1
0
mirror of https://github.com/RPCS3/rpcs3.git synced 2024-11-22 18:53:28 +01:00
rpcs3/Utilities/Log.cpp

582 lines
12 KiB
C++
Raw Normal View History

2017-09-16 19:47:32 +02:00
#include "Log.h"
#include "File.h"
#include "StrFmt.h"
2017-05-13 20:30:37 +02:00
#include "sema.h"
#include "Utilities/sysinfo.h"
2017-11-19 19:59:23 +01:00
#include "Utilities/Thread.h"
#include "rpcs3_version.h"
#include <string>
2017-05-13 20:30:37 +02:00
#include <unordered_map>
2017-11-19 19:59:23 +01:00
#include <thread>
#include <chrono>
using namespace std::literals::chrono_literals;
2017-02-22 10:52:03 +01:00
#ifdef _WIN32
#define NOMINMAX
2017-02-22 10:52:03 +01:00
#include <Windows.h>
#else
#include <sys/mman.h>
2017-02-22 10:52:03 +01:00
#endif
2017-08-29 16:11:36 +02:00
#include <zlib.h>
2017-05-13 20:30:37 +02:00
static std::string empty_string()
{
return {};
}
// Thread-specific log prefix provider
2017-05-13 20:30:37 +02:00
thread_local std::string(*g_tls_log_prefix)() = &empty_string;
template<>
void fmt_class_string<logs::level>::format(std::string& out, u64 arg)
{
format_enum(out, arg, [](auto lev)
{
switch (lev)
{
case logs::level::always: return "Nothing";
case logs::level::fatal: return "Fatal";
case logs::level::error: return "Error";
case logs::level::todo: return "TODO";
case logs::level::success: return "Success";
case logs::level::warning: return "Warning";
case logs::level::notice: return "Notice";
case logs::level::trace: return "Trace";
}
return unknown;
});
}
2016-05-13 16:01:48 +02:00
namespace logs
{
2017-11-19 19:59:23 +01:00
// Memory-mapped buffer size
constexpr u64 s_log_size = 32 * 1024 * 1024;
class file_writer
{
fs::file m_file;
2017-08-29 16:09:06 +02:00
std::string m_name;
2017-11-19 19:59:23 +01:00
std::thread m_writer;
fs::file m_fout;
2017-11-19 23:01:29 +01:00
fs::file m_fout2;
2017-11-19 19:59:23 +01:00
u64 m_max_size;
#ifdef _WIN32
::HANDLE m_fmap;
#endif
uchar* m_fptr{};
2017-11-19 19:59:23 +01:00
alignas(128) atomic_t<u64> m_buf{0}; // MSB (40 bit): push begin, LSB (24 bis): push size
alignas(128) atomic_t<u64> m_out{0}; // Amount of bytes written to file
public:
file_writer(const std::string& name);
virtual ~file_writer();
// Append raw data
void log(logs::level sev, const char* text, std::size_t size);
};
2017-09-16 21:10:55 +02:00
struct channel_info
{
channel* pointer = nullptr;
level enabled = level::notice;
void set_level(level value)
{
enabled = value;
if (pointer)
{
pointer->enabled = value;
}
}
};
struct stored_message
{
message m;
u64 stamp;
std::string prefix;
std::string text;
};
struct file_listener : public file_writer, public listener
{
2017-08-20 23:58:25 +02:00
file_listener(const std::string& name);
virtual ~file_listener() = default;
// Encode level, current thread name, channel name and write log message
2017-02-22 10:52:03 +01:00
virtual void log(u64 stamp, const message& msg, const std::string& prefix, const std::string& text) override;
2017-09-16 21:10:55 +02:00
// Channel registry
std::unordered_map<std::string, channel_info> channels;
// Messages for delayed listener initialization
std::vector<stored_message> messages;
};
static file_listener* get_logger()
{
2016-02-01 22:55:43 +01:00
// Use magic static
static file_listener logger("RPCS3");
return &logger;
}
2017-02-22 10:52:03 +01:00
static u64 get_stamp()
{
static struct time_initializer
{
#ifdef _WIN32
LARGE_INTEGER freq;
LARGE_INTEGER start;
time_initializer()
{
QueryPerformanceFrequency(&freq);
QueryPerformanceCounter(&start);
}
#else
std::chrono::steady_clock::time_point start = std::chrono::steady_clock::now();
#endif
u64 get() const
{
#ifdef _WIN32
LARGE_INTEGER now;
QueryPerformanceCounter(&now);
const LONGLONG diff = now.QuadPart - start.QuadPart;
return diff / freq.QuadPart * 1'000'000 + diff % freq.QuadPart * 1'000'000 / freq.QuadPart;
#else
return std::chrono::duration_cast<std::chrono::microseconds>(std::chrono::steady_clock::now() - start).count();
#endif
}
} timebase{};
return timebase.get();
}
2017-05-13 20:30:37 +02:00
channel GENERAL("");
channel LOADER("LDR");
channel MEMORY("MEM");
channel RSX("RSX");
channel HLE("HLE");
channel PPU("PPU");
channel SPU("SPU");
channel ARMv7("ARMv7");
2017-05-13 20:30:37 +02:00
// Channel registry mutex
semaphore<> g_mutex;
2017-08-20 23:58:25 +02:00
// Must be set to true in main()
atomic_t<bool> g_init{false};
2017-05-13 20:30:37 +02:00
void reset()
{
semaphore_lock lock(g_mutex);
2017-09-16 21:10:55 +02:00
for (auto&& pair : get_logger()->channels)
2017-05-13 20:30:37 +02:00
{
pair.second.set_level(level::notice);
}
}
void set_level(const std::string& ch_name, level value)
{
semaphore_lock lock(g_mutex);
2017-09-16 21:10:55 +02:00
get_logger()->channels[ch_name].set_level(value);
2017-05-13 20:30:37 +02:00
}
2017-08-20 23:58:25 +02:00
// Must be called in main() to stop accumulating messages in g_messages
void set_init()
{
if (!g_init)
{
semaphore_lock lock(g_mutex);
2017-09-16 21:10:55 +02:00
get_logger()->messages.clear();
2017-08-20 23:58:25 +02:00
g_init = true;
}
}
}
2017-01-25 00:22:19 +01:00
logs::listener::~listener()
{
}
void logs::listener::add(logs::listener* _new)
{
// Get first (main) listener
listener* lis = get_logger();
2017-08-20 23:58:25 +02:00
semaphore_lock lock(g_mutex);
// Install new listener at the end of linked list
while (lis->m_next || !lis->m_next.compare_and_swap_test(nullptr, _new))
{
lis = lis->m_next;
}
2017-08-20 23:58:25 +02:00
// Send initial messages
2017-09-16 21:10:55 +02:00
for (const auto& msg : get_logger()->messages)
2017-08-20 23:58:25 +02:00
{
_new->log(msg.stamp, msg.m, msg.prefix, msg.text);
}
}
2016-08-05 18:49:45 +02:00
void logs::message::broadcast(const char* fmt, const fmt_type_info* sup, const u64* args)
{
2017-02-22 10:52:03 +01:00
// Get timestamp
const u64 stamp = get_stamp();
2017-05-13 20:30:37 +02:00
// Register channel
if (ch->enabled == level::_uninit)
{
semaphore_lock lock(g_mutex);
2017-09-16 21:10:55 +02:00
auto& info = get_logger()->channels[ch->name];
2017-05-13 20:30:37 +02:00
if (info.pointer && info.pointer != ch)
{
fmt::throw_exception("logs::channel repetition: %s", ch->name);
}
else if (!info.pointer)
{
info.pointer = ch;
ch->enabled = info.enabled;
// Check level again
if (info.enabled < sev)
{
return;
}
}
}
// Get text
thread_local std::string text; text.clear();
2017-05-13 20:30:37 +02:00
fmt::raw_append(text, fmt, sup, args);
std::string prefix = g_tls_log_prefix();
// Get first (main) listener
listener* lis = get_logger();
2017-08-20 23:58:25 +02:00
if (!g_init)
{
semaphore_lock lock(g_mutex);
if (!g_init)
{
while (lis)
{
lis->log(stamp, *this, prefix, text);
lis = lis->m_next;
}
// Store message additionally
2017-09-16 21:10:55 +02:00
get_logger()->messages.emplace_back(stored_message{*this, stamp, std::move(prefix), text});
2017-08-20 23:58:25 +02:00
}
}
// Send message to all listeners
while (lis)
{
2017-02-22 10:52:03 +01:00
lis->log(stamp, *this, prefix, text);
lis = lis->m_next;
}
}
2016-02-01 22:55:43 +01:00
[[noreturn]] extern void catch_all_exceptions();
2016-05-13 16:01:48 +02:00
logs::file_writer::file_writer(const std::string& name)
2017-09-16 19:37:49 +02:00
: m_name(name)
{
const std::string log_name = fs::get_config_dir() + name + ".log";
const std::string buf_name = fs::get_config_dir() + name + ".buf";
try
{
if (!m_file.open(buf_name, fs::read + fs::write + fs::create + fs::trunc + fs::unshare))
{
if (fs::g_tls_error == fs::error::acces)
{
if (fs::exists(buf_name))
{
fmt::throw_exception("Another instance of %s is running. Close it or kill its process, if necessary.", name);
}
else
{
fmt::throw_exception("Cannot create %s.log (access denied)."
#ifdef _WIN32
"\nNote that %s cannot be installed in Program Files or similar directory with limited permissions."
#else
"\nPlease, check %s permissions in '~/.config/'."
#endif
, name, name);
}
}
fmt::throw_exception("Cannot create %s.log (error %s)", name, fs::g_tls_error);
}
2017-11-19 19:59:23 +01:00
// Check free space
fs::device_stat stats{};
if (!fs::statfs(log_name, stats) || stats.avail_free < s_log_size * 8)
{
fmt::throw_exception("Not enough free space (%f KB)", stats.avail_free / 1000000.);
}
// Limit log size to ~25% of free space
m_max_size = stats.avail_free / 4;
// Initialize memory mapped file
#ifdef _WIN32
m_fmap = CreateFileMappingW(m_file.get_handle(), 0, PAGE_READWRITE, s_log_size >> 32, s_log_size & 0xffffffff, 0);
2017-08-30 16:15:35 +02:00
m_fptr = m_fmap ? (uchar*)MapViewOfFile(m_fmap, FILE_MAP_WRITE, 0, 0, 0) : nullptr;
#else
2017-08-24 20:19:13 +02:00
m_file.trunc(s_log_size);
m_fptr = (uchar*)::mmap(0, s_log_size, PROT_READ | PROT_WRITE, MAP_SHARED, m_file.get_handle(), 0);
#endif
2017-08-29 16:09:06 +02:00
2017-09-16 19:37:49 +02:00
verify(name.c_str()), m_fptr;
2017-08-30 16:15:35 +02:00
// Rotate backups (TODO)
fs::remove_file(fs::get_config_dir() + name + "1.log.gz");
2017-09-16 19:37:49 +02:00
fs::create_dir(fs::get_config_dir() + "old_logs");
fs::rename(fs::get_config_dir() + m_name + ".log.gz", fs::get_config_dir() + "old_logs/" + m_name + ".log.gz", true);
2017-11-19 19:59:23 +01:00
// Actual log file (allowed to fail)
m_fout.open(log_name, fs::rewrite);
2017-11-19 23:01:29 +01:00
// Compressed log
m_fout2.open(log_name + ".gz", fs::rewrite);
}
2016-02-01 22:55:43 +01:00
catch (...)
{
2016-02-01 22:55:43 +01:00
catch_all_exceptions();
}
2017-11-19 19:59:23 +01:00
m_writer = std::thread([this]()
2017-08-29 16:11:36 +02:00
{
2017-11-19 19:59:23 +01:00
thread_ctrl::set_native_priority(-1);
2017-08-29 16:11:36 +02:00
2017-11-19 23:01:29 +01:00
z_stream zs{};
uchar out[65536];
bool zs_init = true;
if (!m_fout2 || deflateInit2(&zs, 9, Z_DEFLATED, 16 + 15, 9, Z_DEFAULT_STRATEGY) != Z_OK)
{
zs_init = false;
m_fout2.close();
}
2017-11-19 19:59:23 +01:00
while (true)
2017-08-29 16:11:36 +02:00
{
2017-11-19 19:59:23 +01:00
const u64 bufv = m_buf;
2017-08-29 16:11:36 +02:00
2017-11-19 19:59:23 +01:00
if (bufv & 0xffffff)
{
// Wait if threads are writing logs
std::this_thread::yield();
continue;
}
const u64 st = +m_out;
const u64 end = std::min<u64>((st + s_log_size) & ~(s_log_size - 1), bufv >> 24);
if (end > st)
{
const u64 size = end - st;
if (m_fout && m_fout.write(m_fptr + st % s_log_size, size) != size)
{
m_fout.close();
}
2017-11-19 23:01:29 +01:00
if (m_fout2)
{
zs.avail_in = size;
zs.next_in = m_fptr + st % s_log_size;
do
{
zs.avail_out = sizeof(out);
zs.next_out = out;
if (deflate(&zs, Z_NO_FLUSH) == Z_STREAM_ERROR || m_fout2.write(out, sizeof(out) - zs.avail_out) != sizeof(out) - zs.avail_out)
{
m_fout2.close();
break;
}
}
while (zs.avail_out == 0);
}
2017-11-19 19:59:23 +01:00
m_out += end - st;
}
else
{
if (st == -1)
{
break;
}
std::this_thread::sleep_for(10ms);
}
2017-08-29 16:11:36 +02:00
}
2017-11-19 23:01:29 +01:00
if (zs_init)
{
if (m_fout2)
{
zs.avail_in = 0;
zs.next_in = nullptr;
do
{
zs.avail_out = sizeof(out);
zs.next_out = out;
if (deflate(&zs, Z_FINISH) == Z_STREAM_ERROR || m_fout2.write(out, sizeof(out) - zs.avail_out) != sizeof(out) - zs.avail_out)
{
break;
}
}
while (zs.avail_out == 0);
}
deflateEnd(&zs);
}
2017-11-19 19:59:23 +01:00
});
}
logs::file_writer::~file_writer()
{
// Stop writer thread
while (m_out << 24 < m_buf)
{
std::this_thread::yield();
2017-08-29 16:11:36 +02:00
}
2017-11-19 19:59:23 +01:00
m_out = -1;
m_writer.join();
#ifdef _WIN32
UnmapViewOfFile(m_fptr);
CloseHandle(m_fmap);
#else
::munmap(m_fptr, s_log_size);
#endif
}
void logs::file_writer::log(logs::level sev, const char* text, std::size_t size)
{
2017-11-19 19:59:23 +01:00
while (true)
{
2017-11-19 19:59:23 +01:00
const auto pos = m_buf.atomic_op([&](u64& v) -> uchar*
{
const u64 v1 = v >> 24;
const u64 v2 = v & 0xffffff;
2017-11-19 19:59:23 +01:00
if (v2 + size > 0xffffff || v1 + v2 + size >= m_out + s_log_size)
{
return nullptr;
}
2017-11-19 19:59:23 +01:00
v += size;
return m_fptr + (v1 + v2) % s_log_size;
});
if (UNLIKELY(!pos))
{
std::this_thread::yield();
continue;
}
if (pos + size > m_fptr + s_log_size)
{
const auto frag = m_fptr + s_log_size - pos;
std::memcpy(pos, text, frag);
std::memcpy(m_fptr, text + frag, size - frag);
}
else
{
std::memcpy(pos, text, size);
}
m_buf += (u64{size} << 24) - size;
break;
}
}
2017-08-20 23:58:25 +02:00
logs::file_listener::file_listener(const std::string& name)
: file_writer(name)
, listener()
{
// Write UTF-8 BOM
file_writer::log(logs::level::always, "\xEF\xBB\xBF", 3);
2017-08-20 23:58:25 +02:00
// Write initial message
stored_message ver;
ver.m.ch = nullptr;
ver.m.sev = level::always;
ver.stamp = 0;
2017-09-16 21:11:17 +02:00
ver.text = fmt::format("RPCS3 v%s | %s\n%s", rpcs3::version.to_string(), rpcs3::get_branch(), utils::get_system_info());
file_writer::log(logs::level::always, ver.text.data(), ver.text.size());
file_writer::log(logs::level::always, "\n", 1);
2017-09-16 21:10:55 +02:00
messages.emplace_back(std::move(ver));
2017-08-20 23:58:25 +02:00
}
2017-02-22 10:52:03 +01:00
void logs::file_listener::log(u64 stamp, const logs::message& msg, const std::string& prefix, const std::string& _text)
{
thread_local std::string text;
// Used character: U+00B7 (Middle Dot)
switch (msg.sev)
{
case level::always: text = u8"·A "; break;
case level::fatal: text = u8"·F "; break;
case level::error: text = u8"·E "; break;
case level::todo: text = u8"·U "; break;
case level::success: text = u8"·S "; break;
case level::warning: text = u8"·W "; break;
case level::notice: text = u8"·! "; break;
case level::trace: text = u8"·T "; break;
}
2017-02-22 10:52:03 +01:00
// Print miscosecond timestamp
const u64 hours = stamp / 3600'000'000;
const u64 mins = (stamp % 3600'000'000) / 60'000'000;
const u64 secs = (stamp % 60'000'000) / 1'000'000;
const u64 frac = (stamp % 1'000'000);
fmt::append(text, "%u:%02u:%02u.%06u ", hours, mins, secs, frac);
2016-08-05 18:49:45 +02:00
if (prefix.size() > 0)
{
2016-08-05 18:49:45 +02:00
text += "{";
text += prefix;
text += "} ";
}
2017-08-20 23:58:25 +02:00
if (msg.ch && '\0' != *msg.ch->name)
{
text += msg.ch->name;
text += msg.sev == level::todo ? " TODO: " : ": ";
}
else if (msg.sev == level::todo)
{
text += "TODO: ";
}
2016-08-05 18:49:45 +02:00
text += _text;
text += '\n';
file_writer::log(msg.sev, text.data(), text.size());
}