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  1. /**
  2. * @file TinyWiFiClientESP8266.h
  3. * @author Volodymyr Shymanskyy
  4. * @license LGPL-3.0
  5. * @copyright Copyright (c) 2016 Volodymyr Shymanskyy
  6. * @date Nov 2016
  7. */
  8. #ifndef TinyWiFiClientESP8266_h
  9. #define TinyWiFiClientESP8266_h
  10. //#define TINY_GSM_DEBUG Serial
  11. #if !defined(TINY_GSM_RX_BUFFER)
  12. #define TINY_GSM_RX_BUFFER 256
  13. #endif
  14. #include <TinyGsmCommon.h>
  15. #define GSM_NL "\r\n"
  16. static const char GSM_OK[] TINY_GSM_PROGMEM = "OK" GSM_NL;
  17. static const char GSM_ERROR[] TINY_GSM_PROGMEM = "ERROR" GSM_NL;
  18. static unsigned int TCP_KEEP_ALIVE = 120;
  19. class TinyGsm
  20. {
  21. public:
  22. TinyGsm(Stream& stream)
  23. : stream(stream)
  24. {}
  25. public:
  26. class GsmClient : public Client
  27. {
  28. friend class TinyGsm;
  29. typedef TinyGsmFifo<uint8_t, TINY_GSM_RX_BUFFER> RxFifo;
  30. public:
  31. GsmClient() {}
  32. GsmClient(TinyGsm& modem, uint8_t mux = 1) {
  33. init(&modem, mux);
  34. }
  35. bool init(TinyGsm* modem, uint8_t mux = 1) {
  36. this->at = modem;
  37. this->mux = mux;
  38. sock_connected = false;
  39. at->sockets[mux] = this;
  40. return true;
  41. }
  42. public:
  43. virtual int connect(const char *host, uint16_t port) {
  44. TINY_GSM_YIELD();
  45. rx.clear();
  46. sock_connected = at->modemConnect(host, port, mux);
  47. return sock_connected;
  48. }
  49. virtual int connect(IPAddress ip, uint16_t port) {
  50. String host; host.reserve(16);
  51. host += ip[0];
  52. host += ".";
  53. host += ip[1];
  54. host += ".";
  55. host += ip[2];
  56. host += ".";
  57. host += ip[3];
  58. return connect(host.c_str(), port);
  59. }
  60. virtual void stop() {
  61. TINY_GSM_YIELD();
  62. at->sendAT(GF("+CIPCLOSE="), mux);
  63. sock_connected = false;
  64. at->waitResponse();
  65. at->waitResponse();
  66. }
  67. virtual size_t write(const uint8_t *buf, size_t size) {
  68. TINY_GSM_YIELD();
  69. //at->maintain();
  70. return at->modemSend(buf, size, mux);
  71. }
  72. virtual size_t write(uint8_t c) {
  73. return write(&c, 1);
  74. }
  75. virtual int available() {
  76. TINY_GSM_YIELD();
  77. if (!rx.size()) {
  78. at->maintain();
  79. }
  80. return rx.size();
  81. }
  82. virtual int read(uint8_t *buf, size_t size) {
  83. TINY_GSM_YIELD();
  84. size_t cnt = 0;
  85. while (cnt < size) {
  86. size_t chunk = TinyGsmMin(size-cnt, rx.size());
  87. if (chunk > 0) {
  88. rx.get(buf, chunk);
  89. buf += chunk;
  90. cnt += chunk;
  91. continue;
  92. }
  93. // TODO: Read directly into user buffer?
  94. if (!rx.size()) {
  95. at->maintain();
  96. //break;
  97. }
  98. }
  99. return cnt;
  100. }
  101. virtual int read() {
  102. uint8_t c;
  103. if (read(&c, 1) == 1) {
  104. return c;
  105. }
  106. return -1;
  107. }
  108. virtual int peek() { return -1; } //TODO
  109. virtual void flush() { at->stream.flush(); }
  110. virtual uint8_t connected() {
  111. if (available()) {
  112. return true;
  113. }
  114. return sock_connected;
  115. }
  116. virtual operator bool() { return connected(); }
  117. private:
  118. TinyGsm* at;
  119. uint8_t mux;
  120. bool sock_connected;
  121. RxFifo rx;
  122. };
  123. public:
  124. /*
  125. * Basic functions
  126. */
  127. bool begin() {
  128. return init();
  129. }
  130. bool init() {
  131. if (!autoBaud()) {
  132. return false;
  133. }
  134. return true;
  135. }
  136. bool autoBaud(unsigned long timeout = 10000L) {
  137. for (unsigned long start = millis(); millis() - start < timeout; ) {
  138. sendAT(GF("E0"));
  139. if (waitResponse(200) == 1) {
  140. delay(100);
  141. return true;
  142. }
  143. delay(100);
  144. }
  145. return false;
  146. }
  147. void maintain() {
  148. //while (stream.available()) {
  149. waitResponse(10, NULL, NULL);
  150. //}
  151. }
  152. bool factoryDefault() {
  153. sendAT(GF("+RESTORE"));
  154. return waitResponse() == 1;
  155. }
  156. /*
  157. * Power functions
  158. */
  159. bool restart() {
  160. if (!autoBaud()) {
  161. return false;
  162. }
  163. sendAT(GF("+RST"));
  164. if (waitResponse(10000L) != 1) {
  165. return false;
  166. }
  167. if (waitResponse(10000L, GF(GSM_NL "ready" GSM_NL)) != 1) {
  168. return false;
  169. }
  170. delay(500);
  171. return autoBaud();
  172. }
  173. /*
  174. * SIM card functions
  175. */
  176. /*
  177. * Generic network functions
  178. */
  179. int getSignalQuality() {
  180. sendAT(GF("+CWJAP_CUR?"));
  181. int res1 = waitResponse(GF("No AP"), GF("+CWJAP_CUR:"));
  182. if (res1 != 2){
  183. waitResponse();
  184. return 0;
  185. }
  186. streamSkipUntil(','); // Skip SSID
  187. streamSkipUntil(','); // Skip BSSID/MAC address
  188. streamSkipUntil(','); // Skip Chanel number
  189. int res2 = stream.parseInt(); // Read RSSI
  190. DBG(res2);
  191. waitResponse();
  192. return res2;
  193. }
  194. bool waitForNetwork(unsigned long timeout = 60000L) {
  195. for (unsigned long start = millis(); millis() - start < timeout; ) {
  196. sendAT(GF("+CIPSTATUS"));
  197. int res1 = waitResponse(3000, GF("busy p..."), GF("STATUS:"));
  198. if (res1 == 2){
  199. int res2 = waitResponse(GFP(GSM_ERROR), GF("2"), GF("3"), GF("4"), GF("5"));
  200. if (res2 == 2 || res2 == 3 || res2 == 4) return true;
  201. }
  202. // <stat> status of ESP8266 station interface
  203. // 2 : ESP8266 station connected to an AP and has obtained IP
  204. // 3 : ESP8266 station created a TCP or UDP transmission
  205. // 4 : the TCP or UDP transmission of ESP8266 station disconnected (but AP is connected)
  206. // 5 : ESP8266 station did NOT connect to an AP
  207. delay(1000);
  208. }
  209. return false;
  210. }
  211. /*
  212. * WiFi functions
  213. */
  214. bool networkConnect(const char* ssid, const char* pwd) {
  215. sendAT(GF("+CIPMUX=1"));
  216. if (waitResponse() != 1) {
  217. return false;
  218. }
  219. sendAT(GF("+CWMODE_CUR=1"));
  220. if (waitResponse() != 1) {
  221. return false;
  222. }
  223. sendAT(GF("+CWJAP_CUR=\""), ssid, GF("\",\""), pwd, GF("\""));
  224. if (waitResponse(30000L, GFP(GSM_OK), GF(GSM_NL "FAIL" GSM_NL)) != 1) {
  225. return false;
  226. }
  227. return true;
  228. }
  229. bool networkDisconnect() {
  230. sendAT(GF("+CWQAP"));
  231. return waitResponse(10000L) == 1;
  232. }
  233. /*
  234. * GPRS functions
  235. */
  236. bool gprsConnect(const char* apn, const char* user, const char* pwd) {
  237. return false;
  238. }
  239. bool gprsDisconnect() {
  240. return false;
  241. }
  242. private:
  243. int modemConnect(const char* host, uint16_t port, uint8_t mux) {
  244. sendAT(GF("+CIPSTART="), mux, ',', GF("\"TCP"), GF("\",\""), host, GF("\","), port, GF(","), TCP_KEEP_ALIVE);
  245. int rsp = waitResponse(75000L,
  246. GFP(GSM_OK),
  247. GFP(GSM_ERROR),
  248. GF(GSM_NL "ALREADY CONNECT" GSM_NL));
  249. waitResponse(100, GF("1,CONNECT"));
  250. return (1 == rsp);
  251. }
  252. int modemSend(const void* buff, size_t len, uint8_t mux) {
  253. sendAT(GF("+CIPSEND="), mux, ',', len);
  254. if (waitResponse(GF(">")) != 1) {
  255. return -1;
  256. }
  257. stream.write((uint8_t*)buff, len);
  258. if (waitResponse(GF(GSM_NL "SEND OK" GSM_NL)) != 1) {
  259. return -1;
  260. }
  261. return len;
  262. }
  263. bool modemGetConnected(uint8_t mux) {
  264. sendAT(GF("+CIPSTATUS="), mux);
  265. int res = waitResponse(GF(",\"CONNECTED\""), GF(",\"CLOSED\""), GF(",\"CLOSING\""), GF(",\"INITIAL\""));
  266. waitResponse();
  267. return 1 == res;
  268. }
  269. /* Private Utilities */
  270. template<typename T>
  271. void streamWrite(T last) {
  272. stream.print(last);
  273. }
  274. template<typename T, typename... Args>
  275. void streamWrite(T head, Args... tail) {
  276. stream.print(head);
  277. streamWrite(tail...);
  278. }
  279. int streamRead() { return stream.read(); }
  280. String streamReadUntil(char c) {
  281. String return_string = stream.readStringUntil(c);
  282. return_string.trim();
  283. if (String(c) == GSM_NL || String(c) == "\n"){
  284. DBG(return_string, c, " ");
  285. } else DBG(return_string, c);
  286. return return_string;
  287. }
  288. bool streamSkipUntil(char c) {
  289. String skipped = stream.readStringUntil(c);
  290. skipped.trim();
  291. if (skipped.length()) {
  292. if (String(c) == GSM_NL || String(c) == "\n"){
  293. DBG(skipped, c, " ");
  294. } else DBG(skipped, c);
  295. return true;
  296. } else return false;
  297. }
  298. template<typename... Args>
  299. void sendAT(Args... cmd) {
  300. streamWrite("AT", cmd..., GSM_NL);
  301. stream.flush();
  302. TINY_GSM_YIELD();
  303. DBG(GSM_NL, ">>> AT", cmd...);
  304. }
  305. // TODO: Optimize this!
  306. uint8_t waitResponse(uint32_t timeout, String& data,
  307. GsmConstStr r1=GFP(GSM_OK), GsmConstStr r2=GFP(GSM_ERROR),
  308. GsmConstStr r3=NULL, GsmConstStr r4=NULL, GsmConstStr r5=NULL)
  309. {
  310. /*String r1s(r1); r1s.trim();
  311. String r2s(r2); r2s.trim();
  312. String r3s(r3); r3s.trim();
  313. String r4s(r4); r4s.trim();
  314. String r5s(r5); r5s.trim();
  315. DBG("### ..:", r1s, ",", r2s, ",", r3s, ",", r4s, ",", r5s);*/
  316. data.reserve(64);
  317. bool gotData = false;
  318. int mux = -1;
  319. int len = 0;
  320. int index = 0;
  321. unsigned long startMillis = millis();
  322. do {
  323. TINY_GSM_YIELD();
  324. while (stream.available() > 0) {
  325. int a = streamRead();
  326. if (a <= 0) continue; // Skip 0x00 bytes, just in case
  327. data += (char)a;
  328. if (r1 && data.endsWith(r1)) {
  329. index = 1;
  330. goto finish;
  331. } else if (r2 && data.endsWith(r2)) {
  332. index = 2;
  333. goto finish;
  334. } else if (r3 && data.endsWith(r3)) {
  335. index = 3;
  336. goto finish;
  337. } else if (r4 && data.endsWith(r4)) {
  338. index = 4;
  339. goto finish;
  340. } else if (r5 && data.endsWith(r5)) {
  341. index = 5;
  342. goto finish;
  343. } else if (data.endsWith(GF(GSM_NL "+IPD,"))) {
  344. mux = stream.readStringUntil(',').toInt();
  345. data += mux;
  346. data += (',');
  347. len = stream.readStringUntil(':').toInt();
  348. data += len;
  349. data += (':');
  350. gotData = true;
  351. index = 6;
  352. goto finish;
  353. } else if (data.endsWith(GF("1,CLOSED" GSM_NL))) { //TODO: use mux
  354. sockets[1]->sock_connected = false;
  355. index = 7;
  356. goto finish;
  357. }
  358. }
  359. } while (millis() - startMillis < timeout);
  360. finish:
  361. if (!index) {
  362. data.trim();
  363. if (data.length()) {
  364. DBG(GSM_NL, "### Unhandled:", data);
  365. }
  366. }
  367. else {
  368. data.trim();
  369. data.replace(GSM_NL GSM_NL, GSM_NL);
  370. data.replace(GSM_NL, GSM_NL " ");
  371. if (data.length()) {
  372. DBG(GSM_NL, "<<< ", data);
  373. }
  374. }
  375. if (gotData) {
  376. int len_orig = len;
  377. if (len > sockets[mux]->rx.free()) {
  378. DBG(GSM_NL, "### Buffer overflow: ", len, "->", sockets[mux]->rx.free());
  379. } else {
  380. DBG(GSM_NL, "### Got: ", len, "->", sockets[mux]->rx.free());
  381. }
  382. while (len--) {
  383. TINY_GSM_YIELD();
  384. int r = stream.read();
  385. if (r <= 0) continue; // Skip 0x00 bytes, just in case
  386. sockets[mux]->rx.put((char)r);
  387. }
  388. if (len_orig > sockets[mux]->available()) {
  389. DBG(GSM_NL, "### Fewer characters received than expected: ", sockets[mux]->available(), " vs ", len_orig);
  390. }
  391. }
  392. return index;
  393. }
  394. uint8_t waitResponse(uint32_t timeout,
  395. GsmConstStr r1=GFP(GSM_OK), GsmConstStr r2=GFP(GSM_ERROR),
  396. GsmConstStr r3=NULL, GsmConstStr r4=NULL, GsmConstStr r5=NULL)
  397. {
  398. String data;
  399. return waitResponse(timeout, data, r1, r2, r3, r4, r5);
  400. }
  401. uint8_t waitResponse(GsmConstStr r1=GFP(GSM_OK), GsmConstStr r2=GFP(GSM_ERROR),
  402. GsmConstStr r3=NULL, GsmConstStr r4=NULL, GsmConstStr r5=NULL)
  403. {
  404. return waitResponse(1000, r1, r2, r3, r4, r5);
  405. }
  406. private:
  407. Stream& stream;
  408. GsmClient* sockets[5];
  409. };
  410. typedef TinyGsm::GsmClient TinyGsmClient;
  411. #endif