97b7a6315d
* Update LICENSE * Update conf.py * Update copyright year * [fix] Update copyright year * Update copyright year "ROCm Developer Tools" * Add license headers to c++ files * Add license to *.py * Update licenses in rocdecode sources --------- Co-authored-by: srawat <120587655+SwRaw@users.noreply.github.com> Co-authored-by: Mythreya <mythreya.kuricheti@amd.com> Co-authored-by: Jonathan R. Madsen <jonathanrmadsen@gmail.com>
220 行
7.7 KiB
C++
220 行
7.7 KiB
C++
// MIT License
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//
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// Copyright (c) 2023-2025 Advanced Micro Devices, Inc. All rights reserved.
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//
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// Permission is hereby granted, free of charge, to any person obtaining a copy
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// of this software and associated documentation files (the "Software"), to deal
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// in the Software without restriction, including without limitation the rights
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// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
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// copies of the Software, and to permit persons to whom the Software is
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// furnished to do so, subject to the following conditions:
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//
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// The above copyright notice and this permission notice shall be included in all
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// copies or substantial portions of the Software.
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//
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// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
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// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
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// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
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// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
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// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
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// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
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// SOFTWARE.
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#pragma once
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#include <rocprofiler-sdk/fwd.h>
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#include <rocprofiler-sdk/registration.h>
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#include <rocprofiler-sdk/rocprofiler.h>
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#include "lib/common/container/small_vector.hpp"
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#include "lib/common/synchronized.hpp"
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#include "lib/rocprofiler-sdk/context/correlation_id.hpp"
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#include "lib/rocprofiler-sdk/context/domain.hpp"
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#include "lib/rocprofiler-sdk/counters/core.hpp"
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#include "lib/rocprofiler-sdk/counters/device_counting.hpp"
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#include "lib/rocprofiler-sdk/external_correlation.hpp"
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#include "lib/rocprofiler-sdk/pc_sampling/types.hpp"
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#include "lib/rocprofiler-sdk/thread_trace/att_core.hpp"
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#include "rocprofiler-sdk/agent.h"
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#include <array>
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#include <cstddef>
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#include <cstdint>
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#include <memory>
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#include <optional>
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#include <unordered_map>
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namespace rocprofiler
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{
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namespace context
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{
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using external_cid_cb_t = uint64_t (*)(rocprofiler_callback_tracing_kind_t, uint32_t, uint64_t);
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constexpr auto null_user_data = rocprofiler_user_data_t{.value = 0};
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struct callback_tracing_service
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{
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struct callback_data
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{
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rocprofiler_callback_tracing_cb_t callback = nullptr;
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void* data = nullptr;
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};
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using domain_t = rocprofiler_callback_tracing_kind_t;
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using callback_array_t = std::array<callback_data, domain_info<domain_t>::last>;
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domain_context<domain_t> domains = {};
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callback_array_t callback_data = {};
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};
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struct buffer_tracing_service
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{
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using domain_t = rocprofiler_buffer_tracing_kind_t;
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using buffer_array_t = std::array<rocprofiler_buffer_id_t, domain_info<domain_t>::last>;
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domain_context<domain_t> domains = {};
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buffer_array_t buffer_data = {};
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};
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struct dispatch_counter_collection_service
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{
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// Contains a vector of counter collection instances associated with this context.
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// Each instance is assocated with an agent and a counter collection profile.
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// Contains callback information along with other data needed to collect/process
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// counters.
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std::vector<std::shared_ptr<counters::counter_callback_info>> callbacks{};
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// A flag to state wether or not the counter set is currently enabled. This is primarily
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// to protect against multithreaded calls to enable a context (and enabling already enabled
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// counters).
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common::Synchronized<bool> enabled{false};
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};
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struct device_counting_service
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{
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std::unordered_set<uint64_t> conf_agents;
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std::vector<rocprofiler::counters::agent_callback_data> agent_data;
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enum class state
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{
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DISABLED,
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LOCKED,
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ENABLED,
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EXIT
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};
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std::atomic<state> status{state::DISABLED};
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common::Synchronized<bool> enabled{false};
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};
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struct pc_sampling_service
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{
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// Contains a map with pairs (rocprofiler_agent_id_t, PCSAgentSession*).
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// The PCSAgentSession encapsulates the information about the configured PC sampling session
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// used on the agent with `rocprofiler_agent_id_t`.
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std::unordered_map<rocprofiler_agent_id_t,
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std::unique_ptr<rocprofiler::pc_sampling::PCSAgentSession>>
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agent_sessions;
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};
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struct context
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{
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// size is used to ensure that we never read past the end of the version
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size_t size = 0;
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uint64_t context_idx = 0; // context id
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uint32_t client_idx = 0; // tool id
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correlation_tracing_service correlation_tracer = {};
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std::unique_ptr<callback_tracing_service> callback_tracer = {};
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std::unique_ptr<buffer_tracing_service> buffered_tracer = {};
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// Only one of counter collection/agent counter collection can exists in the ctx.
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std::unique_ptr<dispatch_counter_collection_service> counter_collection = {};
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std::unique_ptr<device_counting_service> device_counter_collection = {};
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std::unique_ptr<pc_sampling_service> pc_sampler = {};
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std::unique_ptr<thread_trace::DispatchThreadTracer> dispatch_thread_trace = {};
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std::unique_ptr<thread_trace::AgentThreadTracer> agent_thread_trace = {};
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template <typename KindT>
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bool is_tracing(KindT _kind) const;
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};
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// set the client index needs to be called before allocate_context()
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void push_client(uint32_t);
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// remove the client index
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void pop_client(uint32_t);
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/// @brief creates a context struct and returns a handle for locating the context struct
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///
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std::optional<rocprofiler_context_id_t>
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allocate_context();
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/// \brief rocprofiler validates context, checks for conflicts, etc. Ensures that
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/// the contexturation is valid *in isolation*, e.g. it may check that the user
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/// set the compat_version field and that required context fields, such as buffer
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/// are set. This function will be called before \ref start_context
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/// but is provided to help the user validate one or more contexts without starting
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/// them
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///
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/// \param [in] cfg contexturation to validate
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rocprofiler_status_t
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validate_context(const context* cfg);
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/// \brief rocprofiler activates contexturation and provides a context identifier
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/// \param [in] id the context identifier to start.
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rocprofiler_status_t
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start_context(rocprofiler_context_id_t id);
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/// \brief remove context from active array
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rocprofiler_status_t
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stop_context(rocprofiler_context_id_t id);
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using context_array_t = common::container::small_vector<const context*>;
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context*
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get_mutable_registered_context(rocprofiler_context_id_t id);
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const context*
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get_registered_context(rocprofiler_context_id_t id);
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using context_filter_t = bool (*)(const context*);
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inline bool
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default_context_filter(const context* val);
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context_array_t&
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get_registered_contexts(context_array_t& data, context_filter_t filter = default_context_filter);
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context_array_t
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get_registered_contexts(context_filter_t filter = default_context_filter);
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context_array_t&
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get_registered_contexts(context_array_t& data, context_filter_t filter);
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context_array_t
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get_registered_contexts(context_filter_t filter);
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context_array_t&
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get_active_contexts(context_array_t& data, context_filter_t filter = default_context_filter);
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context_array_t
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get_active_contexts(context_filter_t filter = default_context_filter);
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/// \brief disable the contexturation.
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rocprofiler_status_t
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stop_client_contexts(rocprofiler_client_id_t id);
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void
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deactivate_client_contexts(rocprofiler_client_id_t id);
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// should only be called if the client failed to initialize
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void
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deregister_client_contexts(rocprofiler_client_id_t id);
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inline bool
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default_context_filter(const context* val)
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{
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return (val != nullptr);
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}
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} // namespace context
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} // namespace rocprofiler
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