Files
rocm-systems/source/lib/omnitrace/library/perfetto.hpp
T
Jonathan R. Madsen 808ea7dfa7 Rework sampling and colorized logs (#140)
## Overview

This is a significant PR which has 3 very notable characteristics:

1. Omnitrace colorizes most of it's logging
2. Completely reworked the sampling 
  - Samples now record the current instruction pointers instead of strings
    - This _dramatically_ decreases the overhead of taking a sample
  - The collection of metrics during a sample are split out into another component, enabling that data collection to be disabled -- which decreases the sampling overhead even further
  - When both `OMNITRACE_SAMPLING_CPUTIME` and `OMNITRACE_SAMPLING_REALTIME` are ON:
    - `OMNITRACE_SAMPLING_CPUTIME_FREQ` and `OMNITRACE_SAMPLING_REALTIME_FREQ` can be used to individually control the sampling frequency 
  - `OMNITRACE_SAMPLING_CPUTIME_DELAY` and `OMNITRACE_SAMPLING_REALTIME_DELAY` can be used to individually control the delay time before starting
  - Now, omnitrace does not start a real-time sampler on the main thread unless `OMNITRACE_SAMPLING_REALTIME` is ON
    - In the future, an `OMNITRACE_SAMPLING_TIDS` (and real-time, cpu-time variants) configuration variable(s) will allow you to select which threads will be sampled
3. Files produced by `omnitrace` exe -- `available-instr.txt`, `instrumented-instr.txt`, etc. -- now no longer has `-instr` suffix and are placed in `instrumentation/` subfolder, i.e. `available-instr.txt` -> instrumentation/available.txt`
  - This helped de-clutter the output folder

Most of the other edits were reorganization (e.g. internal namespace changes), cleanup, and splitting up functionality.

## Bug Fixes

There is a bug fix with respect to the HSA callbacks which disabled sampling on child threads when an HSA API call was made

## Details

- created thread_info struct for mapping different thread IDs
- reorganized file structure significantly
- added categories.hpp, concepts.hpp
- moved around name trait definitions
- moved all omnitrace components into `omnitrace::component` namespace
  - there was a lot of inconsistency b/t using `tim::component` in some places and `omnitrace::component`
  - added macros like OMNITRACE_DECLARE_COMPONENT in lieu of TIMEMORY_DECLARE_COMPONENT
- OMNITRACE_CRITICAL_TRACE_NUM_THREADS -> OMNITRACE_THREAD_POOL_SIZE
- roctracer and critical_trace use same thread pool
- critical_trace functions do not lock anymore bc of thread-local TaskGroup
- added `component::local_category_region` to support using `component::category_region` without explicitly passing in name
- removed `component::omnitrace` (unused)
- migrated KokkosP and OMPT to use `component::local_category_region`
  - removed `component::user_region` as a result
- migrated omnitrace_{push,pop}_{trace,region}_hidden to use component::category_region
  - removed `component::functors` as a result
- migrated some ppdefs
- `api::omnitrace` -> `project::omnitrace`
- `api::(...)` -> `category::(...)`
- improved recording the execution time of threads
  - migrated this functionality out of pthread_create_gotcha and into thread_info
- moved mpi_gotcha, fork_gotcha, exit_gotcha, rcclp into omnitrace::component namespace
- split backtrace up into backtrace, backtrace_metrics, backtrace_timestamp components
- sampling.cpp handles setup and post-processing that was formerly in backtrace
- updated logging to use colors
- `OMNITRACE_COLORIZED_LOG` config variable
- updated docs on JSON output from timemory
- instrumentation info in instrumentation subfolder
- added testing for KokkosP entries
- added testing for ompt entries
- add_critical_trace function defined in critical_trace.hpp
- disable push_thread_state and pop_thread_state when thread state is Disabled or Completed
- add comp::page_rss to main bundle
- thread_data supports std::optional instead of std::unique_ptr
- thread_data supports tim::identity<T> to avoid unique_ptr or optional
- tracing::record_thread_start_time()
- tracing::push_timemory and tracing::pop_timemory are templated on CategoryT
- removed anonymous namespace from omnitrace::utility
- sampling backtrace stores instruction pointers instead of strings
- component::category_region updates
  - handle disabled thread state
  - handle finalized state
  - fewer debug messages
  - invoke thread_init()
  - invoke thread_init_sampling()
  - handle push/pop count based on category
  - push/pop count only modified when used
- component::cpu_freq
- components/ensure_storage.hpp
- reworked the pthread_create replacement function
- updated parallel-overhead example to report # of times locked
- OMNITRACE_MAX_UNWIND_DEPTH build option
- update timemory submodule
2022-08-31 01:24:31 -05:00

173 wiersze
6.4 KiB
C++

// MIT License
//
// Copyright (c) 2022 Advanced Micro Devices, Inc. All Rights Reserved.
//
// Permission is hereby granted, free of charge, to any person obtaining a copy
// of this software and associated documentation files (the "Software"), to deal
// in the Software without restriction, including without limitation the rights
// to use, copy, modify, merge, publish, distribute, sublicense, and/or sell
// copies of the Software, and to permit persons to whom the Software is
// furnished to do so, subject to the following conditions:
//
// The above copyright notice and this permission notice shall be included in all
// copies or substantial portions of the Software.
//
// THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
// IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
// FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN NO EVENT SHALL THE
// AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
// LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
// OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
// SOFTWARE.
#pragma once
#include "library/categories.hpp"
#include "library/common.hpp"
#if defined(TIMEMORY_USE_PERFETTO)
# include <timemory/components/perfetto/backends.hpp>
#else
# include <perfetto.h>
PERFETTO_DEFINE_CATEGORIES(OMNITRACE_PERFETTO_CATEGORIES);
#endif
#include "library/debug.hpp"
#include <map>
#include <memory>
#include <string>
#include <tuple>
#include <utility>
#include <vector>
namespace omnitrace
{
#if defined(CUSTOM_DATA_SOURCE)
class CustomDataSource : public perfetto::DataSource<CustomDataSource>
{
public:
void OnSetup(const SetupArgs&) override
{
// Use this callback to apply any custom configuration to your data source
// based on the TraceConfig in SetupArgs.
OMNITRACE_PRINT_F("[CustomDataSource] setup\n");
}
void OnStart(const StartArgs&) override
{
// This notification can be used to initialize the GPU driver, enable
// counters, etc. StartArgs will contains the DataSourceDescriptor,
// which can be extended.
OMNITRACE_PRINT_F("[CustomDataSource] start\n");
}
void OnStop(const StopArgs&) override
{
// Undo any initialization done in OnStart.
OMNITRACE_PRINT_F("[CustomDataSource] stop\n");
}
// Data sources can also have per-instance state.
int my_custom_state = 0;
};
PERFETTO_DECLARE_DATA_SOURCE_STATIC_MEMBERS(CustomDataSource);
#endif
template <typename Tp>
struct perfetto_counter_track
{
using track_map_t = std::map<uint32_t, std::vector<perfetto::CounterTrack>>;
using name_map_t = std::map<uint32_t, std::vector<std::unique_ptr<std::string>>>;
using data_t = std::pair<name_map_t, track_map_t>;
static auto init() { (void) get_data(); }
static auto exists(size_t _idx, int64_t _n = -1)
{
bool _v = get_data().second.count(_idx) != 0;
if(_n < 0 || !_v) return _v;
return static_cast<size_t>(_n) < get_data().second.at(_idx).size();
}
static size_t size(size_t _idx)
{
bool _v = get_data().second.count(_idx) != 0;
if(!_v) return 0;
return get_data().second.at(_idx).size();
}
static auto emplace(size_t _idx, const std::string& _v, const char* _units = nullptr,
const char* _category = nullptr, int64_t _mult = 1,
bool _incr = false)
{
auto& _name_data = get_data().first[_idx];
auto& _track_data = get_data().second[_idx];
std::vector<std::tuple<std::string, const char*, bool>> _missing = {};
if(config::get_is_continuous_integration())
{
for(const auto& itr : _name_data)
{
_missing.emplace_back(std::make_tuple(*itr, itr->c_str(), false));
}
}
auto _index = _track_data.size();
auto& _name = _name_data.emplace_back(std::make_unique<std::string>(_v));
const char* _unit_name = (_units && strlen(_units) > 0) ? _units : nullptr;
_track_data.emplace_back(perfetto::CounterTrack{ _name->c_str() }
.set_unit_name(_unit_name)
.set_category(_category)
.set_unit_multiplier(_mult)
.set_is_incremental(_incr));
if(config::get_is_continuous_integration())
{
for(auto& itr : _missing)
{
const char* citr = std::get<1>(itr);
for(const auto& ditr : _name_data)
{
if(citr == ditr->c_str() && strcmp(citr, ditr->c_str()) == 0)
{
std::get<2>(itr) = true;
break;
}
}
if(!std::get<2>(itr))
{
std::set<void*> _prev = {};
std::set<void*> _curr = {};
for(const auto& eitr : _missing)
_prev.emplace(
static_cast<void*>(const_cast<char*>(std::get<1>(eitr))));
for(const auto& eitr : _name_data)
_curr.emplace(
static_cast<void*>(const_cast<char*>(eitr->c_str())));
std::stringstream _pss{};
for(auto&& eitr : _prev)
_pss << " " << std::hex << std::setw(12) << std::left << eitr;
std::stringstream _css{};
for(auto&& eitr : _curr)
_css << " " << std::hex << std::setw(12) << std::left << eitr;
OMNITRACE_THROW("perfetto_counter_track emplace method for '%s' (%p) "
"invalidated C-string '%s' (%p).\n%8s: %s\n%8s: %s\n",
_v.c_str(), _name->c_str(), std::get<0>(itr).c_str(),
std::get<0>(itr).c_str(), "previous",
_pss.str().c_str(), "current", _css.str().c_str());
}
}
}
return _index;
}
static auto& at(size_t _idx, size_t _n) { return get_data().second.at(_idx).at(_n); }
private:
static data_t& get_data()
{
static auto _v = data_t{};
return _v;
}
};
} // namespace omnitrace