mirror of
https://github.com/mutouyun/cpp-ipc.git
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234 lines
7.0 KiB
C++
234 lines
7.0 KiB
C++
#pragma once
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#include <atomic>
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#include <thread>
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#include <cstring>
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#include "def.h"
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namespace ipc {
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namespace circ {
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namespace detail {
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using u1_t = uint_t<8>;
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using u2_t = uint_t<16>;
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constexpr u1_t index_of(u2_t c) noexcept {
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return static_cast<u1_t>(c);
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}
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struct elem_head {
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std::atomic<std::size_t> rc_ { 0 }; // read counter
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};
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template <std::size_t DataSize>
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struct elem_t {
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elem_head head_;
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byte_t data_[DataSize] {};
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};
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template <>
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struct elem_t<0> {
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elem_head head_;
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};
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template <std::size_t S>
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elem_t<S>* elem_of(void* ptr) noexcept {
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return reinterpret_cast<elem_t<S>*>(static_cast<byte_t*>(ptr) - sizeof(elem_head));
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}
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} // namespace detail
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enum class relat { // multiplicity of the relationship
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single,
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multi
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};
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enum class trans { // transmission
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unicast,
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broadcast
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};
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////////////////////////////////////////////////////////////////
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/// producer-consumer policies
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////////////////////////////////////////////////////////////////
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template <relat Rp, relat Rc, trans Ts>
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struct prod_cons;
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template <>
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struct prod_cons<relat::single, relat::single, trans::unicast> {
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std::atomic<detail::u2_t> rd_ { 0 }; // read index
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std::atomic<detail::u2_t> wt_ { 0 }; // write index
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template <std::size_t DataSize>
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constexpr static std::size_t elem_param = DataSize - sizeof(detail::elem_head);
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constexpr detail::u2_t cursor() const noexcept {
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return 0;
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}
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template <typename E, typename F, std::size_t S>
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bool push(E* /*elems*/, F&& f, detail::elem_t<S>* elem_start) {
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auto cur_wt = detail::index_of(wt_.load(std::memory_order_acquire));
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if (cur_wt == detail::index_of(rd_.load(std::memory_order_relaxed) - 1)) {
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return false;
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}
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std::forward<F>(f)(elem_start + cur_wt);
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wt_.fetch_add(1, std::memory_order_release);
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return true;
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}
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template <typename E, typename F, std::size_t S>
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bool pop(E* /*elems*/, detail::u2_t& /*cur*/, F&& f, detail::elem_t<S>* elem_start) noexcept {
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auto cur_rd = detail::index_of(rd_.load(std::memory_order_acquire));
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if (cur_rd == detail::index_of(wt_.load(std::memory_order_relaxed))) {
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return false;
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}
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std::forward<F>(f)(elem_start + cur_rd);
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rd_.fetch_add(1, std::memory_order_release);
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return true;
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}
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};
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template <>
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struct prod_cons<relat::single, relat::multi, trans::unicast>
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: prod_cons<relat::single, relat::single, trans::unicast> {
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template <typename E, typename F, std::size_t S>
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bool pop(E* /*elems*/, detail::u2_t& /*cur*/, F&& f, detail::elem_t<S>* elem_start) noexcept {
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byte_t buff[sizeof(detail::elem_t<S>)];
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while (1) {
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auto cur_rd = rd_.load(std::memory_order_acquire);
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if (detail::index_of(cur_rd) ==
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detail::index_of(wt_.load(std::memory_order_relaxed))) {
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return false;
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}
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std::memcpy(buff, elem_start + detail::index_of(cur_rd), sizeof(buff));
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if (rd_.compare_exchange_weak(cur_rd, cur_rd + 1, std::memory_order_release)) {
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std::forward<F>(f)(buff);
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return true;
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}
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std::this_thread::yield();
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}
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}
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};
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template <>
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struct prod_cons<relat::single, relat::multi, trans::broadcast> {
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std::atomic<detail::u2_t> wt_ { 0 }; // write index
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template <std::size_t DataSize>
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constexpr static std::size_t elem_param = DataSize;
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/*
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<Remarks> std::atomic<T> may not have value_type.
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See: https://stackoverflow.com/questions/53648614/what-happened-to-stdatomicxvalue-type
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*/
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using rc_t = decltype(detail::elem_head::rc_.load());
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detail::u2_t cursor() const noexcept {
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return wt_.load(std::memory_order_acquire);
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}
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template <typename E, typename F, std::size_t S>
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bool push(E* elems, F&& f, detail::elem_t<S>* elem_start) {
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auto conn_cnt = elems->conn_count(); // acquire
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if (conn_cnt == 0) return false;
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auto el = elem_start + detail::index_of(wt_.load(std::memory_order_relaxed));
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// check all consumers have finished reading this element
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rc_t expected = 0;
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if (!el->head_.rc_.compare_exchange_weak(
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expected, static_cast<rc_t>(conn_cnt), std::memory_order_relaxed)) {
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return false;
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}
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std::forward<F>(f)(el->data_);
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wt_.fetch_add(1, std::memory_order_release);
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return true;
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}
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template <typename E, typename F, std::size_t S>
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bool pop(E* /*elems*/, detail::u2_t& cur, F&& f, detail::elem_t<S>* elem_start) noexcept {
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if (cur == cursor()) return false; // acquire
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auto el = elem_start + detail::index_of(cur++);
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std::forward<F>(f)(el->data_);
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do {
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rc_t cur_rc = el->head_.rc_.load(std::memory_order_acquire);
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if (cur_rc == 0) {
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return true;
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}
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if (el->head_.rc_.compare_exchange_weak(
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cur_rc, cur_rc - 1, std::memory_order_release)) {
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return true;
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}
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std::this_thread::yield();
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} while (1);
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}
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};
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////////////////////////////////////////////////////////////////
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/// element-array implementation
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////////////////////////////////////////////////////////////////
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struct elems_head {
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std::atomic<detail::u2_t> cc_ { 0 }; // connection counter
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std::size_t connect() noexcept {
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return cc_.fetch_add(1, std::memory_order_release);
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}
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std::size_t disconnect() noexcept {
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return cc_.fetch_sub(1, std::memory_order_release);
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}
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std::size_t conn_count(std::memory_order order = std::memory_order_acquire) const noexcept {
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return cc_.load(order);
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}
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};
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template <std::size_t DataSize, typename Policy>
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class elems_array : private Policy {
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public:
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using policy_t = Policy;
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using base_t = Policy;
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using head_t = elems_head;
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using elem_t = detail::elem_t<policy_t::template elem_param<DataSize>>;
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enum : std::size_t {
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head_size = sizeof(head_t),
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data_size = DataSize,
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elem_max = (std::numeric_limits<uint_t<8>>::max)() + 1, // default is 255 + 1
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elem_size = sizeof(elem_t),
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block_size = elem_size * elem_max
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};
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private:
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head_t head_;
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elem_t block_[elem_max];
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public:
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elems_array() = default;
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elems_array(const elems_array&) = delete;
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elems_array& operator=(const elems_array&) = delete;
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std::size_t connect () noexcept { return head_.connect (); }
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std::size_t disconnect() noexcept { return head_.disconnect(); }
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std::size_t conn_count() const noexcept { return head_.conn_count(); }
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using base_t::cursor;
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template <typename F>
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bool push(F&& f) noexcept {
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return base_t::push(this, std::forward<F>(f), block_);
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}
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template <typename F>
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bool pop(detail::u2_t& cur, F&& f) noexcept {
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return base_t::pop(this, cur, std::forward<F>(f), block_);
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}
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};
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} // namespace circ
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} // namespace ipc
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