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/*
Minetest
Copyright (C) 2013-2020 Minetest core developers team

This program is free software; you can redistribute it and/or modify
it under the terms of the GNU Lesser General Public License as published by
the Free Software Foundation; either version 2.1 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 Lesser General Public License for more details.

You should have received a copy of the GNU Lesser General Public License along
with this program; if not, write to the Free Software Foundation, Inc.,
51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA.
*/

#include "metricsbackend.h"
#if USE_PROMETHEUS
#include <prometheus/exposer.h>
#include <prometheus/registry.h>
#include <prometheus/counter.h>
#include <prometheus/gauge.h>
#include "log.h"
#include "settings.h"
#endif

MetricCounterPtr MetricsBackend::addCounter(
		const std::string &name, const std::string &help_str)
{
	return std::make_shared<SimpleMetricCounter>(name, help_str);
}

MetricGaugePtr MetricsBackend::addGauge(
		const std::string &name, const std::string &help_str)
{
	return std::make_shared<SimpleMetricGauge>(name, help_str);
}

#if USE_PROMETHEUS

class PrometheusMetricCounter : public MetricCounter
{
public:
	PrometheusMetricCounter() = delete;

	PrometheusMetricCounter(const std::string &name, const std::string &help_str,
			std::shared_ptr<prometheus::Registry> registry) :
			MetricCounter(),
			m_family(prometheus::BuildCounter()
							.Name(name)
							.Help(help_str)
							.Register(*registry)),
			m_counter(m_family.Add({}))
	{
	}

	virtual ~PrometheusMetricCounter() {}

	virtual void increment(double number) { m_counter.Increment(number); }
	virtual double get() const { return m_counter.Value(); }

private:
	prometheus::Family<prometheus::Counter> &m_family;
	prometheus::Counter &m_counter;
};

class PrometheusMetricGauge : public MetricGauge
{
public:
	PrometheusMetricGauge() = delete;

	PrometheusMetricGauge(const std::string &name, const std::string &help_str,
			std::shared_ptr<prometheus::Registry> registry) :
			MetricGauge(),
			m_family(prometheus::BuildGauge()
							.Name(name)
							.Help(help_str)
							.Register(*registry)),
			m_gauge(m_family.Add({}))
	{
	}

	virtual ~PrometheusMetricGauge() {}

	virtual void increment(double number) { m_gauge.Increment(number); }
	virtual void decrement(double number) { m_gauge.Decrement(number); }
	virtual void set(double number) { m_gauge.Set(number); }
	virtual double get() const { return m_gauge.Value(); }

private:
	prometheus::Family<prometheus::Gauge> &m_family;
	prometheus::Gauge &m_gauge;
};

class PrometheusMetricsBackend : public MetricsBackend
{
public:
	PrometheusMetricsBackend(const std::string &addr) :
			MetricsBackend(), m_exposer(std::unique_ptr<prometheus::Exposer>(
							  new prometheus::Exposer(addr))),
			m_registry(std::make_shared<prometheus::Registry>())
	{
		m_exposer->RegisterCollectable(m_registry);
	}

	virtual ~PrometheusMetricsBackend() {}

	virtual MetricCounterPtr addCounter(
			const std::string &name, const std::string &help_str);
	virtual MetricGaugePtr addGauge(
			const std::string &name, const std::string &help_str);

private:
	std::unique_ptr<prometheus::Exposer> m_exposer;
	std::shared_ptr<prometheus::Registry> m_registry;
};

MetricCounterPtr PrometheusMetricsBackend::addCounter(
		const std::string &name, const std::string &help_str)
{
	return std::make_shared<PrometheusMetricCounter>(name, help_str, m_registry);
}

MetricGaugePtr PrometheusMetricsBackend::addGauge(
		const std::string &name, const std::string &help_str)
{
	return std::make_shared<PrometheusMetricGauge>(name, help_str, m_registry);
}

MetricsBackend *createPrometheusMetricsBackend()
{
	std::string addr;
	g_settings->getNoEx("prometheus_listener_address", addr);
	return new PrometheusMetricsBackend(addr);
}

#endif
/span> NetworkPacket::checkReadOffset(u32 from_offset, u32 field_size) { if (from_offset + field_size > m_datasize) { std::stringstream ss; ss << "Reading outside packet (offset: " << from_offset << ", packet size: " << getSize() << ")"; throw PacketError(ss.str()); } } void NetworkPacket::putRawPacket(u8 *data, u32 datasize, u16 peer_id) { // If a m_command is already set, we are rewriting on same packet // This is not permitted assert(m_command == 0); m_datasize = datasize - 2; m_peer_id = peer_id; // split command and datas m_command = readU16(&data[0]); m_data = std::vector<u8>(&data[2], &data[2 + m_datasize]); } char* NetworkPacket::getString(u32 from_offset) { checkReadOffset(from_offset, 0); return (char*)&m_data[from_offset]; } void NetworkPacket::putRawString(const char* src, u32 len) { if (m_read_offset + len > m_datasize) { m_datasize = m_read_offset + len; m_data.resize(m_datasize); } if (len == 0) return; memcpy(&m_data[m_read_offset], src, len); m_read_offset += len; } NetworkPacket& NetworkPacket::operator>>(std::string& dst) { checkReadOffset(m_read_offset, 2); u16 strLen = readU16(&m_data[m_read_offset]); m_read_offset += 2; dst.clear(); if (strLen == 0) { return *this; } checkReadOffset(m_read_offset, strLen); dst.reserve(strLen); dst.append((char*)&m_data[m_read_offset], strLen); m_read_offset += strLen; return *this; } NetworkPacket& NetworkPacket::operator<<(std::string src) { u16 msgsize = src.size(); if (msgsize > STRING_MAX_LEN) { throw PacketError("String too long"); } *this << msgsize; putRawString(src.c_str(), (u32)msgsize); return *this; } void NetworkPacket::putLongString(std::string src) { u32 msgsize = src.size(); if (msgsize > LONG_STRING_MAX_LEN) { throw PacketError("String too long"); } *this << msgsize; putRawString(src.c_str(), msgsize); } NetworkPacket& NetworkPacket::operator>>(std::wstring& dst) { checkReadOffset(m_read_offset, 2); u16 strLen = readU16(&m_data[m_read_offset]); m_read_offset += 2; dst.clear(); if (strLen == 0) { return *this; } checkReadOffset(m_read_offset, strLen * 2); dst.reserve(strLen); for(u16 i=0; i<strLen; i++) { wchar_t c16 = readU16(&m_data[m_read_offset]); dst.append(&c16, 1); m_read_offset += sizeof(u16); } return *this; } NetworkPacket& NetworkPacket::operator<<(std::wstring src) { u16 msgsize = src.size(); if (msgsize > WIDE_STRING_MAX_LEN) { throw PacketError("String too long"); } *this << msgsize; // Write string for (u16 i=0; i<msgsize; i++) { *this << (u16) src[i]; } return *this; } std::string NetworkPacket::readLongString() { checkReadOffset(m_read_offset, 4); u32 strLen = readU32(&m_data[m_read_offset]); m_read_offset += 4; if (strLen == 0) { return ""; } if (strLen > LONG_STRING_MAX_LEN) { throw PacketError("String too long"); } checkReadOffset(m_read_offset, strLen); std::string dst; dst.reserve(strLen); dst.append((char*)&m_data[m_read_offset], strLen); m_read_offset += strLen; return dst; } NetworkPacket& NetworkPacket::operator>>(char& dst) { checkReadOffset(m_read_offset, 1); dst = readU8(&m_data[m_read_offset]); m_read_offset += 1; return *this; } char NetworkPacket::getChar(u32 offset) { checkReadOffset(offset, 1); return readU8(&m_data[offset]); } NetworkPacket& NetworkPacket::operator<<(char src) { checkDataSize(1); writeU8(&m_data[m_read_offset], src); m_read_offset += 1; return *this; } NetworkPacket& NetworkPacket::operator<<(u8 src) { checkDataSize(1); writeU8(&m_data[m_read_offset], src); m_read_offset += 1; return *this; } NetworkPacket& NetworkPacket::operator<<(bool src) { checkDataSize(1); writeU8(&m_data[m_read_offset], src); m_read_offset += 1; return *this; } NetworkPacket& NetworkPacket::operator<<(u16 src) { checkDataSize(2); writeU16(&m_data[m_read_offset], src); m_read_offset += 2; return *this; } NetworkPacket& NetworkPacket::operator<<(u32 src) { checkDataSize(4); writeU32(&m_data[m_read_offset], src); m_read_offset += 4; return *this; } NetworkPacket& NetworkPacket::operator<<(u64 src) { checkDataSize(8); writeU64(&m_data[m_read_offset], src); m_read_offset += 8; return *this; } NetworkPacket& NetworkPacket::operator<<(float src) { checkDataSize(4); writeF1000(&m_data[m_read_offset], src); m_read_offset += 4; return *this; } NetworkPacket& NetworkPacket::operator>>(bool& dst) { checkReadOffset(m_read_offset, 1); dst = readU8(&m_data[m_read_offset]); m_read_offset += 1; return *this; } NetworkPacket& NetworkPacket::operator>>(u8& dst) { checkReadOffset(m_read_offset, 1); dst = readU8(&m_data[m_read_offset]); m_read_offset += 1; return *this; } u8 NetworkPacket::getU8(u32 offset) { checkReadOffset(offset, 1); return readU8(&m_data[offset]); } u8* NetworkPacket::getU8Ptr(u32 from_offset) { if (m_datasize == 0) { return NULL; } checkReadOffset(from_offset, 1); return (u8*)&m_data[from_offset]; } NetworkPacket& NetworkPacket::operator>>(u16& dst) { checkReadOffset(m_read_offset, 2); dst = readU16(&m_data[m_read_offset]); m_read_offset += 2; return *this; } u16 NetworkPacket::getU16(u32 from_offset) { checkReadOffset(from_offset, 2); return readU16(&m_data[from_offset]); } NetworkPacket& NetworkPacket::operator>>(u32& dst) { checkReadOffset(m_read_offset, 4); dst = readU32(&m_data[m_read_offset]); m_read_offset += 4; return *this; } NetworkPacket& NetworkPacket::operator>>(u64& dst) { checkReadOffset(m_read_offset, 8); dst = readU64(&m_data[m_read_offset]); m_read_offset += 8; return *this; } NetworkPacket& NetworkPacket::operator>>(float& dst) { checkReadOffset(m_read_offset, 4); dst = readF1000(&m_data[m_read_offset]); m_read_offset += 4; return *this; } NetworkPacket& NetworkPacket::operator>>(v2f& dst) { checkReadOffset(m_read_offset, 8); dst = readV2F1000(&m_data[m_read_offset]); m_read_offset += 8; return *this; } NetworkPacket& NetworkPacket::operator>>(v3f& dst) { checkReadOffset(m_read_offset, 12); dst = readV3F1000(&m_data[m_read_offset]); m_read_offset += 12; return *this; } NetworkPacket& NetworkPacket::operator>>(s16& dst) { checkReadOffset(m_read_offset, 2); dst = readS16(&m_data[m_read_offset]); m_read_offset += 2; return *this; } NetworkPacket& NetworkPacket::operator<<(s16 src) { *this << (u16) src; return *this; } NetworkPacket& NetworkPacket::operator>>(s32& dst) { checkReadOffset(m_read_offset, 4); dst = readS32(&m_data[m_read_offset]); m_read_offset += 4; return *this; } NetworkPacket& NetworkPacket::operator<<(s32 src) { *this << (u32) src; return *this; } NetworkPacket& NetworkPacket::operator>>(v3s16& dst) { checkReadOffset(m_read_offset, 6); dst = readV3S16(&m_data[m_read_offset]); m_read_offset += 6; return *this; } NetworkPacket& NetworkPacket::operator>>(v2s32& dst) { checkReadOffset(m_read_offset, 8); dst = readV2S32(&m_data[m_read_offset]); m_read_offset += 8; return *this; } NetworkPacket& NetworkPacket::operator>>(v3s32& dst) { checkReadOffset(m_read_offset, 12); dst = readV3S32(&m_data[m_read_offset]); m_read_offset += 12; return *this; } NetworkPacket& NetworkPacket::operator<<(v2f src) { *this << (float) src.X; *this << (float) src.Y; return *this; } NetworkPacket& NetworkPacket::operator<<(v3f src) { *this << (float) src.X; *this << (float) src.Y; *this << (float) src.Z; return *this; } NetworkPacket& NetworkPacket::operator<<(v3s16 src) { *this << (s16) src.X; *this << (s16) src.Y; *this << (s16) src.Z; return *this; } NetworkPacket& NetworkPacket::operator<<(v2s32 src) { *this << (s32) src.X; *this << (s32) src.Y; return *this; } NetworkPacket& NetworkPacket::operator<<(v3s32 src) { *this << (s32) src.X; *this << (s32) src.Y; *this << (s32) src.Z; return *this; } NetworkPacket& NetworkPacket::operator>>(video::SColor& dst) { checkReadOffset(m_read_offset, 4); dst = readARGB8(&m_data[m_read_offset]); m_read_offset += 4; return *this; } NetworkPacket& NetworkPacket::operator<<(video::SColor src) { checkDataSize(4); writeU32(&m_data[m_read_offset], src.color); m_read_offset += 4; return *this; } Buffer<u8> NetworkPacket::oldForgePacket() { Buffer<u8> sb(m_datasize + 2); writeU16(&sb[0], m_command); u8* datas = getU8Ptr(0); if (datas != NULL) memcpy(&sb[2], datas, m_datasize); return sb; }