arguments_impl.hpp 10 KB

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  1. #pragma once
  2. #include <iostream>
  3. #include <utility>
  4. #include "arguments.h"
  5. #include "exception.h"
  6. #include "utilities.h"
  7. #ifndef PROGRAM_ARGS_NOEXIT_ON_HELP
  8. #define PROGRAM_ARGS_EXIT(X) std::exit(X)
  9. #else
  10. #define PROGRAM_ARGS_EXIT(X) (void)X
  11. #endif
  12. namespace program {
  13. template <typename Impl>
  14. template <typename T>
  15. Arguments<Impl>::Action::operator T() const {
  16. static_assert(std::is_base_of_v<Arguments<T>, T>,
  17. "Action can only bind to Arguments");
  18. if (!primed()) {
  19. self->actions.emplace(name, [](int argc, char const * const * argv) {
  20. (void)T(argc, argv);
  21. return [=](Impl const & args) {
  22. return typed_main(args, T(argc, argv, &args));
  23. };
  24. });
  25. }
  26. return T();
  27. }
  28. template <typename Impl> Arguments<Impl>::Action::operator bool() const {
  29. return primed() && self->arguments.size() > 0;
  30. }
  31. template <typename Impl> bool Arguments<Impl>::Action::primed() const {
  32. if (self->primed_) { return true; }
  33. if (self->has_arguments()) { throw ArgumentMixingError(); }
  34. self->action_descriptions.emplace(name, description);
  35. return false;
  36. }
  37. }
  38. namespace program {
  39. template <typename Impl>
  40. template <typename T>
  41. Arguments<Impl>::Argument::operator T() const {
  42. if (!primed()) {
  43. return T();
  44. } else if (self->arguments.size() > index) {
  45. return convert<T>(name, self->arguments.at(index));
  46. }
  47. throw IllegalPositionError("No argument provided", index);
  48. }
  49. template <typename Impl> Arguments<Impl>::Argument::operator bool() const {
  50. return primed() && self->arguments.size() > index;
  51. }
  52. template <typename Impl>
  53. template <typename T>
  54. auto Arguments<Impl>::Argument::operator=(T && value) {
  55. is_optional = true;
  56. if (description.size()) {
  57. using ::program::to_string;
  58. description += "\n Default Value: " + to_string(value);
  59. }
  60. return WithDefault<Argument, T>{*this, std::forward<T>(value)};
  61. }
  62. template <typename Impl> bool Arguments<Impl>::Argument::primed() const {
  63. if (self->primed_) { return true; }
  64. if (self->has_actions()) { throw ArgumentMixingError(); }
  65. if (is_optional) {
  66. self->optional_from = std::min(self->optional_from, index);
  67. } else if (self->optional_from < index) {
  68. throw ArgumentStructureError{"Required positional after optional", name};
  69. }
  70. if (!self->argument_names.emplace(index, name).second) {
  71. throw IllegalPositionError("Duplicate positional", index);
  72. }
  73. self->argument_descriptions.emplace(name, description);
  74. return false;
  75. }
  76. }
  77. namespace program {
  78. template <typename Impl>
  79. template <typename T>
  80. Arguments<Impl>::Flag::operator T() const {
  81. return primed(false) ? static_cast<T>(self->flags.at(name)) : T();
  82. }
  83. template <typename Impl> Arguments<Impl>::Flag::operator bool() const {
  84. return primed(true) ? static_cast<bool>(self->flags.at(name)) : default_value;
  85. }
  86. template <typename Impl> auto Arguments<Impl>::Flag::operator=(bool && value) {
  87. if (description.size()) {
  88. description += "\n Default Value: ";
  89. description += (value ? "true" : "false");
  90. }
  91. default_value = value;
  92. return *this;
  93. }
  94. template <typename Impl> bool Arguments<Impl>::Flag::primed(bool inv) const {
  95. if (self->primed_) { return self->flags.count(name); }
  96. std::vector<std::string> aliases;
  97. if (name.size() > 1 && inv) { aliases.push_back("no-" + name); }
  98. self->add_options(name, abbrev, description, aliases);
  99. self->flag_names.emplace(name);
  100. return false;
  101. }
  102. }
  103. namespace program {
  104. template <typename Impl>
  105. template <typename T>
  106. Arguments<Impl>::Option::operator T() const {
  107. return (*this) ? convert<T>(name, self->options.at(name)) : T();
  108. }
  109. template <typename Impl> Arguments<Impl>::Option::operator bool() const {
  110. return primed() && self->options.count(name);
  111. }
  112. template <typename Impl>
  113. template <typename T>
  114. auto Arguments<Impl>::Option::operator=(T && value) {
  115. if (description.size()) {
  116. using ::program::to_string;
  117. description += "\n Default Value: " + to_string(value);
  118. }
  119. return WithDefault<Option, T>{*this, std::forward<T>(value)};
  120. }
  121. template <typename Impl>
  122. template <typename T>
  123. auto Arguments<Impl>::Option::operator=(std::initializer_list<T> value) {
  124. if (description.size()) {
  125. using ::program::to_string;
  126. description += "\n Default Value: " + to_string(value);
  127. }
  128. return WithDefault<Option, std::initializer_list<T>>{*this, value};
  129. }
  130. template <typename Impl> bool Arguments<Impl>::Option::primed() const {
  131. if (self->primed_) { return true; }
  132. self->add_options(name, abbrev, description);
  133. return false;
  134. }
  135. }
  136. namespace program {
  137. template <typename Impl>
  138. template <typename B, typename V>
  139. template <typename T>
  140. Arguments<Impl>::WithDefault<B, V>::operator T() const {
  141. if (impl) { return impl; }
  142. if constexpr (std::is_invocable_r<T, V>{}) {
  143. return T(default_value());
  144. } else {
  145. return T{default_value};
  146. }
  147. }
  148. }
  149. namespace program {
  150. template <typename Impl>
  151. template <typename T>
  152. Arguments<Impl>::Arguments(int argc, char const * const * const argv,
  153. T const * parent) {
  154. Impl generator(parent);
  155. *this = static_cast<Arguments const &>(generator);
  156. if (argument_names.size() &&
  157. argument_names.rbegin()->first != argument_names.size() - 1) {
  158. throw IllegalPositionError("Higher positional than number recorded",
  159. argument_names.rbegin()->first);
  160. }
  161. primed_ = true;
  162. program = argv[0];
  163. for (size_t i = 1; i < argc; ++i) {
  164. std::string arg = argv[i];
  165. char const * const next = argv[i + 1];
  166. char abbrev = arg[1];
  167. if (arg == "--help") {
  168. usage();
  169. PROGRAM_ARGS_EXIT(0);
  170. } else if (arg == "--") {
  171. arguments.insert(arguments.end(), &next, &argv[argc]);
  172. break;
  173. } else if (auto hook = actions[arg]) {
  174. main_callback = hook(argc - i, argv + i);
  175. return;
  176. } else if (arg == "help" && next && actions[next]) {
  177. char const * const help[] = {next, "--help"};
  178. main_callback = actions[next](2, help);
  179. return;
  180. } else if (arg[0] != '-') {
  181. arguments.emplace_back(arg);
  182. } else if (is_flag(arg)) {
  183. if (arg.substr(0, 5) == "--no-") {
  184. flags[id(arg)] = 0;
  185. } else {
  186. ++flags[id(arg)];
  187. }
  188. } else if (is_option(arg)) {
  189. options[id(arg)].emplace_back(argv[++i]);
  190. } else if (is_flag(abbrev) && arg.find_last_not_of("0123456789") == 1) {
  191. flags[id(abbrev)] = std::stoi(arg.substr(2));
  192. } else if (is_flag(abbrev)) {
  193. for (auto c : arg.substr(1)) {
  194. if (!is_flag(c)) { throw NotAnArgumentError({'-', c}); }
  195. ++flags[id(c)];
  196. }
  197. } else if (is_option(abbrev)) {
  198. options[id(abbrev)].emplace_back(arg.substr(2));
  199. } else {
  200. throw NotAnArgumentError(arg);
  201. }
  202. }
  203. }
  204. template <typename Impl> void Arguments<Impl>::usage() const {
  205. std::cout << program << " [options...]";
  206. for (auto & [index, name] : argument_names) {
  207. std::cout << " " << (index == optional_from ? "[" : "") << name;
  208. }
  209. if (rest_name.size()) { std::cout << " [" << rest_name << "...]"; }
  210. if (optional_from != no_optional_args) { std::cout << "]"; }
  211. std::cout << "\nArgument Arguments:\n";
  212. for (auto & [name, desc] : argument_descriptions) {
  213. std::cout << " " << name << ": " << desc << "\n";
  214. }
  215. std::cout << "Options:\n";
  216. for (auto & [opt, desc] : option_descriptions) {
  217. std::cout << " " << opt << ": " << desc << "\n";
  218. }
  219. }
  220. template <typename Impl>
  221. void Arguments<Impl>::add_options(std::string const & name, char abbrev,
  222. std::string const & description,
  223. std::vector<std::string> aliases) {
  224. for (auto & str : aliases) {
  225. str = "--" + str;
  226. }
  227. if (name.size() > 1) { aliases.push_back("--" + name); }
  228. if (abbrev) { aliases.push_back(std::string{'-', abbrev}); }
  229. for (auto & str : aliases) {
  230. if (!option_names.emplace(str, name).second) {
  231. throw ArgumentStructureError("Duplicate option string", str);
  232. }
  233. }
  234. option_descriptions.emplace(join(",", aliases), description);
  235. }
  236. template <typename Impl>
  237. auto Arguments<Impl>::id(std::string const & arg) const -> option_id {
  238. if (!is_option(arg)) { throw NotAnArgumentError(arg); }
  239. return option_names.at(arg);
  240. }
  241. template <typename Impl>
  242. bool Arguments<Impl>::is_option(std::string const & arg) const {
  243. return option_names.count(arg);
  244. }
  245. template <typename Impl>
  246. bool Arguments<Impl>::is_flag(std::string const & arg) const {
  247. return is_option(arg) && flag_names.count(id(arg));
  248. }
  249. template <typename Impl>
  250. auto Arguments<Impl>::action(LongArg name, std::string const & description) {
  251. return Action{this, name, description};
  252. }
  253. template <typename Impl>
  254. auto Arguments<Impl>::argument(size_t index, LongArg name,
  255. std::string const & description) {
  256. return Argument{this, index, false, name, description};
  257. }
  258. template <typename Impl>
  259. std::vector<std::string>
  260. Arguments<Impl>::rest(LongArg name, std::string const & description) {
  261. if (has_actions()) { throw ArgumentMixingError(); }
  262. if (!rest_name.empty() && rest_name != name.str) {
  263. throw ArgumentStructureError("duplicate rest() parameter", name);
  264. }
  265. rest_name = name;
  266. argument_descriptions.emplace(name, description);
  267. size_t const i = std::min(arguments.size(), argument_names.size());
  268. return {arguments.begin() + i, arguments.end()};
  269. }
  270. template <typename Impl>
  271. auto Arguments<Impl>::flag(LongArg name, std::string const & description) {
  272. return Flag{this, name, 0, description, false};
  273. }
  274. template <typename Impl>
  275. auto Arguments<Impl>::flag(LongArg name, char abbrev,
  276. std::string const & description) {
  277. return Flag{this, name, abbrev, description, false};
  278. }
  279. template <typename Impl>
  280. auto Arguments<Impl>::flag(char abbrev, std::string const & description) {
  281. return Flag{this, {abbrev}, abbrev, description, false};
  282. }
  283. template <typename Impl>
  284. auto Arguments<Impl>::option(LongArg name, std::string const & description) {
  285. return Option{this, name, 0, description};
  286. }
  287. template <typename Impl>
  288. auto Arguments<Impl>::option(LongArg name, char abbrev,
  289. std::string const & description) {
  290. return Option{this, name, abbrev, description};
  291. }
  292. template <typename Impl>
  293. auto Arguments<Impl>::option(char abbrev, std::string const & description) {
  294. return Option{this, {abbrev}, abbrev, description};
  295. }
  296. }