Added robust program options & prepared for entity conversion
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@ -103,32 +103,26 @@ vector<string> get_entity(ifstream &f) {
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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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EntityConverter &e) {
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queue<vector<string> > &entities) {
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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<ifstream>(f), out, b);
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} else if (l.find(KEYWORD_ENTITY) != string::npos) {
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write(get_entity(f), out, b, e);
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entities.push(get_entity(f));
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}
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}
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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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const char * const entfile) {
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queue<vector<string> > &entities) {
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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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EntityConverter ec;
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if (entfile != NULL) {
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string ef(entfile);
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string in(infile);
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ec = EntityConverter(ef, in);
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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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@ -141,9 +135,9 @@ bool convertmap(const char * const infile,
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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, ec);
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parse_prefab(fin, fout, brushdef, entities);
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} else if (line.find(KEYWORD_ENTITY) != string::npos) {
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write(get_entity(fin), fout, brushdef, ec);
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entities.push(get_entity(fin));
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} else if (line.find(KEYWORD_BRUSH) != string::npos) {
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write(parse_brush<ifstream>(fin), fout, brushdef);
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}
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@ -7,6 +7,7 @@
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#include <string>
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#include <vector>
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#include <fstream>
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#include <queue>
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#include "EntityConverter.hpp"
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bool is_ebrush(std::vector<std::string>);
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@ -25,12 +26,12 @@ std::vector<std::string> get_entity(std::ifstream &);
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void parse_prefab(std::ifstream &,
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std::ofstream &,
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void (*f) (std::stringstream &, const std::vector<TPlanePoints> &),
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EntityConverter &);
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std::queue<std::vector<std::string> > &);
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bool convertmap(const char * const,
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const char * const,
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void (*f) (std::stringstream &, const std::vector<TPlanePoints> &),
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const char * const);
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std::queue<std::vector<std::string> > &);
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#define KEYWORD_ENTITY "entity"
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#define KEYWORD_BRUSH "brush"
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@ -2,52 +2,105 @@
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// Author: Michael Cameron
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// Email: chronokun@hotmail.com
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//
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#include <vector>
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#include <string>
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#include <sstream>
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#include <fstream>
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#include <iostream>
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#include <cxxopts.hpp>
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#include "oopless-parser.hpp"
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#include "brushdef.hpp"
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#define ARG_INPUT_SHORTALIAS "i"
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#define ARG_OUTPUT_SHORTALIAS "o"
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using namespace std;
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int main(const int _kiArgC, const char** _kppcArgv)
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{
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#define ARG_POS_BRUSHDEF 5
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#define ARG_POS_ENTITYCONV 4
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// Minimum: program, input file, output file
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if(_kiArgC < 3)
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{
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return(3);
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cxxopts::Options arguments(int ac, char ** av) {
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vector<string> parg = {"input", "output"};
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cxxopts::Options o("reflex2q3",
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"A tool to convert Reflex maps to idTech 3 maps.");
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o.add_options()
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("h,help", "displays help")
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("i,input",
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"required, input map file, from Reflex",
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cxxopts::value<string>(), "FILE")
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("o,output",
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"required, output map file, for idTech 3 or similar map editors",
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cxxopts::value<string>(), "FILE")
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("gtk",
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"optional, output in GTK Radiant's brush definition format")
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("e,ent",
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"optional, convert game entities given a table of equivalents",
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cxxopts::value<string>(), "FILE")
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;
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o.parse_positional(parg);
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o.parse(ac, av);
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if (o.count("help")) {
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cout << o.help() << endl;
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}
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if (o.count(ARG_INPUT_SHORTALIAS) < 1 ||
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o.count(ARG_OUTPUT_SHORTALIAS) < 1) {
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cerr << "error: no input or output file given" << endl;
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exit(EXIT_FAILURE);
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}
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return o;
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}
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// placeholder argument parsing until something more robust is decided upon
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/* // optional arg #1: brush definition - gtkradiant or netradiant style
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void (*brushdef) (std::stringstream &, const std::vector<TPlanePoints> &);
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brushdef = ((string(_kppcArgv[ARG_POS_BRUSHDEF - 1])).compare("-gtk") == 0) ?
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&brushdef_gtk: &brushdef_net;
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*/
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// optional arg #2: entity mapping file - enables entity conversion
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const char * const entitymap = (_kiArgC >= ARG_POS_ENTITYCONV) ?
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_kppcArgv[ARG_POS_ENTITYCONV - 1]: NULL;
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bool status;
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bool convert_worldspawn(const cxxopts::Options &o,
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queue<vector<string> > &q) {
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//ease of reading
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typedef void (*brushdef) (std::stringstream &,
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const std::vector<TPlanePoints> &);
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bool is_ok = false;
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brushdef fn = &brushdef_net;
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if (o.count("gtk")) {
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fn = &brushdef_gtk;
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}
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try {
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status = convertmap(_kppcArgv[1], _kppcArgv[2], &brushdef_net, entitymap);
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is_ok = convertmap(
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o[ARG_INPUT_SHORTALIAS].as<string>().c_str(), // in file
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o[ARG_OUTPUT_SHORTALIAS].as<string>().c_str(), // out file
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fn, // brush definition
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q); // queue of entities
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} catch (exception &e) {
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cout << e.what() << endl;
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cout << "exception encountered while converting map geometry"
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" - unrecoverable failure" << endl;
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}
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if (status) {
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if (is_ok) {
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cout << "Successfully converted map "
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<< _kppcArgv[1]
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<< o[ARG_INPUT_SHORTALIAS].as<string>()
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<< " to "
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<< _kppcArgv[2]
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<< o[ARG_OUTPUT_SHORTALIAS].as<string>()
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<< endl;
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} else {
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cout << "Failed to convert map." << endl;
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}
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return is_ok;
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}
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// wip: current a print out of all entities
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bool convert_entities(const cxxopts::Options &o, queue<vector<string> > &q) {
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vector<string> entity;
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do {
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entity = q.front();
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for (const string &s : entity) {
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cout << s << endl;
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}
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q.pop();
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} while (!q.empty());
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return true;
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}
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int main(int argc, char** argv)
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{
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string entityfile;
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cxxopts::Options p = arguments(argc, argv);
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queue<vector<string> > entities;
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bool is_ok = convert_worldspawn(p, entities);
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convert_entities(p, entities);
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return(0);
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}
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