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path: root/src/nodetimer.cpp
Commit message (Collapse)AuthorAge
* Use std::string::empty() instead of size() where applicableAnton2014-12-12
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* serialize.h: use machine native byte swapping if available, fall-back to ↵Rafael Reilova2014-11-21
| | | | | | | | | | | | | | | | | | | | | previous generic method if not (supported for GCC using endian.h, detection done in cmake) write/readARGB8() - just write 32-bit color in one op, instead of 4 1-byte ops cleanup: removed unneeded buffer init for some serialize-out functions use a #define for the fixed point factor in read/writeF1000() nodemetadata.cpp, nodetimer.cpp optimzation: simpler deserialize node position method staticobject.cpp: cleanup: use util/serialize.h inlines instead of its own de/serialization serialize.cpp: minor optimization/cleanup: avoid generation of unneeded string temporary CMakeLists.txt, cmake_config.h.in: detection of endian.h config.h: added HAVE_ENDIAN_H Commits due to feedback squashed Signed-off-by: Craig Robbins <kde.psych@gmail.com>
* Omnicleanup: header cleanup, add ModApiUtil shared between game and mainmenuKahrl2013-08-14
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* Update Copyright YearsSfan52013-02-24
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* Change Minetest-c55 to MinetestPilzAdam2013-02-24
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* Improve node timer format (map format version 25) and update mapformat.txtPerttu Ahola2012-07-24
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* Implement node timersdarkrose2012-07-23
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* Properly and efficiently use split utility headersPerttu Ahola2012-06-17
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* Switch the license to be LGPLv2/later, with small parts still remaining as ↵Perttu Ahola2012-06-05
| | | | GPLv2/later, by agreement of major contributors
* WIP node metadata, node timersKahrl2012-06-03
ef='#n195'>195 196 197 198 199 200 201 202 203 204 205 206 207 208 209 210 211 212 213 214 215 216 217 218 219 220 221 222 223 224 225 226 227 228 229 230 231 232 233 234 235 236 237 238 239 240 241 242 243 244 245 246 247 248 249 250 251 252 253 254 255 256 257 258 259 260 261 262 263 264 265 266 267 268 269 270 271 272 273 274 275 276 277 278 279 280 281 282 283 284 285 286 287 288 289 290 291 292 293 294 295 296 297 298 299 300 301 302 303 304 305 306 307 308 309 310
/*
Minetest
Copyright (C) 2013, 2017 celeron55, Perttu Ahola <celeron55@gmail.com>

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 "mesh_generator_thread.h"
#include "settings.h"
#include "profiler.h"
#include "client.h"
#include "mapblock.h"
#include "map.h"
#include "util/directiontables.h"

/*
	CachedMapBlockData
*/

CachedMapBlockData::~CachedMapBlockData()
{
	assert(refcount_from_queue == 0);

	delete[] data;
}

/*
	QueuedMeshUpdate
*/

QueuedMeshUpdate::~QueuedMeshUpdate()
{
	delete data;
}

/*
	MeshUpdateQueue
*/

MeshUpdateQueue::MeshUpdateQueue(Client *client):
	m_client(client)
{
	m_cache_enable_shaders = g_settings->getBool("enable_shaders");
	m_cache_smooth_lighting = g_settings->getBool("smooth_lighting");
	m_meshgen_block_cache_size = g_settings->getS32("meshgen_block_cache_size");
}

MeshUpdateQueue::~MeshUpdateQueue()
{
	MutexAutoLock lock(m_mutex);

	for (auto &i : m_cache) {
		delete i.second;
	}

	for (QueuedMeshUpdate *q : m_queue) {
		delete q;
	}
}

bool MeshUpdateQueue::addBlock(Map *map, v3s16 p, bool ack_block_to_server, bool urgent)
{
	MutexAutoLock lock(m_mutex);

	cleanupCache();

	/*
		Cache the block data (force-update the center block, don't update the
		neighbors but get them if they aren't already cached)
	*/
	std::vector<CachedMapBlockData*> cached_blocks;
	size_t cache_hit_counter = 0;
	CachedMapBlockData *cached_block = cacheBlock(map, p, FORCE_UPDATE);
	if (!cached_block->data)
		return false; // nothing to update
	cached_blocks.reserve(3*3*3);
	cached_blocks.push_back(cached_block);
	for (v3s16 dp : g_26dirs)
		cached_blocks.push_back(cacheBlock(map, p + dp,
				SKIP_UPDATE_IF_ALREADY_CACHED,
				&cache_hit_counter));
	g_profiler->avg("MeshUpdateQueue: MapBlocks from cache [%]",
			100.0f * cache_hit_counter / cached_blocks.size());

	/*
		Mark the block as urgent if requested
	*/
	if (urgent)
		m_urgents.insert(p);

	/*
		Find if block is already in queue.
		If it is, update the data and quit.
	*/
	for (QueuedMeshUpdate *q : m_queue) {
		if (q->p == p) {
			// NOTE: We are not adding a new position to the queue, thus
			//       refcount_from_queue stays the same.
			if(ack_block_to_server)
				q->ack_block_to_server = true;
			q->crack_level = m_client->getCrackLevel();
			q->crack_pos = m_client->getCrackPos();
			return true;
		}
	}

	/*
		Add the block
	*/
	QueuedMeshUpdate *q = new QueuedMeshUpdate;
	q->p = p;
	q->ack_block_to_server = ack_block_to_server;
	q->crack_level = m_client->getCrackLevel();
	q->crack_pos = m_client->getCrackPos();
	m_queue.push_back(q);

	// This queue entry is a new reference to the cached blocks
	for (CachedMapBlockData *cached_block : cached_blocks) {
		cached_block->refcount_from_queue++;
	}
	return true;
}

// Returned pointer must be deleted
// Returns NULL if queue is empty
QueuedMeshUpdate *MeshUpdateQueue::pop()
{
	MutexAutoLock lock(m_mutex);

	bool must_be_urgent = !m_urgents.empty();
	for (std::vector<QueuedMeshUpdate*>::iterator i = m_queue.begin();
			i != m_queue.end(); ++i) {
		QueuedMeshUpdate *q = *i;
		if(must_be_urgent && m_urgents.count(q->p) == 0)
			continue;
		m_queue.erase(i);
		m_urgents.erase(q->p);
		fillDataFromMapBlockCache(q);
		return q;
	}
	return NULL;
}

CachedMapBlockData* MeshUpdateQueue::cacheBlock(Map *map, v3s16 p, UpdateMode mode,
			size_t *cache_hit_counter)
{
	CachedMapBlockData *cached_block = nullptr;
	std::map<v3s16, CachedMapBlockData*>::iterator it =
			m_cache.find(p);

	if (it != m_cache.end()) {
		cached_block = it->second;

		if (mode == SKIP_UPDATE_IF_ALREADY_CACHED) {
			if (cache_hit_counter)
				(*cache_hit_counter)++;
			return cached_block;
		}
	}

	if (!cached_block) {
		// Not yet in cache
		cached_block = new CachedMapBlockData();
		m_cache[p] = cached_block;
	}

	MapBlock *b = map->getBlockNoCreateNoEx(p);
	if (b) {
		if (!cached_block->data)
			cached_block->data =
					new MapNode[MAP_BLOCKSIZE * MAP_BLOCKSIZE * MAP_BLOCKSIZE];
		memcpy(cached_block->data, b->getData(),
				MAP_BLOCKSIZE * MAP_BLOCKSIZE * MAP_BLOCKSIZE * sizeof(MapNode));
	} else {
		delete[] cached_block->data;
		cached_block->data = nullptr;
	}
	return cached_block;
}

CachedMapBlockData* MeshUpdateQueue::getCachedBlock(const v3s16 &p)
{
	std::map<v3s16, CachedMapBlockData*>::iterator it = m_cache.find(p);
	if (it != m_cache.end()) {
		return it->second;
	}
	return NULL;
}

void MeshUpdateQueue::fillDataFromMapBlockCache(QueuedMeshUpdate *q)
{
	MeshMakeData *data = new MeshMakeData(m_client, m_cache_enable_shaders);
	q->data = data;

	data->fillBlockDataBegin(q->p);

	std::time_t t_now = std::time(0);

	// Collect data for 3*3*3 blocks from cache
	for (v3s16 dp : g_27dirs) {
		v3s16 p = q->p + dp;
		CachedMapBlockData *cached_block = getCachedBlock(p);
		if (cached_block) {
			cached_block->refcount_from_queue--;
			cached_block->last_used_timestamp = t_now;
			if (cached_block->data)
				data->fillBlockData(dp, cached_block->data);
		}
	}

	data->setCrack(q->crack_level, q->crack_pos);
	data->setSmoothLighting(m_cache_smooth_lighting);
}

void MeshUpdateQueue::cleanupCache()
{
	const int mapblock_kB = MAP_BLOCKSIZE * MAP_BLOCKSIZE * MAP_BLOCKSIZE *
			sizeof(MapNode) / 1000;
	g_profiler->avg("MeshUpdateQueue MapBlock cache size kB",
			mapblock_kB * m_cache.size());

	// The cache size is kept roughly below cache_soft_max_size, not letting
	// anything get older than cache_seconds_max or deleted before 2 seconds.
	const int cache_seconds_max = 10;
	const int cache_soft_max_size = m_meshgen_block_cache_size * 1000 / mapblock_kB;
	int cache_seconds = MYMAX(2, cache_seconds_max -
			m_cache.size() / (cache_soft_max_size / cache_seconds_max));

	int t_now = time(0);

	for (std::map<v3s16, CachedMapBlockData*>::iterator it = m_cache.begin();
			it != m_cache.end(); ) {
		CachedMapBlockData *cached_block = it->second;
		if (cached_block->refcount_from_queue == 0 &&
				cached_block->last_used_timestamp < t_now - cache_seconds) {
			m_cache.erase(it++);
			delete cached_block;
		} else {
			++it;
		}
	}
}

/*
	MeshUpdateThread
*/

MeshUpdateThread::MeshUpdateThread(Client *client):
	UpdateThread("Mesh"),
	m_queue_in(client)
{
	m_generation_interval = g_settings->getU16("mesh_generation_interval");
	m_generation_interval = rangelim(m_generation_interval, 0, 50);
}

void MeshUpdateThread::updateBlock(Map *map, v3s16 p, bool ack_block_to_server,
		bool urgent, bool update_neighbors)
{
	static thread_local const bool many_neighbors =
			g_settings->getBool("smooth_lighting")
			&& !g_settings->getFlag("performance_tradeoffs");
	if (!m_queue_in.addBlock(map, p, ack_block_to_server, urgent)) {
		warningstream << "Update requested for non-existent block at ("
				<< p.X << ", " << p.Y << ", " << p.Z << ")" << std::endl;
		return;
	}
	if (update_neighbors) {
		if (many_neighbors) {
			for (v3s16 dp : g_26dirs)
				m_queue_in.addBlock(map, p + dp, false, urgent);
		} else {
			for (v3s16 dp : g_6dirs)
				m_queue_in.addBlock(map, p + dp, false, urgent);
		}
	}
	deferUpdate();
}

void MeshUpdateThread::doUpdate()
{
	QueuedMeshUpdate *q;
	while ((q = m_queue_in.pop())) {
		if (m_generation_interval)
			sleep_ms(m_generation_interval);
		ScopeProfiler sp(g_profiler, "Client: Mesh making (sum)");

		MapBlockMesh *mesh_new = new MapBlockMesh(q->data, m_camera_offset);

		MeshUpdateResult r;
		r.p = q->p;
		r.mesh = mesh_new;
		r.ack_block_to_server = q->ack_block_to_server;

		m_queue_out.push_back(r);

		delete q;
	}
}