X-Git-Url: https://git.lizzy.rs/?a=blobdiff_plain;f=src%2Fvoxel.cpp;h=1f1d253731c558fdc8d8d586f3c4f7d12184756e;hb=ad9adcb88444b4a7063d5c2f5debd85729e8ce42;hp=3df29dc6838e4df789eadf10e8e9819f6f9779fd;hpb=571fb14f9480a0fd70d7cfeb0484c9513153c33a;p=dragonfireclient.git diff --git a/src/voxel.cpp b/src/voxel.cpp index 3df29dc68..1f1d25373 100644 --- a/src/voxel.cpp +++ b/src/voxel.cpp @@ -1,77 +1,61 @@ /* -Minetest-c55 -Copyright (C) 2010 celeron55, Perttu Ahola +Minetest +Copyright (C) 2013 celeron55, Perttu Ahola 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 2 of the License, or +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 General Public License for more details. +GNU Lesser General Public License for more details. -You should have received a copy of the GNU General Public License along +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 "voxel.h" #include "map.h" - -// For TimeTaker -#include "main.h" -#include "utility.h" +#include "gettime.h" +#include "nodedef.h" +#include "util/directiontables.h" +#include "util/timetaker.h" +#include // memcpy, memset /* Debug stuff */ -u32 addarea_time = 0; -u32 emerge_time = 0; -u32 emerge_load_time = 0; -u32 clearflag_time = 0; -//u32 getwaterpressure_time = 0; -//u32 spreadwaterpressure_time = 0; -u32 updateareawaterpressure_time = 0; -u32 flowwater_pre_time = 0; - - -VoxelManipulator::VoxelManipulator(): - m_data(NULL), - m_flags(NULL) -{ - m_disable_water_climb = false; -} +u64 addarea_time = 0; +u64 emerge_time = 0; +u64 emerge_load_time = 0; +u64 clearflag_time = 0; VoxelManipulator::~VoxelManipulator() { clear(); - if(m_data) - delete[] m_data; - if(m_flags) - delete[] m_flags; } void VoxelManipulator::clear() { // Reset area to volume=0 m_area = VoxelArea(); - if(m_data) - delete[] m_data; - m_data = NULL; - if(m_flags) - delete[] m_flags; - m_flags = NULL; + delete[] m_data; + m_data = nullptr; + delete[] m_flags; + m_flags = nullptr; } -void VoxelManipulator::print(std::ostream &o, VoxelPrintMode mode) +void VoxelManipulator::print(std::ostream &o, const NodeDefManager *ndef, + VoxelPrintMode mode) { - v3s16 em = m_area.getExtent(); + const v3s16 &em = m_area.getExtent(); v3s16 of = m_area.MinEdge; o<<"size: "<=m_area.MinEdge.Y; y--) { if(em.X >= 3 && em.Y >= 3) @@ -88,15 +72,14 @@ void VoxelManipulator::print(std::ostream &o, VoxelPrintMode mode) { u8 f = m_flags[m_area.index(x,y,z)]; char c; - if(f & VOXELFLAG_NOT_LOADED) + if(f & VOXELFLAG_NO_DATA) c = 'N'; - else if(f & VOXELFLAG_INEXISTENT) - c = 'I'; else { c = 'X'; - u8 m = m_data[m_area.index(x,y,z)].d; - u8 pr = m_data[m_area.index(x,y,z)].pressure; + MapNode n = m_data[m_area.index(x,y,z)]; + content_t m = n.getContent(); + u8 pr = n.param2; if(mode == VOXELPRINT_MATERIAL) { if(m <= 9) @@ -104,13 +87,13 @@ void VoxelManipulator::print(std::ostream &o, VoxelPrintMode mode) } else if(mode == VOXELPRINT_WATERPRESSURE) { - if(m == CONTENT_WATER) + if(ndef->get(m).isLiquid()) { c = 'w'; if(pr <= 9) c = pr + '0'; } - else if(liquid_replaces_content(m)) + else if(m == CONTENT_AIR) { c = ' '; } @@ -119,6 +102,21 @@ void VoxelManipulator::print(std::ostream &o, VoxelPrintMode mode) c = '#'; } } + else if(mode == VOXELPRINT_LIGHT_DAY) + { + if(ndef->get(m).light_source != 0) + c = 'S'; + else if(!ndef->get(m).light_propagates) + c = 'X'; + else + { + u8 light = n.getLight(LIGHTBANK_DAY, ndef); + if(light < 10) + c = '0' + light; + else + c = 'a' + (light-10); + } + } } o<|'''''' dest mod '''''''' + * dest <---------------------------------------------> + * + * dest_mod (it's essentially a modulus) is added to the destination index + * after every full iteration of the y span. + * + * This method falls under the category "linear array and incrementing + * index". + */ + + s32 src_step = src_area.getExtent().X; + s32 dest_step = m_area.getExtent().X; + s32 dest_mod = m_area.index(to_pos.X, to_pos.Y, to_pos.Z + 1) + - m_area.index(to_pos.X, to_pos.Y, to_pos.Z) + - dest_step * size.Y; + + s32 i_src = src_area.index(from_pos.X, from_pos.Y, from_pos.Z); + s32 i_local = m_area.index(to_pos.X, to_pos.Y, to_pos.Z); + + for (s16 z = 0; z < size.Z; z++) { + for (s16 y = 0; y < size.Y; y++) { + memcpy(&m_data[i_local], &src[i_src], size.X * sizeof(*m_data)); + memset(&m_flags[i_local], 0, size.X); + i_src += src_step; + i_local += dest_step; + } + i_local += dest_mod; } } -void VoxelManipulator::interpolate(VoxelArea area) +void VoxelManipulator::copyTo(MapNode *dst, const VoxelArea& dst_area, + v3s16 dst_pos, v3s16 from_pos, const v3s16 &size) { - VoxelArea emerge_area = area; - emerge_area.MinEdge -= v3s16(1,1,1); - emerge_area.MaxEdge += v3s16(1,1,1); - emerge(emerge_area); - - SharedBuffer buf(area.getVolume()); - - for(s32 z=area.MinEdge.Z; z<=area.MaxEdge.Z; z++) - for(s32 y=area.MinEdge.Y; y<=area.MaxEdge.Y; y++) - for(s32 x=area.MinEdge.X; x<=area.MaxEdge.X; x++) + for(s16 z=0; z -total/2 ? CONTENT_AIR : m; - //buf[area.index(p)] = airness > -total ? CONTENT_AIR : m; - //buf[area.index(p)] = airness >= -7 ? CONTENT_AIR : m; - } - - for(s32 z=area.MinEdge.Z; z<=area.MaxEdge.Z; z++) - for(s32 y=area.MinEdge.Y; y<=area.MaxEdge.Y; y++) - for(s32 x=area.MinEdge.X; x<=area.MaxEdge.X; x++) - { - v3s16 p(x,y,z); - m_data[m_area.index(p)].d = buf[area.index(p)]; } } +/* + Algorithms + ----------------------------------------------------- +*/ void VoxelManipulator::clearFlag(u8 flags) { // 0-1ms on moderate area - TimeTaker timer("clearFlag", g_device, &clearflag_time); + TimeTaker timer("clearFlag", &clearflag_time); - v3s16 s = m_area.getExtent(); + //v3s16 s = m_area.getExtent(); /*dstream<<"clearFlag clearing area of size " <<""< highest_y) - highest_y = p.Y; - - /*if(recur_count > 1000) - throw ProcessingLimitException - ("getWaterPressure recur_count limit reached");*/ - - if(recur_count > 10000) - return -1; - - recur_count++; - - v3s16 dirs[6] = { - v3s16(0,1,0), // top - v3s16(0,0,1), // back - v3s16(0,0,-1), // front - v3s16(1,0,0), // right - v3s16(-1,0,0), // left - v3s16(0,-1,0), // bottom - }; - - // Load neighboring nodes - emerge(VoxelArea(p - v3s16(1,1,1), p + v3s16(1,1,1)), 1); - - s32 i; - for(i=0; i<6; i++) - { - v3s16 p2 = p + dirs[i]; - u8 f = m_flags[m_area.index(p2)]; - // Ignore inexistent or checked nodes - if(f & (VOXELFLAG_INEXISTENT | VOXELFLAG_CHECKED2)) - continue; - MapNode &n = m_data[m_area.index(p2)]; - // Ignore non-liquid nodes - if(content_liquid(n.d) == false) - continue; - - int pr; - - // If at ocean surface - if(n.pressure == 1 && n.d == CONTENT_OCEAN) - //if(n.pressure == 1) // Causes glitches but is fast - { - pr = 1; - } - // Otherwise recurse more - else - { - pr = getWaterPressure(p2, highest_y, recur_count); - if(pr == -1) - continue; - } - - // If block is at top, pressure here is one higher - if(i == 0) - { - if(pr < 255) - pr++; - } - // If block is at bottom, pressure here is one lower - else if(i == 5) - { - if(pr > 1) - pr--; - } - - // Node is on the pressure route - m_flags[m_area.index(p)] |= VOXELFLAG_CHECKED4; - - // Got pressure - return pr; - } - - // Nothing useful found - return -1; -} - -void VoxelManipulator::spreadWaterPressure(v3s16 p, int pr, - VoxelArea request_area, - core::map &active_nodes, - int recur_count) -{ - //if(recur_count > 10000) - /*throw ProcessingLimitException - ("spreadWaterPressure recur_count limit reached");*/ - if(recur_count > 10) - return; - recur_count++; - - /*dstream<<"spreadWaterPressure: p=(" - < 255) - pr = 255; - - /*dstream<<"WARNING: Pressure at (" - < &active_nodes, - int recursion_depth, bool debugprint, - u32 stoptime) -{ - v3s16 dirs[6] = { - v3s16(0,1,0), // top - v3s16(0,0,-1), // front - v3s16(0,0,1), // back - v3s16(-1,0,0), // left - v3s16(1,0,0), // right - v3s16(0,-1,0), // bottom - }; - - recursion_depth++; - - v3s16 p; - bool from_ocean = false; - - // Randomize horizontal order - static s32 cs = 0; - if(cs < 3) - cs++; - else - cs = 0; - s16 s1 = (cs & 1) ? 1 : -1; - s16 s2 = (cs & 2) ? 1 : -1; - //dstream<<"s1="<= PRESERVE_WATER_VOLUME ? 3 : 2) - if(n.pressure >= 3) - break; - continue; - } - // Else block is at some side. Select it if it has enough pressure - //if(n.pressure >= PRESERVE_WATER_VOLUME ? 2 : 1) - if(n.pressure >= 2) - { - break; - } - } - - // If there is nothing to move, return - if(i==6) - return false; - - /* - Move water and bubble - */ - - u8 m = m_data[m_area.index(p)].d; - u8 f = m_flags[m_area.index(p)]; - - if(m == CONTENT_OCEAN) - from_ocean = true; - - // Move air bubble if not taking water from ocean - if(from_ocean == false) - { - m_data[m_area.index(p)].d = m_data[m_area.index(removed_pos)].d; - m_flags[m_area.index(p)] = m_flags[m_area.index(removed_pos)]; - } - - /* - This has to be done to copy the brightness of a light source - correctly. Otherwise unspreadLight will fuck up when water - has replaced a light source. - */ - u8 light = m_data[m_area.index(removed_pos)].getLight(); - - m_data[m_area.index(removed_pos)].d = m; - m_flags[m_area.index(removed_pos)] = f; - - m_data[m_area.index(removed_pos)].setLight(light); - - /*// NOTE: HACK: This has to be set to LIGHT_MAX so that - // unspreadLight will clear all light that came from this node. - // Otherwise there will be weird bugs - m_data[m_area.index(removed_pos)].setLight(LIGHT_MAX);*/ - - // Mark removed_pos checked - m_flags[m_area.index(removed_pos)] |= VOXELFLAG_CHECKED; - - // If block was dropped from surface, increase pressure - if(i == 0 && m_data[m_area.index(removed_pos)].pressure == 1) - { - m_data[m_area.index(removed_pos)].pressure = 2; - } - - /* - NOTE: This does not work as-is - if(m == CONTENT_OCEAN) - { - // If block was raised to surface, increase pressure of - // source node - if(i == 5 && m_data[m_area.index(p)].pressure == 1) - { - m_data[m_area.index(p)].pressure = 2; - } - }*/ - - /*if(debugprint) - { - dstream<<"VoxelManipulator::flowWater(): Moved bubble:"<getTimer()->getRealTime(); - if(timenow >= stoptime || - (stoptime < 0x80000000 && timenow > 0x80000000)) - { - dstream<<"flowWater: stoptime reached"<=0; i--) - { - // Don't try to flow to top - if(m_disable_water_climb && i == 0) - continue; - - //v3s16 p = removed_pos + dirs[i]; - p = removed_pos + v3s16(s1*dirs[i].X, dirs[i].Y, s2*dirs[i].Z); - - u8 f = m_flags[m_area.index(p)]; - // Water can't move to inexistent nodes - if(f & VOXELFLAG_INEXISTENT) - continue; - MapNode &n = m_data[m_area.index(p)]; - // Water can only move to air - if(liquid_replaces_content(n.d) == false) - continue; - - // Flow water to node - bool moved = - flowWater(p, active_nodes, recursion_depth, - debugprint, stoptime); - /*flowWater(p, active_nodes, recursion_depth, - debugprint, counter, counterlimit);*/ - - if(moved) - { - // Search again from all neighbors - goto find_again; - } - } - - return true; -} - -void VoxelManipulator::flowWater( - core::map &active_nodes, - int recursion_depth, bool debugprint, - u32 timelimit) -{ - addarea_time = 0; - emerge_time = 0; - emerge_load_time = 0; - clearflag_time = 0; - updateareawaterpressure_time = 0; - flowwater_pre_time = 0; - - if(active_nodes.size() == 0) - { - dstream<<"flowWater: no active nodes"<::Node - *n = active_nodes.getIterator().getNode(); -#endif - -#if 1 - - core::map::Iterator - i = active_nodes.getIterator().getNode(); - for(s32 j=0; j::Node *n = i.getNode(); - - // Decrement index if less than 0. - // This keeps us in existing indices always. - if(k > 0) - k--; -#endif - - v3s16 p = n->getKey(); - active_nodes.remove(p); - flowWater(p, active_nodes, recursion_depth, - debugprint, stoptime); - } - - } - catch(ProcessingLimitException &e) - { - //dstream<<"getWaterPressure ProcessingLimitException"<