Files
netradiant-custom/plugins/mapq3/parse.cpp
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2025-09-14 03:55:34 +05:00

242 lines
7.8 KiB
C++

/*
Copyright (C) 2001-2006, William Joseph.
All Rights Reserved.
This file is part of GtkRadiant.
GtkRadiant 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
(at your option) any later version.
GtkRadiant 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.
You should have received a copy of the GNU General Public License
along with GtkRadiant; if not, write to the Free Software
Foundation, Inc., 51 Franklin St, Fifth Floor, Boston, MA 02110-1301 USA
*/
#include "parse.h"
#include <list>
#include "ientity.h"
#include "ibrush.h"
#include "ipatch.h"
#include "ieclass.h"
#include "iscriplib.h"
#include "scenelib.h"
#include "string/string.h"
#include "stringio.h"
#include "eclasslib.h"
#include "layers.h"
class LayersParser
{
Layers& m_layers;
std::vector<Layer::iterator> m_layersVec; // vector to access layers by index
int m_currentLayer = LAYERIDX0;
public:
LayersParser( scene::Node& root ) : m_layers( *Node_getLayers( root ) ){
}
void construct_tree(){
{
auto& list = m_layers.m_children;
if( list.size() > 1 ) // something was parsed, remove default inserted layer
list.pop_front();
m_layersVec.reserve( list.size() );
for( auto it = list.begin(); it != list.end(); ++it )
m_layersVec.push_back( it );
// check safety // note possible circular reference is not checked
if( std::ranges::find( list, LAYERIDXPARENT, &Layer::m_parentIndex ) == list.cend() ){
globalErrorStream() << "No layers in the root\n";
list.front().m_parentIndex = LAYERIDXPARENT;
}
}
for( auto it : m_layersVec ){
// check safety
if( it->m_parentIndex < LAYERIDXPARENT || it->m_parentIndex >= static_cast<int>( m_layersVec.size() ) ){
globalErrorStream() << it->m_parentIndex << " parent layer index out of bounds\n";
it->m_parentIndex = LAYERIDXPARENT;
}
if( it->m_parentIndex > LAYERIDXPARENT && m_layersVec[ it->m_parentIndex ] == it ){
globalErrorStream() << it->m_parentIndex << " parent layer index self reference\n";
it->m_parentIndex = LAYERIDXPARENT;
}
// link & reference parent
Layer& parent = it->m_parentIndex == LAYERIDXPARENT? m_layers : *m_layersVec[ it->m_parentIndex ];
parent.m_children.splice( parent.m_children.cend(), m_layers.m_children, it );
it->m_parent = &parent;
}
m_layers.m_currentLayer = &m_layers.m_children.front();
}
bool read_layers( Tokeniser& tokeniser ){
for (;; )
{
tokeniser.nextLine();
const char *token;
if( !( token = tokeniser.getToken() ) )
return false;
if( !string_equal( token, "layerdef" ) ){
tokeniser.ungetToken();
return true;
}
if( !( token = tokeniser.getToken() ) ){
Tokeniser_unexpectedError( tokeniser, token, "#layer-name" );
return false;
}
auto& layer = m_layers.m_children.emplace_back( token, nullptr ); // initially construct plain list
if( !Tokeniser_getInteger( tokeniser, layer.m_parentIndex )
|| !Tokeniser_getInteger( tokeniser, layer.m_color[ 0 ] )
|| !Tokeniser_getInteger( tokeniser, layer.m_color[ 1 ] )
|| !Tokeniser_getInteger( tokeniser, layer.m_color[ 2 ] ) )
return false;
Tokeniser_skipToNextLine( tokeniser ); // skip possible format extension
}
}
bool read_layer( Tokeniser& tokeniser ){
const char *token = tokeniser.getToken();
if ( token == nullptr )
return false;
if( !string_equal( token, "layer" ) ){
tokeniser.ungetToken();
return true;
}
if( !Tokeniser_getInteger( tokeniser, m_currentLayer ) ){
return false;
}
else if( m_currentLayer <= LAYERIDXPARENT || m_currentLayer >= static_cast<int>( m_layersVec.size() ) ){
globalErrorStream() << m_currentLayer << " primitive layer index out of bounds\n";
m_currentLayer = LAYERIDX0;
}
Tokeniser_skipToNextLine( tokeniser ); // skip possible format extension
return true;
}
Layer* getCurrentLayer(){
return m_layersVec[ m_currentLayer ].operator->();
}
};
inline MapImporter* Node_getMapImporter( scene::Node& node ){
return NodeTypeCast<MapImporter>::cast( node );
}
typedef std::list< std::pair<CopiedString, CopiedString> > KeyValues;
NodeSmartReference g_nullNode( NewNullNode() );
NodeSmartReference Entity_create( EntityCreator& entityTable, EntityClass* entityClass, const KeyValues& keyValues ){
scene::Node& entity( entityTable.createEntity( entityClass ) );
for ( const auto& [ key, value ] : keyValues )
{
Node_getEntity( entity )->setKeyValue( key.c_str(), value.c_str() );
}
return NodeSmartReference( entity );
}
NodeSmartReference Entity_parseTokens( Tokeniser& tokeniser, EntityCreator& entityTable, const PrimitiveParser& parser, int index, LayersParser& layersParser ){
NodeSmartReference entity( g_nullNode );
KeyValues keyValues;
const char* classname = "";
int count_primitives = 0;
while ( true )
{
tokeniser.nextLine();
const char* token;
if ( !layersParser.read_layer( tokeniser ) || !( token = tokeniser.getToken() ) ) {
Tokeniser_unexpectedError( tokeniser, token, "#entity-token" );
return g_nullNode;
}
if ( !strcmp( token, "}" ) ) { // end entity
if ( entity == g_nullNode ) {
// entity does not have brushes
entity = Entity_create( entityTable, GlobalEntityClassManager().findOrInsert( classname, false ), keyValues );
}
return entity;
}
else if ( !strcmp( token, "{" ) ) { // begin primitive
if ( entity == g_nullNode ) {
// entity has brushes
entity = Entity_create( entityTable, GlobalEntityClassManager().findOrInsert( classname, true ), keyValues );
}
tokeniser.nextLine();
NodeSmartReference primitive( parser.parsePrimitive( tokeniser ) );
if ( primitive == g_nullNode || !Node_getMapImporter( primitive )->importTokens( tokeniser ) ) {
globalErrorStream() << "brush " << count_primitives << ": parse error\n";
return g_nullNode;
}
primitive.get().m_layer = layersParser.getCurrentLayer();
scene::Traversable* traversable = Node_getTraversable( entity );
if ( Node_getEntity( entity )->isContainer() && traversable != 0 ) {
traversable->insert( primitive );
}
else
{
globalErrorStream() << "entity " << index << ": type " << classname << ": discarding brush " << count_primitives << '\n';
}
++count_primitives;
}
else // epair
{
CopiedString key( token );
token = tokeniser.getToken();
if ( token == 0 ) {
Tokeniser_unexpectedError( tokeniser, token, "#epair-value" );
return g_nullNode;
}
keyValues.push_back( KeyValues::value_type( key, token ) );
if ( string_equal( key.c_str(), "classname" ) ) {
classname = keyValues.back().second.c_str();
}
}
}
// unreachable code
return g_nullNode;
}
void Map_Read( scene::Node& root, Tokeniser& tokeniser, EntityCreator& entityTable, const PrimitiveParser& parser ){
LayersParser layersParser( root );
if( !layersParser.read_layers( tokeniser ) ){
layersParser.construct_tree(); // contruct anytime to have at least one layer, e.g. when empty .map
return;
}
layersParser.construct_tree();
int count_entities = 0;
for (;; )
{
tokeniser.nextLine();
if ( !layersParser.read_layer( tokeniser ) || !tokeniser.getToken() ) { // { or 0
break;
}
Layer *entityLayer = layersParser.getCurrentLayer();
NodeSmartReference entity( Entity_parseTokens( tokeniser, entityTable, parser, count_entities, layersParser ) );
if ( entity == g_nullNode ) {
globalErrorStream() << "entity " << count_entities << ": parse error\n";
return;
}
Node_getTraversable( root )->insert( entity );
if( !Node_getEntity( entity )->isContainer() )
entity.get().m_layer = entityLayer;
++count_entities;
}
}