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easy_profiler/src/profile_manager.h

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/**
Lightweight profiler library for c++
Copyright(C) 2016 Sergey Yagovtsev, Victor Zarubkin
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This program is free software : you can redistribute it and / or modify
it under the terms of the GNU General Public License as published by
the Free Software Foundation, either version 3 of the License, or
(at your option) any later version.
This program is distributed in the hope that it will be useful,
but WITHOUT ANY WARRANTY; without even the implied warranty of
MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.See the
GNU General Public License for more details.
You should have received a copy of the GNU General Public License
along with this program.If not, see <http://www.gnu.org/licenses/>.
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**/
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#ifndef ___PROFILER____MANAGER____H______
#define ___PROFILER____MANAGER____H______
#include "profiler/profiler.h"
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#include "spin_lock.h"
#include <stack>
#include <map>
#include <list>
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#include <set>
#include <vector>
#include <functional>
//////////////////////////////////////////////////////////////////////////
#ifdef _WIN32
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#include <Windows.h>
#else
#include <thread>
#include <sys/types.h>
#include <unistd.h>
#include <sys/syscall.h>
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#endif
inline uint32_t getCurrentThreadId()
{
#ifdef _WIN32
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return (uint32_t)::GetCurrentThreadId();
#else
thread_local static pid_t x = syscall(__NR_gettid);
thread_local static uint32_t _id = (uint32_t)x;//std::hash<std::thread::id>()(std::this_thread::get_id());
return _id;
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#endif
}
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namespace profiler { class SerializedBlock; }
//////////////////////////////////////////////////////////////////////////
template <class T, const uint16_t N>
class chunk_allocator final
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{
struct chunk { T data[N]; };
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std::list<chunk> m_chunks;
uint16_t m_size;
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public:
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chunk_allocator() : m_size(0)
{
m_chunks.emplace_back();
}
T* allocate(uint16_t n)
{
if (m_size + n <= N)
{
T* data = m_chunks.back().data + m_size;
m_size += n;
return data;
}
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m_size = n;
m_chunks.emplace_back();
return m_chunks.back().data;
}
void clear()
{
m_size = 0;
m_chunks.clear();
m_chunks.emplace_back();
}
};
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//////////////////////////////////////////////////////////////////////////
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const uint16_t SIZEOF_CSWITCH = sizeof(profiler::BaseBlockData) + 1;
class ThreadStorage final
{
typedef std::vector<profiler::SerializedBlock*> serialized_list_t;
template <class T, const uint16_t N>
struct BlocksList final
{
typedef std::stack<T> stack_of_blocks_t;
chunk_allocator<char, N> alloc;
stack_of_blocks_t openedList;
serialized_list_t closedList;
uint64_t usedMemorySize = 0;
void clearClosed() {
serialized_list_t().swap(closedList);
alloc.clear();
usedMemorySize = 0;
}
};
public:
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BlocksList<std::reference_wrapper<profiler::Block>, SIZEOF_CSWITCH * (uint16_t)1024U> blocks;
BlocksList<profiler::Block, SIZEOF_CSWITCH * (uint16_t)128U> sync;
bool named = false;
void storeBlock(const profiler::Block& _block);
void storeCSwitch(const profiler::Block& _block);
void clearClosed();
};
//////////////////////////////////////////////////////////////////////////
class ProfileManager final
{
friend profiler::StaticBlockDescriptor;
ProfileManager();
ProfileManager(const ProfileManager& p) = delete;
ProfileManager& operator=(const ProfileManager&) = delete;
typedef profiler::guard_lock<profiler::spin_lock> guard_lock_t;
typedef std::map<profiler::thread_id_t, ThreadStorage> map_of_threads_stacks;
typedef std::vector<profiler::BlockDescriptor> block_descriptors_t;
map_of_threads_stacks m_threads;
block_descriptors_t m_descriptors;
uint64_t m_usedMemorySize = 0;
profiler::spin_lock m_spin;
profiler::spin_lock m_storedSpin;
bool m_isEnabled = false;
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public:
static ProfileManager& instance();
~ProfileManager();
void beginBlock(profiler::Block& _block);
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void endBlock();
void setEnabled(bool isEnable);
uint32_t dumpBlocksToFile(const char* filename);
void setThreadName(const char* name, const char* filename, const char* _funcname, int line);
void _cswitchBeginBlock(profiler::timestamp_t _time, profiler::block_id_t _id, profiler::thread_id_t _thread_id);
void _cswitchEndBlock(profiler::thread_id_t _thread_id, profiler::timestamp_t _endtime);
private:
template <class ... TArgs>
uint32_t addBlockDescriptor(TArgs ... _args)
{
guard_lock_t lock(m_storedSpin);
const auto id = static_cast<uint32_t>(m_descriptors.size());
m_descriptors.emplace_back(m_usedMemorySize, _args...);
return id;
}
ThreadStorage& threadStorage(profiler::thread_id_t _thread_id)
{
guard_lock_t lock(m_spin);
return m_threads[_thread_id];
}
ThreadStorage* _threadStorage(profiler::thread_id_t _thread_id)
{
guard_lock_t lock(m_spin);
auto it = m_threads.find(_thread_id);
return it != m_threads.end() ? &it->second : nullptr;
}
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};
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#endif