Merge branch 'master'
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@@ -3,19 +3,35 @@
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*/
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#include "coll.h"
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#include <algorithm> // for min, max
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#include <cstddef> // for size_t
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#include <cstdint> // for int8_t, int64_t
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#include <functional> // for bit_and, bit_or, bit_xor, plus
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#include <algorithm> // for min, max, copy_n
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#include <cstddef> // for size_t
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#include <cstdint> // for int8_t, int64_t
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#include <functional> // for bit_and, bit_or, bit_xor, plus
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#include <type_traits> // for is_floating_point_v, is_same_v
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#include <utility> // for move
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#include "allgather.h" // for RingAllgatherV, RingAllgather
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#include "allreduce.h" // for Allreduce
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#include "broadcast.h" // for Broadcast
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#include "comm.h" // for Comm
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#include "../data/array_interface.h" // for ArrayInterfaceHandler
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#include "allgather.h" // for RingAllgatherV, RingAllgather
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#include "allreduce.h" // for Allreduce
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#include "broadcast.h" // for Broadcast
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#include "comm.h" // for Comm
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#if defined(XGBOOST_USE_CUDA)
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#include "cuda_fp16.h" // for __half
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#endif
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namespace xgboost::collective {
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template <typename T>
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bool constexpr IsFloatingPointV() {
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#if defined(XGBOOST_USE_CUDA)
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return std::is_floating_point_v<T> || std::is_same_v<T, __half>;
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#else
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return std::is_floating_point_v<T>;
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#endif // defined(XGBOOST_USE_CUDA)
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}
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[[nodiscard]] Result Coll::Allreduce(Comm const& comm, common::Span<std::int8_t> data,
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ArrayInterfaceHandler::Type, Op op) {
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ArrayInterfaceHandler::Type type, Op op) {
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namespace coll = ::xgboost::collective;
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auto redop_fn = [](auto lhs, auto out, auto elem_op) {
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@@ -25,32 +41,59 @@ namespace xgboost::collective {
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p_out[i] = elem_op(p_lhs[i], p_out[i]);
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}
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};
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auto fn = [&](auto elem_op) {
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return coll::Allreduce(
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comm, data, [redop_fn, elem_op](auto lhs, auto rhs) { redop_fn(lhs, rhs, elem_op); });
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auto fn = [&](auto elem_op, auto t) {
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using T = decltype(t);
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auto erased_fn = [redop_fn, elem_op](common::Span<std::int8_t const> lhs,
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common::Span<std::int8_t> out) {
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CHECK_EQ(lhs.size(), out.size()) << "Invalid input for reduction.";
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auto lhs_t = common::RestoreType<T const>(lhs);
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auto rhs_t = common::RestoreType<T>(out);
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redop_fn(lhs_t, rhs_t, elem_op);
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};
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return cpu_impl::RingAllreduce(comm, data, erased_fn, type);
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};
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switch (op) {
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case Op::kMax: {
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return fn([](auto l, auto r) { return std::max(l, r); });
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auto rc = DispatchDType(type, [&](auto t) {
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using T = decltype(t);
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switch (op) {
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case Op::kMax: {
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return fn([](auto l, auto r) { return std::max(l, r); }, t);
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}
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case Op::kMin: {
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return fn([](auto l, auto r) { return std::min(l, r); }, t);
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}
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case Op::kSum: {
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return fn(std::plus<>{}, t);
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}
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case Op::kBitwiseAND: {
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if constexpr (IsFloatingPointV<T>()) {
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return Fail("Invalid type.");
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} else {
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return fn(std::bit_and<>{}, t);
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}
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}
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case Op::kBitwiseOR: {
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if constexpr (IsFloatingPointV<T>()) {
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return Fail("Invalid type.");
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} else {
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return fn(std::bit_or<>{}, t);
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}
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}
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case Op::kBitwiseXOR: {
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if constexpr (IsFloatingPointV<T>()) {
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return Fail("Invalid type.");
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} else {
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return fn(std::bit_xor<>{}, t);
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}
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}
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}
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case Op::kMin: {
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return fn([](auto l, auto r) { return std::min(l, r); });
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}
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case Op::kSum: {
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return fn(std::plus<>{});
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}
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case Op::kBitwiseAND: {
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return fn(std::bit_and<>{});
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}
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case Op::kBitwiseOR: {
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return fn(std::bit_or<>{});
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}
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case Op::kBitwiseXOR: {
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return fn(std::bit_xor<>{});
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}
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}
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return comm.Block();
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return Fail("Invalid op.");
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});
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return std::move(rc) << [&] { return comm.Block(); };
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}
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[[nodiscard]] Result Coll::Broadcast(Comm const& comm, common::Span<std::int8_t> data,
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@@ -16,7 +16,7 @@
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#endif // defined(_WIN32)
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#include <algorithm> // for sort
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#include <chrono> // for seconds
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#include <chrono> // for seconds, ms
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#include <cstdint> // for int32_t
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#include <string> // for string
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#include <utility> // for move, forward
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@@ -37,6 +37,25 @@ Tracker::Tracker(Json const& config)
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timeout_{std::chrono::seconds{OptionalArg<Integer const>(
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config, "timeout", static_cast<std::int64_t>(collective::DefaultTimeoutSec()))}} {}
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Result Tracker::WaitUntilReady() const {
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using namespace std::chrono_literals; // NOLINT
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// Busy waiting. The function is mostly for waiting for the OS to launch an async
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// thread, which should be reasonably fast.
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common::Timer timer;
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timer.Start();
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while (!this->Ready()) {
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auto ela = timer.Duration().count();
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if (ela > this->Timeout().count()) {
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return Fail("Failed to start tracker, timeout:" + std::to_string(this->Timeout().count()) +
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" seconds.");
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}
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std::this_thread::sleep_for(100ms);
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}
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return Success();
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}
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RabitTracker::WorkerProxy::WorkerProxy(std::int32_t world, TCPSocket sock, SockAddrV4 addr)
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: sock_{std::move(sock)} {
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auto host = addr.Addr();
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@@ -76,6 +95,7 @@ RabitTracker::RabitTracker(Json const& config) : Tracker{config} {
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auto rc = collective::GetHostAddress(&self);
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auto host = OptionalArg<String>(config, "host", self);
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host_ = host;
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listener_ = TCPSocket::Create(SockDomain::kV4);
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rc = listener_.Bind(host, &this->port_);
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CHECK(rc.OK()) << rc.Report();
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@@ -173,6 +193,7 @@ Result RabitTracker::Bootstrap(std::vector<WorkerProxy>* p_workers) {
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while (state.ShouldContinue()) {
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TCPSocket sock;
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SockAddrV4 addr;
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this->ready_ = true;
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auto rc = listener_.Accept(&sock, &addr);
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if (!rc.OK()) {
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return Fail("Failed to accept connection.", std::move(rc));
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@@ -237,10 +258,21 @@ Result RabitTracker::Bootstrap(std::vector<WorkerProxy>* p_workers) {
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}
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}
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}
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ready_ = false;
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return Success();
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});
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}
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[[nodiscard]] Json RabitTracker::WorkerArgs() const {
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auto rc = this->WaitUntilReady();
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CHECK(rc.OK()) << rc.Report();
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Json args{Object{}};
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args["DMLC_TRACKER_URI"] = String{host_};
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args["DMLC_TRACKER_PORT"] = this->Port();
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return args;
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}
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[[nodiscard]] Result GetHostAddress(std::string* out) {
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auto rc = GetHostName(out);
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if (!rc.OK()) {
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@@ -40,6 +40,7 @@ class Tracker {
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std::int32_t n_workers_{0};
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std::int32_t port_{-1};
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std::chrono::seconds timeout_{0};
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std::atomic<bool> ready_{false};
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public:
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explicit Tracker(Json const& config);
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@@ -47,10 +48,17 @@ class Tracker {
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: n_workers_{n_worders}, port_{port}, timeout_{timeout} {}
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virtual ~Tracker() noexcept(false){}; // NOLINT
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[[nodiscard]] Result WaitUntilReady() const;
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[[nodiscard]] virtual std::future<Result> Run() = 0;
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[[nodiscard]] virtual Json WorkerArgs() const = 0;
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[[nodiscard]] std::chrono::seconds Timeout() const { return timeout_; }
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[[nodiscard]] virtual std::int32_t Port() const { return port_; }
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/**
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* @brief Flag to indicate whether the server is running.
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*/
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[[nodiscard]] bool Ready() const { return ready_; }
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};
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class RabitTracker : public Tracker {
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@@ -124,13 +132,7 @@ class RabitTracker : public Tracker {
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~RabitTracker() noexcept(false) override = default;
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std::future<Result> Run() override;
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[[nodiscard]] Json WorkerArgs() const override {
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Json args{Object{}};
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args["DMLC_TRACKER_URI"] = String{host_};
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args["DMLC_TRACKER_PORT"] = this->Port();
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return args;
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}
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[[nodiscard]] Json WorkerArgs() const override;
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};
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// Prob the public IP address of the host, need a better method.
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@@ -29,6 +29,7 @@ struct Timer {
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void Start() { start = ClockT::now(); }
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void Stop() { elapsed += ClockT::now() - start; }
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double ElapsedSeconds() const { return SecondsT(elapsed).count(); }
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SecondsT Duration() const { return ClockT::now() - start; }
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void PrintElapsed(std::string label) {
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char buffer[255];
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snprintf(buffer, sizeof(buffer), "%s:\t %fs", label.c_str(),
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