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Decoration: Fix schematic probability mess with new MTS file version
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@ -436,18 +436,16 @@ Schematic specifier
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or through raw data supplied through Lua, in the form of a table. This table must specify two fields:
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- The 'size' field is a 3d vector containing the dimensions of the provided schematic.
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- The 'data' field is a flat table of MapNodes making up the schematic, in the order of [z [y [x]]].
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Important: The default value for param1 in MapNodes here is 255, which represents "always place".
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In the bulk MapNode data, param1, instead of the typical light values, instead represents the
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probability of that node appearing in the structure.
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When passed to minetest.create_schematic, probability is an integer value ranging from -1 to 255:
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- A probability value of 0 means that node will always appear.
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- A probability value of -1 means the node will never appear.
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When passed to minetest.create_schematic, probability is an integer value ranging from 0 to 255:
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- A probability value of 0 means that node will never appear (0% chance).
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- A probability value of 255 means the node will always appear (100% chance).
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- If the probability value p is greater than 0, then there is a (p / 256 * 100)% chance that node
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will appear when the schematic is placed on the map.
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If registering a structure in the raw format, however, -1 is not a valid probability value; in order to
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have a node that is not placed, it must be CONTENT_IGNORE (the name for which is "ignore").
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Important note: Node aliases cannot be used for a raw schematic provided when registering as a decoration.
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Schematic attributes
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@ -1436,7 +1434,7 @@ minetest.create_schematic(p1, p2, probability_list, filename)
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^ Apply the specified probability values to the specified nodes in probability_list.
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^ probability_list is an array of tables containing two fields, pos and prob.
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^ pos is the 3d vector specifying the absolute coordinates of the node being modified,
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^ and prob is the integer value from -1 to 255 of the probability (see: Schematic specifier).
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^ and prob is the integer value from 0 to 255 of the probability (see: Schematic specifier).
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^ If there are two or more entries with the same pos value, the last occuring in the array is used.
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^ If pos is not inside the box formed by p1 and p2, it is ignored.
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^ If probability_list is nil, no probabilities are applied.
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@ -2195,8 +2193,8 @@ Decoration definition (register_decoration)
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schematic = {
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size = {x=4, y=6, z=4},
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data = {
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{name="cobble", param1=0, param2=0},
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{name="dirt_with_grass", param1=0, param2=0},
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{name="cobble", param1=255, param2=0},
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{name="dirt_with_grass", param1=255, param2=0},
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...
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}
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},
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@ -28,7 +28,6 @@ with this program; if not, write to the Free Software Foundation, Inc.,
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#include "mapblock.h"
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#include "serverobject.h"
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#include "content_sao.h"
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#include "mapgen.h"
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#include "settings.h"
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#include "log.h"
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#include "profiler.h"
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@ -24,7 +24,6 @@ with this program; if not, write to the Free Software Foundation, Inc.,
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#include "filesys.h"
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#include "voxel.h"
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#include "porting.h"
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#include "mapgen.h"
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#include "nodemetadata.h"
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#include "settings.h"
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#include "log.h"
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@ -33,7 +33,7 @@ with this program; if not, write to the Free Software Foundation, Inc.,
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#include "mapnode.h"
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#include "constants.h"
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#include "voxel.h"
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#include "mapgen.h" //for BlockMakeData and EmergeManager
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#include "mapgen.h" //for MapgenParams
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#include "modifiedstate.h"
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#include "util/container.h"
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#include "nodetimer.h"
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@ -507,16 +507,19 @@ void DecoSchematic::resolveNodeNames(INodeDefManager *ndef) {
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for (size_t i = 0; i != node_names->size(); i++) {
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std::string name = node_names->at(i);
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std::map<std::string, std::string>::iterator it;
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it = replacements.find(name);
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if (it != replacements.end())
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name = it->second;
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content_t c = ndef->getId(name);
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if (c == CONTENT_IGNORE) {
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errorstream << "DecoSchematic::resolveNodeNames: node '"
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<< node_names->at(i) << "' not defined" << std::endl;
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<< name << "' not defined" << std::endl;
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c = CONTENT_AIR;
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}
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c_nodes.push_back(c);
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}
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@ -605,6 +608,9 @@ void DecoSchematic::blitToVManip(v3s16 p, ManualMapVoxelManipulator *vm,
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if (schematic[i].getContent() == CONTENT_IGNORE)
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continue;
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if (schematic[i].param1 == MTSCHEM_PROB_NEVER)
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continue;
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if (!force_placement) {
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content_t c = vm->m_data[vi].getContent();
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@ -612,7 +618,8 @@ void DecoSchematic::blitToVManip(v3s16 p, ManualMapVoxelManipulator *vm,
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continue;
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}
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if (schematic[i].param1 && myrand_range(1, 256) > schematic[i].param1)
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if (schematic[i].param1 != MTSCHEM_PROB_ALWAYS &&
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myrand_range(1, 255) > schematic[i].param1)
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continue;
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vm->m_data[vi] = schematic[i];
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@ -668,6 +675,9 @@ void DecoSchematic::placeStructure(Map *map, v3s16 p) {
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bool DecoSchematic::loadSchematicFile() {
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content_t cignore = CONTENT_IGNORE;
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bool have_cignore = false;
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std::ifstream is(filename.c_str(), std::ios_base::binary);
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u32 signature = readU32(is);
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@ -678,7 +688,7 @@ bool DecoSchematic::loadSchematicFile() {
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}
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u16 version = readU16(is);
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if (version != 1) {
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if (version > 2) {
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errorstream << "loadSchematicFile: unsupported schematic "
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"file version" << std::endl;
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return false;
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@ -692,6 +702,11 @@ bool DecoSchematic::loadSchematicFile() {
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node_names = new std::vector<std::string>;
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for (int i = 0; i != nidmapcount; i++) {
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std::string name = deSerializeString(is);
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if (name == "ignore") {
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name = "air";
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cignore = i;
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have_cignore = true;
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}
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node_names->push_back(name);
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}
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@ -699,7 +714,16 @@ bool DecoSchematic::loadSchematicFile() {
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schematic = new MapNode[nodecount];
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MapNode::deSerializeBulk(is, SER_FMT_VER_HIGHEST_READ, schematic,
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nodecount, 2, 2, true);
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if (version == 1) { // fix up the probability values
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for (int i = 0; i != nodecount; i++) {
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if (schematic[i].param1 == 0)
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schematic[i].param1 = MTSCHEM_PROB_ALWAYS;
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if (have_cignore && schematic[i].getContent() == cignore)
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schematic[i].param1 = MTSCHEM_PROB_NEVER;
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}
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}
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return true;
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}
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@ -709,7 +733,7 @@ bool DecoSchematic::loadSchematicFile() {
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All values are stored in big-endian byte order.
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[u32] signature: 'MTSM'
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[u16] version: 1
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[u16] version: 2
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[u16] size X
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[u16] size Y
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[u16] size Z
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@ -726,12 +750,16 @@ bool DecoSchematic::loadSchematicFile() {
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For each node in schematic:
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[u8] param2
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}
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Version changes:
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1 - Initial version
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2 - Fixed messy never/always place; 0 probability is now never, 0xFF is always
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*/
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void DecoSchematic::saveSchematicFile(INodeDefManager *ndef) {
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std::ofstream os(filename.c_str(), std::ios_base::binary);
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writeU32(os, MTSCHEM_FILE_SIGNATURE); // signature
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writeU16(os, 1); // version
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writeU16(os, 2); // version
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writeV3S16(os, size); // schematic size
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std::vector<content_t> usednodes;
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@ -789,7 +817,7 @@ bool DecoSchematic::getSchematicFromMap(Map *map, v3s16 p1, v3s16 p2) {
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u32 vi = vm->m_area.index(p1.X, y, z);
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for (s16 x = p1.X; x <= p2.X; x++, i++, vi++) {
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schematic[i] = vm->m_data[vi];
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schematic[i].param1 = 0;
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schematic[i].param1 = MTSCHEM_PROB_ALWAYS;
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}
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}
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@ -798,16 +826,18 @@ bool DecoSchematic::getSchematicFromMap(Map *map, v3s16 p1, v3s16 p2) {
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}
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void DecoSchematic::applyProbabilities(std::vector<std::pair<v3s16, s16> > *plist, v3s16 p0) {
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void DecoSchematic::applyProbabilities(std::vector<std::pair<v3s16, u8> > *plist,
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v3s16 p0) {
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for (size_t i = 0; i != plist->size(); i++) {
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v3s16 p = (*plist)[i].first - p0;
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int index = p.Z * (size.Y * size.X) + p.Y * size.X + p.X;
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if (index < size.Z * size.Y * size.X) {
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s16 prob = (*plist)[i].second;
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if (prob != -1)
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schematic[index].param1 = prob;
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else
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schematic[index].setContent(CONTENT_IGNORE);
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u8 prob = (*plist)[i].second;
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schematic[index].param1 = prob;
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// trim unnecessary node names from schematic
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if (prob == MTSCHEM_PROB_NEVER)
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schematic[index].setContent(CONTENT_AIR);
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}
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}
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}
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@ -27,7 +27,6 @@ with this program; if not, write to the Free Software Foundation, Inc.,
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#include "mapnode.h"
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#include "noise.h"
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#include "settings.h"
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#include <map>
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/////////////////// Mapgen flags
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#define MG_TREES 0x01
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@ -262,6 +261,8 @@ public:
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};
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#define MTSCHEM_FILE_SIGNATURE 0x4d54534d // 'MTSM'
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#define MTSCHEM_PROB_NEVER 0x00
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#define MTSCHEM_PROB_ALWAYS 0xFF
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class DecoSchematic : public Decoration {
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public:
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@ -292,7 +293,7 @@ public:
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bool getSchematicFromMap(Map *map, v3s16 p1, v3s16 p2);
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void placeStructure(Map *map, v3s16 p);
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void applyProbabilities(std::vector<std::pair<v3s16, s16> > *plist, v3s16 p0);
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void applyProbabilities(std::vector<std::pair<v3s16, u8> > *plist, v3s16 p0);
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};
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void build_nnlist_and_update_ids(MapNode *nodes, u32 nodecount,
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@ -956,8 +956,24 @@ bool read_schematic(lua_State *L, int index, DecoSchematic *dschem, Server *serv
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lua_pushnil(L);
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while (lua_next(L, -2)) {
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if (i < numnodes)
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schemdata[i] = readnode(L, -1, ndef);
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if (i < numnodes) {
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// same as readnode, except param1 default is MTSCHEM_PROB_CONST
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lua_getfield(L, -1, "name");
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const char *name = luaL_checkstring(L, -1);
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lua_pop(L, 1);
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u8 param1;
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lua_getfield(L, -1, "param1");
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param1 = !lua_isnil(L, -1) ? lua_tonumber(L, -1) : MTSCHEM_PROB_ALWAYS;
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lua_pop(L, 1);
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u8 param2;
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lua_getfield(L, -1, "param2");
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param2 = !lua_isnil(L, -1) ? lua_tonumber(L, -1) : 0;
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lua_pop(L, 1);
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schemdata[i] = MapNode(ndef, name, param1, param2);
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}
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i++;
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lua_pop(L, 1);
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@ -867,7 +867,7 @@ int ModApiBasic::l_create_schematic(lua_State *L)
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v3s16 p2 = read_v3s16(L, 2);
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sortBoxVerticies(p1, p2);
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std::vector<std::pair<v3s16, s16> > probability_list;
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std::vector<std::pair<v3s16, u8> > probability_list;
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if (lua_istable(L, 3)) {
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lua_pushnil(L);
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while (lua_next(L, 3)) {
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@ -876,13 +876,8 @@ int ModApiBasic::l_create_schematic(lua_State *L)
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v3s16 pos = read_v3s16(L, -1);
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lua_pop(L, 1);
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s16 prob = getintfield_default(L, -1, "prob", 0);
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if (prob < -1 || prob >= UCHAR_MAX) {
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errorstream << "create_schematic: probability value of "
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<< prob << " at " << PP(pos) << " out of range" << std::endl;
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} else {
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probability_list.push_back(std::make_pair(pos, prob));
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}
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u8 prob = getintfield_default(L, -1, "prob", 0xFF);
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probability_list.push_back(std::make_pair(pos, prob));
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}
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lua_pop(L, 1);
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