| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232 | /* Distributed under the OSI-approved BSD 3-Clause License.  See accompanying   file Copyright.txt or https://cmake.org/licensing for details.  */#include "cmParseArgumentsCommand.h"#include <map>#include <set>#include <sstream>#include <utility>#include "cmAlgorithms.h"#include "cmMakefile.h"#include "cmSystemTools.h"#include "cmake.h"class cmExecutionStatus;static std::string escape_arg(const std::string& arg){  // replace ";" with "\;" so output argument lists will split correctly  std::string escapedArg;  for (char i : arg) {    if (i == ';') {      escapedArg += '\\';    }    escapedArg += i;  }  return escapedArg;}bool cmParseArgumentsCommand::InitialPass(std::vector<std::string> const& args,                                          cmExecutionStatus&){  // cmake_parse_arguments(prefix options single multi <ARGN>)  //                         1       2      3      4  // or  // cmake_parse_arguments(PARSE_ARGV N prefix options single multi)  if (args.size() < 4) {    this->SetError("must be called with at least 4 arguments.");    return false;  }  std::vector<std::string>::const_iterator argIter = args.begin(),                                           argEnd = args.end();  bool parseFromArgV = false;  unsigned long argvStart = 0;  if (*argIter == "PARSE_ARGV") {    if (args.size() != 6) {      this->Makefile->IssueMessage(        cmake::FATAL_ERROR,        "PARSE_ARGV must be called with exactly 6 arguments.");      cmSystemTools::SetFatalErrorOccured();      return true;    }    parseFromArgV = true;    argIter++; // move past PARSE_ARGV    if (!cmSystemTools::StringToULong(argIter->c_str(), &argvStart)) {      this->Makefile->IssueMessage(cmake::FATAL_ERROR, "PARSE_ARGV index '" +                                     *argIter +                                     "' is not an unsigned integer");      cmSystemTools::SetFatalErrorOccured();      return true;    }    argIter++; // move past N  }  // the first argument is the prefix  const std::string prefix = (*argIter++) + "_";  // define the result maps holding key/value pairs for  // options, single values and multi values  typedef std::map<std::string, bool> options_map;  typedef std::map<std::string, std::string> single_map;  typedef std::map<std::string, std::vector<std::string>> multi_map;  options_map options;  single_map singleValArgs;  multi_map multiValArgs;  // anything else is put into a vector of unparsed strings  std::vector<std::string> unparsed;  // remember already defined keywords  std::set<std::string> used_keywords;  const std::string dup_warning = "keyword defined more than once: ";  // the second argument is a (cmake) list of options without argument  std::vector<std::string> list;  cmSystemTools::ExpandListArgument(*argIter++, list);  for (std::string const& iter : list) {    if (!used_keywords.insert(iter).second) {      this->GetMakefile()->IssueMessage(cmake::WARNING, dup_warning + iter);    }    options[iter]; // default initialize  }  // the third argument is a (cmake) list of single argument options  list.clear();  cmSystemTools::ExpandListArgument(*argIter++, list);  for (std::string const& iter : list) {    if (!used_keywords.insert(iter).second) {      this->GetMakefile()->IssueMessage(cmake::WARNING, dup_warning + iter);    }    singleValArgs[iter]; // default initialize  }  // the fourth argument is a (cmake) list of multi argument options  list.clear();  cmSystemTools::ExpandListArgument(*argIter++, list);  for (std::string const& iter : list) {    if (!used_keywords.insert(iter).second) {      this->GetMakefile()->IssueMessage(cmake::WARNING, dup_warning + iter);    }    multiValArgs[iter]; // default initialize  }  enum insideValues  {    NONE,    SINGLE,    MULTI  } insideValues = NONE;  std::string currentArgName;  list.clear();  if (!parseFromArgV) {    // Flatten ;-lists in the arguments into a single list as was done    // by the original function(CMAKE_PARSE_ARGUMENTS).    for (; argIter != argEnd; ++argIter) {      cmSystemTools::ExpandListArgument(*argIter, list);    }  } else {    // in the PARSE_ARGV move read the arguments from ARGC and ARGV#    std::string argc = this->Makefile->GetSafeDefinition("ARGC");    unsigned long count;    if (!cmSystemTools::StringToULong(argc.c_str(), &count)) {      this->Makefile->IssueMessage(cmake::FATAL_ERROR,                                   "PARSE_ARGV called with ARGC='" + argc +                                     "' that is not an unsigned integer");      cmSystemTools::SetFatalErrorOccured();      return true;    }    for (unsigned long i = argvStart; i < count; ++i) {      std::ostringstream argName;      argName << "ARGV" << i;      const char* arg = this->Makefile->GetDefinition(argName.str());      if (!arg) {        this->Makefile->IssueMessage(cmake::FATAL_ERROR,                                     "PARSE_ARGV called with " +                                       argName.str() + " not set");        cmSystemTools::SetFatalErrorOccured();        return true;      }      list.push_back(arg);    }  }  // iterate over the arguments list and fill in the values where applicable  for (std::string const& arg : list) {    const options_map::iterator optIter = options.find(arg);    if (optIter != options.end()) {      insideValues = NONE;      optIter->second = true;      continue;    }    const single_map::iterator singleIter = singleValArgs.find(arg);    if (singleIter != singleValArgs.end()) {      insideValues = SINGLE;      currentArgName = arg;      continue;    }    const multi_map::iterator multiIter = multiValArgs.find(arg);    if (multiIter != multiValArgs.end()) {      insideValues = MULTI;      currentArgName = arg;      continue;    }    switch (insideValues) {      case SINGLE:        singleValArgs[currentArgName] = arg;        insideValues = NONE;        break;      case MULTI:        if (parseFromArgV) {          multiValArgs[currentArgName].push_back(escape_arg(arg));        } else {          multiValArgs[currentArgName].push_back(arg);        }        break;      default:        if (parseFromArgV) {          unparsed.push_back(escape_arg(arg));        } else {          unparsed.push_back(arg);        }        break;    }  }  // now iterate over the collected values and update their definition  // within the current scope. undefine if necessary.  for (auto const& iter : options) {    this->Makefile->AddDefinition(prefix + iter.first,                                  iter.second ? "TRUE" : "FALSE");  }  for (auto const& iter : singleValArgs) {    if (!iter.second.empty()) {      this->Makefile->AddDefinition(prefix + iter.first, iter.second.c_str());    } else {      this->Makefile->RemoveDefinition(prefix + iter.first);    }  }  for (auto const& iter : multiValArgs) {    if (!iter.second.empty()) {      this->Makefile->AddDefinition(        prefix + iter.first, cmJoin(cmMakeRange(iter.second), ";").c_str());    } else {      this->Makefile->RemoveDefinition(prefix + iter.first);    }  }  if (!unparsed.empty()) {    this->Makefile->AddDefinition(prefix + "UNPARSED_ARGUMENTS",                                  cmJoin(cmMakeRange(unparsed), ";").c_str());  } else {    this->Makefile->RemoveDefinition(prefix + "UNPARSED_ARGUMENTS");  }  return true;}
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