1007 lines
32 KiB
C++
1007 lines
32 KiB
C++
/* Copyright (C) 1996-1997 Id Software, Inc.
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This program is free software; you can redistribute it and/or modify
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it under the terms of the GNU General Public License as published by
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the Free Software Foundation; either version 2 of the License, or
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(at your option) any later version.
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This program is distributed in the hope that it will be useful,
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but WITHOUT ANY WARRANTY; without even the implied warranty of
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MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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GNU General Public License for more details.
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You should have received a copy of the GNU General Public License
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along with this program; if not, write to the Free Software
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Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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See file, 'COPYING', for details.
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*/
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#include <cstdint>
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#include <cassert>
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//#include <cstdio>
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#include <iostream>
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#include <fstream>
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#include <fmt/ostream.h>
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#include <fmt/chrono.h>
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#include <light/light.hh>
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#include <light/phong.hh>
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#include <light/bounce.hh>
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#include <light/surflight.hh> //mxd
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#include <light/entities.hh>
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#include <light/ltface.hh>
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#include <common/polylib.hh>
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#include <common/bsputils.hh>
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#include <common/fs.hh>
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#include <common/imglib.hh>
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#include <common/parallel.hh>
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#if defined(HAVE_EMBREE) && defined (__SSE2__)
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#include <xmmintrin.h>
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//#include <pmmintrin.h>
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#endif
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#include <memory>
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#include <vector>
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#include <map>
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#include <unordered_map>
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#include <set>
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#include <algorithm>
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#include <mutex>
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#include <string>
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#include <common/qvec.hh>
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#include <common/json.hh>
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using namespace std;
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bool dirt_in_use = false;
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static facesup_t *faces_sup; // lit2/bspx stuff
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/// start of lightmap data
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uint8_t *filebase;
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/// offset of start of free space after data (should be kept a multiple of 4)
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static int file_p;
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/// offset of end of free space for lightmap data
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static int file_end;
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/// start of litfile data
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uint8_t *lit_filebase;
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/// offset of start of free space after litfile data (should be kept a multiple of 12)
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static int lit_file_p;
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/// offset of end of space for litfile data
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static int lit_file_end;
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/// start of luxfile data
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uint8_t *lux_filebase;
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/// offset of start of free space after luxfile data (should be kept a multiple of 12)
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static int lux_file_p;
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/// offset of end of space for luxfile data
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static int lux_file_end;
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std::vector<modelinfo_t *> modelinfo;
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std::vector<const modelinfo_t *> tracelist;
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std::vector<const modelinfo_t *> selfshadowlist;
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std::vector<const modelinfo_t *> shadowworldonlylist;
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std::vector<const modelinfo_t *> switchableshadowlist;
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std::vector<surfflags_t> extended_texinfo_flags;
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int dump_facenum = -1;
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int dump_vertnum = -1;
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namespace settings
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{
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setting_group worldspawn_group{"Overridable worldspawn keys", 500};
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setting_group output_group{"Output format options", 30};
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setting_group debug_group{"Debug modes", 40};
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setting_group postprocessing_group{"Postprocessing options", 50};
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setting_group experimental_group{"Experimental options", 60};
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void light_settings::initialize(int argc, const char **argv)
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{
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token_parser_t p(argc - 1, argv + 1);
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auto remainder = parse(p);
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if (remainder.size() <= 0 || remainder.size() > 1) {
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printHelp();
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}
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sourceMap = remainder[0];
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}
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void light_settings::postinitialize(int argc, const char **argv)
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{
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if (gate.value() > 1) {
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logging::print("WARNING: -gate value greater than 1 may cause artifacts\n");
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}
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if (radlights.isChanged()) {
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if (!ParseLightsFile(radlights.value())) {
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logging::print("Unable to read surfacelights file {}\n", radlights.value());
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}
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}
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if (soft.value() == -1) {
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switch (extra.value()) {
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case 2: soft.setValueLocked(1); break;
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case 4: soft.setValueLocked(2); break;
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default: soft.setValueLocked(0); break;
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}
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}
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if (debugmode != debugmodes::none) {
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write_litfile |= lightfile::external;
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}
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if (litonly.value()) {
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write_litfile |= lightfile::external;
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}
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if (write_litfile == lightfile::lit2) {
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logging::print("generating lit2 output only.\n");
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} else {
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if (write_litfile & lightfile::external)
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logging::print(".lit colored light output requested on command line.\n");
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if (write_litfile & lightfile::bspx)
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logging::print("BSPX colored light output requested on command line.\n");
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if (write_luxfile & lightfile::external)
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logging::print(".lux light directions output requested on command line.\n");
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if (write_luxfile & lightfile::bspx)
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logging::print("BSPX light directions output requested on command line.\n");
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}
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if (debugmode == debugmodes::dirt) {
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options.globalDirt.setValueLocked(true);
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} else if (debugmode == debugmodes::bounce || debugmode == debugmodes::bouncelights) {
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options.bounce.setValueLocked(true);
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} else if (debugmode == debugmodes::debugneighbours && !debugface.isChanged()) {
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FError("-debugneighbours without -debugface specified\n");
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}
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if (options.q2rtx.value()) {
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if (!options.nolighting.isChanged()) {
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options.nolighting.setValueLocked(true);
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}
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}
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common_settings::postinitialize(argc, argv);
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}
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} // namespace settings
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settings::light_settings options;
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void SetGlobalSetting(std::string name, std::string value, bool cmdline)
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{
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options.setSetting(name, value, cmdline);
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}
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void FixupGlobalSettings()
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{
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static bool once = false;
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Q_assert(!once);
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once = true;
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// NOTE: This is confusing.. Setting "dirt" "1" implies "minlight_dirt" "1"
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// (and sunlight_dir/sunlight2_dirt as well), unless those variables were
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// set by the user to "0".
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//
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// We can't just default "minlight_dirt" to "1" because that would enable
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// dirtmapping by default.
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if (options.globalDirt.value()) {
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if (!options.minlightDirt.isChanged()) {
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options.minlightDirt.setValue(true);
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}
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if (!options.sunlight_dirt.isChanged()) {
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options.sunlight_dirt.setValue(1);
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}
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if (!options.sunlight2_dirt.isChanged()) {
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options.sunlight2_dirt.setValue(1);
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}
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}
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}
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static std::mutex light_mutex;
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/*
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* Return space for the lightmap and colourmap at the same time so it can
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* be done in a thread-safe manner.
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*
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* size is the number of greyscale pixels = number of bytes to allocate
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* and return in *lightdata
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*/
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void GetFileSpace(uint8_t **lightdata, uint8_t **colordata, uint8_t **deluxdata, int size)
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{
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light_mutex.lock();
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*lightdata = filebase + file_p;
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*colordata = lit_filebase + lit_file_p;
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*deluxdata = lux_filebase + lux_file_p;
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// if size isn't a multiple of 4, round up to the next multiple of 4
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if ((size % 4) != 0) {
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size += (4 - (size % 4));
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}
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// increment the next writing offsets, aligning them to 4 uint8_t boundaries (file_p)
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// and 12-uint8_t boundaries (lit_file_p/lux_file_p)
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file_p += size;
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lit_file_p += 3 * size;
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lux_file_p += 3 * size;
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light_mutex.unlock();
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if (file_p > file_end)
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FError("overrun");
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if (lit_file_p > lit_file_end)
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FError("overrun");
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}
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/**
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* Special version of GetFileSpace for when we're relighting a .bsp and can't modify it.
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* In this case the offsets are already known.
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*/
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void GetFileSpace_PreserveOffsetInBsp(uint8_t **lightdata, uint8_t **colordata, uint8_t **deluxdata, int lightofs)
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{
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Q_assert(lightofs >= 0);
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*lightdata = filebase + lightofs;
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if (colordata) {
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*colordata = lit_filebase + (lightofs * 3);
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}
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if (deluxdata) {
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*deluxdata = lux_filebase + (lightofs * 3);
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}
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// NOTE: file_p et. al. are not updated, since we're not dynamically allocating the lightmaps
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}
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const modelinfo_t *ModelInfoForModel(const mbsp_t *bsp, int modelnum)
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{
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return modelinfo.at(modelnum);
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}
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const modelinfo_t *ModelInfoForFace(const mbsp_t *bsp, int facenum)
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{
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int i;
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const dmodelh2_t *model;
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/* Find the correct model offset */
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for (i = 0, model = bsp->dmodels.data(); i < bsp->dmodels.size(); i++, model++) {
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if (facenum < model->firstface)
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continue;
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if (facenum < model->firstface + model->numfaces)
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break;
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}
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if (i == bsp->dmodels.size()) {
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return NULL;
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}
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return modelinfo.at(i);
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}
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const img::texture *Face_Texture(const mbsp_t *bsp, const mface_t *face)
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{
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const char *name = Face_TextureName(bsp, face);
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if (!name || !*name) {
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return nullptr;
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}
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return img::find(name);
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}
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static void LightThread(const mbsp_t *bsp, size_t facenum)
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{
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#if defined(HAVE_EMBREE) && defined (__SSE2__)
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_MM_SET_FLUSH_ZERO_MODE(_MM_FLUSH_ZERO_ON);
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// _MM_SET_DENORMALS_ZERO_MODE(_MM_DENORMALS_ZERO_ON);
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#endif
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mface_t *f = BSP_GetFace(const_cast<mbsp_t *>(bsp), facenum);
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/* Find the correct model offset */
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const modelinfo_t *face_modelinfo = ModelInfoForFace(bsp, facenum);
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if (face_modelinfo == NULL) {
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// ericw -- silenced this warning becasue is causes spam when "skip" faces are used
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// logging::print("warning: no model has face {}\n", facenum);
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return;
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}
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if (!faces_sup)
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LightFace(bsp, f, nullptr, options);
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else if (options.novanilla.value()) {
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f->lightofs = -1;
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f->styles[0] = 255;
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LightFace(bsp, f, faces_sup + facenum, options);
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} else if (faces_sup[facenum].lmscale == face_modelinfo->lightmapscale) {
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LightFace(bsp, f, nullptr, options);
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faces_sup[facenum].lightofs = f->lightofs;
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for (int i = 0; i < MAXLIGHTMAPS; i++)
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faces_sup[facenum].styles[i] = f->styles[i];
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} else {
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LightFace(bsp, f, nullptr, options);
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LightFace(bsp, f, faces_sup + facenum, options);
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}
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}
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static void FindModelInfo(const mbsp_t *bsp)
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{
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Q_assert(modelinfo.size() == 0);
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Q_assert(tracelist.size() == 0);
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Q_assert(selfshadowlist.size() == 0);
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Q_assert(shadowworldonlylist.size() == 0);
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Q_assert(switchableshadowlist.size() == 0);
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if (!bsp->dmodels.size()) {
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FError("Corrupt .BSP: bsp->nummodels is 0!");
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}
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if (options.lmscale.isChanged()) {
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SetWorldKeyValue("_lightmap_scale", options.lmscale.stringValue());
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}
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float lightmapscale = atoi(WorldValueForKey("_lightmap_scale").c_str());
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if (!lightmapscale)
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lightmapscale = 16; /* the default */
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if (lightmapscale <= 0)
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FError("lightmap scale is 0 or negative\n");
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if (options.lmscale.isChanged() || lightmapscale != 16)
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logging::print("Forcing lightmap scale of {}qu\n", lightmapscale);
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/*I'm going to do this check in the hopes that there's a benefit to cheaper scaling in engines (especially software
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* ones that might be able to just do some mip hacks). This tool doesn't really care.*/
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{
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int i;
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for (i = 1; i < lightmapscale;) {
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i++;
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}
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if (i != lightmapscale) {
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logging::print("WARNING: lightmap scale is not a power of 2\n");
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}
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}
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/* The world always casts shadows */
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modelinfo_t *world = new modelinfo_t{bsp, &bsp->dmodels[0], lightmapscale};
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world->shadow.setValue(1.0f); /* world always casts shadows */
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world->phong_angle.copyFrom(options.phongangle);
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modelinfo.push_back(world);
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tracelist.push_back(world);
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for (int i = 1; i < bsp->dmodels.size(); i++) {
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modelinfo_t *info = new modelinfo_t{bsp, &bsp->dmodels[i], lightmapscale};
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modelinfo.push_back(info);
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/* Find the entity for the model */
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std::string modelname = fmt::format("*{}", i);
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const entdict_t *entdict = FindEntDictWithKeyPair("model", modelname);
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if (entdict == nullptr)
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FError("Couldn't find entity for model {}.\n", modelname);
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// apply settings
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info->setSettings(*entdict, false);
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/* Check if this model will cast shadows (shadow => shadowself) */
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if (info->switchableshadow.boolValue()) {
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Q_assert(info->switchshadstyle.value() != 0);
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switchableshadowlist.push_back(info);
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} else if (info->shadow.boolValue()) {
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tracelist.push_back(info);
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} else if (info->shadowself.boolValue()) {
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selfshadowlist.push_back(info);
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} else if (info->shadowworldonly.boolValue()) {
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shadowworldonlylist.push_back(info);
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}
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/* Set up the offset for rotate_* entities */
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info->offset = EntDict_VectorForKey(*entdict, "origin");
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}
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Q_assert(modelinfo.size() == bsp->dmodels.size());
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}
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/*
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* =============
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* LightWorld
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* =============
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*/
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static void LightWorld(bspdata_t *bspdata, bool forcedscale)
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{
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logging::print("--- LightWorld ---\n");
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mbsp_t &bsp = std::get<mbsp_t>(bspdata->bsp);
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delete[] filebase;
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delete[] lit_filebase;
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delete[] lux_filebase;
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/* greyscale data stored in a separate buffer */
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filebase = new uint8_t[MAX_MAP_LIGHTING]{};
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if (!filebase)
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FError("allocation of {} bytes failed.", MAX_MAP_LIGHTING);
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file_p = 0;
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file_end = MAX_MAP_LIGHTING;
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/* litfile data stored in a separate buffer */
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lit_filebase = new uint8_t[MAX_MAP_LIGHTING * 3]{};
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if (!lit_filebase)
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FError("allocation of {} bytes failed.", MAX_MAP_LIGHTING * 3);
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lit_file_p = 0;
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lit_file_end = (MAX_MAP_LIGHTING * 3);
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/* lux data stored in a separate buffer */
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lux_filebase = new uint8_t[MAX_MAP_LIGHTING * 3]{};
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if (!lux_filebase)
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FError("allocation of {} bytes failed.", MAX_MAP_LIGHTING * 3);
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lux_file_p = 0;
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lux_file_end = (MAX_MAP_LIGHTING * 3);
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if (forcedscale)
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bspdata->bspx.entries.erase("LMSHIFT");
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auto lmshift_lump = bspdata->bspx.entries.find("LMSHIFT");
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if (lmshift_lump == bspdata->bspx.entries.end() && options.write_litfile != lightfile::lit2)
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faces_sup = nullptr; // no scales, no lit2
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else { // we have scales or lit2 output. yay...
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faces_sup = new facesup_t[bsp.dfaces.size()]{};
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if (lmshift_lump != bspdata->bspx.entries.end()) {
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for (int i = 0; i < bsp.dfaces.size(); i++)
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faces_sup[i].lmscale = 1 << reinterpret_cast<const char *>(lmshift_lump->second.lumpdata.get())[i];
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} else {
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for (int i = 0; i < bsp.dfaces.size(); i++)
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faces_sup[i].lmscale = modelinfo.at(0)->lightmapscale;
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}
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}
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CalculateVertexNormals(&bsp);
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const bool bouncerequired =
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options.bounce.value() && (options.debugmode == debugmodes::none || options.debugmode == debugmodes::bounce ||
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options.debugmode == debugmodes::bouncelights); // mxd
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const bool isQuake2map = bsp.loadversion->game->id == GAME_QUAKE_II; // mxd
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if ((bouncerequired || isQuake2map) && !options.nolighting.value()) {
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if (isQuake2map)
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MakeSurfaceLights(options, &bsp);
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if (bouncerequired)
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MakeBounceLights(options, &bsp);
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}
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#if 0
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lightbatchthread_info_t info;
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info.all_batches = MakeLightingBatches(bsp);
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info.all_contribFaces = MakeContributingFaces(bsp);
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info.bsp = bsp;
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RunThreadsOn(0, info.all_batches.size(), LightBatchThread, &info);
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#else
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logging::print("--- LightThread ---\n"); // mxd
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logging::parallel_for(static_cast<size_t>(0), bsp.dfaces.size(), [&bsp](size_t i) {
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LightThread(&bsp, i);
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});
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#endif
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if ((bouncerequired || isQuake2map) && !options.nolighting.value()) { // mxd. Print some extra stats...
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logging::print("Indirect lights: {} bounce lights, {} surface lights ({} light points) in use.\n",
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BounceLights().size(), SurfaceLights().size(), TotalSurfacelightPoints());
|
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}
|
|
|
|
logging::print("Lighting Completed.\n\n");
|
|
|
|
// Transfer greyscale lightmap (or color lightmap for Q2/HL) to the bsp and update lightdatasize
|
|
if (!options.litonly.value()) {
|
|
if (bsp.loadversion->game->has_rgb_lightmap) {
|
|
bsp.dlightdata.resize(lit_file_p);
|
|
memcpy(bsp.dlightdata.data(), lit_filebase, bsp.dlightdata.size());
|
|
} else {
|
|
bsp.dlightdata.resize(file_p);
|
|
memcpy(bsp.dlightdata.data(), filebase, bsp.dlightdata.size());
|
|
}
|
|
} else {
|
|
// NOTE: bsp.lightdatasize is already valid in the -litonly case
|
|
}
|
|
logging::print("lightdatasize: {}\n", bsp.dlightdata.size());
|
|
|
|
// kill this stuff if its somehow found.
|
|
bspdata->bspx.entries.erase("LMSTYLE");
|
|
bspdata->bspx.entries.erase("LMOFFSET");
|
|
|
|
if (faces_sup) {
|
|
uint8_t *styles = new uint8_t[4 * bsp.dfaces.size()];
|
|
int32_t *offsets = new int32_t[bsp.dfaces.size()];
|
|
for (int i = 0; i < bsp.dfaces.size(); i++) {
|
|
offsets[i] = faces_sup[i].lightofs;
|
|
for (int j = 0; j < MAXLIGHTMAPS; j++)
|
|
styles[i * 4 + j] = faces_sup[i].styles[j];
|
|
}
|
|
bspdata->bspx.transfer("LMSTYLE", styles, sizeof(*styles) * 4 * bsp.dfaces.size());
|
|
bspdata->bspx.transfer("LMOFFSET", (uint8_t *&)offsets, sizeof(*offsets) * bsp.dfaces.size());
|
|
}
|
|
}
|
|
|
|
static void LoadExtendedTexinfoFlags(const fs::path &sourcefilename, const mbsp_t *bsp)
|
|
{
|
|
// always create the zero'ed array
|
|
extended_texinfo_flags.resize(bsp->texinfo.size());
|
|
|
|
fs::path filename(sourcefilename);
|
|
filename.replace_extension("texinfo.json");
|
|
|
|
std::ifstream texinfofile(filename, std::ios_base::in | std::ios_base::binary);
|
|
|
|
if (!texinfofile)
|
|
return;
|
|
|
|
logging::print("Loading extended texinfo flags from {}...\n", filename);
|
|
|
|
json j;
|
|
|
|
texinfofile >> j;
|
|
|
|
for (auto it = j.begin(); it != j.end(); ++it) {
|
|
size_t index = std::stoull(it.key());
|
|
|
|
if (index >= bsp->texinfo.size()) {
|
|
logging::print("WARNING: Extended texinfo flags in {} does not match bsp, ignoring\n", filename);
|
|
memset(extended_texinfo_flags.data(), 0, bsp->texinfo.size() * sizeof(surfflags_t));
|
|
return;
|
|
}
|
|
|
|
auto &val = it.value();
|
|
auto &flags = extended_texinfo_flags[index];
|
|
|
|
if (val.contains("is_skip")) {
|
|
flags.is_skip = val.at("is_skip").get<bool>();
|
|
}
|
|
if (val.contains("is_hint")) {
|
|
flags.is_hint = val.at("is_hint").get<bool>();
|
|
}
|
|
if (val.contains("no_dirt")) {
|
|
flags.no_dirt = val.at("no_dirt").get<bool>();
|
|
}
|
|
if (val.contains("no_shadow")) {
|
|
flags.no_shadow = val.at("no_shadow").get<bool>();
|
|
}
|
|
if (val.contains("no_bounce")) {
|
|
flags.no_bounce = val.at("no_bounce").get<bool>();
|
|
}
|
|
if (val.contains("no_minlight")) {
|
|
flags.no_minlight = val.at("no_minlight").get<bool>();
|
|
}
|
|
if (val.contains("no_expand")) {
|
|
flags.no_expand = val.at("no_expand").get<bool>();
|
|
}
|
|
if (val.contains("light_ignore")) {
|
|
flags.light_ignore = val.at("light_ignore").get<bool>();
|
|
}
|
|
if (val.contains("phong_angle")) {
|
|
flags.phong_angle = val.at("phong_angle").get<vec_t>();
|
|
}
|
|
if (val.contains("phong_angle_concave")) {
|
|
flags.phong_angle_concave = val.at("phong_angle_concave").get<vec_t>();
|
|
}
|
|
if (val.contains("minlight")) {
|
|
flags.minlight = val.at("minlight").get<vec_t>();
|
|
}
|
|
if (val.contains("minlight_color")) {
|
|
flags.minlight_color = val.at("minlight_color").get<qvec3b>();
|
|
}
|
|
if (val.contains("light_alpha")) {
|
|
flags.light_alpha = val.at("light_alpha").get<vec_t>();
|
|
}
|
|
}
|
|
}
|
|
|
|
// obj
|
|
|
|
static void ExportObjFace(std::ofstream &f, const mbsp_t *bsp, const mface_t *face, int *vertcount)
|
|
{
|
|
// export the vertices and uvs
|
|
for (int i = 0; i < face->numedges; i++) {
|
|
const int vertnum = Face_VertexAtIndex(bsp, face, i);
|
|
const qvec3f normal = GetSurfaceVertexNormal(bsp, face, i).normal;
|
|
const qvec3f &pos = bsp->dvertexes[vertnum];
|
|
fmt::print(f, "v {:.9} {:.9} {:.9}\n", pos[0], pos[1], pos[2]);
|
|
fmt::print(f, "vn {:.9} {:.9} {:.9}\n", normal[0], normal[1], normal[2]);
|
|
}
|
|
|
|
f << "f";
|
|
for (int i = 0; i < face->numedges; i++) {
|
|
// .obj vertexes start from 1
|
|
// .obj faces are CCW, quake is CW, so reverse the order
|
|
const int vertindex = *vertcount + (face->numedges - 1 - i) + 1;
|
|
fmt::print(f, " {}//{}", vertindex, vertindex);
|
|
}
|
|
f << '\n';
|
|
|
|
*vertcount += face->numedges;
|
|
}
|
|
|
|
static void ExportObj(const fs::path &filename, const mbsp_t *bsp)
|
|
{
|
|
std::ofstream objfile(filename);
|
|
int vertcount = 0;
|
|
|
|
const int start = bsp->dmodels[0].firstface;
|
|
const int end = bsp->dmodels[0].firstface + bsp->dmodels[0].numfaces;
|
|
|
|
for (int i = start; i < end; i++) {
|
|
ExportObjFace(objfile, bsp, BSP_GetFace(bsp, i), &vertcount);
|
|
}
|
|
|
|
logging::print("Wrote {}\n", filename);
|
|
}
|
|
|
|
// obj
|
|
|
|
// returns the face with a centroid nearest the given point.
|
|
static const mface_t *Face_NearestCentroid(const mbsp_t *bsp, const qvec3f &point)
|
|
{
|
|
const mface_t *nearest_face = NULL;
|
|
float nearest_dist = FLT_MAX;
|
|
|
|
for (int i = 0; i < bsp->dfaces.size(); i++) {
|
|
const mface_t *f = BSP_GetFace(bsp, i);
|
|
|
|
const qvec3f fc = Face_Centroid(bsp, f);
|
|
|
|
const qvec3f distvec = fc - point;
|
|
const float dist = qv::length(distvec);
|
|
|
|
if (dist < nearest_dist) {
|
|
nearest_dist = dist;
|
|
nearest_face = f;
|
|
}
|
|
}
|
|
|
|
return nearest_face;
|
|
}
|
|
|
|
static void FindDebugFace(const mbsp_t *bsp)
|
|
{
|
|
if (!options.debugface.isChanged())
|
|
return;
|
|
|
|
const mface_t *f = Face_NearestCentroid(bsp, options.debugface.value());
|
|
if (f == NULL)
|
|
FError("f == NULL\n");
|
|
|
|
const int facenum = f - bsp->dfaces.data();
|
|
|
|
dump_facenum = facenum;
|
|
|
|
const modelinfo_t *mi = ModelInfoForFace(bsp, facenum);
|
|
const int modelnum = mi ? (mi->model - bsp->dmodels.data()) : -1;
|
|
|
|
const char *texname = Face_TextureName(bsp, f);
|
|
logging::funcprint("dumping face {} (texture '{}' model {})\n", facenum, texname, modelnum);
|
|
}
|
|
|
|
// returns the vert nearest the given point
|
|
static int Vertex_NearestPoint(const mbsp_t *bsp, const qvec3d &point)
|
|
{
|
|
int nearest_vert = -1;
|
|
float nearest_dist = std::numeric_limits<vec_t>::infinity();
|
|
|
|
for (int i = 0; i < bsp->dvertexes.size(); i++) {
|
|
const qvec3f &vertex = bsp->dvertexes[i];
|
|
|
|
float dist = qv::distance(vertex, point);
|
|
|
|
if (dist < nearest_dist) {
|
|
nearest_dist = dist;
|
|
nearest_vert = i;
|
|
}
|
|
}
|
|
|
|
return nearest_vert;
|
|
}
|
|
|
|
static void FindDebugVert(const mbsp_t *bsp)
|
|
{
|
|
if (!options.debugvert.isChanged())
|
|
return;
|
|
|
|
int v = Vertex_NearestPoint(bsp, options.debugvert.value());
|
|
|
|
logging::funcprint("dumping vert {} at {}\n", v, bsp->dvertexes[v]);
|
|
|
|
dump_vertnum = v;
|
|
}
|
|
|
|
static void SetLitNeeded()
|
|
{
|
|
if (!options.write_litfile) {
|
|
if (options.novanilla.value()) {
|
|
options.write_litfile = lightfile::bspx;
|
|
logging::print("Colored light entities/settings detected: "
|
|
"bspxlit output enabled.\n");
|
|
} else {
|
|
options.write_litfile = lightfile::external;
|
|
logging::print("Colored light entities/settings detected: "
|
|
".lit output enabled.\n");
|
|
}
|
|
}
|
|
}
|
|
|
|
static void CheckLitNeeded(const settings::worldspawn_keys &cfg)
|
|
{
|
|
// check lights
|
|
for (const auto &light : GetLights()) {
|
|
if (!qv::epsilonEqual(vec3_white, light->color.value(), EQUAL_EPSILON) ||
|
|
light->projectedmip != nullptr) { // mxd. Projected mips could also use .lit output
|
|
SetLitNeeded();
|
|
return;
|
|
}
|
|
}
|
|
|
|
// check global settings
|
|
if (cfg.bouncecolorscale.value() != 0 || !qv::epsilonEqual(cfg.minlight_color.value(), vec3_white, EQUAL_EPSILON) ||
|
|
!qv::epsilonEqual(cfg.sunlight_color.value(), vec3_white, EQUAL_EPSILON) ||
|
|
!qv::epsilonEqual(cfg.sun2_color.value(), vec3_white, EQUAL_EPSILON) ||
|
|
!qv::epsilonEqual(cfg.sunlight2_color.value(), vec3_white, EQUAL_EPSILON) ||
|
|
!qv::epsilonEqual(cfg.sunlight3_color.value(), vec3_white, EQUAL_EPSILON)) {
|
|
SetLitNeeded();
|
|
return;
|
|
}
|
|
}
|
|
|
|
#if 0
|
|
static void PrintLight(const light_t &light)
|
|
{
|
|
bool first = true;
|
|
|
|
auto settings = const_cast<light_t &>(light).settings();
|
|
for (const auto &setting : settings.allSettings()) {
|
|
if (!setting->isChanged())
|
|
continue; // don't spam default values
|
|
|
|
// print separator
|
|
if (!first) {
|
|
logging::print("; ");
|
|
} else {
|
|
first = false;
|
|
}
|
|
|
|
logging::print("{}={}", setting->primaryName(), setting->stringValue());
|
|
}
|
|
logging::print("\n");
|
|
}
|
|
|
|
static void PrintLights(void)
|
|
{
|
|
logging::print("===PrintLights===\n");
|
|
|
|
for (const auto &light : GetLights()) {
|
|
PrintLight(light);
|
|
}
|
|
}
|
|
#endif
|
|
|
|
static inline void WriteNormals(const mbsp_t &bsp, bspdata_t &bspdata)
|
|
{
|
|
std::set<qvec3f> unique_normals;
|
|
size_t num_normals = 0;
|
|
|
|
for (auto &face : bsp.dfaces) {
|
|
auto &cache = FaceCacheForFNum(&face - bsp.dfaces.data());
|
|
for (auto &normals : cache.normals()) {
|
|
unique_normals.insert(qv::Snap(normals.normal));
|
|
unique_normals.insert(qv::Snap(normals.tangent));
|
|
unique_normals.insert(qv::Snap(normals.bitangent));
|
|
num_normals += 3;
|
|
}
|
|
}
|
|
|
|
size_t data_size = sizeof(uint32_t) + (sizeof(qvec3f) * unique_normals.size()) + (sizeof(uint32_t) * num_normals);
|
|
uint8_t *data = new uint8_t[data_size];
|
|
memstream stream(data, data_size);
|
|
|
|
stream << endianness<std::endian::little>;
|
|
stream <= numeric_cast<uint32_t>(unique_normals.size());
|
|
|
|
std::map<qvec3f, size_t> mapped_normals;
|
|
|
|
for (auto &n : unique_normals) {
|
|
stream <= std::tie(n[0], n[1], n[2]);
|
|
mapped_normals.emplace(n, mapped_normals.size());
|
|
}
|
|
|
|
for (auto &face : bsp.dfaces) {
|
|
auto &cache = FaceCacheForFNum(&face - bsp.dfaces.data());
|
|
|
|
for (auto &n : cache.normals()) {
|
|
stream <= numeric_cast<uint32_t>(mapped_normals[qv::Snap(n.normal)]);
|
|
stream <= numeric_cast<uint32_t>(mapped_normals[qv::Snap(n.tangent)]);
|
|
stream <= numeric_cast<uint32_t>(mapped_normals[qv::Snap(n.bitangent)]);
|
|
}
|
|
}
|
|
|
|
Q_assert(stream.tellp() == data_size);
|
|
|
|
logging::print(logging::flag::VERBOSE, "Compressed {} normals down to {}\n", num_normals, unique_normals.size());
|
|
|
|
bspdata.bspx.transfer("FACENORMALS", data, data_size);
|
|
|
|
ofstream obj("test.obj");
|
|
|
|
size_t index_id = 1;
|
|
|
|
for (auto &face : bsp.dfaces) {
|
|
auto &cache = FaceCacheForFNum(&face - bsp.dfaces.data());
|
|
|
|
for (size_t i = 0; i < cache.points().size(); i++) {
|
|
auto &pt = cache.points()[i];
|
|
auto &n = cache.normals()[i];
|
|
|
|
fmt::print(obj, "v {}\n", pt);
|
|
fmt::print(obj, "vn {}\n", n.normal);
|
|
}
|
|
|
|
for (size_t i = 1; i < cache.points().size() - 1; i++) {
|
|
size_t n1 = 0;
|
|
size_t n2 = i;
|
|
size_t n3 = (i + 1) % cache.points().size();
|
|
|
|
fmt::print(obj, "f {0}//{0} {1}//{1} {2}//{2}\n", index_id + n1, index_id + n2, index_id + n3);
|
|
}
|
|
|
|
index_id += cache.points().size();
|
|
}
|
|
}
|
|
|
|
/*
|
|
* ==================
|
|
* main
|
|
* light modelfile
|
|
* ==================
|
|
*/
|
|
int light_main(int argc, const char **argv)
|
|
{
|
|
bspdata_t bspdata;
|
|
|
|
options.preinitialize(argc, argv);
|
|
options.initialize(argc, argv);
|
|
|
|
auto start = I_FloatTime();
|
|
fs::path source = options.sourceMap;
|
|
|
|
logging::init(fs::path(source).replace_filename(source.stem().string() + "-light").replace_extension("log"), options);
|
|
|
|
// delete previous litfile
|
|
if (!options.onlyents.value()) {
|
|
source.replace_extension("lit");
|
|
remove(source);
|
|
}
|
|
|
|
source.replace_extension("rad");
|
|
if (source != "lights.rad")
|
|
ParseLightsFile("lights.rad"); // generic/default name
|
|
ParseLightsFile(source); // map-specific file name
|
|
|
|
source.replace_extension("bsp");
|
|
LoadBSPFile(source, &bspdata);
|
|
|
|
bspdata.version->game->init_filesystem(source, options);
|
|
|
|
ConvertBSPFormat(&bspdata, &bspver_generic);
|
|
|
|
mbsp_t &bsp = std::get<mbsp_t>(bspdata.bsp);
|
|
|
|
// mxd. Use 1.0 rangescale as a default to better match with qrad3/arghrad
|
|
if ((bspdata.loadversion->game->id == GAME_QUAKE_II) && !options.rangescale.isChanged()) {
|
|
options.rangescale.setValue(1.0f);
|
|
}
|
|
|
|
img::init_palette(bspdata.loadversion->game);
|
|
img::load_textures(&bsp);
|
|
|
|
LoadExtendedTexinfoFlags(source, &bsp);
|
|
LoadEntities(options, &bsp);
|
|
|
|
options.postinitialize(argc, argv);
|
|
|
|
FindModelInfo(&bsp);
|
|
|
|
FindDebugFace(&bsp);
|
|
FindDebugVert(&bsp);
|
|
|
|
MakeTnodes(&bsp);
|
|
|
|
if (options.debugmode == debugmodes::phong_obj) {
|
|
CalculateVertexNormals(&bsp);
|
|
source.replace_extension("obj");
|
|
ExportObj(source, &bsp);
|
|
|
|
logging::close();
|
|
return 0;
|
|
}
|
|
|
|
SetupLights(options, &bsp);
|
|
|
|
// PrintLights();
|
|
|
|
if (!options.onlyents.value()) {
|
|
if (!bspdata.loadversion->game->has_rgb_lightmap) {
|
|
CheckLitNeeded(options);
|
|
}
|
|
|
|
SetupDirt(options);
|
|
|
|
LightWorld(&bspdata, options.lmscale.isChanged());
|
|
|
|
// invalidate normals
|
|
bspdata.bspx.entries.erase("FACENORMALS");
|
|
|
|
if (options.write_normals.value()) {
|
|
WriteNormals(bsp, bspdata);
|
|
}
|
|
|
|
/*invalidate any bspx lighting info early*/
|
|
bspdata.bspx.entries.erase("RGBLIGHTING");
|
|
bspdata.bspx.entries.erase("LIGHTINGDIR");
|
|
|
|
if (options.write_litfile == lightfile::lit2) {
|
|
WriteLitFile(&bsp, faces_sup, source, 2);
|
|
return 0; // run away before any files are written
|
|
}
|
|
|
|
/*fixme: add a new per-surface offset+lmscale lump for compat/versitility?*/
|
|
if (options.write_litfile & lightfile::external) {
|
|
WriteLitFile(&bsp, faces_sup, source, LIT_VERSION);
|
|
}
|
|
if (options.write_litfile & lightfile::bspx) {
|
|
bspdata.bspx.transfer("RGBLIGHTING", lit_filebase, bsp.dlightdata.size() * 3);
|
|
}
|
|
if (options.write_luxfile & lightfile::external) {
|
|
WriteLuxFile(&bsp, source, LIT_VERSION);
|
|
}
|
|
if (options.write_luxfile & lightfile::bspx) {
|
|
bspdata.bspx.transfer("LIGHTINGDIR", lux_filebase, bsp.dlightdata.size() * 3);
|
|
}
|
|
}
|
|
|
|
/* -novanilla + internal lighting = no grey lightmap */
|
|
if (options.novanilla.value() && (options.write_litfile & lightfile::bspx)) {
|
|
bsp.dlightdata.clear();
|
|
}
|
|
|
|
#if 0
|
|
ExportObj(source, bsp);
|
|
#endif
|
|
|
|
WriteEntitiesToString(options, &bsp);
|
|
/* Convert data format back if necessary */
|
|
ConvertBSPFormat(&bspdata, bspdata.loadversion);
|
|
|
|
if (!options.litonly.value()) {
|
|
WriteBSPFile(source, &bspdata);
|
|
}
|
|
|
|
auto end = I_FloatTime();
|
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logging::print("{:.3} seconds elapsed\n", (end - start));
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logging::print("\n");
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logging::print("stats:\n");
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logging::print("{} lights tested, {} hits per sample point\n",
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static_cast<double>(total_light_rays) / static_cast<double>(total_samplepoints),
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static_cast<double>(total_light_ray_hits) / static_cast<double>(total_samplepoints));
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logging::print("{} surface lights tested, {} hits per sample point\n",
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static_cast<double>(total_surflight_rays) / static_cast<double>(total_samplepoints),
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static_cast<double>(total_surflight_ray_hits) / static_cast<double>(total_samplepoints)); // mxd
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logging::print("{} bounce lights tested, {} hits per sample point\n",
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static_cast<double>(total_bounce_rays) / static_cast<double>(total_samplepoints),
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static_cast<double>(total_bounce_ray_hits) / static_cast<double>(total_samplepoints));
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logging::print("{} empty lightmaps\n", static_cast<int>(fully_transparent_lightmaps));
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logging::close();
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return 0;
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}
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