/* Minetest-c55 Copyright (C) 2010-2011 celeron55, Perttu Ahola This program is free software; you can redistribute it and/or modify it under the terms of the GNU Lesser General Public License as published by the Free Software Foundation; either version 2.1 of the License, or (at your option) any later version. This program 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 Lesser General Public License for more details. You should have received a copy of the GNU Lesser General Public License along with this program; if not, write to the Free Software Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA. */ #ifndef SETTINGS_HEADER #define SETTINGS_HEADER #include "irrlichttypes_bloated.h" #include #include #include #include #include "strfnd.h" #include #include #include #include "debug.h" #include "log.h" #include "util/string.h" #include "porting.h" enum ValueType { VALUETYPE_STRING, VALUETYPE_FLAG // Doesn't take any arguments }; struct ValueSpec { ValueSpec(ValueType a_type, const char *a_help=NULL) { type = a_type; help = a_help; } ValueType type; const char *help; }; class Settings { public: Settings() { m_mutex.Init(); } void writeLines(std::ostream &os) { JMutexAutoLock lock(m_mutex); for(core::map::Iterator i = m_settings.getIterator(); i.atEnd() == false; i++) { std::string name = i.getNode()->getKey(); std::string value = i.getNode()->getValue(); os< getNames(){ std::vector names; for(core::map::Iterator i = m_settings.getIterator(); i.atEnd() == false; i++) { std::string name = i.getNode()->getKey(); names.push_back(name); } return names; } // remove a setting bool remove(const std::string& name) { return m_settings.remove(name); } bool parseConfigLine(const std::string &line) { JMutexAutoLock lock(m_mutex); std::string trimmedline = trim(line); // Ignore empty lines and comments if(trimmedline.size() == 0 || trimmedline[0] == '#') return true; //infostream<<"trimmedline=\""< &dst, core::map &updated, bool &value_changed) { JMutexAutoLock lock(m_mutex); if(is.eof()) return false; // NOTE: This function will be expanded to allow multi-line settings std::string line; std::getline(is, line); std::string trimmedline = trim(line); std::string line_end = ""; if(is.eof() == false) line_end = "\n"; // Ignore empty lines and comments if(trimmedline.size() == 0 || trimmedline[0] == '#') { dst.push_back(line+line_end); return true; } Strfnd sf(trim(line)); std::string name = sf.next("="); name = trim(name); if(name == "") { dst.push_back(line+line_end); return true; } std::string value = sf.next("\n"); value = trim(value); if(m_settings.find(name)) { std::string newvalue = m_settings[name]; if(newvalue != value) { infostream<<"Changing value of \""< \""< objects; core::map updated; bool something_actually_changed = false; // Read and modify stuff { std::ifstream is(filename); if(is.good() == false) { infostream<<"updateConfigFile():" " Error opening configuration file" " for reading: \"" <::Iterator i = m_settings.getIterator(); i.atEnd() == false; i++) { if(updated.find(i.getNode()->getKey())) continue; something_actually_changed = true; break; } } // If nothing was actually changed, skip writing the file if(!something_actually_changed){ infostream<<"Skipping writing of "<::Iterator i = objects.begin(); i != objects.end(); i++) { os<<(*i); } /* Write stuff that was not already in the file */ for(core::map::Iterator i = m_settings.getIterator(); i.atEnd() == false; i++) { if(updated.find(i.getNode()->getKey())) continue; std::string name = i.getNode()->getKey(); std::string value = i.getNode()->getValue(); infostream<<"Adding \""< &allowed_options) { int nonopt_index = 0; int i=1; for(;;) { if(i >= argc) break; std::string argname = argv[i]; if(argname.substr(0, 2) != "--") { // If option doesn't start with -, read it in as nonoptX if(argname[0] != '-'){ std::string name = "nonopt"; name += itos(nonopt_index); set(name, argname); nonopt_index++; i++; continue; } errorstream<<"Invalid command-line parameter \"" < expected."<::Node *n; n = allowed_options.find(name); if(n == NULL) { errorstream<<"Unknown command-line parameter \"" <getValue().type; std::string value = ""; if(type == VALUETYPE_FLAG) { value = "true"; } else { if(i >= argc) { errorstream<<"Invalid command-line parameter \"" <::Node *n; n = m_settings.find(name); if(n == NULL) { n = m_defaults.find(name); if(n == NULL) { throw SettingNotFoundException("Setting not found"); } } return n->getValue(); } bool getBool(std::string name) { return is_yes(get(name)); } bool getFlag(std::string name) { try { return getBool(name); } catch(SettingNotFoundException &e) { return false; } } // Asks if empty bool getBoolAsk(std::string name, std::string question, bool def) { // If it is in settings if(exists(name)) return getBool(name); std::string s; char templine[10]; std::cout<>value; return value; } template T *getStruct(std::string name, std::string format) { size_t len = sizeof(T); std::vector strs_alloced; std::string *str; std::string valstr = get(name); char *s = &valstr[0]; T *buf = new T; char *bufpos = (char *)buf; char *f, *snext; size_t pos; char *fmtpos, *fmt = &format[0]; while ((f = strtok_r(fmt, ",", &fmtpos)) && s) { fmt = NULL; bool is_unsigned = false; int width = 0; char valtype = *f; width = (int)strtol(f + 1, &f, 10); if (width && valtype == 's') valtype = 'i'; switch (valtype) { case 'u': is_unsigned = true; /* FALLTHROUGH */ case 'i': if (width == 16) { bufpos += PADDING(bufpos, u16); if ((bufpos - (char *)buf) + sizeof(u16) <= len) { if (is_unsigned) *(u16 *)bufpos = (u16)strtoul(s, &s, 10); else *(s16 *)bufpos = (s16)strtol(s, &s, 10); } bufpos += sizeof(u16); } else if (width == 32) { bufpos += PADDING(bufpos, u32); if ((bufpos - (char *)buf) + sizeof(u32) <= len) { if (is_unsigned) *(u32 *)bufpos = (u32)strtoul(s, &s, 10); else *(s32 *)bufpos = (s32)strtol(s, &s, 10); } bufpos += sizeof(u32); } else if (width == 64) { bufpos += PADDING(bufpos, u64); if ((bufpos - (char *)buf) + sizeof(u64) <= len) { if (is_unsigned) *(u64 *)bufpos = (u64)strtoull(s, &s, 10); else *(s64 *)bufpos = (s64)strtoll(s, &s, 10); } bufpos += sizeof(u64); } s = strchr(s, ','); break; case 'b': snext = strchr(s, ','); if (snext) *snext++ = 0; bufpos += PADDING(bufpos, bool); if ((bufpos - (char *)buf) + sizeof(bool) <= len) *(bool *)bufpos = is_yes(std::string(s)); bufpos += sizeof(bool); s = snext; break; case 'f': bufpos += PADDING(bufpos, float); if ((bufpos - (char *)buf) + sizeof(float) <= len) *(float *)bufpos = strtof(s, &s); bufpos += sizeof(float); s = strchr(s, ','); break; case 's': while (*s == ' ' || *s == '\t') s++; if (*s++ != '"') //error, expected string goto fail; snext = s; while (snext[0] && !(snext[-1] != '\\' && snext[0] == '"')) snext++; *snext++ = 0; bufpos += PADDING(bufpos, std::string *); str = new std::string(s); pos = 0; while ((pos = str->find("\\\"", pos)) != std::string::npos) str->erase(pos, 1); if ((bufpos - (char *)buf) + sizeof(std::string *) <= len) *(std::string **)bufpos = str; bufpos += sizeof(std::string *); strs_alloced.push_back(str); s = *snext ? snext + 1 : NULL; break; case 'v': while (*s == ' ' || *s == '\t') s++; if (*s++ != '(') //error, expected vector goto fail; if (width == 2) { bufpos += PADDING(bufpos, v2f); if ((bufpos - (char *)buf) + sizeof(v2f) <= len) { v2f *v = (v2f *)bufpos; v->X = strtof(s, &s); s++; v->Y = strtof(s, &s); } bufpos += sizeof(v2f); } else if (width == 3) { bufpos += PADDING(bufpos, v3f); if ((bufpos - (char *)buf) + sizeof(v3f) <= len) { v3f *v = (v3f *)bufpos; v->X = strtof(s, &s); s++; v->Y = strtof(s, &s); s++; v->Z = strtof(s, &s); } bufpos += sizeof(v3f); } s = strchr(s, ','); break; default: //error, invalid format specifier goto fail; } if (s && *s == ',') s++; if ((size_t)(bufpos - (char *)buf) > len) //error, buffer too small goto fail; } if (f && *f) { //error, mismatched number of fields and values fail: for (unsigned int i = 0; i != strs_alloced.size(); i++) delete strs_alloced[i]; delete buf; //delete[] buf; buf = NULL; } return buf; } bool setStruct(std::string name, std::string format, void *value) { char sbuf[2048]; int sbuflen = sizeof(sbuf) - 1; sbuf[sbuflen] = 0; std::string str; int pos = 0; size_t fpos; char *f; char *bufpos = (char *)value; char *fmtpos, *fmt = &format[0]; while ((f = strtok_r(fmt, ",", &fmtpos))) { fmt = NULL; bool is_unsigned = false; int width = 0, nprinted = 0; char valtype = *f; width = (int)strtol(f + 1, &f, 10); if (width && valtype == 's') valtype = 'i'; switch (valtype) { case 'u': is_unsigned = true; /* FALLTHROUGH */ case 'i': if (width == 16) { bufpos += PADDING(bufpos, u16); nprinted = snprintf(sbuf + pos, sbuflen, is_unsigned ? "%u, " : "%d, ", *((u16 *)bufpos)); bufpos += sizeof(u16); } else if (width == 32) { bufpos += PADDING(bufpos, u32); nprinted = snprintf(sbuf + pos, sbuflen, is_unsigned ? "%u, " : "%d, ", *((u32 *)bufpos)); bufpos += sizeof(u32); } else if (width == 64) { bufpos += PADDING(bufpos, u64); nprinted = snprintf(sbuf + pos, sbuflen, is_unsigned ? "%llu, " : "%lli, ", (unsigned long long)*((u64 *)bufpos)); bufpos += sizeof(u64); } break; case 'b': bufpos += PADDING(bufpos, bool); nprinted = snprintf(sbuf + pos, sbuflen, "%s, ", *((bool *)bufpos) ? "true" : "false"); bufpos += sizeof(bool); break; case 'f': bufpos += PADDING(bufpos, float); nprinted = snprintf(sbuf + pos, sbuflen, "%f, ", *((float *)bufpos)); bufpos += sizeof(float); break; case 's': bufpos += PADDING(bufpos, std::string *); str = **((std::string **)bufpos); fpos = 0; while ((fpos = str.find('"', fpos)) != std::string::npos) { str.insert(fpos, 1, '\\'); fpos += 2; } nprinted = snprintf(sbuf + pos, sbuflen, "\"%s\", ", (*((std::string **)bufpos))->c_str()); bufpos += sizeof(std::string *); break; case 'v': if (width == 2) { bufpos += PADDING(bufpos, v2f); v2f *v = (v2f *)bufpos; nprinted = snprintf(sbuf + pos, sbuflen, "(%f, %f), ", v->X, v->Y); bufpos += sizeof(v2f); } else { bufpos += PADDING(bufpos, v3f); v3f *v = (v3f *)bufpos; nprinted = snprintf(sbuf + pos, sbuflen, "(%f, %f, %f), ", v->X, v->Y, v->Z); bufpos += sizeof(v3f); } break; default: return false; } if (nprinted < 0) //error, buffer too small return false; pos += nprinted; sbuflen -= nprinted; } if (pos >= 2) sbuf[pos - 2] = 0; set(name, std::string(sbuf)); return true; } void setBool(std::string name, bool value) { if(value) set(name, "true"); else set(name, "false"); } void setFloat(std::string name, float value) { set(name, ftos(value)); } void setV3F(std::string name, v3f value) { std::ostringstream os; os<<"("<::Iterator i = other.m_settings.getIterator(); i.atEnd() == false; i++) { m_settings[i.getNode()->getKey()] = i.getNode()->getValue(); } for(core::map::Iterator i = other.m_defaults.getIterator(); i.atEnd() == false; i++) { m_defaults[i.getNode()->getKey()] = i.getNode()->getValue(); } return; } Settings & operator+=(Settings &other) { JMutexAutoLock lock(m_mutex); JMutexAutoLock lock2(other.m_mutex); if(&other == this) return *this; for(core::map::Iterator i = other.m_settings.getIterator(); i.atEnd() == false; i++) { m_settings.insert(i.getNode()->getKey(), i.getNode()->getValue()); } for(core::map::Iterator i = other.m_defaults.getIterator(); i.atEnd() == false; i++) { m_defaults.insert(i.getNode()->getKey(), i.getNode()->getValue()); } return *this; } Settings & operator=(Settings &other) { JMutexAutoLock lock(m_mutex); JMutexAutoLock lock2(other.m_mutex); if(&other == this) return *this; clear(); (*this) += other; return *this; } private: core::map m_settings; core::map m_defaults; // All methods that access m_settings/m_defaults directly should lock this. JMutex m_mutex; }; #endif