std::atomic_compare_exchange_strong
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(&(a_root->uf_status), &status, uf_status::DEAD);
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status = a_root->uf_status.load();
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}
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return nullptr;
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}
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list_status b_status;
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while (true)
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{
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b_status = b->list_status.load();
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if (b_status == list_status::BUSY)
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{
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return b;
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}
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if (b_status == list_status::DONE)
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break;
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}
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assert(b_status == list_status::DONE);
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assert(a_status == list_status::DONE);
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uf_element* c = b->next.load();
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a->next.store(c);
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a = c;
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}
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}
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}
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void remove_from_list(uf_element* a)
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void remove_from_list(uf_element* a)
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{
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{
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while (a->list_status != list_status::DONE)
|
while (true)
|
||||||
{
|
{
|
||||||
CAS(&(a->list_status), list_status::BUSY, list_status::DONE);
|
list_status a_status = a->list_status.load();
|
||||||
|
|
||||||
|
if (a_status == list_status::DONE)
|
||||||
|
break;
|
||||||
|
|
||||||
|
if (a_status == list_status::BUSY)
|
||||||
|
std::atomic_compare_exchange_strong
|
||||||
|
(&(a->list_status), &a_status, list_status::DONE);
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
||||||
bool CAS(list_status* ls, list_status ls_old, list_status ls_new)
|
|
||||||
{
|
|
||||||
if (*ls != ls_old)
|
|
||||||
return false;
|
|
||||||
*ls = ls_new;
|
|
||||||
return true;
|
|
||||||
}
|
|
||||||
|
|
||||||
bool CAS(uf_status* uf, uf_status uf_old, uf_status uf_new)
|
|
||||||
{
|
|
||||||
if (*uf != uf_old)
|
|
||||||
return false;
|
|
||||||
*uf = uf_new;
|
|
||||||
return true;
|
|
||||||
}
|
|
||||||
|
|
||||||
private:
|
private:
|
||||||
fixed_size_pool p_; ///< \brief Element Allocator
|
|
||||||
shared_map map_; ///< \brief Map shared by threads copy!
|
shared_map map_; ///< \brief Map shared by threads copy!
|
||||||
unsigned tid_; ///< \brief The Id of the current thread
|
unsigned tid_; ///< \brief The Id of the current thread
|
||||||
unsigned size_; ///< \brief Maximum number of thread
|
unsigned size_; ///< \brief Maximum number of thread
|
||||||
|
|
|
||||||
|
|
@ -654,12 +654,11 @@ static int checked_main()
|
||||||
}
|
}
|
||||||
|
|
||||||
// Display statistics
|
// Display statistics
|
||||||
unsigned greatest = 0;
|
unsigned sccs = 0;
|
||||||
|
unsigned st = 0;
|
||||||
|
unsigned tr = 0;
|
||||||
for (unsigned i = 0; i < res.first.size(); ++i)
|
for (unsigned i = 0; i < res.first.size(); ++i)
|
||||||
{
|
{
|
||||||
if (res.first[i].states < res.first[greatest].states)
|
|
||||||
greatest = i;
|
|
||||||
|
|
||||||
std::cout << "\n---- Thread number : " << i << '\n';
|
std::cout << "\n---- Thread number : " << i << '\n';
|
||||||
std::cout << res.first[i].states << " unique states visited\n";
|
std::cout << res.first[i].states << " unique states visited\n";
|
||||||
std::cout << res.first[i].transitions
|
std::cout << res.first[i].transitions
|
||||||
|
|
@ -668,6 +667,10 @@ static int checked_main()
|
||||||
std::cout << res.first[i].walltime
|
std::cout << res.first[i].walltime
|
||||||
<< " milliseconds\n";
|
<< " milliseconds\n";
|
||||||
|
|
||||||
|
sccs += res.first[i].sccs;
|
||||||
|
st += res.first[i].states;
|
||||||
|
tr += res.first[i].transitions;
|
||||||
|
|
||||||
if (mc_options.csv)
|
if (mc_options.csv)
|
||||||
{
|
{
|
||||||
std::cout << "Find following the csv: "
|
std::cout << "Find following the csv: "
|
||||||
|
|
@ -686,17 +689,18 @@ static int checked_main()
|
||||||
{
|
{
|
||||||
std::cout << "\nSummary :\n";
|
std::cout << "\nSummary :\n";
|
||||||
std::cout << "Find following the csv: "
|
std::cout << "Find following the csv: "
|
||||||
<< "model,walltimems,memused,type,"
|
<< "model,walltimems,memused,"
|
||||||
<< "states,transitions,sccs\n";
|
<< "cumulated_states,cumulated_transitions,"
|
||||||
|
<< "cumulated_sccs\n";
|
||||||
|
|
||||||
std::cout << '#'
|
std::cout << '#'
|
||||||
<< split_filename(mc_options.model)
|
<< split_filename(mc_options.model)
|
||||||
<< ','
|
<< ','
|
||||||
<< tm.timer("bloemen").walltime() << ','
|
<< tm.timer("bloemen").walltime() << ','
|
||||||
<< memused << ','
|
<< memused << ','
|
||||||
<< res.first[greatest].states << ','
|
<< st << ','
|
||||||
<< res.first[greatest].transitions << ','
|
<< tr << ','
|
||||||
<< res.first[greatest].sccs << ','
|
<< sccs
|
||||||
<< '\n';
|
<< '\n';
|
||||||
}
|
}
|
||||||
}
|
}
|
||||||
|
|
|
||||||
Loading…
Add table
Add a link
Reference in a new issue