Upgrade ROCm-SMI to AMD SMI (#86)
* Integrating amd-smi into rocprofiler-systems due to rocm-smi deprecation. * No functionality changes to users other than naming conventions. * New tracks available in perfetto- gpu busy percentage metrics now splits gfx busy into separate gfx, umc, and mm engine measurements. --------- Signed-off-by: Carrie Fallows <Carrie.Fallows@amd.com> Co-authored-by: David Galiffi <David.Galiffi@amd.com>
このコミットが含まれているのは:
@@ -1,526 +0,0 @@
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// Copyright (c) 2018-2025 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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// with the Software without restriction, including without limitation the
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// rights to use, copy, modify, merge, publish, distribute, sublicense, and/or
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// sell 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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// * Redistributions of source code must retain the above copyright notice,
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// this list of conditions and the following disclaimers.
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//
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// * Redistributions in binary form must reproduce the above copyright
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// notice, this list of conditions and the following disclaimers in the
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// documentation and/or other materials provided with the distribution.
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//
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// * Neither the names of Advanced Micro Devices, Inc. nor the names of its
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// contributors may be used to endorse or promote products derived from
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// this Software without specific prior written permission.
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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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// CONTRIBUTORS 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 WITH
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// THE SOFTWARE.
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#if defined(NDEBUG)
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# undef NDEBUG
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#endif
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#include "library/rocm_smi.hpp"
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#include "core/common.hpp"
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#include "core/components/fwd.hpp"
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#include "core/config.hpp"
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#include "core/debug.hpp"
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#include "core/gpu.hpp"
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#include "core/perfetto.hpp"
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#include "core/state.hpp"
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#include "library/runtime.hpp"
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#include "library/thread_info.hpp"
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#include <timemory/backends/threading.hpp>
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#include <timemory/components/timing/backends.hpp>
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#include <timemory/mpl/type_traits.hpp>
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#include <timemory/units.hpp>
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#include <timemory/utility/delimit.hpp>
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#include <timemory/utility/locking.hpp>
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#include <rocm_smi/rocm_smi.h>
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#include <cassert>
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#include <chrono>
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#include <ios>
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#include <sstream>
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#include <stdexcept>
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#include <string>
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#include <sys/resource.h>
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#include <thread>
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#define ROCPROFSYS_ROCM_SMI_CALL(...) \
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::rocprofsys::rocm_smi::check_error(__FILE__, __LINE__, __VA_ARGS__)
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namespace rocprofsys
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{
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namespace rocm_smi
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{
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using bundle_t = std::deque<data>;
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using sampler_instances = thread_data<bundle_t, category::rocm_smi>;
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namespace
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{
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auto&
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get_settings(uint32_t _dev_id)
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{
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static auto _v = std::unordered_map<uint32_t, rocm_smi::settings>{};
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return _v[_dev_id];
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}
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bool&
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is_initialized()
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{
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static bool _v = false;
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return _v;
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}
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void
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check_error(const char* _file, int _line, rsmi_status_t _code, bool* _option = nullptr)
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{
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if(_code == RSMI_STATUS_SUCCESS)
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return;
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else if(_code == RSMI_STATUS_NOT_SUPPORTED && _option)
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{
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*_option = false;
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return;
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}
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const char* _msg = nullptr;
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auto _err = rsmi_status_string(_code, &_msg);
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if(_err != RSMI_STATUS_SUCCESS)
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ROCPROFSYS_THROW("rsmi_status_string failed. No error message available. "
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"Error code %i originated at %s:%i\n",
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static_cast<int>(_code), _file, _line);
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ROCPROFSYS_THROW("[%s:%i] Error code %i :: %s", _file, _line, static_cast<int>(_code),
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_msg);
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}
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std::atomic<State>&
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get_state()
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{
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static std::atomic<State> _v{ State::PreInit };
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return _v;
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}
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} // namespace
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//--------------------------------------------------------------------------------------//
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size_t data::device_count = 0;
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std::set<uint32_t> data::device_list = {};
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std::unique_ptr<data::promise_t> data::polling_finished = {};
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data::data(uint32_t _dev_id) { sample(_dev_id); }
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void
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data::sample(uint32_t _dev_id)
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{
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auto _ts = tim::get_clock_real_now<size_t, std::nano>();
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assert(_ts < std::numeric_limits<int64_t>::max());
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rsmi_gpu_metrics_t _gpu_metrics;
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auto _state = get_state().load();
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if(_state != State::Active) return;
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m_dev_id = _dev_id;
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m_ts = _ts;
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#define ROCPROFSYS_RSMI_GET(OPTION, FUNCTION, ...) \
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if(OPTION) \
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{ \
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try \
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{ \
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ROCPROFSYS_ROCM_SMI_CALL(FUNCTION(__VA_ARGS__), &OPTION); \
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} catch(std::runtime_error & _e) \
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{ \
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ROCPROFSYS_VERBOSE_F( \
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0, "[%s] Exception: %s. Disabling future samples from rocm-smi...\n", \
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#FUNCTION, _e.what()); \
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get_state().store(State::Disabled); \
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} \
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}
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ROCPROFSYS_RSMI_GET(get_settings(m_dev_id).busy, rsmi_dev_busy_percent_get, _dev_id,
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&m_busy_perc);
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ROCPROFSYS_RSMI_GET(get_settings(m_dev_id).temp, rsmi_dev_temp_metric_get, _dev_id,
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RSMI_TEMP_TYPE_JUNCTION, RSMI_TEMP_CURRENT, &m_temp);
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RSMI_POWER_TYPE power_type = RSMI_CURRENT_POWER;
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ROCPROFSYS_RSMI_GET(get_settings(m_dev_id).power, rsmi_dev_power_get, _dev_id,
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&m_power, &power_type)
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ROCPROFSYS_RSMI_GET(get_settings(m_dev_id).mem_usage, rsmi_dev_memory_usage_get,
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_dev_id, RSMI_MEM_TYPE_VRAM, &m_mem_usage);
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ROCPROFSYS_RSMI_GET(get_settings(m_dev_id).vcn_activity,
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rsmi_dev_gpu_metrics_info_get, _dev_id, &_gpu_metrics);
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for(const auto& activity : _gpu_metrics.vcn_activity)
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{
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if(activity != UINT16_MAX) m_vcn_metrics.push_back(activity);
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}
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#undef ROCPROFSYS_RSMI_GET
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}
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void
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data::print(std::ostream& _os) const
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{
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std::stringstream _ss{};
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_ss << "device: " << m_dev_id << ", busy = " << m_busy_perc << "%, temp = " << m_temp
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<< ", power = " << m_power << ", memory usage = " << m_mem_usage;
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_os << _ss.str();
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}
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namespace
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{
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std::vector<unique_ptr_t<bundle_t>*> _bundle_data{};
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}
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void
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config()
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{
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_bundle_data.resize(data::device_count, nullptr);
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for(size_t i = 0; i < data::device_count; ++i)
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{
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if(data::device_list.count(i) > 0)
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{
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_bundle_data.at(i) = &sampler_instances::get()->at(i);
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if(!*_bundle_data.at(i))
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*_bundle_data.at(i) = unique_ptr_t<bundle_t>{ new bundle_t{} };
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}
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}
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data::get_initial().resize(data::device_count);
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for(auto itr : data::device_list)
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data::get_initial().at(itr).sample(itr);
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}
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void
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sample()
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{
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for(auto itr : data::device_list)
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{
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if(rocm_smi::get_state() != State::Active) continue;
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ROCPROFSYS_DEBUG_F("Polling rocm-smi for device %u...\n", itr);
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auto& _data = *_bundle_data.at(itr);
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if(!_data) continue;
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_data->emplace_back(data{ itr });
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ROCPROFSYS_DEBUG_F(" %s\n", TIMEMORY_JOIN("", _data->back()).c_str());
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}
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}
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void
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set_state(State _v)
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{
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rocm_smi::get_state().store(_v);
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}
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std::vector<data>&
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data::get_initial()
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{
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static std::vector<data> _v{};
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return _v;
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}
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bool
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data::setup()
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{
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perfetto_counter_track<data>::init();
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rocm_smi::set_state(State::PreInit);
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return true;
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}
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bool
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data::shutdown()
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{
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ROCPROFSYS_DEBUG("Shutting down rocm-smi...\n");
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rocm_smi::set_state(State::Finalized);
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return true;
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}
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#define GPU_METRIC(COMPONENT, ...) \
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if constexpr(tim::trait::is_available<COMPONENT>::value) \
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{ \
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auto* _val = _v.get<COMPONENT>(); \
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if(_val) \
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{ \
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_val->set_value(itr.__VA_ARGS__); \
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_val->set_accum(itr.__VA_ARGS__); \
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} \
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}
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void
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data::post_process(uint32_t _dev_id)
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{
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using component::sampling_gpu_busy;
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using component::sampling_gpu_memory;
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using component::sampling_gpu_power;
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using component::sampling_gpu_temp;
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using component::sampling_gpu_vcn;
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if(device_count < _dev_id) return;
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auto& _rocm_smi_v = sampler_instances::get()->at(_dev_id);
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auto _rocm_smi = (_rocm_smi_v) ? *_rocm_smi_v : std::deque<rocm_smi::data>{};
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const auto& _thread_info = thread_info::get(0, InternalTID);
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ROCPROFSYS_VERBOSE(1, "Post-processing %zu rocm-smi samples from device %u\n",
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_rocm_smi.size(), _dev_id);
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ROCPROFSYS_CI_THROW(!_thread_info, "Missing thread info for thread 0");
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if(!_thread_info) return;
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auto _settings = get_settings(_dev_id);
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auto _process_perfetto = [&]() {
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auto _idx = std::array<uint64_t, 5>{};
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{
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_idx.fill(_idx.size());
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uint64_t nidx = 0;
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if(_settings.busy) _idx.at(0) = nidx++;
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if(_settings.temp) _idx.at(1) = nidx++;
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if(_settings.power) _idx.at(2) = nidx++;
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if(_settings.mem_usage) _idx.at(3) = nidx++;
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if(_settings.vcn_activity) _idx.at(4) = nidx++;
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}
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for(auto& itr : _rocm_smi)
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{
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using counter_track = perfetto_counter_track<data>;
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if(itr.m_dev_id != _dev_id) continue;
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if(!counter_track::exists(_dev_id))
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{
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auto addendum = [&](const char* _v) {
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return JOIN(" ", "GPU", _v, JOIN("", '[', _dev_id, ']'), "(S)");
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};
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if(_settings.busy) counter_track::emplace(_dev_id, addendum("Busy"), "%");
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if(_settings.temp)
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counter_track::emplace(_dev_id, addendum("Temperature"), "deg C");
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if(_settings.power)
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counter_track::emplace(_dev_id, addendum("Power"), "watts");
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if(_settings.mem_usage)
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counter_track::emplace(_dev_id, addendum("Memory Usage"),
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"megabytes");
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if(_settings.vcn_activity)
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{
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for(std::size_t i = 0; i < std::size(itr.m_vcn_metrics); ++i)
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counter_track::emplace(
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_dev_id,
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addendum(("VCN Activity on " + std::to_string(i)).c_str()),
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"%");
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}
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}
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uint64_t _ts = itr.m_ts;
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if(!_thread_info->is_valid_time(_ts)) continue;
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double _busy = itr.m_busy_perc;
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double _temp = itr.m_temp / 1.0e3;
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double _power = itr.m_power / 1.0e6;
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double _usage = itr.m_mem_usage / static_cast<double>(units::megabyte);
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if(_settings.busy)
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TRACE_COUNTER("device_busy", counter_track::at(_dev_id, _idx.at(0)), _ts,
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_busy);
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if(_settings.temp)
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TRACE_COUNTER("device_temp", counter_track::at(_dev_id, _idx.at(1)), _ts,
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_temp);
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if(_settings.power)
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TRACE_COUNTER("device_power", counter_track::at(_dev_id, _idx.at(2)), _ts,
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_power);
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if(_settings.mem_usage)
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TRACE_COUNTER("device_memory_usage",
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counter_track::at(_dev_id, _idx.at(3)), _ts, _usage);
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if(_settings.vcn_activity)
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{
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uint64_t idx = _idx.at(4);
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for(const auto& temp : itr.m_vcn_metrics)
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{
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TRACE_COUNTER("device_vcn_activity", counter_track::at(_dev_id, idx),
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_ts, temp);
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++idx;
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}
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}
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}
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};
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if(get_use_perfetto()) _process_perfetto();
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}
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//--------------------------------------------------------------------------------------//
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void
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setup()
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{
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auto_lock_t _lk{ type_mutex<category::rocm_smi>() };
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if(is_initialized() || !get_use_rocm_smi()) return;
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ROCPROFSYS_SCOPED_SAMPLING_ON_CHILD_THREADS(false);
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// assign the data value to determined by rocm-smi
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data::device_count = device_count();
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auto _devices_v = get_sampling_gpus();
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for(auto& itr : _devices_v)
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itr = tolower(itr);
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if(_devices_v == "off")
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_devices_v = "none";
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else if(_devices_v == "on")
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_devices_v = "all";
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bool _all_devices = _devices_v.find("all") != std::string::npos || _devices_v.empty();
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bool _no_devices = _devices_v.find("none") != std::string::npos;
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std::set<uint32_t> _devices = {};
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auto _emplace = [&_devices](auto idx) {
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if(idx < data::device_count) _devices.emplace(idx);
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};
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if(_all_devices)
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{
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for(uint32_t i = 0; i < data::device_count; ++i)
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_emplace(i);
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}
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else if(!_no_devices)
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{
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auto _enabled = tim::delimit(_devices_v, ",; \t");
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for(auto&& itr : _enabled)
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{
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if(itr.find_first_not_of("0123456789-") != std::string::npos)
|
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{
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ROCPROFSYS_THROW("Invalid GPU specification: '%s'. Only numerical values "
|
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"(e.g., 0) or ranges (e.g., 0-7) are permitted.",
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itr.c_str());
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}
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if(itr.find('-') != std::string::npos)
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{
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||||
auto _v = tim::delimit(itr, "-");
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ROCPROFSYS_CONDITIONAL_THROW(_v.size() != 2,
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"Invalid GPU range specification: '%s'. "
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"Required format N-M, e.g. 0-4",
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itr.c_str());
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for(auto i = std::stoul(_v.at(0)); i < std::stoul(_v.at(1)); ++i)
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_emplace(i);
|
||||
}
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||||
else
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||||
{
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||||
_emplace(std::stoul(itr));
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
data::device_list = _devices;
|
||||
|
||||
auto _metrics = get_setting_value<std::string>("ROCPROFSYS_ROCM_SMI_METRICS");
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||||
|
||||
try
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||||
{
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||||
for(auto itr : _devices)
|
||||
{
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||||
uint16_t dev_id = 0;
|
||||
ROCPROFSYS_ROCM_SMI_CALL(rsmi_dev_id_get(itr, &dev_id));
|
||||
// dev_id holds the device ID of device i, upon a successful call
|
||||
|
||||
if(_metrics && !_metrics->empty())
|
||||
{
|
||||
using key_pair_t = std::pair<std::string_view, bool&>;
|
||||
const auto supported = std::unordered_map<std::string_view, bool&>{
|
||||
key_pair_t{ "busy", get_settings(dev_id).busy },
|
||||
key_pair_t{ "temp", get_settings(dev_id).temp },
|
||||
key_pair_t{ "power", get_settings(dev_id).power },
|
||||
key_pair_t{ "mem_usage", get_settings(dev_id).mem_usage },
|
||||
key_pair_t{ "vcn_activity", get_settings(dev_id).vcn_activity },
|
||||
};
|
||||
|
||||
get_settings(dev_id) = { false, false, false, false };
|
||||
for(const auto& metric : tim::delimit(*_metrics, ",;:\t\n "))
|
||||
{
|
||||
auto iitr = supported.find(metric);
|
||||
if(iitr == supported.end())
|
||||
ROCPROFSYS_FAIL_F("unsupported rocm-smi metric: %s\n",
|
||||
metric.c_str());
|
||||
|
||||
ROCPROFSYS_VERBOSE_F(1, "Enabling rocm-smi metric '%s'\n",
|
||||
metric.c_str());
|
||||
iitr->second = true;
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
is_initialized() = true;
|
||||
|
||||
data::setup();
|
||||
} catch(std::runtime_error& _e)
|
||||
{
|
||||
ROCPROFSYS_VERBOSE(0, "Exception thrown when initializing rocm-smi: %s\n",
|
||||
_e.what());
|
||||
data::device_list = {};
|
||||
}
|
||||
}
|
||||
|
||||
void
|
||||
shutdown()
|
||||
{
|
||||
auto_lock_t _lk{ type_mutex<category::rocm_smi>() };
|
||||
|
||||
if(!is_initialized()) return;
|
||||
|
||||
try
|
||||
{
|
||||
if(data::shutdown())
|
||||
{
|
||||
ROCPROFSYS_ROCM_SMI_CALL(rsmi_shut_down());
|
||||
}
|
||||
} catch(std::runtime_error& _e)
|
||||
{
|
||||
ROCPROFSYS_VERBOSE(0, "Exception thrown when shutting down rocm-smi: %s\n",
|
||||
_e.what());
|
||||
}
|
||||
|
||||
is_initialized() = false;
|
||||
}
|
||||
|
||||
void
|
||||
post_process()
|
||||
{
|
||||
for(auto itr : data::device_list)
|
||||
data::post_process(itr);
|
||||
}
|
||||
|
||||
uint32_t
|
||||
device_count()
|
||||
{
|
||||
return gpu::rsmi_device_count();
|
||||
}
|
||||
} // namespace rocm_smi
|
||||
} // namespace rocprofsys
|
||||
|
||||
ROCPROFSYS_INSTANTIATE_EXTERN_COMPONENT(
|
||||
TIMEMORY_ESC(data_tracker<double, rocprofsys::component::backtrace_gpu_busy>), true,
|
||||
double)
|
||||
|
||||
ROCPROFSYS_INSTANTIATE_EXTERN_COMPONENT(
|
||||
TIMEMORY_ESC(data_tracker<double, rocprofsys::component::backtrace_gpu_temp>), true,
|
||||
double)
|
||||
|
||||
ROCPROFSYS_INSTANTIATE_EXTERN_COMPONENT(
|
||||
TIMEMORY_ESC(data_tracker<double, rocprofsys::component::backtrace_gpu_power>), true,
|
||||
double)
|
||||
|
||||
ROCPROFSYS_INSTANTIATE_EXTERN_COMPONENT(
|
||||
TIMEMORY_ESC(data_tracker<double, rocprofsys::component::backtrace_gpu_memory>), true,
|
||||
double)
|
||||
|
||||
ROCPROFSYS_INSTANTIATE_EXTERN_COMPONENT(
|
||||
TIMEMORY_ESC(data_tracker<double, rocprofsys::component::backtrace_gpu_vcn>), true,
|
||||
double)
|
||||
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