test

Fork of WizFi250Interface by WIZnet

Committer:
cliff1
Date:
Fri Aug 18 04:50:17 2017 +0000
Revision:
1:116433d24e91
Parent:
0:e3dc9e54a15b
Test 5.5

Who changed what in which revision?

UserRevisionLine numberNew contents of line
kaizen 0:e3dc9e54a15b 1 /* Copyright (C) 2013 gsfan, MIT License
kaizen 0:e3dc9e54a15b 2 *
kaizen 0:e3dc9e54a15b 3 * Permission is hereby granted, free of charge, to any person obtaining a copy of this software
kaizen 0:e3dc9e54a15b 4 * and associated documentation files (the "Software"), to deal in the Software without restriction,
kaizen 0:e3dc9e54a15b 5 * including without limitation the rights to use, copy, modify, merge, publish, distribute,
kaizen 0:e3dc9e54a15b 6 * sublicense, and/or sell copies of the Software, and to permit persons to whom the Software is
kaizen 0:e3dc9e54a15b 7 * furnished to do so, subject to the following conditions:
kaizen 0:e3dc9e54a15b 8 *
kaizen 0:e3dc9e54a15b 9 * The above copyright notice and this permission notice shall be included in all copies or
kaizen 0:e3dc9e54a15b 10 * substantial portions of the Software.
kaizen 0:e3dc9e54a15b 11 *
kaizen 0:e3dc9e54a15b 12 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR IMPLIED, INCLUDING
kaizen 0:e3dc9e54a15b 13 * BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
kaizen 0:e3dc9e54a15b 14 * NONINFRINGEMENT. IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,
kaizen 0:e3dc9e54a15b 15 * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM,
kaizen 0:e3dc9e54a15b 16 * OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
kaizen 0:e3dc9e54a15b 17 */
kaizen 0:e3dc9e54a15b 18 /* Copyright (C) 2014 Wiznet, MIT License
kaizen 0:e3dc9e54a15b 19 * port to the Wiznet Module WizFi250
kaizen 0:e3dc9e54a15b 20 */
kaizen 0:e3dc9e54a15b 21
kaizen 0:e3dc9e54a15b 22 #ifndef WIZFI250_H_
kaizen 0:e3dc9e54a15b 23 #define WIZFI250_H_
kaizen 0:e3dc9e54a15b 24
kaizen 0:e3dc9e54a15b 25 #include "WizFi250_conf.h"
kaizen 0:e3dc9e54a15b 26
kaizen 0:e3dc9e54a15b 27 #include "mbed.h"
kaizen 0:e3dc9e54a15b 28 #include "RawSerial.h"
kaizen 0:e3dc9e54a15b 29 #include "Serial.h"
kaizen 0:e3dc9e54a15b 30 #include "CBuffer.h"
kaizen 0:e3dc9e54a15b 31 #include <ctype.h>
kaizen 0:e3dc9e54a15b 32 #include <stdlib.h>
kaizen 0:e3dc9e54a15b 33 #include <string>
kaizen 0:e3dc9e54a15b 34
kaizen 0:e3dc9e54a15b 35 using namespace std;
kaizen 0:e3dc9e54a15b 36
kaizen 0:e3dc9e54a15b 37 #define BUF_SIZE 1600
kaizen 0:e3dc9e54a15b 38
kaizen 0:e3dc9e54a15b 39 //Debug is disabled by default
kaizen 0:e3dc9e54a15b 40 #if 1
kaizen 0:e3dc9e54a15b 41 #define WIZ_DBG(x, ...) std::printf("[WizFi250: DBG]" x "\r\n", ##__VA_ARGS__);
kaizen 0:e3dc9e54a15b 42 #define WIZ_WARN(x, ...) std::printf("[WizFi250: WARN]" x "\r\n", ##__VA_ARGS__);
kaizen 0:e3dc9e54a15b 43 #define WIZ_ERR(x, ...) std::printf("[WizFi250: ERR]" x "\r\n", ##__VA_ARGS__);
kaizen 0:e3dc9e54a15b 44 #define WIZ_INFO(x, ...) std::printf("[WizFi250: INFO]" x "\r\n", ##__VA_ARGS__);
kaizen 0:e3dc9e54a15b 45 #else
kaizen 0:e3dc9e54a15b 46 #define WIZ_DBG(x, ...)
kaizen 0:e3dc9e54a15b 47 #define WIZ_WARN(x, ...)
kaizen 0:e3dc9e54a15b 48 #define WIZ_ERR(x, ...)
kaizen 0:e3dc9e54a15b 49 #define WIZ_INFO(x, ...)
kaizen 0:e3dc9e54a15b 50 #endif
kaizen 0:e3dc9e54a15b 51
kaizen 0:e3dc9e54a15b 52
kaizen 0:e3dc9e54a15b 53 class WizFi250
kaizen 0:e3dc9e54a15b 54 {
kaizen 0:e3dc9e54a15b 55 public:
kaizen 0:e3dc9e54a15b 56
kaizen 0:e3dc9e54a15b 57 enum AntennaMode{
kaizen 0:e3dc9e54a15b 58 PCB = 0,
kaizen 0:e3dc9e54a15b 59 UFL = 1,
kaizen 0:e3dc9e54a15b 60 AUTO = 3,
kaizen 0:e3dc9e54a15b 61 };
kaizen 0:e3dc9e54a15b 62
kaizen 0:e3dc9e54a15b 63 enum WiFiMode {
kaizen 0:e3dc9e54a15b 64 WM_STATION = 0,
kaizen 0:e3dc9e54a15b 65 WM_AP = 1,
kaizen 0:e3dc9e54a15b 66 };
kaizen 0:e3dc9e54a15b 67
kaizen 0:e3dc9e54a15b 68 /** Wi-Fi security
kaizen 0:e3dc9e54a15b 69 */
kaizen 0:e3dc9e54a15b 70 enum Security {
kaizen 0:e3dc9e54a15b 71 // kaizen need to change
kaizen 0:e3dc9e54a15b 72 SEC_AUTO = 0,
kaizen 0:e3dc9e54a15b 73 SEC_OPEN = 1,
kaizen 0:e3dc9e54a15b 74 SEC_WEP = 2,
kaizen 0:e3dc9e54a15b 75 SEC_WPA_TKIP = 3,
kaizen 0:e3dc9e54a15b 76 SEC_WPA_AES = 4,
kaizen 0:e3dc9e54a15b 77 SEC_WPA2_AES = 5,
kaizen 0:e3dc9e54a15b 78 SEC_WPA2_TKIP = 6,
kaizen 0:e3dc9e54a15b 79 SEC_WPA2_MIXED = 7,
kaizen 0:e3dc9e54a15b 80 };
kaizen 0:e3dc9e54a15b 81
kaizen 0:e3dc9e54a15b 82 /** TCP/IP protocol
kaizen 0:e3dc9e54a15b 83 */
kaizen 0:e3dc9e54a15b 84 enum Protocol {
kaizen 0:e3dc9e54a15b 85 PROTO_UDP = 0,
kaizen 0:e3dc9e54a15b 86 PROTO_TCP = 1,
kaizen 0:e3dc9e54a15b 87 };
kaizen 0:e3dc9e54a15b 88
kaizen 0:e3dc9e54a15b 89 /** Client/Server
kaizen 0:e3dc9e54a15b 90 */
kaizen 0:e3dc9e54a15b 91 enum Type {
kaizen 0:e3dc9e54a15b 92 TYPE_CLIENT = 0,
kaizen 0:e3dc9e54a15b 93 TYPE_SERVER = 1,
kaizen 0:e3dc9e54a15b 94 };
kaizen 0:e3dc9e54a15b 95
kaizen 0:e3dc9e54a15b 96 enum Response {
kaizen 0:e3dc9e54a15b 97 RES_NULL,
kaizen 0:e3dc9e54a15b 98 RES_MACADDRESS,
kaizen 0:e3dc9e54a15b 99 RES_WJOIN,
kaizen 0:e3dc9e54a15b 100 RES_CONNECT,
kaizen 0:e3dc9e54a15b 101 RES_SSEND,
kaizen 0:e3dc9e54a15b 102 RES_FDNS,
kaizen 0:e3dc9e54a15b 103 RES_SMGMT,
kaizen 0:e3dc9e54a15b 104 RES_WSTATUS,
kaizen 0:e3dc9e54a15b 105 };
kaizen 0:e3dc9e54a15b 106
kaizen 0:e3dc9e54a15b 107 enum Mode {
kaizen 0:e3dc9e54a15b 108 MODE_COMMAND,
kaizen 0:e3dc9e54a15b 109 MODE_CMDRESP,
kaizen 0:e3dc9e54a15b 110 MODE_DATA_RX,
kaizen 0:e3dc9e54a15b 111 MODE_DATA_RXUDP,
kaizen 0:e3dc9e54a15b 112 MODE_DATA_RXUDP_BULK,
kaizen 0:e3dc9e54a15b 113 };
kaizen 0:e3dc9e54a15b 114
kaizen 0:e3dc9e54a15b 115 enum Status {
kaizen 0:e3dc9e54a15b 116 STAT_NONE,
kaizen 0:e3dc9e54a15b 117 STAT_READY,
kaizen 0:e3dc9e54a15b 118 STAT_STANDBY,
kaizen 0:e3dc9e54a15b 119 STAT_WAKEUP,
kaizen 0:e3dc9e54a15b 120 STAT_DEEPSLEEP,
kaizen 0:e3dc9e54a15b 121 };
kaizen 0:e3dc9e54a15b 122
kaizen 0:e3dc9e54a15b 123
kaizen 0:e3dc9e54a15b 124 WizFi250 (PinName tx, PinName rx, PinName cts, PinName rts, PinName reset, PinName alarm = NC, int baud = 115200);
kaizen 0:e3dc9e54a15b 125
kaizen 0:e3dc9e54a15b 126 // --------- WizFi250_at.cpp ---------
kaizen 0:e3dc9e54a15b 127 void clearFlags ();
kaizen 0:e3dc9e54a15b 128 int sendCommand (const char * cmd, Response res = RES_NULL, int timeout = DEFAULT_WAIT_RESP_TIMEOUT, int opt = 2);
kaizen 0:e3dc9e54a15b 129
kaizen 0:e3dc9e54a15b 130 int cmdAT ();
kaizen 0:e3dc9e54a15b 131 int cmdMECHO (bool flg);
kaizen 0:e3dc9e54a15b 132 int cmdUSET (int baud, char *flow);
kaizen 0:e3dc9e54a15b 133 int cmdMMAC (const char *mac = NULL);
kaizen 0:e3dc9e54a15b 134 int cmdWSET (WiFiMode mode, const char *ssid, const char *bssid = NULL, int channel = 1);
kaizen 0:e3dc9e54a15b 135 int cmdWANT (AntennaMode mode);
kaizen 0:e3dc9e54a15b 136 int cmdWNET (bool is_dhcp);
kaizen 0:e3dc9e54a15b 137 int cmdWSEC (WiFiMode mode, const char *key, const char *sec = NULL);
kaizen 0:e3dc9e54a15b 138 int cmdWJOIN ();
kaizen 0:e3dc9e54a15b 139 int cmdWLEAVE ();
kaizen 0:e3dc9e54a15b 140 int cmdWSTATUS ();
kaizen 0:e3dc9e54a15b 141 int cmdSCON ( const char *openType, const char *socketType, int localPort, const char *dataMode = "0");
kaizen 0:e3dc9e54a15b 142 int cmdSCON ( const char *openType, const char *socketType, const char *remoteIp, int remotePort, int localPort = 0, const char *dataMode = "0");
kaizen 0:e3dc9e54a15b 143 int cmdSSEND ( const char *data, int cid, int sendSize, const char *remoteIp = NULL, int remotePort = 0, int Timeout = 2000 );
kaizen 0:e3dc9e54a15b 144 int cmdCLOSE ( int cid );
kaizen 0:e3dc9e54a15b 145 int cmdFDNS (const char *host);
kaizen 0:e3dc9e54a15b 146 int cmdSMGMT ( int cid );
kaizen 0:e3dc9e54a15b 147
kaizen 0:e3dc9e54a15b 148
kaizen 0:e3dc9e54a15b 149 static WizFi250 * getInstance() {
kaizen 0:e3dc9e54a15b 150 return _inst;
kaizen 0:e3dc9e54a15b 151 };
kaizen 0:e3dc9e54a15b 152
kaizen 0:e3dc9e54a15b 153
kaizen 0:e3dc9e54a15b 154 // --------- WizFi2550_sock.cpp ---------
kaizen 0:e3dc9e54a15b 155 int getHostByName (const char * host, char *ip);
kaizen 0:e3dc9e54a15b 156 int open (Protocol proto, const char *ip, int remotePort, int localPort = 0, void(*func)(int) = NULL);
kaizen 0:e3dc9e54a15b 157 int listen (Protocol proto, int port, void(*func)(int)=NULL);
kaizen 0:e3dc9e54a15b 158 int close (int cid);
kaizen 0:e3dc9e54a15b 159 void initCon (int cid, bool connected);
kaizen 0:e3dc9e54a15b 160 int send (int cid, const char *buf, int len);
kaizen 0:e3dc9e54a15b 161 int sendto (int cid, const char *buf, int len, const char *ip, int port);
kaizen 0:e3dc9e54a15b 162 int recv (int cid, char *buf, int len);
kaizen 0:e3dc9e54a15b 163 int recvfrom (int cid, char *buf, int len, char *ip, int *port);
kaizen 0:e3dc9e54a15b 164 int readable (int cid);
kaizen 0:e3dc9e54a15b 165 bool isConnected (int cid);
kaizen 0:e3dc9e54a15b 166 int accept (int cid);
kaizen 0:e3dc9e54a15b 167 int getRemote (int cid, char **ip, int *port);
kaizen 0:e3dc9e54a15b 168
kaizen 0:e3dc9e54a15b 169
kaizen 0:e3dc9e54a15b 170
kaizen 0:e3dc9e54a15b 171 protected:
kaizen 0:e3dc9e54a15b 172 static WizFi250 * _inst;
kaizen 0:e3dc9e54a15b 173
kaizen 0:e3dc9e54a15b 174
kaizen 0:e3dc9e54a15b 175 // Serial _wizfi
kaizen 0:e3dc9e54a15b 176 RawSerial _wizfi;
kaizen 0:e3dc9e54a15b 177 int _baud;
kaizen 0:e3dc9e54a15b 178 DigitalIn *_cts;
kaizen 0:e3dc9e54a15b 179 DigitalOut *_rts;
kaizen 0:e3dc9e54a15b 180 int _flow;
kaizen 0:e3dc9e54a15b 181
kaizen 0:e3dc9e54a15b 182 DigitalInOut _reset;
kaizen 0:e3dc9e54a15b 183
kaizen 0:e3dc9e54a15b 184 struct STATE {
kaizen 0:e3dc9e54a15b 185 WiFiMode wm;
kaizen 0:e3dc9e54a15b 186 Security sec;
kaizen 0:e3dc9e54a15b 187 char ssid[35];
kaizen 0:e3dc9e54a15b 188 char pass[66];
kaizen 0:e3dc9e54a15b 189 char ip[16];
kaizen 0:e3dc9e54a15b 190 char netmask[16];
kaizen 0:e3dc9e54a15b 191 char gateway[16];
kaizen 0:e3dc9e54a15b 192 char nameserver[16];
kaizen 0:e3dc9e54a15b 193 char mac[18];
kaizen 0:e3dc9e54a15b 194 char resolv[16];
kaizen 0:e3dc9e54a15b 195 char name[32];
kaizen 0:e3dc9e54a15b 196 int rssi;
kaizen 0:e3dc9e54a15b 197 bool dhcp;
kaizen 0:e3dc9e54a15b 198 time_t time;
kaizen 0:e3dc9e54a15b 199
kaizen 0:e3dc9e54a15b 200 bool initialized;
kaizen 0:e3dc9e54a15b 201 bool associated;
kaizen 0:e3dc9e54a15b 202 volatile Mode mode;
kaizen 0:e3dc9e54a15b 203 volatile Status status;
kaizen 0:e3dc9e54a15b 204 bool escape;
kaizen 0:e3dc9e54a15b 205 volatile bool ok, failure;
kaizen 0:e3dc9e54a15b 206 volatile Response res;
kaizen 0:e3dc9e54a15b 207 int cid;
kaizen 0:e3dc9e54a15b 208 int n;
kaizen 0:e3dc9e54a15b 209 CircBuffer<char> *buf;
kaizen 0:e3dc9e54a15b 210 char dbgRespBuf[BUF_SIZE];
kaizen 0:e3dc9e54a15b 211 //char dummyBuf[BUF_SIZE];
kaizen 0:e3dc9e54a15b 212 } _state;
kaizen 0:e3dc9e54a15b 213
kaizen 0:e3dc9e54a15b 214
kaizen 0:e3dc9e54a15b 215 public:
kaizen 0:e3dc9e54a15b 216 struct CONNECTION {
kaizen 0:e3dc9e54a15b 217 Protocol protocol;
kaizen 0:e3dc9e54a15b 218 Type type;
kaizen 0:e3dc9e54a15b 219 bool connected;
kaizen 0:e3dc9e54a15b 220 char ip[16];
kaizen 0:e3dc9e54a15b 221 int port;
kaizen 0:e3dc9e54a15b 222 int send_length;
kaizen 0:e3dc9e54a15b 223 int recv_length;
kaizen 0:e3dc9e54a15b 224 CircBuffer<char> *buf;
kaizen 0:e3dc9e54a15b 225 volatile bool received;
kaizen 0:e3dc9e54a15b 226 volatile int parent;
kaizen 0:e3dc9e54a15b 227 volatile bool accept;
kaizen 0:e3dc9e54a15b 228 void(*func)(int);
kaizen 0:e3dc9e54a15b 229 } _con[8];
kaizen 0:e3dc9e54a15b 230
kaizen 0:e3dc9e54a15b 231 // --------- WizFi250.cpp ---------
kaizen 0:e3dc9e54a15b 232
kaizen 0:e3dc9e54a15b 233 int join(WiFiMode mode);
kaizen 0:e3dc9e54a15b 234 bool isAssociated();
kaizen 0:e3dc9e54a15b 235
kaizen 0:e3dc9e54a15b 236 //int limitedap ();
kaizen 0:e3dc9e54a15b 237 //int dissociate ();
kaizen 0:e3dc9e54a15b 238 /*
kaizen 0:e3dc9e54a15b 239 int disconnect () {
kaizen 0:e3dc9e54a15b 240 return dissociate();
kaizen 0:e3dc9e54a15b 241 }
kaizen 0:e3dc9e54a15b 242 */
kaizen 0:e3dc9e54a15b 243
kaizen 0:e3dc9e54a15b 244 Status getStatus ();
kaizen 0:e3dc9e54a15b 245
kaizen 0:e3dc9e54a15b 246 int setMacAddress (const char *mac);
kaizen 0:e3dc9e54a15b 247 int getMacAddress (char *mac);
kaizen 0:e3dc9e54a15b 248 int setAddress (const char *name = NULL);
kaizen 0:e3dc9e54a15b 249 int setAddress (const char *ip, const char *netmask, const char *gateway, const char *dns = NULL, const char *name = NULL);
kaizen 0:e3dc9e54a15b 250 int getAddress (char *ip, char *netmask, char *gateway);
kaizen 0:e3dc9e54a15b 251 int setSsid (const char *ssid);
kaizen 0:e3dc9e54a15b 252 int setSec (Security sec, const char *phrase);
kaizen 0:e3dc9e54a15b 253
kaizen 0:e3dc9e54a15b 254 const char* getIPAddress (void);
kaizen 0:e3dc9e54a15b 255 const char* getMACAddress (void);
kaizen 0:e3dc9e54a15b 256
kaizen 0:e3dc9e54a15b 257 // --------- WizFi250_msg.cpp ---------
kaizen 0:e3dc9e54a15b 258 void recvData ( char c );
kaizen 0:e3dc9e54a15b 259 int parseMessage ();
kaizen 0:e3dc9e54a15b 260 void msgOk (const char *buf);
kaizen 0:e3dc9e54a15b 261 void msgError (const char *buf);
kaizen 0:e3dc9e54a15b 262 void msgConnect (const char *buf);
kaizen 0:e3dc9e54a15b 263 void msgDisconnect (const char *buf);
kaizen 0:e3dc9e54a15b 264 void msgListen (const char *buf);
kaizen 0:e3dc9e54a15b 265
kaizen 0:e3dc9e54a15b 266 void resMacAddress (const char *buf);
kaizen 0:e3dc9e54a15b 267 void resWJOIN (const char *buf);
kaizen 0:e3dc9e54a15b 268 void resConnect (const char *buf);
kaizen 0:e3dc9e54a15b 269 void resSSEND (const char *buf);
kaizen 0:e3dc9e54a15b 270 void resFDNS (const char *buf);
kaizen 0:e3dc9e54a15b 271 void resSMGMT (const char *buf);
kaizen 0:e3dc9e54a15b 272 void resWSTATUS (const char *buf);
kaizen 0:e3dc9e54a15b 273
kaizen 0:e3dc9e54a15b 274
kaizen 0:e3dc9e54a15b 275 // --------- WizFi250_hal.cpp ---------
kaizen 0:e3dc9e54a15b 276 void setReset (bool flg);
kaizen 0:e3dc9e54a15b 277 void isrUart ();
kaizen 0:e3dc9e54a15b 278 int getUart ();
kaizen 0:e3dc9e54a15b 279 void putUart (char c);
kaizen 0:e3dc9e54a15b 280 void setRts (bool flg);
kaizen 0:e3dc9e54a15b 281 int lockUart (int ms);
kaizen 0:e3dc9e54a15b 282 void unlockUart ();
kaizen 0:e3dc9e54a15b 283 void initUart (PinName cts, PinName rts, PinName alarm, int baud);
kaizen 0:e3dc9e54a15b 284
kaizen 0:e3dc9e54a15b 285
kaizen 0:e3dc9e54a15b 286 // --------- WizFi2550_util.cpp ---------
kaizen 0:e3dc9e54a15b 287 int x2i (char c);
kaizen 0:e3dc9e54a15b 288 int i2x (int i);
kaizen 0:e3dc9e54a15b 289
kaizen 0:e3dc9e54a15b 290 // --------- WizFi250_ifc.cpp (For NetworkSocketAPI) ---------
kaizen 0:e3dc9e54a15b 291 /**
kaizen 0:e3dc9e54a15b 292 * Startup the WizFi250
kaizen 0:e3dc9e54a15b 293 *
kaizen 0:e3dc9e54a15b 294 * @return true only if WizFi250 was setup correctly
kaizen 0:e3dc9e54a15b 295 */
kaizen 0:e3dc9e54a15b 296 bool startup(void);
kaizen 0:e3dc9e54a15b 297
kaizen 0:e3dc9e54a15b 298 /**
kaizen 0:e3dc9e54a15b 299 * Reset WizFi250
kaizen 0:e3dc9e54a15b 300 *
kaizen 0:e3dc9e54a15b 301 * @return true only if WizFi250 resets successfully
kaizen 0:e3dc9e54a15b 302 */
kaizen 0:e3dc9e54a15b 303 bool reset(void);
kaizen 0:e3dc9e54a15b 304
kaizen 0:e3dc9e54a15b 305 /**
kaizen 0:e3dc9e54a15b 306 * Disconnect WizFi250 from AP
kaizen 0:e3dc9e54a15b 307 *
kaizen 0:e3dc9e54a15b 308 * @return true only if WizFi250 is disconnected successfully
kaizen 0:e3dc9e54a15b 309 */
kaizen 0:e3dc9e54a15b 310 bool disconnect(void);
kaizen 0:e3dc9e54a15b 311
kaizen 0:e3dc9e54a15b 312 /**
kaizen 0:e3dc9e54a15b 313 * Check if WizFi250 is conenected
kaizen 0:e3dc9e54a15b 314 *
kaizen 0:e3dc9e54a15b 315 * @return true only if the chip has an IP address
kaizen 0:e3dc9e54a15b 316 */
kaizen 0:e3dc9e54a15b 317 bool isConnected(void);
kaizen 0:e3dc9e54a15b 318
kaizen 0:e3dc9e54a15b 319 };
kaizen 0:e3dc9e54a15b 320
kaizen 0:e3dc9e54a15b 321 #endif /* WIZFI250_H_ */