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[/] [mlite/] [trunk/] [kernel/] [tcpip.c] - Blame information for rev 326

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1 155 rhoads
/*--------------------------------------------------------------------
2
 * TITLE: Plasma TCP/IP Protocol Stack
3
 * AUTHOR: Steve Rhoads (rhoadss@yahoo.com)
4
 * DATE CREATED: 4/22/06
5
 * FILENAME: tcpip.c
6
 * PROJECT: Plasma CPU core
7
 * COPYRIGHT: Software placed into the public domain by the author.
8
 *    Software 'as is' without warranty.  Author liable for nothing.
9
 * DESCRIPTION:
10
 *    Plasma TCP/IP Protocol Stack
11
 *
12
 *    Possible call stack when receiving a packet:
13
 *       IPMainThread()
14
 *          IPProcessEthernetPacket()
15
 *             IPProcessTCPPacket()
16
 *                TCPSendPacket()
17
 *                   IPSendPacket()
18
 *                      IPChecksum()
19
 *                      IPSendFrame()
20
 *                         FrameInsert()
21
 *--------------------------------------------------------------------*/
22
#ifdef WIN32
23
#include <stdio.h>
24
#include <stdlib.h>
25
#include <string.h>
26
#include <assert.h>
27
#define _LIBC
28
#endif
29
#include "rtos.h"
30 317 rhoads
#define IPPRINTF
31 155 rhoads
#include "tcpip.h"
32
 
33
 
34
//ETHER FIELD                 OFFSET   LENGTH   VALUE
35
#define ETHERNET_DEST         0        //6
36
#define ETHERNET_SOURCE       6        //6
37
#define ETHERNET_FRAME_TYPE   12       //2      IP=0x0800; ARP=0x0806
38
 
39
//ARP   FIELD                 OFFSET   LENGTH   VALUE
40
#define ARP_HARD_TYPE         14       //2      0x0001
41
#define ARP_PROT_TYPE         16       //2      0x0800
42
#define ARP_HARD_SIZE         18       //1      0x06
43
#define ARP_PROT_SIZE         19       //1      0x04
44
#define ARP_OP                20       //2      ARP=1;ARPreply=2
45
#define ARP_ETHERNET_SENDER   22       //6
46
#define ARP_IP_SENDER         28       //4
47
#define ARP_ETHERNET_TARGET   32       //6
48
#define ARP_IP_TARGET         38       //4
49
#define ARP_PAD               42       //18     0
50
 
51
//IP    FIELD                 OFFSET   LENGTH   VALUE
52
#define IP_VERSION_LENGTH     14       //1      0x45
53
#define IP_TYPE_OF_SERVICE    15       //1      0x00
54
#define IP_LENGTH             16       //2
55
#define IP_ID16               18       //2
56
#define IP_FRAG_OFFSET        20       //2
57
#define IP_TIME_TO_LIVE       22       //1      0x80
58
#define IP_PROTOCOL           23       //1      TCP=0x06;PING=0x01;UDP=0x11
59
#define IP_CHECKSUM           24       //2
60
#define IP_SOURCE             26       //4
61
#define IP_DEST               30       //4
62
 
63
//PSEUDO FIELD                OFFSET   LENGTH   VALUE
64
#define PSEUDO_IP_SOURCE      0        //4
65
#define PSEUDO_IP_DEST        4        //4
66
#define PSEUDO_ZERO           8        //1      0
67
#define PSEUDO_IP_PROTOCOL    9        //1
68
#define PSEUDO_LENGTH         10       //2
69
 
70
//UDP   FIELD                 OFFSET   LENGTH   VALUE
71
#define UDP_SOURCE_PORT       34       //2
72
#define UDP_DEST_PORT         36       //2
73
#define UDP_LENGTH            38       //2
74
#define UDP_CHECKSUM          40       //2
75
#define UDP_DATA              42
76
 
77
//DHCP  FIELD                 OFFSET   LENGTH   VALUE
78
#define DHCP_OPCODE           42       //1      REQUEST=1;REPLY=2
79
#define DHCP_HW_TYPE          43       //1      1
80
#define DHCP_HW_LEN           44       //1      6
81
#define DHCP_HOP_COUNT        45       //1      0
82
#define DHCP_TRANS_ID         46       //4
83
#define DHCP_NUM_SEC          50       //2      0
84
#define DHCP_UNUSED           52       //2
85
#define DHCP_CLIENT_IP        54       //4
86
#define DHCP_YOUR_IP          58       //4
87
#define DHCP_SERVER_IP        62       //4
88
#define DHCP_GATEWAY_IP       66       //4
89
#define DHCP_CLIENT_ETHERNET  70       //16
90
#define DHCP_SERVER_NAME      86       //64
91
#define DHCP_BOOT_FILENAME    150      //128
92
#define DHCP_MAGIC_COOKIE     278      //4      0x63825363
93
#define DHCP_OPTIONS          282      //N
94
 
95
#define DHCP_MESSAGE_TYPE     53       //1 type
96
#define DHCP_DISCOVER         1
97
#define DHCP_OFFER            2
98
#define DHCP_REQUEST          3
99
#define DHCP_ACK              5
100
#define DHCP_REQUEST_IP       50       //4 ip
101
#define DHCP_REQUEST_SERV_IP  54       //4 ip
102
#define DHCP_CLIENT_ID        61       //7 1 ethernet
103
#define DHCP_HOST_NAME        12       //6 plasma
104
#define DHCP_PARAMS           55       //4 1=subnet; 15=domain_name; 3=router; 6=dns
105
#define DHCP_PARAM_SUBNET     1
106
#define DHCP_PARAM_ROUTER     3
107
#define DHCP_PARAM_DNS        6
108
#define DHCP_END_OPTION       0xff
109
 
110
//DHCP  FIELD                 OFFSET   LENGTH   VALUE
111 206 rhoads
#define DNS_ID                0        //2    
112
#define DNS_FLAGS             2        //2      
113
#define DNS_NUM_QUESTIONS     4        //2      1 
114
#define DNS_NUM_ANSWERS_RR    6        //2      0/1
115
#define DNS_NUM_AUTHORITY_RR  8        //2      0 
116 155 rhoads
#define DNS_NUM_ADDITIONAL_RR 10       //2      0
117
#define DNS_QUESTIONS         12       //2   
118
 
119
#define DNS_FLAGS_RESPONSE    0x8000
120
#define DNS_FLAGS_RECURSIVE   0x0100
121
#define DNS_FLAGS_ERROR       0x0003
122
#define DNS_FLAGS_OK          0x0000
123
#define DNS_QUERY_TYPE_IP     1
124
#define DNS_QUERY_CLASS       1
125
#define DNS_PORT              53
126
 
127
//TCP   FIELD                 OFFSET   LENGTH   VALUE
128
#define TCP_SOURCE_PORT       34       //2
129
#define TCP_DEST_PORT         36       //2
130
#define TCP_SEQ               38       //4
131
#define TCP_ACK               42       //4
132
#define TCP_HEADER_LENGTH     46       //1      0x50
133
#define TCP_FLAGS             47       //1      SYNC=0x2;ACK=0x10;FIN=0x1
134
#define TCP_WINDOW_SIZE       48       //2
135
#define TCP_CHECKSUM          50       //2
136
#define TCP_URGENT_POINTER    52       //2
137
#define TCP_DATA              54       //length-N
138
 
139
#define TCP_FLAGS_FIN         1
140
#define TCP_FLAGS_SYN         2
141
#define TCP_FLAGS_RST         4
142 209 rhoads
#define TCP_FLAGS_PSH         8
143 155 rhoads
#define TCP_FLAGS_ACK         16
144
 
145
//PING  FIELD                 OFFSET   LENGTH   VALUE
146
#define PING_TYPE             34       //1      SEND=8;REPLY=0
147
#define PING_CODE             35       //1      0
148
#define PING_CHECKSUM         36       //2
149
#define PING_ID               38       //2
150
#define PING_SEQUENCE         40       //2
151
#define PING_DATA             44
152
 
153
static void IPClose2(IPSocket *Socket);
154
 
155 206 rhoads
static uint8 ethernetAddressGateway[] = {0xff, 0xff, 0xff, 0xff, 0xff, 0xff};
156
#ifndef WIN32
157 155 rhoads
static uint8 ethernetAddressPlasma[] =  {0x00, 0x10, 0xdd, 0xce, 0x15, 0xd4};
158 206 rhoads
#else
159
static uint8 ethernetAddressPlasma[] =  {0x00, 0x10, 0xdd, 0xce, 0x15, 0xd5};
160
#endif
161 155 rhoads
 
162
static uint8 ipAddressPlasma[] =  {0x9d, 0xfe, 0x28, 10};   //changed by DHCP
163
static uint8 ipAddressGateway[] = {0xff, 0xff, 0xff, 0xff}; //changed by DHCP
164
static uint32 ipAddressDns;                                 //changed by DHCP
165
 
166 157 rhoads
static OS_Mutex_t *IPMutex;
167 296 rhoads
static int FrameFreeCount;
168 155 rhoads
static IPFrame *FrameFreeHead;
169
static IPFrame *FrameSendHead;
170
static IPFrame *FrameSendTail;
171
static IPFrame *FrameResendHead;
172
static IPFrame *FrameResendTail;
173
static IPSocket *SocketHead;
174
static uint32 Seconds;
175
static int DhcpRetrySeconds;
176
static IPFuncPtr FrameSendFunc;
177
static OS_MQueue_t *IPMQueue;
178 157 rhoads
static OS_Thread_t *IPThread;
179 155 rhoads
int IPVerbose=1;
180
 
181
static const unsigned char dhcpDiscover[] = {
182
   0xff, 0xff, 0xff, 0xff, 0xff, 0xff,             //dest
183
   0x00, 0x10, 0xdd, 0xce, 0x15, 0xd4,             //src
184
   0x08, 0x00,
185
   0x45, 0x00, 0x01, 0x48, 0x2e, 0xf5, 0x00, 0x00, //ip
186
   0x80, 0x11, 0x0a, 0xb1, 0x00, 0x00, 0x00, 0x00,
187
   0xff, 0xff, 0xff, 0xff,
188
   0x00, 0x44, 0x00, 0x43, 0x01, 0x34, 0x45, 0x66, //udp
189
   0x01, 0x01, 0x06, 0x00, 0x69, 0x26, 0xb5, 0x52  //dhcp
190
};
191
 
192 296 rhoads
static unsigned char dhcpOptions[] = {
193 155 rhoads
   0x63, 0x82, 0x53, 0x63,      //cookie
194
   0x35, 0x01, 0x01,            //DHCP Discover
195
   0x3d, 0x07, 0x01, 0x00, 0x10, 0xdd, 0xce, 0x15, 0xd4, //Client identifier
196 206 rhoads
#ifndef WIN32
197 155 rhoads
   0x0c, 0x06, 'p', 'l', 'a', 's', 'm', 'a',             //Host name
198 206 rhoads
#else
199
   0x0c, 0x06, 'p', 'l', 'a', 's', 'm', 'b',             //Host name
200
#endif
201 155 rhoads
   0x37, 0x03, DHCP_PARAM_SUBNET, DHCP_PARAM_ROUTER, DHCP_PARAM_DNS, //Parameters
202
   DHCP_END_OPTION
203
};
204
 
205
 
206
//Get a free frame; can be called from an ISR
207 157 rhoads
IPFrame *IPFrameGet(int freeCount)
208 155 rhoads
{
209
   IPFrame *frame=NULL;
210
   uint32 state;
211 157 rhoads
 
212
   state = OS_CriticalBegin();
213
   if(FrameFreeCount > freeCount)
214 155 rhoads
   {
215 157 rhoads
      frame = FrameFreeHead;
216
      if(FrameFreeHead)
217 296 rhoads
      {
218 157 rhoads
         FrameFreeHead = FrameFreeHead->next;
219 296 rhoads
         --FrameFreeCount;
220
      }
221 155 rhoads
   }
222 157 rhoads
   OS_CriticalEnd(state);
223 155 rhoads
   if(frame)
224
   {
225 157 rhoads
      assert(frame->state == 0);
226
      frame->state = 1;
227 155 rhoads
   }
228
   return frame;
229
}
230
 
231
 
232
static void FrameFree(IPFrame *frame)
233
{
234
   uint32 state;
235
 
236
   assert(frame->state == 1);
237
   frame->state = 0;
238
   state = OS_CriticalBegin();
239
   frame->next = FrameFreeHead;
240
   FrameFreeHead = frame;
241
   ++FrameFreeCount;
242
   OS_CriticalEnd(state);
243
}
244
 
245
 
246
static void FrameInsert(IPFrame **head, IPFrame **tail, IPFrame *frame)
247
{
248
   assert(frame->state == 1);
249
   frame->state = 2;
250 157 rhoads
   OS_MutexPend(IPMutex);
251 155 rhoads
   frame->prev = NULL;
252
   frame->next = *head;
253
   if(*head)
254
      (*head)->prev = frame;
255
   *head = frame;
256
   if(*tail == NULL)
257
      *tail = frame;
258 157 rhoads
   OS_MutexPost(IPMutex);
259 155 rhoads
}
260
 
261
 
262
static void FrameRemove(IPFrame **head, IPFrame **tail, IPFrame *frame)
263
{
264
   assert(frame->state == 2);
265
   frame->state = 1;
266
   if(frame->prev)
267
      frame->prev->next = frame->next;
268
   else
269
      *head = frame->next;
270
   if(frame->next)
271
      frame->next->prev = frame->prev;
272
   else
273
      *tail = frame->prev;
274
   frame->prev = NULL;
275
   frame->next = NULL;
276
}
277
 
278
 
279
static int IPChecksum(int checksum, const unsigned char *data, int length)
280
{
281
   int i;
282
   checksum = ~checksum & 0xffff;
283
   for(i = 0; i < length-1; i += 2)
284
   {
285
      checksum += (data[i] << 8) | data[i+1];
286
   }
287
   if(i < length)
288
      checksum += data[i] << 8;
289
   while(checksum >> 16)
290
      checksum = (checksum & 0xffff) + (checksum >> 16);
291
   checksum = ~checksum & 0xffff;
292
   return checksum;
293
}
294
 
295
 
296
static int EthernetVerifyChecksums(const unsigned char *packet, int length)
297
{
298
   int checksum, length2;
299
   unsigned char pseudo[12];
300
 
301
   //Calculate checksums
302
   if(packet[ETHERNET_FRAME_TYPE+1] == 0x00)  //IP
303
   {
304
      checksum = IPChecksum(0xffff, packet+IP_VERSION_LENGTH, 20);
305
      if(checksum)
306
         return -1;
307
      if(packet[IP_PROTOCOL] == 0x01)         //PING
308
      {
309
         checksum = IPChecksum(0xffff, packet+PING_TYPE, length-PING_TYPE);
310
      }
311
      else if(packet[IP_PROTOCOL] == 0x11)    //UDP
312
      {
313
         if(packet[UDP_CHECKSUM] == 0 && packet[UDP_CHECKSUM+1] == 0)
314
            return 0;
315
         memcpy(pseudo+PSEUDO_IP_SOURCE, packet+IP_SOURCE, 4);
316
         memcpy(pseudo+PSEUDO_IP_DEST, packet+IP_DEST, 4);
317
         pseudo[PSEUDO_ZERO] = 0;
318
         pseudo[PSEUDO_IP_PROTOCOL] = packet[IP_PROTOCOL];
319
         memcpy(pseudo+PSEUDO_LENGTH, packet+UDP_LENGTH, 2);
320
         checksum = IPChecksum(0xffff, pseudo, 12);
321
         length2 = (packet[UDP_LENGTH] << 8) + packet[UDP_LENGTH+1];
322
         checksum = IPChecksum(checksum, packet+UDP_SOURCE_PORT, length);
323
      }
324
      else if(packet[IP_PROTOCOL] == 0x06)    //TCP
325
      {
326
         memcpy(pseudo+PSEUDO_IP_SOURCE, packet+IP_SOURCE, 4);
327
         memcpy(pseudo+PSEUDO_IP_DEST, packet+IP_DEST, 4);
328
         pseudo[PSEUDO_ZERO] = 0;
329
         pseudo[PSEUDO_IP_PROTOCOL] = packet[IP_PROTOCOL];
330
         length = (packet[IP_LENGTH] << 8) + packet[IP_LENGTH+1];
331
         length2 = length - 20;
332
         pseudo[PSEUDO_LENGTH] = (unsigned char)(length2 >> 8);
333
         pseudo[PSEUDO_LENGTH+1] = (unsigned char)length2;
334
         checksum = IPChecksum(0xffff, pseudo, 12);
335
         checksum = IPChecksum(checksum, packet+TCP_SOURCE_PORT, length2);
336
      }
337
      if(checksum)
338
         return -1;
339
   }
340
   return 0;
341
}
342
 
343
 
344
static void IPFrameReschedule(IPFrame *frame)
345
{
346
   int length;
347
   length = frame->length - TCP_DATA;
348 160 rhoads
   if(frame->packet[TCP_FLAGS] & (TCP_FLAGS_FIN | TCP_FLAGS_SYN))
349 155 rhoads
      ++length;
350
   if(frame->socket == NULL || frame->socket->state == IP_UDP || length == 0 ||
351 209 rhoads
      frame->socket->state == IP_PING || ++frame->retryCnt > 4)
352 155 rhoads
   {
353
      FrameFree(frame);     //can't be ACK'ed
354
   }
355
   else
356
   {
357
      //Put on resend list until TCP ACK'ed
358 317 rhoads
      frame->timeout = (short)(RETRANSMIT_TIME * frame->retryCnt);
359 155 rhoads
      FrameInsert(&FrameResendHead, &FrameResendTail, frame);
360
   }
361
}
362
 
363
 
364
static void IPSendFrame(IPFrame *frame)
365
{
366
   uint32 message[4];
367
 
368
   if(FrameSendFunc)
369
   {
370
      //Single threaded
371
      FrameSendFunc(frame->packet, frame->length);
372
      IPFrameReschedule(frame);
373
   }
374
   else
375
   {
376
      //Add Packet to send queue
377
      FrameInsert(&FrameSendHead, &FrameSendTail, frame);
378
 
379
      //Wakeup sender thread
380
      message[0] = 2;
381
      OS_MQueueSend(IPMQueue, message);
382
   }
383
}
384
 
385
 
386
static void IPSendPacket(IPSocket *socket, IPFrame *frame, int length)
387
{
388
   int checksum, length2=length;
389
   unsigned char pseudo[12], *packet=frame->packet;
390
 
391
   frame->length = (uint16)length;
392
 
393
   //Calculate checksums
394
   if(packet[ETHERNET_FRAME_TYPE+1] == 0x00)  //IP
395
   {
396
      length2 = length - IP_VERSION_LENGTH;
397
      packet[IP_LENGTH] = (uint8)(length2 >> 8);
398
      packet[IP_LENGTH+1] = (uint8)length2;
399
      memset(packet+IP_CHECKSUM, 0, 2);
400
      checksum = IPChecksum(0xffff, packet+IP_VERSION_LENGTH, 20);
401
      packet[IP_CHECKSUM] = (unsigned char)(checksum >> 8);
402
      packet[IP_CHECKSUM+1] = (unsigned char)checksum;
403 220 rhoads
      if(packet[IP_PROTOCOL] == 0x01)         //ICMP & PING
404 155 rhoads
      {
405
         memset(packet+PING_CHECKSUM, 0, 2);
406
         checksum = IPChecksum(0xffff, packet+PING_TYPE, length-PING_TYPE);
407
         packet[PING_CHECKSUM] = (unsigned char)(checksum >> 8);
408
         packet[PING_CHECKSUM+1] = (unsigned char)checksum;
409
      }
410
      else if(packet[IP_PROTOCOL] == 0x11)    //UDP
411
      {
412
         length2 = length - UDP_SOURCE_PORT;
413
         packet[UDP_LENGTH] = (uint8)(length2 >> 8);
414
         packet[UDP_LENGTH+1] = (uint8)length2;
415
         memcpy(pseudo+PSEUDO_IP_SOURCE, packet+IP_SOURCE, 4);
416
         memcpy(pseudo+PSEUDO_IP_DEST, packet+IP_DEST, 4);
417
         pseudo[PSEUDO_ZERO] = 0;
418
         pseudo[PSEUDO_IP_PROTOCOL] = packet[IP_PROTOCOL];
419
         memcpy(pseudo+PSEUDO_LENGTH, packet+UDP_LENGTH, 2);
420
         checksum = IPChecksum(0xffff, pseudo, 12);
421
         memset(packet+UDP_CHECKSUM, 0, 2);
422
         length2 = (packet[UDP_LENGTH] << 8) + packet[UDP_LENGTH+1];
423
         checksum = IPChecksum(checksum, packet+UDP_SOURCE_PORT, length2);
424
         packet[UDP_CHECKSUM] = (unsigned char)(checksum >> 8);
425
         packet[UDP_CHECKSUM+1] = (unsigned char)checksum;
426
      }
427
      else if(packet[IP_PROTOCOL] == 0x06)    //TCP
428
      {
429
         memcpy(pseudo+PSEUDO_IP_SOURCE, packet+IP_SOURCE, 4);
430
         memcpy(pseudo+PSEUDO_IP_DEST, packet+IP_DEST, 4);
431
         pseudo[PSEUDO_ZERO] = 0;
432
         pseudo[PSEUDO_IP_PROTOCOL] = packet[IP_PROTOCOL];
433
         length2 = (packet[IP_LENGTH] << 8) + packet[IP_LENGTH+1];
434
         length2 = length2 - 20;
435
         pseudo[PSEUDO_LENGTH] = (unsigned char)(length2 >> 8);
436
         pseudo[PSEUDO_LENGTH+1] = (unsigned char)length2;
437
         checksum = IPChecksum(0xffff, pseudo, 12);
438
         memset(packet+TCP_CHECKSUM, 0, 2);
439
         checksum = IPChecksum(checksum, packet+TCP_SOURCE_PORT, length2);
440
         packet[TCP_CHECKSUM] = (unsigned char)(checksum >> 8);
441
         packet[TCP_CHECKSUM+1] = (unsigned char)checksum;
442
      }
443
   }
444
 
445 160 rhoads
   length2 = length - TCP_DATA;
446
   if(socket && (packet[TCP_FLAGS] & (TCP_FLAGS_FIN | TCP_FLAGS_SYN)))
447 155 rhoads
      length2 = 1;
448
   frame->socket = socket;
449
   frame->timeout = 0;
450
   frame->retryCnt = 0;
451
   if(socket)
452
      frame->seqEnd = socket->seq + length2;
453
   IPSendFrame(frame);
454
}
455
 
456
 
457
static void TCPSendPacket(IPSocket *socket, IPFrame *frame, int length)
458
{
459
   uint8 *packet = frame->packet;
460 160 rhoads
   int flags, count;
461 155 rhoads
 
462
   flags = packet[TCP_FLAGS];
463
   memcpy(packet, socket->headerSend, TCP_SEQ);
464 220 rhoads
   packet[TCP_FLAGS] = (uint8)flags;
465 155 rhoads
   if(flags & TCP_FLAGS_SYN)
466
      packet[TCP_HEADER_LENGTH] = 0x60;  //set maximum segment size
467
   else
468
      packet[TCP_HEADER_LENGTH] = 0x50;
469
   packet[TCP_SEQ]   = (uint8)(socket->seq >> 24);
470
   packet[TCP_SEQ+1] = (uint8)(socket->seq >> 16);
471
   packet[TCP_SEQ+2] = (uint8)(socket->seq >> 8);
472
   packet[TCP_SEQ+3] = (uint8)socket->seq;
473
   packet[TCP_ACK]   = (uint8)(socket->ack >> 24);
474
   packet[TCP_ACK+1] = (uint8)(socket->ack >> 16);
475
   packet[TCP_ACK+2] = (uint8)(socket->ack >> 8);
476
   packet[TCP_ACK+3] = (uint8)socket->ack;
477 317 rhoads
   count = RECEIVE_WINDOW - (socket->ack - socket->ackProcessed);
478
   if(count < 0)
479
      count = 0;
480 160 rhoads
   packet[TCP_WINDOW_SIZE] = (uint8)(count >> 8);
481
   packet[TCP_WINDOW_SIZE+1] = (uint8)count;
482 155 rhoads
   packet[TCP_URGENT_POINTER] = 0;
483
   packet[TCP_URGENT_POINTER+1] = 0;
484
   IPSendPacket(socket, frame, length);
485
}
486
 
487
 
488
static void EthernetCreateResponse(unsigned char *packetOut,
489
                                   const unsigned char *packet,
490
                                   int length)
491
{
492
   //Swap destination and source fields
493
   memcpy(packetOut, packet, length);
494
   memcpy(packetOut+ETHERNET_DEST, packet+ETHERNET_SOURCE, 6);
495
   memcpy(packetOut+ETHERNET_SOURCE, packet+ETHERNET_DEST, 6);
496
   if(packet[ETHERNET_FRAME_TYPE+1] == 0x00)  //IP
497
   {
498
      memcpy(packetOut+IP_SOURCE, packet+IP_DEST, 4);
499
      memcpy(packetOut+IP_DEST, packet+IP_SOURCE, 4);
500
      if(packet[IP_PROTOCOL] == 0x06 || packet[IP_PROTOCOL] == 0x11)   //TCP/UDP
501
      {
502
         memcpy(packetOut+TCP_SOURCE_PORT, packet+TCP_DEST_PORT, 2);
503
         memcpy(packetOut+TCP_DEST_PORT, packet+TCP_SOURCE_PORT, 2);
504
      }
505
   }
506
}
507
 
508
 
509
static void IPDhcp(const unsigned char *packet, int length, int state)
510
{
511
   uint8 *packetOut, *ptr;
512
   const uint8 *ptr2;
513
   IPFrame *frame;
514
   static int request=0;
515
 
516
   if(state == 1)
517
   {
518
      //Create DHCP Discover
519 157 rhoads
      frame = IPFrameGet(0);
520 155 rhoads
      if(frame == NULL)
521
         return;
522
      packetOut = frame->packet;
523
      memset(packetOut, 0, 512);
524
      memcpy(packetOut, dhcpDiscover, sizeof(dhcpDiscover));
525
      memcpy(packetOut+ETHERNET_SOURCE, ethernetAddressPlasma, 6);
526
      memcpy(packetOut+DHCP_CLIENT_ETHERNET, ethernetAddressPlasma, 6);
527
      memcpy(packetOut+DHCP_MAGIC_COOKIE, dhcpOptions, sizeof(dhcpOptions));
528
      memcpy(packetOut+DHCP_MAGIC_COOKIE+10, ethernetAddressPlasma, 6);
529
      IPSendPacket(NULL, frame, 400);
530
      request = DHCP_DISCOVER;
531 296 rhoads
      DhcpRetrySeconds = 2;
532 155 rhoads
   }
533
   else if(state == 2 && memcmp(packet+DHCP_CLIENT_ETHERNET, ethernetAddressPlasma, 6) == 0)
534
   {
535
      if(packet[DHCP_MAGIC_COOKIE+6] == DHCP_OFFER && request == DHCP_DISCOVER)
536
      {
537
         //Process DHCP Offer and send DHCP Request
538 157 rhoads
         frame = IPFrameGet(0);
539 155 rhoads
         if(frame == NULL)
540
            return;
541
         packetOut = frame->packet;
542
         memset(packetOut, 0, 512);
543
         memcpy(packetOut, dhcpDiscover, sizeof(dhcpDiscover));
544
         memcpy(packetOut+ETHERNET_SOURCE, ethernetAddressPlasma, 6);
545
         memcpy(packetOut+DHCP_CLIENT_ETHERNET, ethernetAddressPlasma, 6);
546
         memcpy(packetOut+DHCP_MAGIC_COOKIE, dhcpOptions, sizeof(dhcpOptions));
547 206 rhoads
         memcpy(packetOut+DHCP_MAGIC_COOKIE+10, ethernetAddressPlasma, 6);
548 155 rhoads
         request = DHCP_REQUEST;
549
         packetOut[DHCP_MAGIC_COOKIE+6] = DHCP_REQUEST;
550
         ptr = packetOut+DHCP_MAGIC_COOKIE+sizeof(dhcpOptions)-1;
551
         ptr[0] = DHCP_REQUEST_IP;
552
         ptr[1] = 4;
553
         memcpy(ptr+2, packet+DHCP_YOUR_IP, 4);
554
         ptr[6] = DHCP_REQUEST_SERV_IP;
555
         ptr[7] = 4;
556
         memcpy(ptr+8, packet+DHCP_SERVER_IP, 4);
557
         ptr[12] = DHCP_END_OPTION;
558
         IPSendPacket(NULL, frame, 400);
559
      }
560
      else if(packet[DHCP_MAGIC_COOKIE+6] == DHCP_ACK && request == DHCP_REQUEST)
561
      {
562
         //Process DHCP Ack
563
         request = 0;
564
         DhcpRetrySeconds = 3600*4;
565
         memcpy(ipAddressPlasma, packet+DHCP_YOUR_IP, 4);
566
         printf("IP=%d.%d.%d.%d ", ipAddressPlasma[0], ipAddressPlasma[1],
567
            ipAddressPlasma[2], ipAddressPlasma[3]);
568
         memcpy(ipAddressGateway, packet+DHCP_GATEWAY_IP, 4);
569
         if(ipAddressGateway[0] == 0 && ipAddressGateway[1] == 0 &&
570
            ipAddressGateway[2] == 0 && ipAddressGateway[3] == 0)
571
            memcpy(ipAddressGateway, packet+DHCP_SERVER_IP, 4);
572
         printf("GW=%d.%d.%d.%d ", ipAddressGateway[0], ipAddressGateway[1],
573
            ipAddressGateway[2], ipAddressGateway[3]);
574
         memcpy(ethernetAddressGateway, packet+ETHERNET_SOURCE, 6);
575
         ptr2 = packet+DHCP_MAGIC_COOKIE+4;
576
         while(ptr2[0] != DHCP_END_OPTION && (int)(ptr2 - packet) < length)
577
         {
578
            if(ptr2[0] == DHCP_PARAM_DNS)
579
            {
580
               ipAddressDns = (ptr2[2] << 24) | (ptr2[3] << 16) | (ptr2[4] << 8) | ptr2[5];
581
               printf("DNS=%d.%d.%d.%d ", ptr2[2], ptr2[3], ptr2[4], ptr2[5]);
582
            }
583
            ptr2 += ptr2[1] + 2;
584
         }
585
 
586
         //Check if DHCP reply came from gateway
587
         if(memcmp(packet+IP_SOURCE, ipAddressGateway, 4))
588
         {
589
            //Send ARP to gateway
590 157 rhoads
            frame = IPFrameGet(0);
591 155 rhoads
            if(frame == NULL)
592
               return;
593
            packetOut = frame->packet;
594
            memset(packetOut, 0, 512);
595
            memset(packetOut+ETHERNET_DEST, 0xff, 6);
596
            memcpy(packetOut+ETHERNET_SOURCE, ethernetAddressPlasma, 6);
597
            packetOut[ETHERNET_FRAME_TYPE] = 0x08;
598
            packetOut[ETHERNET_FRAME_TYPE+1] = 0x06;
599
            packetOut[ARP_HARD_TYPE+1] = 0x01;
600
            packetOut[ARP_PROT_TYPE] = 0x08;
601
            packetOut[ARP_HARD_SIZE] = 0x06;
602
            packetOut[ARP_PROT_SIZE] = 0x04;
603
            packetOut[ARP_OP+1] = 1;
604
            memcpy(packetOut+ARP_ETHERNET_SENDER, ethernetAddressPlasma, 6);
605
            memcpy(packetOut+ARP_IP_SENDER, ipAddressPlasma, 4);
606
            memcpy(packetOut+ARP_IP_TARGET, ipAddressGateway, 4);
607
            IPSendPacket(NULL, frame, 60);
608
         }
609
      }
610
   }
611
}
612
 
613
 
614 209 rhoads
uint32 IPAddressSelf(void)
615
{
616
   return (ipAddressPlasma[0] << 24) | (ipAddressPlasma[1] << 16) |
617
          (ipAddressPlasma[2] << 8) | ipAddressPlasma[3];
618
}
619
 
620
 
621 155 rhoads
static int IPProcessTCPPacket(IPFrame *frameIn)
622
{
623
   uint32 seq, ack;
624 304 rhoads
   int length, ip_length, bytes, rc=0, notify=0;
625 155 rhoads
   IPSocket *socket, *socketNew;
626
   IPFrame *frameOut, *frame2, *framePrev;
627
   uint8 *packet, *packetOut;
628
 
629
   packet = frameIn->packet;
630
   length = frameIn->length;
631
 
632
   ip_length = (packet[IP_LENGTH] << 8) | packet[IP_LENGTH+1];
633
   seq = (packet[TCP_SEQ] << 24) | (packet[TCP_SEQ+1] << 16) |
634
         (packet[TCP_SEQ+2] << 8) | packet[TCP_SEQ+3];
635
   ack = (packet[TCP_ACK] << 24) | (packet[TCP_ACK+1] << 16) |
636
         (packet[TCP_ACK+2] << 8) | packet[TCP_ACK+3];
637
 
638
   //Check if start of connection
639 160 rhoads
   if((packet[TCP_FLAGS] & (TCP_FLAGS_SYN | TCP_FLAGS_ACK)) == TCP_FLAGS_SYN)
640 155 rhoads
   {
641
      if(IPVerbose)
642
         printf("S");
643
      //Check if duplicate SYN
644
      for(socket = SocketHead; socket; socket = socket->next)
645
      {
646
         if(socket->state != IP_LISTEN &&
647
            packet[IP_PROTOCOL] == socket->headerRcv[IP_PROTOCOL] &&
648
            memcmp(packet+IP_SOURCE, socket->headerRcv+IP_SOURCE, 8) == 0 &&
649
            memcmp(packet+TCP_SOURCE_PORT, socket->headerRcv+TCP_SOURCE_PORT, 4) == 0)
650
         {
651
            if(IPVerbose)
652
               printf("s");
653
            return 0;
654
         }
655
      }
656
 
657
      //Find an open port
658
      for(socket = SocketHead; socket; socket = socket->next)
659
      {
660
         if(socket->state == IP_LISTEN &&
661
            packet[IP_PROTOCOL] == socket->headerRcv[IP_PROTOCOL] &&
662
            memcmp(packet+TCP_DEST_PORT, socket->headerRcv+TCP_DEST_PORT, 2) == 0)
663
         {
664
            //Create a new socket
665 174 rhoads
            frameOut = IPFrameGet(FRAME_COUNT_SYNC);
666 155 rhoads
            if(frameOut == NULL)
667
               return 0;
668
            socketNew = (IPSocket*)malloc(sizeof(IPSocket));
669
            if(socketNew == NULL)
670
               return 0;
671
            memcpy(socketNew, socket, sizeof(IPSocket));
672
            socketNew->state = IP_TCP;
673 296 rhoads
            socketNew->timeout = SOCKET_TIMEOUT;
674 155 rhoads
            socketNew->ack = seq;
675 317 rhoads
            socketNew->ackProcessed = seq + 1;
676 155 rhoads
            socketNew->seq = socketNew->ack + 0x12345678;
677
            socketNew->seqReceived = socketNew->seq;
678 317 rhoads
            socketNew->seqWindow = (packet[TCP_WINDOW_SIZE] << 8) | packet[TCP_WINDOW_SIZE+1];
679 155 rhoads
 
680
            //Send ACK
681
            packetOut = frameOut->packet;
682
            EthernetCreateResponse(packetOut, packet, length);
683
            memcpy(socketNew->headerRcv, packet, TCP_SEQ);
684
            memcpy(socketNew->headerSend, packetOut, TCP_SEQ);
685
            packetOut[TCP_FLAGS] = TCP_FLAGS_SYN | TCP_FLAGS_ACK;
686
            ++socketNew->ack;
687
            packetOut[TCP_DATA] = 2;    //maximum segment size = 536
688
            packetOut[TCP_DATA+1] = 4;
689
            packetOut[TCP_DATA+2] = 2;
690
            packetOut[TCP_DATA+3] = 24;
691
            TCPSendPacket(socketNew, frameOut, TCP_DATA+4);
692
            ++socketNew->seq;
693
 
694
            //Add socket to linked list
695 157 rhoads
            OS_MutexPend(IPMutex);
696 155 rhoads
            socketNew->next = SocketHead;
697
            socketNew->prev = NULL;
698
            if(SocketHead)
699
               SocketHead->prev = socketNew;
700
            SocketHead = socketNew;
701 157 rhoads
            OS_MutexPost(IPMutex);
702 304 rhoads
            if(socketNew->funcPtr)
703
               OS_Job(socketNew->funcPtr, socketNew, 0, 0);
704 155 rhoads
            return 0;
705
         }
706
      }
707 220 rhoads
 
708
      //Send reset
709
      frameOut = IPFrameGet(0);
710
      if(frameOut == NULL)
711
         return 0;
712
      packetOut = frameOut->packet;
713
      EthernetCreateResponse(packetOut, packet, TCP_DATA);
714
      memset(packetOut+TCP_SEQ, 0, 4);
715
      ++seq;
716
      packetOut[TCP_ACK]   = (uint8)(seq >> 24);
717
      packetOut[TCP_ACK+1] = (uint8)(seq >> 16);
718
      packetOut[TCP_ACK+2] = (uint8)(seq >> 8);
719
      packetOut[TCP_ACK+3] = (uint8)seq;
720
      packetOut[TCP_HEADER_LENGTH] = 0x50;
721
      packetOut[TCP_FLAGS] = TCP_FLAGS_RST;
722
      IPSendPacket(NULL, frameOut, TCP_DATA);
723 155 rhoads
      return 0;
724
   }
725
 
726
   //Find an open socket
727
   for(socket = SocketHead; socket; socket = socket->next)
728
   {
729
      if(packet[IP_PROTOCOL] == socket->headerRcv[IP_PROTOCOL] &&
730
         memcmp(packet+IP_SOURCE, socket->headerRcv+IP_SOURCE, 8) == 0 &&
731
         memcmp(packet+TCP_SOURCE_PORT, socket->headerRcv+TCP_SOURCE_PORT, 4) == 0)
732
      {
733
         break;
734
      }
735
   }
736
   if(socket == NULL)
737 220 rhoads
   {
738 155 rhoads
      return 0;
739 220 rhoads
   }
740 155 rhoads
 
741 317 rhoads
   //Determine window
742
   socket->seqWindow = (packet[TCP_WINDOW_SIZE] << 8) | packet[TCP_WINDOW_SIZE+1];
743
   bytes = ip_length - (TCP_DATA - IP_VERSION_LENGTH);
744
 
745 225 rhoads
   //Check if packets can be removed from retransmition list
746
   if(packet[TCP_FLAGS] & TCP_FLAGS_ACK)
747 155 rhoads
   {
748
      if(ack != socket->seqReceived)
749
      {
750 157 rhoads
         OS_MutexPend(IPMutex);
751 155 rhoads
         for(frame2 = FrameResendHead; frame2; )
752
         {
753
            framePrev = frame2;
754
            frame2 = frame2->next;
755
            if(framePrev->socket == socket && (int)(ack - framePrev->seqEnd) >= 0)
756
            {
757
               //Remove packet from retransmition queue
758 160 rhoads
               if(socket->timeout)
759 231 rhoads
                  socket->timeout = socket->timeoutReset;
760 155 rhoads
               FrameRemove(&FrameResendHead, &FrameResendTail, framePrev);
761
               FrameFree(framePrev);
762
            }
763
         }
764 157 rhoads
         OS_MutexPost(IPMutex);
765 155 rhoads
         socket->seqReceived = ack;
766 318 rhoads
         socket->resentDone = 0;
767 155 rhoads
      }
768 317 rhoads
      else if(ack == socket->seqReceived && bytes == 0 &&
769 318 rhoads
         (packet[TCP_FLAGS] & (TCP_FLAGS_RST | TCP_FLAGS_FIN)) == 0 &&
770
         socket->resentDone == 0)
771 317 rhoads
      {
772
         //Detected that packet was lost, resend all
773
         if(IPVerbose)
774
            printf("A");
775
         OS_MutexPend(IPMutex);
776
         for(frame2 = FrameResendHead; frame2; )
777
         {
778
            framePrev = frame2;
779
            frame2 = frame2->next;
780
            if(framePrev->socket == socket)
781
            {
782
               //Remove packet from retransmition queue
783
               FrameRemove(&FrameResendHead, &FrameResendTail, framePrev);
784
               IPSendFrame(framePrev);
785
            }
786
         }
787
         OS_MutexPost(IPMutex);
788 318 rhoads
         socket->resentDone = 1;
789 317 rhoads
      }
790 225 rhoads
   }
791 155 rhoads
 
792 225 rhoads
   //Check if SYN/ACK
793
   if((packet[TCP_FLAGS] & (TCP_FLAGS_SYN | TCP_FLAGS_ACK)) ==
794
      (TCP_FLAGS_SYN | TCP_FLAGS_ACK))
795
   {
796
      //Ack SYN/ACK
797
      socket->ack = seq + 1;
798 317 rhoads
      socket->ackProcessed = seq + 1;
799 225 rhoads
      frameOut = IPFrameGet(FRAME_COUNT_SEND);
800
      if(frameOut)
801 160 rhoads
      {
802 225 rhoads
         frameOut->packet[TCP_FLAGS] = TCP_FLAGS_ACK;
803
         TCPSendPacket(socket, frameOut, TCP_DATA);
804 160 rhoads
      }
805 225 rhoads
      if(socket->funcPtr)
806
         OS_Job(socket->funcPtr, socket, 0, 0);
807
      return 0;
808
   }
809
   if(packet[TCP_HEADER_LENGTH] != 0x50)
810
   {
811
      if(IPVerbose)
812
         printf("length error\n");
813
      return 0;
814
   }
815
 
816 257 rhoads
   //Check if RST flag set
817
   if(packet[TCP_FLAGS] & TCP_FLAGS_RST)
818
   {
819 304 rhoads
      notify = 1;
820 257 rhoads
      if(socket->state == IP_FIN_SERVER)
821
         IPClose2(socket);
822
      else if(socket->state == IP_TCP)
823
         socket->state = IP_FIN_CLIENT;
824
   }
825 225 rhoads
   //Copy packet into socket
826 257 rhoads
   else if(socket->ack == seq && bytes > 0)
827 225 rhoads
   {
828
      //Insert packet into socket linked list
829 304 rhoads
      notify = 1;
830 225 rhoads
      if(socket->timeout)
831 231 rhoads
         socket->timeout = socket->timeoutReset;
832 225 rhoads
      if(IPVerbose)
833
         printf("D");
834
      if(frameIn->length > ip_length + IP_VERSION_LENGTH)
835 231 rhoads
         frameIn->length = (uint16)(ip_length + IP_VERSION_LENGTH);
836 225 rhoads
      FrameInsert(&socket->frameReadHead, &socket->frameReadTail, frameIn);
837
      socket->ack += bytes;
838
 
839
      //Ack data
840
      frameOut = IPFrameGet(FRAME_COUNT_SEND);
841
      if(frameOut)
842 160 rhoads
      {
843 225 rhoads
         frameOut->packet[TCP_FLAGS] = TCP_FLAGS_ACK;
844
         TCPSendPacket(socket, frameOut, TCP_DATA);
845 160 rhoads
      }
846
 
847 225 rhoads
      //Using frame
848
      rc = 1;
849
   }
850
   else if(bytes)
851
   {
852
      //Ack with current offset since data missing
853
      frameOut = IPFrameGet(FRAME_COUNT_SEND);
854
      if(frameOut)
855 155 rhoads
      {
856 225 rhoads
         frameOut->packet[TCP_FLAGS] = TCP_FLAGS_ACK;
857
         TCPSendPacket(socket, frameOut, TCP_DATA);
858
      }
859
   }
860 155 rhoads
 
861 225 rhoads
   //Check if FIN flag set
862
   if(packet[TCP_FLAGS] & TCP_FLAGS_FIN)
863
   {
864 304 rhoads
      notify = 1;
865 225 rhoads
      socket->timeout = SOCKET_TIMEOUT;
866
      if(IPVerbose)
867
         printf("F");
868
      frameOut = IPFrameGet(0);
869
      if(frameOut == NULL)
870
         return 0;
871
      packetOut = frameOut->packet;
872
      packetOut[TCP_FLAGS] = TCP_FLAGS_ACK;
873
      ++socket->ack;
874
      TCPSendPacket(socket, frameOut, TCP_DATA);
875
      if(socket->state == IP_FIN_SERVER)
876
         IPClose2(socket);
877 231 rhoads
      else if(socket->state == IP_TCP)
878 225 rhoads
         socket->state = IP_FIN_CLIENT;
879
   }
880 155 rhoads
 
881 225 rhoads
   //Notify application
882 304 rhoads
   if(socket->funcPtr && notify)
883 225 rhoads
      OS_Job(socket->funcPtr, socket, 0, 0);
884
   return rc;
885 155 rhoads
}
886
 
887
 
888 247 rhoads
int IPProcessEthernetPacket(IPFrame *frameIn, int length)
889 155 rhoads
{
890
   int ip_length, rc;
891
   IPSocket *socket;
892
   IPFrame *frameOut;
893
   uint8 *packet, *packetOut;
894
 
895
   packet = frameIn->packet;
896 247 rhoads
   frameIn->length = (uint16)length;
897 155 rhoads
 
898
   if(packet[ETHERNET_FRAME_TYPE] != 0x08 || frameIn->length > PACKET_SIZE)
899
      return 0;  //wrong ethernet type, packet not used
900
 
901
   //ARP?
902
   if(packet[ETHERNET_FRAME_TYPE+1] == 0x06)
903
   {
904
      //Check if ARP reply
905
      if(memcmp(packet+ETHERNET_DEST, ethernetAddressPlasma, 6) == 0 &&
906
         packet[ARP_OP+1] == 2 && memcmp(packet+ARP_IP_SENDER, ipAddressGateway, 4) == 0)
907
      {
908
         //Found MAC address for gateway
909
         memcpy(ethernetAddressGateway, packet+ARP_ETHERNET_SENDER, 6);
910
         return 0;
911
      }
912
 
913
      //Check if ARP request
914 326 rhoads
      if(packet[ARP_OP] != 0 || packet[ARP_OP+1] != 1 ||
915 155 rhoads
         memcmp(packet+ARP_IP_TARGET, ipAddressPlasma, 4))
916
         return 0;
917
      //Create ARP response
918 157 rhoads
      frameOut = IPFrameGet(0);
919 155 rhoads
      if(frameOut == NULL)
920
         return 0;
921
      packetOut = frameOut->packet;
922
      memcpy(packetOut, packet, frameIn->length);
923
      memcpy(packetOut+ETHERNET_DEST, packet+ETHERNET_SOURCE, 6);
924
      memcpy(packetOut+ETHERNET_SOURCE, ethernetAddressPlasma, 6);
925
      packetOut[ARP_OP+1] = 2; //ARP reply
926
      memcpy(packetOut+ARP_ETHERNET_SENDER, ethernetAddressPlasma, 6);
927
      memcpy(packetOut+ARP_IP_SENDER, packet+ARP_IP_TARGET, 4);
928
      memcpy(packetOut+ARP_ETHERNET_TARGET, packet+ARP_ETHERNET_SENDER, 6);
929
      memcpy(packetOut+ARP_IP_TARGET, packet+ARP_IP_SENDER, 4);
930
      IPSendPacket(NULL, frameOut, frameIn->length);
931
      return 0;
932
   }
933
 
934
   //Check if proper type of packet
935
   ip_length = (packet[IP_LENGTH] << 8) | packet[IP_LENGTH+1];
936
   if(frameIn->length < UDP_DATA || ip_length > frameIn->length - IP_VERSION_LENGTH)
937
      return 0;
938
   if(packet[ETHERNET_FRAME_TYPE+1] != 0x00 ||
939
      packet[IP_VERSION_LENGTH] != 0x45)
940
      return 0;
941
 
942
   //Check if DHCP reply
943
   if(packet[IP_PROTOCOL] == 0x11 &&
944
      packet[UDP_SOURCE_PORT] == 0 && packet[UDP_SOURCE_PORT+1] == 67 &&
945
      packet[UDP_DEST_PORT] == 0 && packet[UDP_DEST_PORT+1] == 68)
946
   {
947
      IPDhcp(packet, frameIn->length, 2);            //DHCP reply
948
      return 0;
949
   }
950
 
951
   //Check if correct destination address
952
   if(memcmp(packet+ETHERNET_DEST, ethernetAddressPlasma, 6) ||
953
      memcmp(packet+IP_DEST, ipAddressPlasma, 4))
954
      return 0;
955
   rc = EthernetVerifyChecksums(packet, frameIn->length);
956
   //if(rc)
957
   //{
958
   //   printf("C ");
959
   //   return;
960
   //}
961
 
962
   //PING request?
963
   if(packet[IP_PROTOCOL] == 1)
964
   {
965 209 rhoads
      if(packet[PING_TYPE] == 0)  //PING reply
966
      {
967
         for(socket = SocketHead; socket; socket = socket->next)
968
         {
969
            if(socket->state == IP_PING &&
970
               memcmp(packet+IP_SOURCE, socket->headerSend+IP_DEST, 4) == 0)
971
            {
972 225 rhoads
               OS_Job(socket->funcPtr, socket, 0, 0);
973 209 rhoads
               return 0;
974
            }
975
         }
976
      }
977 155 rhoads
      if(packet[PING_TYPE] != 8)
978
         return 0;
979 160 rhoads
      frameOut = IPFrameGet(FRAME_COUNT_SEND);
980 155 rhoads
      if(frameOut == NULL)
981
         return 0;
982
      packetOut = frameOut->packet;
983
      EthernetCreateResponse(packetOut, packet, frameIn->length);
984
      frameOut->packet[PING_TYPE] = 0;       //PING reply
985
      IPSendPacket(NULL, frameOut, frameIn->length);
986
      return 0;
987
   }
988
 
989
   //TCP packet?
990
   if(packet[IP_PROTOCOL] == 0x06)
991
   {
992
      return IPProcessTCPPacket(frameIn);
993
   }
994
 
995
   //UDP packet?
996
   if(packet[IP_PROTOCOL] == 0x11)
997
   {
998
      //Find open socket
999
      for(socket = SocketHead; socket; socket = socket->next)
1000
      {
1001
         if(packet[IP_PROTOCOL] == socket->headerRcv[IP_PROTOCOL] &&
1002
            memcmp(packet+IP_SOURCE, socket->headerRcv+IP_SOURCE, 8) == 0 &&
1003
            memcmp(packet+UDP_SOURCE_PORT, socket->headerRcv+UDP_SOURCE_PORT, 2) == 0)
1004
         {
1005
            break;
1006
         }
1007
      }
1008
 
1009
      if(socket == NULL)
1010
      {
1011
         //Find listening socket
1012
         for(socket = SocketHead; socket; socket = socket->next)
1013
         {
1014
            if(packet[IP_PROTOCOL] == socket->headerRcv[IP_PROTOCOL] &&
1015
               memcmp(packet+UDP_DEST_PORT, socket->headerRcv+UDP_DEST_PORT, 2) == 0)
1016
            {
1017 209 rhoads
               EthernetCreateResponse(socket->headerSend, packet, UDP_DATA);
1018 155 rhoads
               break;
1019
            }
1020
         }
1021
      }
1022
 
1023
      if(socket)
1024
      {
1025
         if(IPVerbose)
1026
            printf("U");
1027
         FrameInsert(&socket->frameReadHead, &socket->frameReadTail, frameIn);
1028 225 rhoads
         OS_Job(socket->funcPtr, socket, 0, 0);
1029 155 rhoads
         return 1;
1030
      }
1031
   }
1032
   return 0;
1033
}
1034
 
1035
 
1036 220 rhoads
#ifndef WIN32
1037 209 rhoads
static void IPMainThread(void *arg)
1038 155 rhoads
{
1039
   uint32 message[4];
1040
   int rc;
1041
   IPFrame *frame, *frameOut=NULL;
1042
   uint32 ticks, ticksLast;
1043 209 rhoads
   (void)arg;
1044 155 rhoads
 
1045
   ticksLast = OS_ThreadTime();
1046
   memset(message, 0, sizeof(message));
1047
 
1048
   for(;;)
1049
   {
1050
      Led(0);
1051
      rc = OS_MQueueGet(IPMQueue, message, 10);
1052
      if(rc == 0)
1053
      {
1054
         frame = (IPFrame*)message[1];
1055
         if(message[0] == 0)       //frame received
1056
         {
1057
            Led(1);
1058
            frame->length = (uint16)message[2];
1059 247 rhoads
            rc = IPProcessEthernetPacket(frame, frame->length);
1060 155 rhoads
            if(rc == 0)
1061
               FrameFree(frame);
1062
         }
1063
         else if(message[0] == 1)  //frame sent
1064
         {
1065
            Led(2);
1066
            assert(frame == frameOut);
1067
            IPFrameReschedule(frame);
1068
            frameOut = NULL;
1069
         }
1070
         else if(message[0] == 2)  //frame ready to send
1071
         {
1072
         }
1073
      }
1074
 
1075
      if(frameOut == NULL)
1076
      {
1077 157 rhoads
         OS_MutexPend(IPMutex);
1078 155 rhoads
         frameOut = FrameSendTail;
1079
         if(frameOut)
1080
            FrameRemove(&FrameSendHead, &FrameSendTail, frameOut);
1081 157 rhoads
         OS_MutexPost(IPMutex);
1082 155 rhoads
         if(frameOut)
1083
         {
1084
            Led(4);
1085
            UartPacketSend(frameOut->packet, frameOut->length);
1086
         }
1087
      }
1088
 
1089
      ticks = OS_ThreadTime();
1090
      if(ticks - ticksLast > 100)
1091
      {
1092
         IPTick();
1093
         ticksLast = ticks;
1094
      }
1095
   }
1096
}
1097 220 rhoads
#endif
1098 155 rhoads
 
1099
 
1100 157 rhoads
uint8 *MyPacketGet(void)
1101 155 rhoads
{
1102 160 rhoads
   return (uint8*)IPFrameGet(FRAME_COUNT_RCV);
1103 155 rhoads
}
1104
 
1105
 
1106
//Set FrameSendFunction only if single threaded
1107 296 rhoads
void IPInit(IPFuncPtr frameSendFunction, uint8 macAddress[6], char name[6])
1108 155 rhoads
{
1109
   int i;
1110
   IPFrame *frame;
1111
 
1112 296 rhoads
   if(macAddress)
1113
      memcpy(ethernetAddressPlasma, macAddress, 6);
1114
   if(name)
1115
      memcpy(dhcpOptions+18, name, 6);
1116 209 rhoads
   FrameSendFunc = frameSendFunction;
1117 157 rhoads
   IPMutex = OS_MutexCreate("IPSem");
1118 155 rhoads
   IPMQueue = OS_MQueueCreate("IPMQ", FRAME_COUNT*2, 32);
1119
   for(i = 0; i < FRAME_COUNT; ++i)
1120
   {
1121
      frame = (IPFrame*)malloc(sizeof(IPFrame));
1122
      memset(frame, 0, sizeof(IPFrame));
1123
      frame->next = FrameFreeHead;
1124
      frame->prev = NULL;
1125
      FrameFreeHead = frame;
1126
   }
1127 296 rhoads
   FrameFreeCount = FRAME_COUNT;
1128 302 rhoads
#ifndef WIN32
1129 155 rhoads
   UartPacketConfig(MyPacketGet, PACKET_SIZE, IPMQueue);
1130 209 rhoads
   if(frameSendFunction == NULL)
1131 157 rhoads
      IPThread = OS_ThreadCreate("TCP/IP", IPMainThread, NULL, 240, 6000);
1132 302 rhoads
#endif
1133 155 rhoads
   IPDhcp(NULL, 360, 1);        //Send DHCP request
1134
}
1135
 
1136
 
1137 209 rhoads
//To open a socket for listen set ipAddress to 0
1138
IPSocket *IPOpen(IPMode_e mode, uint32 ipAddress, uint32 port, IPFuncPtr funcPtr)
1139 155 rhoads
{
1140
   IPSocket *socket;
1141 160 rhoads
   uint8 *ptrSend, *ptrRcv;
1142
   IPFrame *frame;
1143
   static int portSource=0x1007;
1144 155 rhoads
 
1145
   socket = (IPSocket*)malloc(sizeof(IPSocket));
1146
   if(socket == NULL)
1147
      return socket;
1148
   memset(socket, 0, sizeof(IPSocket));
1149
   socket->prev = NULL;
1150
   socket->state = IP_LISTEN;
1151
   socket->timeout = 0;
1152 231 rhoads
   socket->timeoutReset = SOCKET_TIMEOUT;
1153 155 rhoads
   socket->frameReadHead = NULL;
1154
   socket->frameReadTail = NULL;
1155
   socket->readOffset = 0;
1156
   socket->funcPtr = funcPtr;
1157
   socket->userData = 0;
1158
   socket->userFunc = NULL;
1159
   socket->userPtr = NULL;
1160 317 rhoads
   socket->seqWindow = 2048;
1161 160 rhoads
   ptrSend = socket->headerSend;
1162
   ptrRcv = socket->headerRcv;
1163 155 rhoads
 
1164 209 rhoads
   if(ipAddress == 0)
1165 155 rhoads
   {
1166
      //Setup listing port
1167 209 rhoads
      socket->headerRcv[TCP_DEST_PORT] = (uint8)(port >> 8);
1168
      socket->headerRcv[TCP_DEST_PORT+1] = (uint8)port;
1169 155 rhoads
   }
1170
   else
1171
   {
1172 160 rhoads
      //Setup sending packet
1173
      memset(ptrSend, 0, UDP_LENGTH);
1174
      memset(ptrRcv, 0, UDP_LENGTH);
1175 155 rhoads
 
1176 160 rhoads
      //Setup Ethernet
1177 209 rhoads
      if(ipAddress != IPAddressSelf())
1178
         memcpy(ptrSend+ETHERNET_DEST, ethernetAddressGateway, 6);
1179
      else
1180
         memcpy(ptrSend+ETHERNET_DEST, ethernetAddressPlasma, 6);
1181 160 rhoads
      memcpy(ptrSend+ETHERNET_SOURCE, ethernetAddressPlasma, 6);
1182
      ptrSend[ETHERNET_FRAME_TYPE] = 0x08;
1183
 
1184
      //Setup IP
1185
      ptrSend[IP_VERSION_LENGTH] = 0x45;
1186
      ptrSend[IP_TIME_TO_LIVE] = 0x80;
1187
 
1188
      //Setup IP addresses
1189
      memcpy(ptrSend+IP_SOURCE, ipAddressPlasma, 4);
1190 209 rhoads
      ptrSend[IP_DEST] = (uint8)(ipAddress >> 24);
1191
      ptrSend[IP_DEST+1] = (uint8)(ipAddress >> 16);
1192
      ptrSend[IP_DEST+2] = (uint8)(ipAddress >> 8);
1193
      ptrSend[IP_DEST+3] = (uint8)ipAddress;
1194
      ptrRcv[IP_SOURCE] = (uint8)(ipAddress >> 24);
1195
      ptrRcv[IP_SOURCE+1] = (uint8)(ipAddress >> 16);
1196
      ptrRcv[IP_SOURCE+2] = (uint8)(ipAddress >> 8);
1197
      ptrRcv[IP_SOURCE+3] = (uint8)ipAddress;
1198 160 rhoads
      memcpy(ptrRcv+IP_DEST, ipAddressPlasma, 4);
1199
 
1200
      //Setup ports
1201
      ptrSend[TCP_SOURCE_PORT] = (uint8)(portSource >> 8);
1202
      ptrSend[TCP_SOURCE_PORT+1] = (uint8)portSource;
1203 209 rhoads
      ptrSend[TCP_DEST_PORT] = (uint8)(port >> 8);
1204
      ptrSend[TCP_DEST_PORT+1] = (uint8)port;
1205
      ptrRcv[TCP_SOURCE_PORT] = (uint8)(port >> 8);
1206
      ptrRcv[TCP_SOURCE_PORT+1] = (uint8)port;
1207 160 rhoads
      ptrRcv[TCP_DEST_PORT] = (uint8)(portSource >> 8);
1208
      ptrRcv[TCP_DEST_PORT+1] = (uint8)portSource;
1209 155 rhoads
      ++portSource;
1210
   }
1211
 
1212 209 rhoads
   if(mode == IP_MODE_TCP)
1213 155 rhoads
   {
1214 209 rhoads
      if(ipAddress)
1215 160 rhoads
         socket->state = IP_TCP;
1216
      else
1217
         socket->state = IP_LISTEN;
1218
      ptrSend[IP_PROTOCOL] = 0x06;  //TCP
1219
      ptrRcv[IP_PROTOCOL] = 0x06;
1220 155 rhoads
   }
1221 209 rhoads
   else if(mode == IP_MODE_UDP)
1222 155 rhoads
   {
1223
      socket->state = IP_UDP;
1224 160 rhoads
      ptrSend[IP_PROTOCOL] = 0x11;  //UDP
1225
      ptrRcv[IP_PROTOCOL] = 0x11;
1226 155 rhoads
   }
1227 209 rhoads
   else if(mode == IP_MODE_PING)
1228
   {
1229
      socket->state = IP_PING;
1230
      ptrSend[IP_PROTOCOL] = 0x01;  //PING
1231
      memset(ptrSend+PING_TYPE, 0, 8);
1232
      ptrSend[PING_TYPE] = 8;       //SEND
1233
   }
1234 155 rhoads
 
1235 160 rhoads
   //Add socket to linked list
1236 157 rhoads
   OS_MutexPend(IPMutex);
1237 155 rhoads
   socket->next = SocketHead;
1238 160 rhoads
   socket->prev = NULL;
1239
   if(SocketHead)
1240
      SocketHead->prev = socket;
1241 155 rhoads
   SocketHead = socket;
1242 157 rhoads
   OS_MutexPost(IPMutex);
1243 160 rhoads
 
1244 209 rhoads
   if(mode == IP_MODE_TCP && ipAddress)
1245 160 rhoads
   {
1246
      //Send TCP SYN
1247 206 rhoads
      socket->seq = 0x01234567;
1248 160 rhoads
      frame = IPFrameGet(0);
1249
      if(frame)
1250
      {
1251
         frame->packet[TCP_FLAGS] = TCP_FLAGS_SYN;
1252
         frame->packet[TCP_DATA] = 2;    //maximum segment size = 536
1253
         frame->packet[TCP_DATA+1] = 4;
1254
         frame->packet[TCP_DATA+2] = 2;
1255
         frame->packet[TCP_DATA+3] = 24;
1256
         TCPSendPacket(socket, frame, TCP_DATA+4);
1257
         ++socket->seq;
1258
      }
1259
   }
1260 155 rhoads
   return socket;
1261
}
1262
 
1263
 
1264 209 rhoads
void IPWriteFlush(IPSocket *socket)
1265 155 rhoads
{
1266
   uint8 *packetOut;
1267 209 rhoads
   if(socket->frameSend && socket->state != IP_UDP &&
1268
      socket->state != IP_PING)
1269 155 rhoads
   {
1270 209 rhoads
      packetOut = socket->frameSend->packet;
1271 220 rhoads
      packetOut[TCP_FLAGS] = TCP_FLAGS_ACK | TCP_FLAGS_PSH;
1272 209 rhoads
      TCPSendPacket(socket, socket->frameSend, TCP_DATA + socket->sendOffset);
1273
      socket->seq += socket->sendOffset;
1274
      socket->frameSend = NULL;
1275
      socket->sendOffset = 0;
1276 155 rhoads
   }
1277
}
1278
 
1279
 
1280 209 rhoads
uint32 IPWrite(IPSocket *socket, const uint8 *buf, uint32 length)
1281 155 rhoads
{
1282
   IPFrame *frameOut;
1283
   uint8 *packetOut;
1284 206 rhoads
   uint32 bytes, count=0, tries=0;
1285 155 rhoads
   int offset;
1286 165 rhoads
   OS_Thread_t *self;
1287 155 rhoads
 
1288 231 rhoads
   if(socket->timeout)
1289
      socket->timeout = socket->timeoutReset;
1290
 
1291 155 rhoads
   //printf("IPWrite(0x%x, %d)", Socket, Length);
1292 165 rhoads
   self = OS_ThreadSelf();
1293 209 rhoads
   while(length)
1294 155 rhoads
   {
1295 206 rhoads
      //Rate limit output
1296 317 rhoads
      if(socket->seq - socket->seqReceived >= SEND_WINDOW)
1297 206 rhoads
      {
1298 302 rhoads
         //printf("l(%d,%d,%d) ", socket->seq - socket->seqReceived, socket->seq, socket->seqReceived);
1299 206 rhoads
         if(self == IPThread || ++tries > 200)
1300
            break;
1301
         else
1302
         {
1303
            OS_ThreadSleep(1);
1304
            continue;
1305
         }
1306
      }
1307 165 rhoads
      tries = 0;
1308 209 rhoads
      while(socket->frameSend == NULL)
1309 155 rhoads
      {
1310 209 rhoads
         socket->frameSend = IPFrameGet(FRAME_COUNT_SEND);
1311
         socket->sendOffset = 0;
1312
         if(socket->frameSend == NULL)
1313 165 rhoads
         {
1314 302 rhoads
            //printf("L");
1315 165 rhoads
            if(self == IPThread || ++tries > 200)
1316
               break;
1317
            else
1318
               OS_ThreadSleep(1);
1319
         }
1320 155 rhoads
      }
1321 209 rhoads
      frameOut = socket->frameSend;
1322
      offset = socket->sendOffset;
1323 155 rhoads
      if(frameOut == NULL)
1324
         break;
1325
      packetOut = frameOut->packet;
1326
 
1327 209 rhoads
      if(socket->state == IP_PING)
1328 155 rhoads
      {
1329 209 rhoads
         bytes = length;
1330
         memcpy(packetOut, socket->headerSend, PING_DATA);
1331
         memcpy(packetOut+PING_DATA, buf, bytes);
1332
         IPSendPacket(socket, socket->frameSend, PING_DATA + bytes);
1333
         socket->frameSend = NULL;
1334
      }
1335
      else if(socket->state != IP_UDP)
1336
      {
1337
         bytes = 512 - offset;
1338
         if(bytes > length)
1339
            bytes = length;
1340
         socket->sendOffset += bytes;
1341
         memcpy(packetOut+TCP_DATA+offset, buf, bytes);
1342
         if(socket->sendOffset >= 512)
1343
            IPWriteFlush(socket);
1344 165 rhoads
         //if(Socket->seq - Socket->seqReceived > Socket->seqWindow)
1345
         //{
1346
         //   printf("W");
1347
         //   OS_ThreadSleep(10);
1348
         //}
1349 155 rhoads
      }
1350
      else  //UDP
1351
      {
1352 209 rhoads
         bytes = length;
1353
         memcpy(packetOut+UDP_DATA+offset, buf, bytes);
1354
         memcpy(packetOut, socket->headerSend, UDP_LENGTH);
1355
         IPSendPacket(socket, socket->frameSend, UDP_DATA + bytes);
1356
         socket->frameSend = NULL;
1357 155 rhoads
      }
1358
      count += bytes;
1359 209 rhoads
      buf += bytes;
1360
      length -= bytes;
1361 155 rhoads
   }
1362
   return count;
1363
}
1364
 
1365
 
1366 209 rhoads
uint32 IPRead(IPSocket *socket, uint8 *buf, uint32 length)
1367 155 rhoads
{
1368
   IPFrame *frame, *frame2;
1369
   int count=0, bytes, offset;
1370
 
1371 225 rhoads
   if(socket->state == IP_UDP)
1372
      offset = UDP_DATA;
1373
   else
1374 155 rhoads
      offset = TCP_DATA;
1375
 
1376 157 rhoads
   OS_MutexPend(IPMutex);
1377 209 rhoads
   for(frame = socket->frameReadTail; length && frame; )
1378 155 rhoads
   {
1379 209 rhoads
      bytes = frame->length - offset - socket->readOffset;
1380
      if(bytes > (int)length)
1381
         bytes = length;
1382
      memcpy(buf, frame->packet + offset + socket->readOffset, bytes);
1383
      buf += bytes;
1384
      socket->readOffset += bytes;
1385
      length -= bytes;
1386 155 rhoads
      count += bytes;
1387
 
1388
      //Check if done with packet
1389
      frame2 = frame;
1390
      frame = frame->prev;
1391 209 rhoads
      if(socket->readOffset == frame2->length - offset)
1392 155 rhoads
      {
1393
         //Remove packet from socket linked list
1394 209 rhoads
         socket->readOffset = 0;
1395
         FrameRemove(&socket->frameReadHead, &socket->frameReadTail, frame2);
1396 317 rhoads
         socket->ackProcessed += frame2->length - offset;
1397
         if(socket->state == IP_TCP &&
1398
            socket->ack - socket->ackProcessed > RECEIVE_WINDOW - 2048)
1399
         {
1400
            //Update receive window for flow control
1401
            frame2->packet[TCP_FLAGS] = TCP_FLAGS_ACK;
1402
            TCPSendPacket(socket, frame2, TCP_DATA);
1403
         }
1404
         else
1405
            FrameFree(frame2);
1406 155 rhoads
      }
1407
   }
1408 157 rhoads
   OS_MutexPost(IPMutex);
1409 155 rhoads
   return count;
1410
}
1411
 
1412
 
1413 209 rhoads
static void IPClose2(IPSocket *socket)
1414 155 rhoads
{
1415
   IPFrame *frame, *framePrev;
1416
 
1417 157 rhoads
   OS_MutexPend(IPMutex);
1418 155 rhoads
 
1419 157 rhoads
   //Mark packets as don't retransmit
1420
   for(frame = FrameSendHead; frame; frame = frame->next)
1421 155 rhoads
   {
1422 209 rhoads
      if(frame->socket == socket)
1423 157 rhoads
         frame->socket = NULL;
1424 155 rhoads
   }
1425
 
1426
   //Remove packets from retransmision list
1427
   for(frame = FrameResendHead; frame; )
1428
   {
1429
      framePrev = frame;
1430
      frame = frame->next;
1431 209 rhoads
      if(framePrev->socket == socket)
1432 155 rhoads
      {
1433
         FrameRemove(&FrameResendHead, &FrameResendTail, framePrev);
1434
         FrameFree(framePrev);
1435
      }
1436
   }
1437
 
1438
   //Remove packets from socket read linked list
1439 209 rhoads
   for(frame = socket->frameReadHead; frame; )
1440 155 rhoads
   {
1441
      framePrev = frame;
1442
      frame = frame->next;
1443 209 rhoads
      FrameRemove(&socket->frameReadHead, &socket->frameReadTail, framePrev);
1444 155 rhoads
      FrameFree(framePrev);
1445
   }
1446
 
1447
   //Remove socket
1448 317 rhoads
   if(socket->state == IP_CLOSED || socket->state <= IP_UDP)
1449 225 rhoads
   {
1450
      if(socket->prev == NULL)
1451
         SocketHead = socket->next;
1452
      else
1453
         socket->prev->next = socket->next;
1454
      if(socket->next)
1455
         socket->next->prev = socket->prev;
1456
      free(socket);
1457
   }
1458 155 rhoads
   else
1459 225 rhoads
   {
1460
      //Give application 10 seconds to stop using socket
1461 317 rhoads
      if(socket->state > IP_UDP)
1462
         socket->state = IP_CLOSED;
1463 225 rhoads
      socket->timeout = 10;
1464
   }
1465 157 rhoads
   OS_MutexPost(IPMutex);
1466 155 rhoads
}
1467
 
1468
 
1469 209 rhoads
void IPClose(IPSocket *socket)
1470 155 rhoads
{
1471
   IPFrame *frameOut;
1472
 
1473 209 rhoads
   IPWriteFlush(socket);
1474
   if(socket->state <= IP_UDP)
1475 157 rhoads
   {
1476 209 rhoads
      IPClose2(socket);
1477 157 rhoads
      return;
1478
   }
1479
   frameOut = IPFrameGet(0);
1480 231 rhoads
   if(frameOut == NULL)
1481 155 rhoads
      return;
1482
   frameOut->packet[TCP_FLAGS] = TCP_FLAGS_FIN | TCP_FLAGS_ACK;
1483 209 rhoads
   TCPSendPacket(socket, frameOut, TCP_DATA);
1484
   ++socket->seq;
1485
   if(socket->state == IP_FIN_CLIENT)
1486
      IPClose2(socket);
1487 157 rhoads
   else
1488 209 rhoads
      socket->state = IP_FIN_SERVER;
1489 155 rhoads
}
1490
 
1491
 
1492 317 rhoads
void IPPrintf(IPSocket *socket, char *message,
1493
              int arg0, int arg1, int arg2, int arg3)
1494 209 rhoads
{
1495 317 rhoads
   char buf[500], *ptr;
1496
   if(socket == NULL)
1497
   {
1498
      printf(message, arg0, arg1, arg2, arg3);
1499
      return;
1500
   }
1501
   ptr = strstr(message, "%");
1502
   if(ptr == NULL)
1503
      IPWrite(socket, (uint8*)message, (int)strlen(message));
1504
   else
1505
   {
1506
      sprintf(buf, message, arg0, arg1, arg2, arg3, 0, 0, 0, 0);
1507
      IPWrite(socket, (uint8*)buf, (int)strlen(buf));
1508
   }
1509
   if(socket->dontFlush == 0)
1510
      IPWriteFlush(socket);
1511 209 rhoads
}
1512 155 rhoads
 
1513
 
1514
void IPTick(void)
1515
{
1516
   IPFrame *frame, *frame2;
1517
   IPSocket *socket, *socket2;
1518 296 rhoads
   unsigned long ticks;
1519
   static unsigned long ticksPrev=0, ticksPrev2=0;
1520 155 rhoads
 
1521 296 rhoads
   ticks = OS_ThreadTime();
1522 326 rhoads
#ifdef WIN32
1523
   ticks = ticksPrev + 100;
1524
#endif
1525 296 rhoads
   if(ticks - ticksPrev >= 95)
1526 157 rhoads
   {
1527 296 rhoads
      if(IPVerbose && (Seconds % 60) == 0)
1528
      {
1529
         if(FrameFreeCount >= FRAME_COUNT-1)
1530
            printf("T");
1531
         else
1532
            printf("T(%d)", FrameFreeCount);
1533
      }
1534
      ++Seconds;
1535
      if(--DhcpRetrySeconds <= 0)
1536
         IPDhcp(NULL, 400, 1);   //DHCP request
1537 157 rhoads
   }
1538 155 rhoads
 
1539 157 rhoads
   OS_MutexPend(IPMutex);
1540 155 rhoads
 
1541
   //Retransmit timeout packets
1542
   for(frame = FrameResendHead; frame; )
1543
   {
1544
      frame2 = frame;
1545
      frame = frame->next;
1546 302 rhoads
      frame2->timeout = (short)(frame2->timeout - (ticks - ticksPrev2));
1547 296 rhoads
      if(--frame2->timeout <= 0)
1548 155 rhoads
      {
1549
         if(IPVerbose)
1550
            printf("r");
1551
         FrameRemove(&FrameResendHead, &FrameResendTail, frame2);
1552
         IPSendFrame(frame2);
1553
      }
1554
   }
1555
 
1556 296 rhoads
   if(ticks - ticksPrev >= 95)
1557 155 rhoads
   {
1558 296 rhoads
      //Close timed out sockets
1559
      for(socket = SocketHead; socket; )
1560 155 rhoads
      {
1561 296 rhoads
         socket2 = socket;
1562
         socket = socket->next;
1563
         if(socket2->timeout && --socket2->timeout == 0)
1564
         {
1565
            socket2->timeout = 10;
1566
            if(IPVerbose && socket2->state != IP_CLOSED &&
1567
                            socket2->state != IP_FIN_SERVER)
1568
               printf("t(%d,%d)", socket2->state, FrameFreeCount);
1569
            if(socket2->state == IP_TCP)
1570
               IPClose(socket2);
1571
            else if(socket2->state == IP_FIN_CLIENT)
1572
               IPClose(socket2);
1573
            else
1574
               IPClose2(socket2);
1575
         }
1576 155 rhoads
      }
1577 296 rhoads
      ticksPrev = ticks;
1578 155 rhoads
   }
1579 157 rhoads
   OS_MutexPost(IPMutex);
1580 296 rhoads
   ticksPrev2 = ticks;
1581 155 rhoads
}
1582
 
1583
 
1584
static void DnsCallback(IPSocket *socket)
1585
{
1586
   uint8 buf[200], *ptr;
1587
   uint32 ipAddress;
1588 209 rhoads
   int bytes;
1589 155 rhoads
 
1590
   memset(buf, 0, sizeof(buf));
1591 209 rhoads
   bytes = IPRead(socket, buf, sizeof(buf));
1592 155 rhoads
   if(buf[DNS_NUM_ANSWERS_RR+1])
1593
   {
1594 209 rhoads
      for(ptr = buf + DNS_QUESTIONS; ptr + 14 <= buf + bytes; ++ptr)
1595 155 rhoads
      {
1596 211 rhoads
         if(ptr[0] == 0 && ptr[1] == 1 && ptr[2] == 0 && ptr[3] == 1 &&
1597
            ptr[8] == 0 && ptr[9] == 4)
1598 155 rhoads
         {
1599 211 rhoads
            ipAddress = (ptr[10] << 24) | (ptr[11] << 16) | (ptr[12] << 8) | ptr[13];
1600
            printf("ipAddress = %d.%d.%d.%d\n", ptr[10], ptr[11], ptr[12], ptr[13]);
1601 155 rhoads
            socket->userData = ipAddress;
1602
            if(socket->userFunc)
1603
            {
1604 209 rhoads
               socket->userFunc(socket, ipAddress, socket->userPtr);
1605 155 rhoads
            }
1606
            break;
1607
         }
1608
      }
1609
   }
1610 220 rhoads
   IPClose(socket);
1611 155 rhoads
}
1612
 
1613
 
1614 220 rhoads
void IPResolve(char *name, IPFuncPtr resolvedFunc, void *arg)
1615 155 rhoads
{
1616
   uint8 buf[200], *ptr;
1617
   int length, i;
1618
   IPSocket *socket;
1619
 
1620
   socket = IPOpen(IP_MODE_UDP, ipAddressDns, DNS_PORT, DnsCallback);
1621
   memset(buf, 0, sizeof(buf));
1622
   buf[DNS_ID+1] = 1;
1623
   buf[DNS_FLAGS] = 1;
1624
   buf[DNS_NUM_QUESTIONS+1] = 1;
1625
 
1626
   //Setup name
1627
   ptr = buf + DNS_QUESTIONS;
1628 209 rhoads
   strncpy((char*)ptr+1, name, 100);
1629 155 rhoads
   ptr[0] = 1;
1630
   while(ptr[0])
1631
   {
1632
      for(i = 0; i < 100; ++i)
1633
      {
1634
         if(ptr[i+1] == '.' || ptr[i+1] == 0)
1635
         {
1636
            ptr[0] = (uint8)i;
1637
            ptr += i+1;
1638
            break;
1639
         }
1640
      }
1641
   }
1642
   ++ptr;
1643
   ptr[1] = DNS_QUERY_TYPE_IP;
1644
   ptr[3] = DNS_QUERY_CLASS;
1645
   length = (int)(ptr - buf) + 4;
1646
   if(length < 60)
1647
      length = 60;
1648
 
1649
   socket->userFunc = (IPFuncPtr)resolvedFunc;
1650 209 rhoads
   socket->userPtr = arg;
1651 155 rhoads
   socket->userData = 0;
1652
   IPWrite(socket, buf, length);
1653
}
1654
 

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