2017-05-06 08:10:31 +05:30
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#define KEYWORD_ENTITY "entity"
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#define KEYWORD_BRUSH "brush"
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#define KEYWORD_VERTICES "vertices"
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#define KEYWORD_FACES "faces"
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#define KEYWORD_GLOBAL "global"
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#define KEYWORD_PREFAB "prefab"
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#include "oopless-parser.hpp"
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#include "brushdef.hpp"
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2017-06-07 14:16:43 +05:30
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#include "EntityConverter.hpp"
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2017-05-06 08:10:31 +05:30
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#include <sstream>
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#include <iostream>
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using namespace std;
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// place holding functions to test proper control flow.
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bool write(const struct TBrush &geometry,
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ofstream &fout,
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void (*b) (stringstream &, const vector<TPlanePoints> &)) {
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bool ok = true;
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if (geometry.m_Vertices.size() < 1) {
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cerr << "error: geometry has no vertices" << endl;
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ok = false;
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}
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if (geometry.m_Faces.size() < 1) {
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cerr << "error: geometry has no faces"<< endl;
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ok = false;
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}
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if (ok) {
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fout << GetBrushString(geometry, b);
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}
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return ok;
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}
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void write(const vector<string> &entity, ofstream &fo) {
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;
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}
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// entities will vary widely depending on their type and available flags.
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// for now, acquire entity data, and handle their conversion in the write methods.
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vector<string> get_entity(ifstream &f) {
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vector<string> output;
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string line;
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unsigned int pos = f.tellg();
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while (getline(f, line)) {
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if (line.find(KEYWORD_ENTITY) != string::npos ||
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line.find(KEYWORD_BRUSH) != string::npos ||
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line.find(KEYWORD_PREFAB) != string::npos) {
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f.seekg(pos);
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return output;
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} else {
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output.push_back(line);
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}
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pos = f.tellg();
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}
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}
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vector<Eigen::Vector3f> parse_vertices(ifstream &f) {
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#define FIRSTCH(x) x[0]
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vector<Eigen::Vector3f> output;
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string line;
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unsigned int pos = f.tellg();
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while(getline(f, line)) {
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if (line.find(KEYWORD_FACES) != string::npos ||
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line.find(KEYWORD_BRUSH) != string::npos ||
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line.find(KEYWORD_ENTITY) != string::npos ||
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line.find(KEYWORD_PREFAB) != string::npos) {
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f.seekg(pos);
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return output;
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} else {
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Eigen::Vector3f v;
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stringstream ss(line);
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string vdata;
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unsigned int i = 0;
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while (ss >> vdata) {
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if (isdigit(FIRSTCH(vdata)) || FIRSTCH(vdata) == '-') {
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double dvalue = stod(vdata);
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v[i] = (float)dvalue;
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}
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// note: this prevents the index growing out of vector capacity
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// alternatively can throw an exception when that happens instead
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// to make it clear that an illegal line has been hit.
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i = (i + 1) % 3;
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}
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output.push_back(v);
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}
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pos = f.tellg();
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}
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return output;
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}
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vector<struct TFace> parse_face(ifstream &f) {
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#define FIRSTCH(x) x[0]
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#define SECONDCH(x) x[1]
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// it is possible for the next line to be unrelated to faces
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// so it is needed to reset the stream prior to reading
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// the new label, e.g '\tbrush'.
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vector<struct TFace> output;
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string line;
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unsigned int pos = f.tellg();
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while(getline(f, line)) {
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if (line.find(KEYWORD_VERTICES) != string::npos ||
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line.find(KEYWORD_BRUSH) != string::npos ||
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line.find(KEYWORD_ENTITY) != string::npos ||
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line.find(KEYWORD_PREFAB) != string::npos ||
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line.find(KEYWORD_GLOBAL) != string::npos) {
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f.seekg(pos);
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return output;
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} else {
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struct TFace x;
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float *f = &x.m_fXOffset;;
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stringstream ss(line);
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string fdata;
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bool hex = false;
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unsigned int i = 0;
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while (ss >> fdata) {
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if (i < 5) {
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if (isdigit(FIRSTCH(fdata)) || FIRSTCH(fdata) == '-') {
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double dvalue = stod(fdata);
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*f = (float)dvalue;
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f++;
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}
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// note: if there is a non-digit in the first 5 fields
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// then it qualifies as an illegal line.
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} else if (4 < i && i < 8) {
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x.m_Indices.push_back(stoi(fdata));
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2017-05-07 03:55:47 +05:30
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} else if (8 <= i) {
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if (!hex && fdata.length() > 1) {
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if (SECONDCH(fdata) == 'x') {
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2017-05-06 08:10:31 +05:30
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// this is the unidentified hex digit.
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2017-05-07 06:24:48 +05:30
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// out of range for stoi
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x.hex = strtoul(fdata.c_str(), NULL, 16);
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2017-05-07 03:55:47 +05:30
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hex = true;
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}
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} else if (!hex) {
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2017-05-06 08:10:31 +05:30
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x.m_Indices.push_back(stoi(fdata));
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2017-05-07 03:55:47 +05:30
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} else if (hex) {
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2017-05-06 08:10:31 +05:30
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x.m_Material = fdata;
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2017-05-07 03:55:47 +05:30
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} else {
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;
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}
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2017-05-06 08:10:31 +05:30
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}
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i++;
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} // end, per field iteration
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output.push_back(x);
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2017-05-07 03:55:47 +05:30
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} // end else case, if line did not contain other keywords
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2017-05-06 08:10:31 +05:30
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pos = f.tellg();
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} // end, per line iteration
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// the odd case when the map file ends with a face indent.
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return output;
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}
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struct TBrush parse_brush(ifstream &f) {
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struct TBrush output;
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string l;
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getline(f, l);
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// wip: note must return the entire brush, adjust control flow
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if (l.find(KEYWORD_VERTICES) != string::npos) {
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output.m_Vertices = parse_vertices(f);
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}
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getline(f, l);
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if (l.find(KEYWORD_FACES) != string::npos) {
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output.m_Faces = parse_face(f);
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}
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return output;
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}
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void parse_prefab(ifstream &f,
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ofstream &out,
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void (*b) (stringstream &, const vector<TPlanePoints> &)) {
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string l;
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getline(f, l);
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if (l.find(KEYWORD_BRUSH) != string::npos) {
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write(parse_brush(f), out, b);
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} else if (l.find(KEYWORD_ENTITY) != string::npos) {
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write(get_entity(f), out);
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}
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}
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// note: can't use a single function pointer for variadic overloaded write function?
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bool convertmap(const char * const infile,
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const char * const outfile,
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void (*brushdef) (stringstream &, const vector<TPlanePoints> &)) {
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ifstream fin;
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fin.open(infile);
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if (!fin.good()){
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cerr << "error: failed to open input file" << endl;
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return false;
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}
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ofstream fout;
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fout.open(outfile);
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if (!fout.good()) {
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cerr << "error: failed to open output file" << endl;
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return false;
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}
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fout << "{\n"
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<< "\"classname\" \"worldspawn\"" << endl;
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string line;
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while (getline(fin, line)) {
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if (line.find(KEYWORD_PREFAB) != string::npos ||
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line.find(KEYWORD_GLOBAL) != string::npos) {
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parse_prefab(fin, fout, brushdef);
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} else if (line.find(KEYWORD_ENTITY) != string::npos) {
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write(get_entity(fin), fout);
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} else if (line.find(KEYWORD_BRUSH) != string::npos) {
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write(parse_brush(fin), fout, brushdef);
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}
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}
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fout << "}" << endl;
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fin.close();
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fout.close();
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return true;
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}
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