de13d2ac5d
* Public C++ header files (source/include/rocprofiler-sdk/cxx)
* Update samples/api_buffered_tracing
- scratch memory and page migration
- README
* Update samples/api_buffered_tracing
- page migration component in sample
* Update tests/page-migration/validate.py
- fix checks for page migration operation names
* Update tests/page-migration/validate.py
- fix get_allocated_pages
* Update scratch memory and page migration validations
* Fix include/rocprofiler-sdk/cxx installation
* Rework include/rocprofiler-sdk/cxx
- Improve name_info to support const char*, string_view, string
* Update samples/api_{buffered,callback}_tracing
* External correlation ID request sample
- includes correlation ID retirement demo
* Update samples/api_buffered_tracing/README.md
* Update lib/rocprofiler-sdk/hsa/queue.cpp
- generate correlation ID for kernel launch if one doesn't exist
* Remove priority check from tool libraries (samples/tests)
- if(priority > 0) return nullptr check in rocprofiler_configure has proliferated beyond its intended use
* Apply suggestions from code review
373 línte
13 KiB
C++
373 línte
13 KiB
C++
// MIT License
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//
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// Copyright (c) 2023 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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// undefine NDEBUG so asserts are implemented
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#ifdef NDEBUG
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# undef NDEBUG
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#endif
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/**
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* @file samples/api_callback_tracing/client.cpp
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*
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* @brief Example rocprofiler client (tool)
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*/
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#include "client.hpp"
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#include <rocprofiler-sdk/context.h>
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#include <rocprofiler-sdk/fwd.h>
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#include <rocprofiler-sdk/marker/api_id.h>
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#include <rocprofiler-sdk/registration.h>
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#include <rocprofiler-sdk/rocprofiler.h>
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#include "common/call_stack.hpp"
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#include "common/defines.hpp"
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#include "common/filesystem.hpp"
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#include "common/name_info.hpp"
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#include <cassert>
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#include <chrono>
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#include <cstddef>
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#include <cstdint>
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#include <cstdio>
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#include <cstdlib>
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#include <fstream>
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#include <functional>
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#include <iomanip>
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#include <iostream>
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#include <map>
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#include <mutex>
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#include <ratio>
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#include <string>
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#include <string_view>
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#include <unordered_set>
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#include <vector>
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namespace client
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{
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namespace
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{
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using common::call_stack_t;
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using common::callback_name_info;
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using common::source_location;
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rocprofiler_client_id_t* client_id = nullptr;
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rocprofiler_client_finalize_t client_fini_func = nullptr;
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rocprofiler_context_id_t client_ctx = {};
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void
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print_call_stack(const call_stack_t& _call_stack)
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{
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common::print_call_stack("api_callback_trace.log", _call_stack);
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}
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void
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tool_tracing_ctrl_callback(rocprofiler_callback_tracing_record_t record,
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rocprofiler_user_data_t*,
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void* client_data)
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{
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auto* ctx = static_cast<rocprofiler_context_id_t*>(client_data);
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if(record.phase == ROCPROFILER_CALLBACK_PHASE_ENTER &&
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record.kind == ROCPROFILER_CALLBACK_TRACING_MARKER_CONTROL_API &&
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record.operation == ROCPROFILER_MARKER_CONTROL_API_ID_roctxProfilerPause)
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{
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ROCPROFILER_CALL(rocprofiler_stop_context(*ctx), "pausing client context");
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}
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else if(record.phase == ROCPROFILER_CALLBACK_PHASE_EXIT &&
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record.kind == ROCPROFILER_CALLBACK_TRACING_MARKER_CONTROL_API &&
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record.operation == ROCPROFILER_MARKER_CONTROL_API_ID_roctxProfilerResume)
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{
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ROCPROFILER_CALL(rocprofiler_start_context(*ctx), "resuming client context");
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}
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}
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void
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tool_tracing_callback(rocprofiler_callback_tracing_record_t record,
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rocprofiler_user_data_t* user_data,
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void* callback_data)
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{
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assert(callback_data != nullptr);
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auto now = std::chrono::steady_clock::now().time_since_epoch().count();
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uint64_t dt = 0;
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if(record.phase == ROCPROFILER_CALLBACK_PHASE_ENTER)
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user_data->value = now;
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else
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dt = (now - user_data->value);
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auto info = std::stringstream{};
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info << std::left << "tid=" << record.thread_id << ", cid=" << std::setw(3)
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<< record.correlation_id.internal << ", kind=" << record.kind
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<< ", operation=" << std::setw(3) << record.operation << ", phase=" << record.phase
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<< ", dt_nsec=" << std::setw(6) << dt;
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auto info_data_cb = [](rocprofiler_callback_tracing_kind_t,
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uint32_t,
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uint32_t arg_num,
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const void* const arg_value_addr,
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int32_t indirection_count,
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const char* arg_type,
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const char* arg_name,
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const char* arg_value_str,
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int32_t dereference_count,
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void* cb_data) -> int {
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auto& dss = *static_cast<std::stringstream*>(cb_data);
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dss << ((arg_num == 0) ? "(" : ", ");
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dss << arg_num << ": " << arg_name << "=" << arg_value_str;
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(void) arg_value_addr;
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(void) arg_type;
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(void) indirection_count;
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(void) dereference_count;
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return 0;
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};
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int32_t max_deref = (record.phase == ROCPROFILER_CALLBACK_PHASE_ENTER) ? 1 : 2;
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auto info_data = std::stringstream{};
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ROCPROFILER_CALL(rocprofiler_iterate_callback_tracing_kind_operation_args(
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record, info_data_cb, max_deref, static_cast<void*>(&info_data)),
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"Failure iterating trace operation args");
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auto info_data_str = info_data.str();
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if(!info_data_str.empty()) info << " " << info_data_str << ")";
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static auto _mutex = std::mutex{};
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_mutex.lock();
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static_cast<call_stack_t*>(callback_data)
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->emplace_back(source_location{__FUNCTION__, __FILE__, __LINE__, info.str()});
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_mutex.unlock();
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}
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void
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tool_control_init(rocprofiler_context_id_t& primary_ctx)
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{
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// Create a specialized (throw-away) context for handling ROCTx profiler pause and resume.
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// A separate context is used because if the context that is associated with roctxProfilerPause
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// disabled that same context, a call to roctxProfilerResume would be ignored because the
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// context that enables the callback for that API call is disabled.
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auto cntrl_ctx = rocprofiler_context_id_t{};
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ROCPROFILER_CALL(rocprofiler_create_context(&cntrl_ctx), "control context creation failed");
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// enable callback marker tracing with only the pause/resume operations
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ROCPROFILER_CALL(rocprofiler_configure_callback_tracing_service(
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cntrl_ctx,
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ROCPROFILER_CALLBACK_TRACING_MARKER_CONTROL_API,
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nullptr,
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0,
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tool_tracing_ctrl_callback,
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&primary_ctx),
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"callback tracing service failed to configure");
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// start the context so that it is always active
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ROCPROFILER_CALL(rocprofiler_start_context(cntrl_ctx), "start of control context");
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}
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int
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tool_init(rocprofiler_client_finalize_t fini_func, void* tool_data)
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{
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assert(tool_data != nullptr);
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auto* call_stack_v = static_cast<call_stack_t*>(tool_data);
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call_stack_v->emplace_back(source_location{__FUNCTION__, __FILE__, __LINE__, ""});
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callback_name_info name_info = common::get_callback_id_names();
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for(const auto& itr : name_info)
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{
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auto name_idx = std::stringstream{};
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name_idx << " [" << std::setw(3) << itr.value << "]";
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call_stack_v->emplace_back(
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source_location{"rocprofiler_callback_tracing_kind_names " + name_idx.str(),
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__FILE__,
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__LINE__,
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std::string{itr.name}});
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for(auto [didx, ditr] : itr.items())
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{
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auto operation_idx = std::stringstream{};
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operation_idx << " [" << std::setw(3) << didx << "]";
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call_stack_v->emplace_back(source_location{
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"rocprofiler_callback_tracing_kind_operation_names" + operation_idx.str(),
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__FILE__,
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__LINE__,
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std::string{"- "} + std::string{*ditr}});
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}
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}
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client_fini_func = fini_func;
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ROCPROFILER_CALL(rocprofiler_create_context(&client_ctx), "context creation failed");
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// enable the control
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tool_control_init(client_ctx);
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for(auto itr : {ROCPROFILER_CALLBACK_TRACING_HSA_CORE_API,
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ROCPROFILER_CALLBACK_TRACING_HSA_AMD_EXT_API,
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ROCPROFILER_CALLBACK_TRACING_HSA_IMAGE_EXT_API,
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ROCPROFILER_CALLBACK_TRACING_HSA_FINALIZE_EXT_API})
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{
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ROCPROFILER_CALL(rocprofiler_configure_callback_tracing_service(
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client_ctx, itr, nullptr, 0, tool_tracing_callback, tool_data),
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"callback tracing service failed to configure");
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}
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ROCPROFILER_CALL(
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rocprofiler_configure_callback_tracing_service(client_ctx,
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ROCPROFILER_CALLBACK_TRACING_HIP_RUNTIME_API,
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nullptr,
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0,
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tool_tracing_callback,
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tool_data),
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"callback tracing service failed to configure");
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ROCPROFILER_CALL(
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rocprofiler_configure_callback_tracing_service(client_ctx,
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ROCPROFILER_CALLBACK_TRACING_MARKER_CORE_API,
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nullptr,
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0,
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tool_tracing_callback,
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tool_data),
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"callback tracing service failed to configure");
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ROCPROFILER_CALL(
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rocprofiler_configure_callback_tracing_service(client_ctx,
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ROCPROFILER_CALLBACK_TRACING_MARKER_NAME_API,
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nullptr,
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0,
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tool_tracing_callback,
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tool_data),
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"callback tracing service failed to configure");
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int valid_ctx = 0;
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ROCPROFILER_CALL(rocprofiler_context_is_valid(client_ctx, &valid_ctx),
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"failure checking context validity");
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if(valid_ctx == 0)
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{
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// notify rocprofiler that initialization failed
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// and all the contexts, buffers, etc. created
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// should be ignored
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return -1;
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}
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ROCPROFILER_CALL(rocprofiler_start_context(client_ctx), "rocprofiler context start failed");
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// no errors
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return 0;
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}
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void
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tool_fini(void* tool_data)
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{
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assert(tool_data != nullptr);
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auto* _call_stack = static_cast<call_stack_t*>(tool_data);
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_call_stack->emplace_back(source_location{__FUNCTION__, __FILE__, __LINE__, ""});
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print_call_stack(*_call_stack);
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delete _call_stack;
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}
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} // namespace
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void
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setup()
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{}
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void
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shutdown()
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{
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if(client_id) client_fini_func(*client_id);
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}
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void
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start()
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{
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ROCPROFILER_CALL(rocprofiler_start_context(client_ctx), "rocprofiler context start failed");
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}
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void
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stop()
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{
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int status = 0;
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ROCPROFILER_CALL(rocprofiler_is_initialized(&status), "failed to retrieve init status");
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if(status != 0)
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{
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ROCPROFILER_CALL(rocprofiler_stop_context(client_ctx), "rocprofiler context stop failed");
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}
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}
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} // namespace client
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extern "C" rocprofiler_tool_configure_result_t*
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rocprofiler_configure(uint32_t version,
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const char* runtime_version,
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uint32_t priority,
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rocprofiler_client_id_t* id)
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{
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// set the client name
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id->name = "ExampleTool";
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// store client info
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client::client_id = id;
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// compute major/minor/patch version info
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uint32_t major = version / 10000;
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uint32_t minor = (version % 10000) / 100;
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uint32_t patch = version % 100;
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// generate info string
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auto info = std::stringstream{};
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info << id->name << " (priority=" << priority << ") is using rocprofiler-sdk v" << major << "."
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<< minor << "." << patch << " (" << runtime_version << ")";
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std::clog << info.str() << std::endl;
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// demonstration of alternative way to get the version info
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{
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auto version_info = std::array<uint32_t, 3>{};
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ROCPROFILER_CALL(
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rocprofiler_get_version(&version_info.at(0), &version_info.at(1), &version_info.at(2)),
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"failed to get version info");
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if(std::array<uint32_t, 3>{major, minor, patch} != version_info)
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{
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throw std::runtime_error{"version info mismatch"};
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}
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}
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// data passed around all the callbacks
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auto* client_tool_data = new std::vector<client::source_location>{};
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// add first entry
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client_tool_data->emplace_back(
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client::source_location{__FUNCTION__, __FILE__, __LINE__, info.str()});
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// create configure data
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static auto cfg =
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rocprofiler_tool_configure_result_t{sizeof(rocprofiler_tool_configure_result_t),
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&client::tool_init,
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&client::tool_fini,
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static_cast<void*>(client_tool_data)};
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// return pointer to configure data
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return &cfg;
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}
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