/* */ #include "OptionParser.h" #include #include #include #include #include #include #include "util.h" #include "OptionHandlerImpl.h" #include "Option.h" #include "A2STR.h" #include "a2functional.h" #include "array_fun.h" #include "OptionHandlerFactory.h" #include "DlAbortEx.h" #include "error_code.h" #include "prefs.h" #include "UnknownOptionException.h" #include "LogFactory.h" #include "fmt.h" namespace aria2 { OptionParser::OptionParser() : handlers_(option::countOption(), nullptr), shortOpts_(256) {} OptionParser::~OptionParser() { std::for_each(handlers_.begin(), handlers_.end(), Deleter()); } namespace { template size_t countPublicOption(InputIterator first, InputIterator last) { size_t count = 0; for(; first != last; ++first) { if(*first && !(*first)->isHidden()) { ++count; } } return count; } } // namespace namespace { template void putOptions(struct option* longOpts, int* plopt, InputIterator first, InputIterator last) { for(; first != last; ++first) { if(*first && !(*first)->isHidden()) { #ifdef HAVE_OPTION_CONST_NAME (*longOpts).name = (*first)->getName(); #else // !HAVE_OPTION_CONST_NAME (*longOpts).name = strdup((*first)->getName()); #endif // !HAVE_OPTION_CONST_NAME switch((*first)->getArgType()) { case OptionHandler::REQ_ARG: (*longOpts).has_arg = required_argument; break; case OptionHandler::OPT_ARG: (*longOpts).has_arg = optional_argument; break; case OptionHandler::NO_ARG: (*longOpts).has_arg = no_argument; break; default: abort(); } if((*first)->getShortName() == 0) { (*longOpts).flag = plopt; (*longOpts).val = (*first)->getPref()->i; } else { (*longOpts).flag = nullptr; (*longOpts).val = (*first)->getShortName(); } ++longOpts; } } (*longOpts).name = nullptr; (*longOpts).has_arg = 0; (*longOpts).flag = nullptr; (*longOpts).val = 0; } } // namespace namespace { template std::string createOptstring(InputIterator first, InputIterator last) { std::string str = ""; for(; first != last; ++first) { if(*first && !(*first)->isHidden()) { if((*first)->getShortName() != 0) { str += (*first)->getShortName(); if((*first)->getArgType() == OptionHandler::REQ_ARG) { str += ":"; } else if((*first)->getArgType() == OptionHandler::OPT_ARG) { str += "::"; } } } } return str; } } // namespace void OptionParser::parseArg (std::ostream& out, std::vector& nonopts, int argc, char* argv[]) const { size_t numPublicOption = countPublicOption(handlers_.begin(), handlers_.end()); int lopt; auto longOpts = make_unique(numPublicOption+1); putOptions(longOpts.get(), &lopt, handlers_.begin(), handlers_.end()); std::string optstring = createOptstring(handlers_.begin(), handlers_.end()); while(1) { int c = getopt_long(argc, argv, optstring.c_str(), longOpts.get(), nullptr); if(c == -1) { break; } const OptionHandler* op = nullptr; if(c == 0) { op = findById(lopt); } else if(c != '?') { op = findByShortName(c); } else { assert(c == '?'); if(optind == 1) { throw DL_ABORT_EX2("Failed to parse command-line options.", error_code::OPTION_ERROR); } int optlen = strlen(argv[optind-1]); const char* optstr = argv[optind-1]; for(; *optstr == '-'; ++optstr); int optstrlen = strlen(optstr); if(optstrlen+1 >= optlen) { // If this is short option form (1 '-' prefix), just throw // error here. throw DL_ABORT_EX2("Failed to parse command-line options.", error_code::OPTION_ERROR); } // There are 3 situations: 1) completely unknown option 2) // getopt_long() complained because too few arguments. 3) // option is ambiguous. int ambiguous = 0; for(int i = 1, len = option::countOption(); i < len; ++i) { PrefPtr pref = option::i2p(i); const OptionHandler* h = find(pref); if(h && !h->isHidden()) { if(strcmp(pref->k, optstr) == 0) { // Exact match, this means getopt_long detected error // while handling this option. throw DL_ABORT_EX2("Failed to parse command-line options.", error_code::OPTION_ERROR); } else if(util::startsWith(pref->k, pref->k+strlen(pref->k), optstr, optstr+optstrlen)) { ++ambiguous; } } } if(ambiguous == 1) { // This is successfully abbreviated option. So it must be case // 2). throw DL_ABORT_EX2("Failed to parse command-line options.", error_code::OPTION_ERROR); } throw UNKNOWN_OPTION_EXCEPTION(argv[optind-1]); } assert(op); out << op->getName() << "="; if(optarg) { out << optarg; if(op->getEraseAfterParse()) { for(char* p = optarg; *p != '\0'; ++p) { *p = '*'; } } } out << "\n"; } std::copy(argv+optind, argv+argc, std::back_inserter(nonopts)); } void OptionParser::parse(Option& option, std::istream& is) const { std::string line; while(getline(is, line)) { if(line.empty() || line[0] == '#') { continue; } auto nv = util::divide(std::begin(line), std::end(line), '='); if(nv.first.first == nv.first.second) { continue; } PrefPtr pref = option::k2p(std::string(nv.first.first, nv.first.second)); const OptionHandler* handler = find(pref); if(handler) { handler->parse(option, std::string(nv.second.first, nv.second.second)); } else { A2_LOG_WARN(fmt("Unknown option: %s", line.c_str())); } } } void OptionParser::parse(Option& option, const KeyVals& options) const { for(KeyVals::const_iterator i = options.begin(), eoi = options.end(); i != eoi; ++i) { PrefPtr pref = option::k2p((*i).first); const OptionHandler* handler = find(pref); if(handler) { handler->parse(option, (*i).second); } else { A2_LOG_WARN(fmt("Unknown option: %s", (*i).first.c_str())); } } } void OptionParser::setOptionHandlers (const std::vector& handlers) { for (const auto& h: handlers) { addOptionHandler(h); } } void OptionParser::addOptionHandler(OptionHandler* handler) { size_t optId = handler->getPref()->i; assert(optId < handlers_.size()); handlers_[optId] = handler; if(handler->getShortName()) { shortOpts_[static_cast(handler->getShortName())] = optId; } } void OptionParser::parseDefaultValues(Option& option) const { for (const auto& h: handlers_) { if (h && !h->getDefaultValue().empty()) { h->parse(option, h->getDefaultValue()); } } } std::vector OptionParser::findByTag(uint32_t tag) const { std::vector result; for (const auto& h: handlers_) { if(h && !h->isHidden() && h->hasTag(tag)) { result.push_back(h); } } return result; } std::vector OptionParser::findByNameSubstring(const std::string& substring) const { std::vector result; for (const auto& h: handlers_) { if(h && !h->isHidden()) { size_t nameLen = strlen(h->getName()); if(std::search(h->getName(), h->getName()+nameLen, substring.begin(), substring.end()) != h->getName()+nameLen) { result.push_back(h); } } } return result; } std::vector OptionParser::findAll() const { std::vector result; for (const auto& h: handlers_) { if(h && !h->isHidden()) { result.push_back(h); } } return result; } const OptionHandler* OptionParser::find(PrefPtr pref) const { return findById(pref->i); } const OptionHandler* OptionParser::findById(size_t id) const { if(id >= handlers_.size()) { return handlers_[0]; } const OptionHandler* h = handlers_[id]; if(!h || h->isHidden()) { return handlers_[0]; } else { return h; } } const OptionHandler* OptionParser::findByShortName(char shortName) const { size_t idx = static_cast(shortName); return findById(shortOpts_[idx]); } std::shared_ptr OptionParser::optionParser_; const std::shared_ptr& OptionParser::getInstance() { if(!optionParser_) { optionParser_.reset(new OptionParser()); optionParser_->setOptionHandlers(OptionHandlerFactory::createOptionHandlers()); } return optionParser_; } void OptionParser::deleteInstance() { optionParser_.reset(); } } // namespace aria2