util.hpp 11 KB

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  1. #ifndef UTIL_HPP
  2. #define UTIL_HPP
  3. #pragma GCC system_header
  4. #include <QDebug>
  5. #include <QQueue>
  6. #include <QString>
  7. #include <QVector>
  8. #include <charconv>
  9. #include <string>
  10. #include <utility>
  11. #include <vector>
  12. #include "rapidjson/document.h"
  13. #include "rapidjson/pointer.h"
  14. #include "rapidjson/prettywriter.h"
  15. #include "rapidjson/stringbuffer.h"
  16. #include "rapidjson/writer.h"
  17. namespace Kontainer {
  18. /** Reverse Iterator */
  19. template <class T>
  20. class ReverseIterator {
  21. T& _obj;
  22. public:
  23. ReverseIterator(T &obj) : _obj(obj) {}
  24. auto begin() {return _obj.rbegin();}
  25. auto end() {return _obj.rend();}
  26. };
  27. } // namespace Kontainer
  28. enum FileType {
  29. VIDEO = 1,
  30. IMAGE = 2
  31. };
  32. struct KFileData {
  33. FileType type;
  34. QString name;
  35. QByteArray bytes;
  36. };
  37. // struct Task {
  38. // QVector<KFileData> files;
  39. // std::vector<std::string> args;
  40. // int mask;
  41. //};
  42. typedef QQueue<Task> TaskQueue;
  43. namespace {
  44. using namespace rapidjson;
  45. typedef std::string KOperation;
  46. typedef std::vector<std::pair<std::string, std::string>> TupVec;
  47. typedef std::vector<std::map<int, std::string>> MapVec;
  48. typedef std::vector<std::string> StdStringVec;
  49. typedef std::map<int, std::string> CommandMap;
  50. typedef std::map<QString, QString> ConfigJson;
  51. struct KSession {
  52. int id;
  53. int fd;
  54. int status;
  55. };
  56. static QString escapeText(QString s) {
  57. s.replace("\t", "\\t");
  58. s.replace('"', "\\\"");
  59. s.replace("'", "'\"\'\"'");
  60. return s;
  61. }
  62. static QString escapeMessage(QString s) {
  63. s.replace("\t", "\\t");
  64. s.replace('"', "\\\"");
  65. s.replace("'", "\'");
  66. return s;
  67. }
  68. static QString escapeTextToRaw(QString s) {
  69. return escapeText(s).toUtf8().constData();
  70. }
  71. /**
  72. * @brief configValue
  73. * @param key [in] {QString} The key whose corresponding value is to be sought
  74. * from the ConfigJson param
  75. * @param [in] {ConfigJson} A Key-Value JSON Config object
  76. * @return {QString} The value which corresonds to the key, or an empty string
  77. *
  78. * TODO: ConfigJson should probably be called something else, like
  79. * ConfigJsonObject
  80. */
  81. QString configValue(QString key, ConfigJson config) {
  82. ConfigJson::iterator it{config.find(key)}; // Find iterator to element matching key
  83. if (it != std::end(config)) { // If element was found
  84. return it->second; // Return the value of the Key-Pair element
  85. }
  86. return "";
  87. }
  88. bool configBoolValue(QString s, ConfigJson config) {
  89. if (auto it{config.find(s)}; it != std::end(config)) {
  90. return bool{it->second == "true"};
  91. }
  92. }
  93. std::string getJsonString(std::string s) {
  94. Document d;
  95. d.Parse(s.c_str());
  96. StringBuffer buffer;
  97. PrettyWriter<StringBuffer> writer(buffer);
  98. d.Accept(writer);
  99. return buffer.GetString();
  100. }
  101. std::string createMessage(const char* data, std::string args = "") {
  102. StringBuffer s;
  103. Writer<StringBuffer> w(s);
  104. w.StartObject();
  105. w.Key("type");
  106. w.String("custom");
  107. w.Key("message");
  108. w.String(data);
  109. w.Key("args");
  110. w.String(args.c_str());
  111. w.EndObject();
  112. return s.GetString();
  113. }
  114. bool isOperation(const char* data) {
  115. Document d;
  116. d.Parse(data);
  117. return strcmp(d["type"].GetString(), "operation") == 0;
  118. }
  119. bool isUploadCompleteEvent(const char* event) {
  120. return strcmp(event, "File Transfer Complete") == 0;
  121. }
  122. bool isEvent(const char* data) {
  123. Document d;
  124. d.Parse(data);
  125. return strcmp(d["type"].GetString(), "event") == 0;
  126. }
  127. template <typename T>
  128. bool isKEvent(T event, const char* kEvent) {
  129. if constexpr (std::is_same_v<T, std::string>) {
  130. return strcmp(event.c_str(), kEvent) == 0;
  131. } else if constexpr (std::is_same_v<T, QString>) {
  132. return strcmp(event.toUtf8(), kEvent) == 0;
  133. } else {
  134. return strcmp(event, kEvent) == 0;
  135. }
  136. }
  137. bool isPong(const char* data) {
  138. return strcmp(data, "PONG") == 0;
  139. }
  140. // TODO: This should be "message", no?
  141. bool isMessage(const char* data) {
  142. Document d;
  143. d.Parse(data);
  144. if (d.HasMember("message")) {
  145. return true;
  146. } else {
  147. return false;
  148. }
  149. }
  150. std::string createOperation(const char* op, std::vector<std::string> args) {
  151. StringBuffer s;
  152. Writer<StringBuffer, Document::EncodingType, ASCII<>> w(s);
  153. w.StartObject();
  154. w.Key("type");
  155. w.String("operation");
  156. w.Key("command");
  157. w.String(op);
  158. w.Key("args");
  159. w.StartArray();
  160. if (!args.empty()) {
  161. for (const auto& arg : args) {
  162. w.String(arg.c_str());
  163. }
  164. }
  165. w.EndArray();
  166. w.EndObject();
  167. return s.GetString();
  168. }
  169. std::string getOperation(const char* data) {
  170. Document d;
  171. d.Parse(data);
  172. if (d.HasMember("command")) {
  173. return d["command"].GetString();
  174. }
  175. return "";
  176. }
  177. QString getEvent(const char* data) {
  178. Document d;
  179. d.Parse(data);
  180. if (d.HasMember("event")) {
  181. return d["event"].GetString();
  182. }
  183. return "";
  184. }
  185. QString getMessage(const char* data) {
  186. Document d;
  187. d.Parse(data);
  188. if (d.HasMember("message")) {
  189. return d["message"].GetString();
  190. }
  191. return "";
  192. }
  193. QVector<QString> getShortArgs(const char* data) {
  194. Document d;
  195. d.Parse(data);
  196. QVector<QString> args{};
  197. if (d.HasMember("args")) {
  198. if (d["args"].IsArray()) {
  199. for (const auto& m : d["args"].GetArray()) {
  200. if (m.GetStringLength() < 100) {
  201. args.push_back(m.GetString());
  202. }
  203. }
  204. } else {
  205. for (const auto& m : d["args"].GetObject()) {
  206. QString arg = m.name.GetString();
  207. arg += ": ";
  208. arg += m.value.GetString();
  209. args.push_back(arg);
  210. }
  211. }
  212. }
  213. return args;
  214. }
  215. QVector<QString> getArgs(const char* data) {
  216. Document d;
  217. d.Parse(data);
  218. QVector<QString> args{};
  219. if (d.HasMember("args")) {
  220. for (const auto& m : d["args"].GetArray()) {
  221. args.push_back(m.GetString());
  222. }
  223. }
  224. return args;
  225. }
  226. QList<QString> getValueArgs(const char* data, QString key) {
  227. auto key_value = key.toUtf8();
  228. Document d;
  229. d.Parse(data);
  230. QList<QString> args{};
  231. for (const auto& m : d.GetObject()) {
  232. auto name = m.name.GetString();
  233. if (name == key.toUtf8()) {
  234. if (m.value.IsArray()) {
  235. for (const auto& a : m.value.GetArray()) {
  236. args.push_back(a.GetString());
  237. }
  238. }
  239. }
  240. }
  241. return args;
  242. }
  243. CommandMap getArgMap(const char* data) {
  244. Document d;
  245. d.Parse(data);
  246. CommandMap cm{};
  247. if (d.HasMember("args")) {
  248. for (const auto& m : d["args"].GetObject()) {
  249. cm.emplace(std::stoi(m.name.GetString()), m.value.GetString());
  250. }
  251. }
  252. return cm;
  253. }
  254. ConfigJson getConfigObject(QString json_string) {
  255. Document d;
  256. d.Parse(json_string.toUtf8());
  257. StringBuffer buffer;
  258. Writer<StringBuffer> writer(buffer);
  259. std::map<QString, QString> config_map{};
  260. if (d.IsObject()) {
  261. for (const auto& m : d.GetObject()) {
  262. auto type = m.value.GetType();
  263. if (m.value.GetType() == kStringType) {
  264. config_map.emplace(m.name.GetString(), m.value.GetString());
  265. }
  266. if (m.value.GetType() == kObjectType) {
  267. m.value.Accept(writer);
  268. QString config_value{buffer.GetString()};
  269. config_map.emplace(m.name.GetString(), config_value);
  270. }
  271. }
  272. }
  273. return config_map;
  274. }
  275. std::string createMessage(const char* data,
  276. std::map<int, std::string> map = {}) {
  277. StringBuffer s;
  278. Writer<StringBuffer> w(s);
  279. w.StartObject();
  280. w.Key("type");
  281. w.String("custom");
  282. w.Key("message");
  283. w.String(data);
  284. w.Key("args");
  285. w.StartObject();
  286. if (!map.empty()) {
  287. for (const auto& [k, v] : map) {
  288. w.Key(std::to_string(k).c_str());
  289. w.String(v.c_str());
  290. }
  291. }
  292. w.EndObject();
  293. w.EndObject();
  294. return s.GetString();
  295. }
  296. std::string createMessage(const char* data, std::map<int, std::vector<std::string>> map = {}) {
  297. StringBuffer s;
  298. Writer<StringBuffer> w(s);
  299. w.StartObject();
  300. w.Key("type");
  301. w.String("custom");
  302. w.Key("message");
  303. w.String(data);
  304. w.Key("args");
  305. w.StartObject();
  306. if (!map.empty()) {
  307. for (const auto& [k, v] : map) {
  308. w.Key(std::to_string(k).c_str());
  309. if (!v.empty()) {
  310. w.StartArray();
  311. for (const auto& arg : v) {
  312. w.String(arg.c_str());
  313. }
  314. w.EndArray();
  315. }
  316. }
  317. }
  318. w.EndObject();
  319. w.EndObject();
  320. return s.GetString();
  321. }
  322. std::string rapidCreateMessage(const char* data,
  323. std::map<int, std::string> map = {}) {
  324. StringBuffer s;
  325. Writer<StringBuffer> w(s);
  326. w.StartObject();
  327. w.Key("type");
  328. w.String("custom");
  329. w.Key("message");
  330. w.String(data);
  331. w.Key("args");
  332. w.StartObject();
  333. if (!map.empty()) {
  334. for (const auto& [k, v] : map) {
  335. w.Key(std::to_string(k).c_str());
  336. w.String(v.c_str());
  337. }
  338. }
  339. w.EndObject();
  340. w.EndObject();
  341. return s.GetString();
  342. }
  343. bool isStartOperation(const char* data) {
  344. Document d;
  345. d.Parse(data);
  346. return strcmp(d["command"].GetString(), "start") == 0;
  347. }
  348. bool isStopOperation(const char* data) {
  349. Document d;
  350. d.Parse(data);
  351. return strcmp(d["command"].GetString(), "stop") == 0;
  352. }
  353. bool isNewSession(const char* data) {
  354. Document d;
  355. d.Parse(data);
  356. if (d.IsObject() && d.HasMember("message")) {
  357. return strcmp(d["message"].GetString(), "New Session") == 0;
  358. }
  359. return false;
  360. }
  361. bool serverWaitingForFile(const char* data) {
  362. Document d;
  363. d.Parse(data);
  364. if (d.IsObject() && d.HasMember("message")) {
  365. return strcmp(d["message"].GetString(), "File Ready") == 0;
  366. }
  367. return false;
  368. }
  369. // std::string stringTupleVecToJson(
  370. // std::vector<std::pair<std::string, std::string>> v) {
  371. // json j{};
  372. // for (const auto& row : v) {
  373. // j[row.first] = row.second;
  374. // }
  375. // return j;
  376. //}
  377. inline size_t findNullIndex(uint8_t* data) {
  378. size_t index = 0;
  379. while (data) {
  380. if (strcmp(const_cast<const char*>((char*)data), "\0") == 0) {
  381. break;
  382. }
  383. index++;
  384. data++;
  385. }
  386. return index;
  387. }
  388. namespace FileUtils {
  389. QString generatePreview(QString video_path, QString video_name) {
  390. QString preview_name =
  391. video_name.left(video_name.size() - 4) + "-preview.jpg";
  392. QString command{
  393. "ffmpeg -y -ss 0 -i '" + video_path +
  394. "' -vf \"scale=w=640:h=640:force_original_aspect_ratio=decrease\" "
  395. "-vframes 1 './assets/previews/" +
  396. preview_name + "'"};
  397. std::system(command.toUtf8());
  398. return preview_name;
  399. }
  400. }; // namespace FileUtils
  401. } // namespace
  402. #endif // UTIL_HPP