First step: AutoIP compiled in and working

Dependencies:   mbed

Committer:
darran
Date:
Fri Jun 18 09:11:35 2010 +0000
Revision:
0:55a05330f8cc

        

Who changed what in which revision?

UserRevisionLine numberNew contents of line
darran 0:55a05330f8cc 1 /**
darran 0:55a05330f8cc 2 * @file
darran 0:55a05330f8cc 3 * Transmission Control Protocol for IP
darran 0:55a05330f8cc 4 *
darran 0:55a05330f8cc 5 * This file contains common functions for the TCP implementation, such as functinos
darran 0:55a05330f8cc 6 * for manipulating the data structures and the TCP timer functions. TCP functions
darran 0:55a05330f8cc 7 * related to input and output is found in tcp_in.c and tcp_out.c respectively.
darran 0:55a05330f8cc 8 *
darran 0:55a05330f8cc 9 */
darran 0:55a05330f8cc 10
darran 0:55a05330f8cc 11 /*
darran 0:55a05330f8cc 12 * Copyright (c) 2001-2004 Swedish Institute of Computer Science.
darran 0:55a05330f8cc 13 * All rights reserved.
darran 0:55a05330f8cc 14 *
darran 0:55a05330f8cc 15 * Redistribution and use in source and binary forms, with or without modification,
darran 0:55a05330f8cc 16 * are permitted provided that the following conditions are met:
darran 0:55a05330f8cc 17 *
darran 0:55a05330f8cc 18 * 1. Redistributions of source code must retain the above copyright notice,
darran 0:55a05330f8cc 19 * this list of conditions and the following disclaimer.
darran 0:55a05330f8cc 20 * 2. Redistributions in binary form must reproduce the above copyright notice,
darran 0:55a05330f8cc 21 * this list of conditions and the following disclaimer in the documentation
darran 0:55a05330f8cc 22 * and/or other materials provided with the distribution.
darran 0:55a05330f8cc 23 * 3. The name of the author may not be used to endorse or promote products
darran 0:55a05330f8cc 24 * derived from this software without specific prior written permission.
darran 0:55a05330f8cc 25 *
darran 0:55a05330f8cc 26 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR IMPLIED
darran 0:55a05330f8cc 27 * WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF
darran 0:55a05330f8cc 28 * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT
darran 0:55a05330f8cc 29 * SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
darran 0:55a05330f8cc 30 * EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT
darran 0:55a05330f8cc 31 * OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
darran 0:55a05330f8cc 32 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
darran 0:55a05330f8cc 33 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING
darran 0:55a05330f8cc 34 * IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY
darran 0:55a05330f8cc 35 * OF SUCH DAMAGE.
darran 0:55a05330f8cc 36 *
darran 0:55a05330f8cc 37 * This file is part of the lwIP TCP/IP stack.
darran 0:55a05330f8cc 38 *
darran 0:55a05330f8cc 39 * Author: Adam Dunkels <adam@sics.se>
darran 0:55a05330f8cc 40 *
darran 0:55a05330f8cc 41 */
darran 0:55a05330f8cc 42
darran 0:55a05330f8cc 43 #include "lwip/opt.h"
darran 0:55a05330f8cc 44
darran 0:55a05330f8cc 45 #if LWIP_TCP /* don't build if not configured for use in lwipopts.h */
darran 0:55a05330f8cc 46
darran 0:55a05330f8cc 47 #include "lwip/def.h"
darran 0:55a05330f8cc 48 #include "lwip/mem.h"
darran 0:55a05330f8cc 49 #include "lwip/memp.h"
darran 0:55a05330f8cc 50 #include "lwip/snmp.h"
darran 0:55a05330f8cc 51 #include "lwip/tcp.h"
darran 0:55a05330f8cc 52 #include "lwip/tcp_impl.h"
darran 0:55a05330f8cc 53 #include "lwip/debug.h"
darran 0:55a05330f8cc 54 #include "lwip/stats.h"
darran 0:55a05330f8cc 55
darran 0:55a05330f8cc 56 #include <string.h>
darran 0:55a05330f8cc 57
darran 0:55a05330f8cc 58 const char *tcp_state_str[] = {
darran 0:55a05330f8cc 59 "CLOSED",
darran 0:55a05330f8cc 60 "LISTEN",
darran 0:55a05330f8cc 61 "SYN_SENT",
darran 0:55a05330f8cc 62 "SYN_RCVD",
darran 0:55a05330f8cc 63 "ESTABLISHED",
darran 0:55a05330f8cc 64 "FIN_WAIT_1",
darran 0:55a05330f8cc 65 "FIN_WAIT_2",
darran 0:55a05330f8cc 66 "CLOSE_WAIT",
darran 0:55a05330f8cc 67 "CLOSING",
darran 0:55a05330f8cc 68 "LAST_ACK",
darran 0:55a05330f8cc 69 "TIME_WAIT"
darran 0:55a05330f8cc 70 };
darran 0:55a05330f8cc 71
darran 0:55a05330f8cc 72 /* Incremented every coarse grained timer shot (typically every 500 ms). */
darran 0:55a05330f8cc 73 u32_t tcp_ticks;
darran 0:55a05330f8cc 74 const u8_t tcp_backoff[13] =
darran 0:55a05330f8cc 75 { 1, 2, 3, 4, 5, 6, 7, 7, 7, 7, 7, 7, 7};
darran 0:55a05330f8cc 76 /* Times per slowtmr hits */
darran 0:55a05330f8cc 77 const u8_t tcp_persist_backoff[7] = { 3, 6, 12, 24, 48, 96, 120 };
darran 0:55a05330f8cc 78
darran 0:55a05330f8cc 79 /* The TCP PCB lists. */
darran 0:55a05330f8cc 80
darran 0:55a05330f8cc 81 /** List of all TCP PCBs bound but not yet (connected || listening) */
darran 0:55a05330f8cc 82 struct tcp_pcb *tcp_bound_pcbs;
darran 0:55a05330f8cc 83 /** List of all TCP PCBs in LISTEN state */
darran 0:55a05330f8cc 84 union tcp_listen_pcbs_t tcp_listen_pcbs;
darran 0:55a05330f8cc 85 /** List of all TCP PCBs that are in a state in which
darran 0:55a05330f8cc 86 * they accept or send data. */
darran 0:55a05330f8cc 87 struct tcp_pcb *tcp_active_pcbs;
darran 0:55a05330f8cc 88 /** List of all TCP PCBs in TIME-WAIT state */
darran 0:55a05330f8cc 89 struct tcp_pcb *tcp_tw_pcbs;
darran 0:55a05330f8cc 90
darran 0:55a05330f8cc 91 /** Only used for temporary storage. */
darran 0:55a05330f8cc 92 struct tcp_pcb *tcp_tmp_pcb;
darran 0:55a05330f8cc 93
darran 0:55a05330f8cc 94 /** Timer counter to handle calling slow-timer from tcp_tmr() */
darran 0:55a05330f8cc 95 static u8_t tcp_timer;
darran 0:55a05330f8cc 96 static u16_t tcp_new_port(void);
darran 0:55a05330f8cc 97
darran 0:55a05330f8cc 98 /**
darran 0:55a05330f8cc 99 * Called periodically to dispatch TCP timers.
darran 0:55a05330f8cc 100 *
darran 0:55a05330f8cc 101 */
darran 0:55a05330f8cc 102 void
darran 0:55a05330f8cc 103 tcp_tmr(void)
darran 0:55a05330f8cc 104 {
darran 0:55a05330f8cc 105 /* Call tcp_fasttmr() every 250 ms */
darran 0:55a05330f8cc 106 tcp_fasttmr();
darran 0:55a05330f8cc 107
darran 0:55a05330f8cc 108 if (++tcp_timer & 1) {
darran 0:55a05330f8cc 109 /* Call tcp_tmr() every 500 ms, i.e., every other timer
darran 0:55a05330f8cc 110 tcp_tmr() is called. */
darran 0:55a05330f8cc 111 tcp_slowtmr();
darran 0:55a05330f8cc 112 }
darran 0:55a05330f8cc 113 }
darran 0:55a05330f8cc 114
darran 0:55a05330f8cc 115 /**
darran 0:55a05330f8cc 116 * Closes the TX side of a connection held by the PCB.
darran 0:55a05330f8cc 117 * For tcp_close(), a RST is sent if the application didn't receive all data
darran 0:55a05330f8cc 118 * (tcp_recved() not called for all data passed to recv callback).
darran 0:55a05330f8cc 119 *
darran 0:55a05330f8cc 120 * Listening pcbs are freed and may not be referenced any more.
darran 0:55a05330f8cc 121 * Connection pcbs are freed if not yet connected and may not be referenced
darran 0:55a05330f8cc 122 * any more. If a connection is established (at least SYN received or in
darran 0:55a05330f8cc 123 * a closing state), the connection is closed, and put in a closing state.
darran 0:55a05330f8cc 124 * The pcb is then automatically freed in tcp_slowtmr(). It is therefore
darran 0:55a05330f8cc 125 * unsafe to reference it.
darran 0:55a05330f8cc 126 *
darran 0:55a05330f8cc 127 * @param pcb the tcp_pcb to close
darran 0:55a05330f8cc 128 * @return ERR_OK if connection has been closed
darran 0:55a05330f8cc 129 * another err_t if closing failed and pcb is not freed
darran 0:55a05330f8cc 130 */
darran 0:55a05330f8cc 131 static err_t
darran 0:55a05330f8cc 132 tcp_close_shutdown(struct tcp_pcb *pcb, u8_t rst_on_unacked_data)
darran 0:55a05330f8cc 133 {
darran 0:55a05330f8cc 134 err_t err;
darran 0:55a05330f8cc 135
darran 0:55a05330f8cc 136 if (rst_on_unacked_data && (pcb->state != LISTEN)) {
darran 0:55a05330f8cc 137 if ((pcb->refused_data != NULL) || (pcb->rcv_wnd != TCP_WND)) {
darran 0:55a05330f8cc 138 /* Not all data received by application, send RST to tell the remote
darran 0:55a05330f8cc 139 side about this. */
darran 0:55a05330f8cc 140 tcp_rst(pcb->snd_nxt, pcb->rcv_nxt, &pcb->local_ip, &pcb->remote_ip,
darran 0:55a05330f8cc 141 pcb->local_port, pcb->remote_port);
darran 0:55a05330f8cc 142 }
darran 0:55a05330f8cc 143 }
darran 0:55a05330f8cc 144
darran 0:55a05330f8cc 145 switch (pcb->state) {
darran 0:55a05330f8cc 146 case CLOSED:
darran 0:55a05330f8cc 147 /* Closing a pcb in the CLOSED state might seem erroneous,
darran 0:55a05330f8cc 148 * however, it is in this state once allocated and as yet unused
darran 0:55a05330f8cc 149 * and the user needs some way to free it should the need arise.
darran 0:55a05330f8cc 150 * Calling tcp_close() with a pcb that has already been closed, (i.e. twice)
darran 0:55a05330f8cc 151 * or for a pcb that has been used and then entered the CLOSED state
darran 0:55a05330f8cc 152 * is erroneous, but this should never happen as the pcb has in those cases
darran 0:55a05330f8cc 153 * been freed, and so any remaining handles are bogus. */
darran 0:55a05330f8cc 154 err = ERR_OK;
darran 0:55a05330f8cc 155 TCP_RMV(&tcp_bound_pcbs, pcb);
darran 0:55a05330f8cc 156 memp_free(MEMP_TCP_PCB, pcb);
darran 0:55a05330f8cc 157 pcb = NULL;
darran 0:55a05330f8cc 158 break;
darran 0:55a05330f8cc 159 case LISTEN:
darran 0:55a05330f8cc 160 err = ERR_OK;
darran 0:55a05330f8cc 161 tcp_pcb_remove((struct tcp_pcb **)&tcp_listen_pcbs.pcbs, pcb);
darran 0:55a05330f8cc 162 memp_free(MEMP_TCP_PCB_LISTEN, pcb);
darran 0:55a05330f8cc 163 pcb = NULL;
darran 0:55a05330f8cc 164 break;
darran 0:55a05330f8cc 165 case SYN_SENT:
darran 0:55a05330f8cc 166 err = ERR_OK;
darran 0:55a05330f8cc 167 tcp_pcb_remove(&tcp_active_pcbs, pcb);
darran 0:55a05330f8cc 168 memp_free(MEMP_TCP_PCB, pcb);
darran 0:55a05330f8cc 169 pcb = NULL;
darran 0:55a05330f8cc 170 snmp_inc_tcpattemptfails();
darran 0:55a05330f8cc 171 break;
darran 0:55a05330f8cc 172 case SYN_RCVD:
darran 0:55a05330f8cc 173 err = tcp_send_fin(pcb);
darran 0:55a05330f8cc 174 if (err == ERR_OK) {
darran 0:55a05330f8cc 175 snmp_inc_tcpattemptfails();
darran 0:55a05330f8cc 176 pcb->state = FIN_WAIT_1;
darran 0:55a05330f8cc 177 }
darran 0:55a05330f8cc 178 break;
darran 0:55a05330f8cc 179 case ESTABLISHED:
darran 0:55a05330f8cc 180 err = tcp_send_fin(pcb);
darran 0:55a05330f8cc 181 if (err == ERR_OK) {
darran 0:55a05330f8cc 182 snmp_inc_tcpestabresets();
darran 0:55a05330f8cc 183 pcb->state = FIN_WAIT_1;
darran 0:55a05330f8cc 184 }
darran 0:55a05330f8cc 185 break;
darran 0:55a05330f8cc 186 case CLOSE_WAIT:
darran 0:55a05330f8cc 187 err = tcp_send_fin(pcb);
darran 0:55a05330f8cc 188 if (err == ERR_OK) {
darran 0:55a05330f8cc 189 snmp_inc_tcpestabresets();
darran 0:55a05330f8cc 190 pcb->state = LAST_ACK;
darran 0:55a05330f8cc 191 }
darran 0:55a05330f8cc 192 break;
darran 0:55a05330f8cc 193 default:
darran 0:55a05330f8cc 194 /* Has already been closed, do nothing. */
darran 0:55a05330f8cc 195 err = ERR_OK;
darran 0:55a05330f8cc 196 pcb = NULL;
darran 0:55a05330f8cc 197 break;
darran 0:55a05330f8cc 198 }
darran 0:55a05330f8cc 199
darran 0:55a05330f8cc 200 if (pcb != NULL && err == ERR_OK) {
darran 0:55a05330f8cc 201 /* To ensure all data has been sent when tcp_close returns, we have
darran 0:55a05330f8cc 202 to make sure tcp_output doesn't fail.
darran 0:55a05330f8cc 203 Since we don't really have to ensure all data has been sent when tcp_close
darran 0:55a05330f8cc 204 returns (unsent data is sent from tcp timer functions, also), we don't care
darran 0:55a05330f8cc 205 for the return value of tcp_output for now. */
darran 0:55a05330f8cc 206 /* @todo: When implementing SO_LINGER, this must be changed somehow:
darran 0:55a05330f8cc 207 If SOF_LINGER is set, the data should be sent and acked before close returns.
darran 0:55a05330f8cc 208 This can only be valid for sequential APIs, not for the raw API. */
darran 0:55a05330f8cc 209 tcp_output(pcb);
darran 0:55a05330f8cc 210 }
darran 0:55a05330f8cc 211 return err;
darran 0:55a05330f8cc 212 }
darran 0:55a05330f8cc 213
darran 0:55a05330f8cc 214 /**
darran 0:55a05330f8cc 215 * Closes the connection held by the PCB.
darran 0:55a05330f8cc 216 *
darran 0:55a05330f8cc 217 * Listening pcbs are freed and may not be referenced any more.
darran 0:55a05330f8cc 218 * Connection pcbs are freed if not yet connected and may not be referenced
darran 0:55a05330f8cc 219 * any more. If a connection is established (at least SYN received or in
darran 0:55a05330f8cc 220 * a closing state), the connection is closed, and put in a closing state.
darran 0:55a05330f8cc 221 * The pcb is then automatically freed in tcp_slowtmr(). It is therefore
darran 0:55a05330f8cc 222 * unsafe to reference it (unless an error is returned).
darran 0:55a05330f8cc 223 *
darran 0:55a05330f8cc 224 * @param pcb the tcp_pcb to close
darran 0:55a05330f8cc 225 * @return ERR_OK if connection has been closed
darran 0:55a05330f8cc 226 * another err_t if closing failed and pcb is not freed
darran 0:55a05330f8cc 227 */
darran 0:55a05330f8cc 228 err_t
darran 0:55a05330f8cc 229 tcp_close(struct tcp_pcb *pcb)
darran 0:55a05330f8cc 230 {
darran 0:55a05330f8cc 231 #if TCP_DEBUG
darran 0:55a05330f8cc 232 LWIP_DEBUGF(TCP_DEBUG, ("tcp_close: closing in "));
darran 0:55a05330f8cc 233 tcp_debug_print_state(pcb->state);
darran 0:55a05330f8cc 234 #endif /* TCP_DEBUG */
darran 0:55a05330f8cc 235
darran 0:55a05330f8cc 236 if (pcb->state != LISTEN) {
darran 0:55a05330f8cc 237 /* Set a flag not to receive any more data... */
darran 0:55a05330f8cc 238 pcb->flags |= TF_RXCLOSED;
darran 0:55a05330f8cc 239 }
darran 0:55a05330f8cc 240 /* ... and close */
darran 0:55a05330f8cc 241 return tcp_close_shutdown(pcb, 1);
darran 0:55a05330f8cc 242 }
darran 0:55a05330f8cc 243
darran 0:55a05330f8cc 244 /**
darran 0:55a05330f8cc 245 * Causes all or part of a full-duplex connection of this PCB to be shut down.
darran 0:55a05330f8cc 246 * This doesn't deallocate the PCB!
darran 0:55a05330f8cc 247 *
darran 0:55a05330f8cc 248 * @param pcb PCB to shutdown
darran 0:55a05330f8cc 249 * @param shut_rx shut down receive side if this is != 0
darran 0:55a05330f8cc 250 * @param shut_tx shut down send side if this is != 0
darran 0:55a05330f8cc 251 * @return ERR_OK if shutdown succeeded (or the PCB has already been shut down)
darran 0:55a05330f8cc 252 * another err_t on error.
darran 0:55a05330f8cc 253 */
darran 0:55a05330f8cc 254 err_t
darran 0:55a05330f8cc 255 tcp_shutdown(struct tcp_pcb *pcb, int shut_rx, int shut_tx)
darran 0:55a05330f8cc 256 {
darran 0:55a05330f8cc 257 if (pcb->state == LISTEN) {
darran 0:55a05330f8cc 258 return ERR_CONN;
darran 0:55a05330f8cc 259 }
darran 0:55a05330f8cc 260 if (shut_rx) {
darran 0:55a05330f8cc 261 /* shut down the receive side: free buffered data... */
darran 0:55a05330f8cc 262 if (pcb->refused_data != NULL) {
darran 0:55a05330f8cc 263 pbuf_free(pcb->refused_data);
darran 0:55a05330f8cc 264 pcb->refused_data = NULL;
darran 0:55a05330f8cc 265 }
darran 0:55a05330f8cc 266 /* ... and set a flag not to receive any more data */
darran 0:55a05330f8cc 267 pcb->flags |= TF_RXCLOSED;
darran 0:55a05330f8cc 268 }
darran 0:55a05330f8cc 269 if (shut_tx) {
darran 0:55a05330f8cc 270 /* This can't happen twice since if it succeeds, the pcb's state is changed.
darran 0:55a05330f8cc 271 Only close in these states as the others directly deallocate the PCB */
darran 0:55a05330f8cc 272 switch (pcb->state) {
darran 0:55a05330f8cc 273 case SYN_RCVD:
darran 0:55a05330f8cc 274 case ESTABLISHED:
darran 0:55a05330f8cc 275 case CLOSE_WAIT:
darran 0:55a05330f8cc 276 return tcp_close_shutdown(pcb, 0);
darran 0:55a05330f8cc 277 default:
darran 0:55a05330f8cc 278 /* don't shut down other states */
darran 0:55a05330f8cc 279 break;
darran 0:55a05330f8cc 280 }
darran 0:55a05330f8cc 281 }
darran 0:55a05330f8cc 282 /* @todo: return another err_t if not in correct state or already shut? */
darran 0:55a05330f8cc 283 return ERR_OK;
darran 0:55a05330f8cc 284 }
darran 0:55a05330f8cc 285
darran 0:55a05330f8cc 286 /**
darran 0:55a05330f8cc 287 * Abandons a connection and optionally sends a RST to the remote
darran 0:55a05330f8cc 288 * host. Deletes the local protocol control block. This is done when
darran 0:55a05330f8cc 289 * a connection is killed because of shortage of memory.
darran 0:55a05330f8cc 290 *
darran 0:55a05330f8cc 291 * @param pcb the tcp_pcb to abort
darran 0:55a05330f8cc 292 * @param reset boolean to indicate whether a reset should be sent
darran 0:55a05330f8cc 293 */
darran 0:55a05330f8cc 294 void
darran 0:55a05330f8cc 295 tcp_abandon(struct tcp_pcb *pcb, int reset)
darran 0:55a05330f8cc 296 {
darran 0:55a05330f8cc 297 u32_t seqno, ackno;
darran 0:55a05330f8cc 298 u16_t remote_port, local_port;
darran 0:55a05330f8cc 299 ip_addr_t remote_ip, local_ip;
darran 0:55a05330f8cc 300 #if LWIP_CALLBACK_API
darran 0:55a05330f8cc 301 tcp_err_fn errf;
darran 0:55a05330f8cc 302 #endif /* LWIP_CALLBACK_API */
darran 0:55a05330f8cc 303 void *errf_arg;
darran 0:55a05330f8cc 304
darran 0:55a05330f8cc 305
darran 0:55a05330f8cc 306 /* Figure out on which TCP PCB list we are, and remove us. If we
darran 0:55a05330f8cc 307 are in an active state, call the receive function associated with
darran 0:55a05330f8cc 308 the PCB with a NULL argument, and send an RST to the remote end. */
darran 0:55a05330f8cc 309 if (pcb->state == TIME_WAIT) {
darran 0:55a05330f8cc 310 tcp_pcb_remove(&tcp_tw_pcbs, pcb);
darran 0:55a05330f8cc 311 memp_free(MEMP_TCP_PCB, pcb);
darran 0:55a05330f8cc 312 } else {
darran 0:55a05330f8cc 313 /* @todo: pcb->state, LISTEN not allowed */
darran 0:55a05330f8cc 314 seqno = pcb->snd_nxt;
darran 0:55a05330f8cc 315 ackno = pcb->rcv_nxt;
darran 0:55a05330f8cc 316 ip_addr_copy(local_ip, pcb->local_ip);
darran 0:55a05330f8cc 317 ip_addr_copy(remote_ip, pcb->remote_ip);
darran 0:55a05330f8cc 318 local_port = pcb->local_port;
darran 0:55a05330f8cc 319 remote_port = pcb->remote_port;
darran 0:55a05330f8cc 320 #if LWIP_CALLBACK_API
darran 0:55a05330f8cc 321 errf = pcb->errf;
darran 0:55a05330f8cc 322 #endif /* LWIP_CALLBACK_API */
darran 0:55a05330f8cc 323 errf_arg = pcb->callback_arg;
darran 0:55a05330f8cc 324 tcp_pcb_remove(&tcp_active_pcbs, pcb);
darran 0:55a05330f8cc 325 if (pcb->unacked != NULL) {
darran 0:55a05330f8cc 326 tcp_segs_free(pcb->unacked);
darran 0:55a05330f8cc 327 }
darran 0:55a05330f8cc 328 if (pcb->unsent != NULL) {
darran 0:55a05330f8cc 329 tcp_segs_free(pcb->unsent);
darran 0:55a05330f8cc 330 }
darran 0:55a05330f8cc 331 #if TCP_QUEUE_OOSEQ
darran 0:55a05330f8cc 332 if (pcb->ooseq != NULL) {
darran 0:55a05330f8cc 333 tcp_segs_free(pcb->ooseq);
darran 0:55a05330f8cc 334 }
darran 0:55a05330f8cc 335 #endif /* TCP_QUEUE_OOSEQ */
darran 0:55a05330f8cc 336 memp_free(MEMP_TCP_PCB, pcb);
darran 0:55a05330f8cc 337 TCP_EVENT_ERR(errf, errf_arg, ERR_ABRT);
darran 0:55a05330f8cc 338 if (reset) {
darran 0:55a05330f8cc 339 LWIP_DEBUGF(TCP_RST_DEBUG, ("tcp_abandon: sending RST\n"));
darran 0:55a05330f8cc 340 tcp_rst(seqno, ackno, &local_ip, &remote_ip, local_port, remote_port);
darran 0:55a05330f8cc 341 }
darran 0:55a05330f8cc 342 }
darran 0:55a05330f8cc 343 }
darran 0:55a05330f8cc 344
darran 0:55a05330f8cc 345 /**
darran 0:55a05330f8cc 346 * Aborts the connection by sending a RST (reset) segment to the remote
darran 0:55a05330f8cc 347 * host. The pcb is deallocated. This function never fails.
darran 0:55a05330f8cc 348 *
darran 0:55a05330f8cc 349 * ATTENTION: When calling this from one of the TCP callbacks, make
darran 0:55a05330f8cc 350 * sure you always return ERR_ABRT (and never return ERR_ABRT otherwise
darran 0:55a05330f8cc 351 * or you will risk accessing deallocated memory or memory leaks!
darran 0:55a05330f8cc 352 *
darran 0:55a05330f8cc 353 * @param pcb the tcp pcb to abort
darran 0:55a05330f8cc 354 */
darran 0:55a05330f8cc 355 void
darran 0:55a05330f8cc 356 tcp_abort(struct tcp_pcb *pcb)
darran 0:55a05330f8cc 357 {
darran 0:55a05330f8cc 358 tcp_abandon(pcb, 1);
darran 0:55a05330f8cc 359 }
darran 0:55a05330f8cc 360
darran 0:55a05330f8cc 361 /**
darran 0:55a05330f8cc 362 * Binds the connection to a local portnumber and IP address. If the
darran 0:55a05330f8cc 363 * IP address is not given (i.e., ipaddr == NULL), the IP address of
darran 0:55a05330f8cc 364 * the outgoing network interface is used instead.
darran 0:55a05330f8cc 365 *
darran 0:55a05330f8cc 366 * @param pcb the tcp_pcb to bind (no check is done whether this pcb is
darran 0:55a05330f8cc 367 * already bound!)
darran 0:55a05330f8cc 368 * @param ipaddr the local ip address to bind to (use IP_ADDR_ANY to bind
darran 0:55a05330f8cc 369 * to any local address
darran 0:55a05330f8cc 370 * @param port the local port to bind to
darran 0:55a05330f8cc 371 * @return ERR_USE if the port is already in use
darran 0:55a05330f8cc 372 * ERR_OK if bound
darran 0:55a05330f8cc 373 */
darran 0:55a05330f8cc 374 err_t
darran 0:55a05330f8cc 375 tcp_bind(struct tcp_pcb *pcb, ip_addr_t *ipaddr, u16_t port)
darran 0:55a05330f8cc 376 {
darran 0:55a05330f8cc 377 struct tcp_pcb *cpcb;
darran 0:55a05330f8cc 378
darran 0:55a05330f8cc 379 LWIP_ERROR("tcp_bind: can only bind in state CLOSED", pcb->state == CLOSED, return ERR_ISCONN);
darran 0:55a05330f8cc 380
darran 0:55a05330f8cc 381 if (port == 0) {
darran 0:55a05330f8cc 382 port = tcp_new_port();
darran 0:55a05330f8cc 383 }
darran 0:55a05330f8cc 384 /* Check if the address already is in use. */
darran 0:55a05330f8cc 385 /* Check the listen pcbs. */
darran 0:55a05330f8cc 386 for(cpcb = (struct tcp_pcb *)tcp_listen_pcbs.pcbs;
darran 0:55a05330f8cc 387 cpcb != NULL; cpcb = cpcb->next) {
darran 0:55a05330f8cc 388 if (cpcb->local_port == port) {
darran 0:55a05330f8cc 389 if (ip_addr_isany(&(cpcb->local_ip)) ||
darran 0:55a05330f8cc 390 ip_addr_isany(ipaddr) ||
darran 0:55a05330f8cc 391 ip_addr_cmp(&(cpcb->local_ip), ipaddr)) {
darran 0:55a05330f8cc 392 return ERR_USE;
darran 0:55a05330f8cc 393 }
darran 0:55a05330f8cc 394 }
darran 0:55a05330f8cc 395 }
darran 0:55a05330f8cc 396 /* Check the connected pcbs. */
darran 0:55a05330f8cc 397 for(cpcb = tcp_active_pcbs;
darran 0:55a05330f8cc 398 cpcb != NULL; cpcb = cpcb->next) {
darran 0:55a05330f8cc 399 if (cpcb->local_port == port) {
darran 0:55a05330f8cc 400 if (ip_addr_isany(&(cpcb->local_ip)) ||
darran 0:55a05330f8cc 401 ip_addr_isany(ipaddr) ||
darran 0:55a05330f8cc 402 ip_addr_cmp(&(cpcb->local_ip), ipaddr)) {
darran 0:55a05330f8cc 403 return ERR_USE;
darran 0:55a05330f8cc 404 }
darran 0:55a05330f8cc 405 }
darran 0:55a05330f8cc 406 }
darran 0:55a05330f8cc 407 /* Check the bound, not yet connected pcbs. */
darran 0:55a05330f8cc 408 for(cpcb = tcp_bound_pcbs; cpcb != NULL; cpcb = cpcb->next) {
darran 0:55a05330f8cc 409 if (cpcb->local_port == port) {
darran 0:55a05330f8cc 410 if (ip_addr_isany(&(cpcb->local_ip)) ||
darran 0:55a05330f8cc 411 ip_addr_isany(ipaddr) ||
darran 0:55a05330f8cc 412 ip_addr_cmp(&(cpcb->local_ip), ipaddr)) {
darran 0:55a05330f8cc 413 return ERR_USE;
darran 0:55a05330f8cc 414 }
darran 0:55a05330f8cc 415 }
darran 0:55a05330f8cc 416 }
darran 0:55a05330f8cc 417 /* Unless the REUSEADDR flag is set,
darran 0:55a05330f8cc 418 * we have to check the pcbs in TIME-WAIT state, also: */
darran 0:55a05330f8cc 419 if ((pcb->so_options & SOF_REUSEADDR) == 0) {
darran 0:55a05330f8cc 420 for(cpcb = tcp_tw_pcbs; cpcb != NULL; cpcb = cpcb->next) {
darran 0:55a05330f8cc 421 if (cpcb->local_port == port) {
darran 0:55a05330f8cc 422 if (ip_addr_isany(&(cpcb->local_ip)) ||
darran 0:55a05330f8cc 423 ip_addr_isany(ipaddr) ||
darran 0:55a05330f8cc 424 ip_addr_cmp(&(cpcb->local_ip), ipaddr)) {
darran 0:55a05330f8cc 425 return ERR_USE;
darran 0:55a05330f8cc 426 }
darran 0:55a05330f8cc 427 }
darran 0:55a05330f8cc 428 }
darran 0:55a05330f8cc 429 }
darran 0:55a05330f8cc 430
darran 0:55a05330f8cc 431 if (!ip_addr_isany(ipaddr)) {
darran 0:55a05330f8cc 432 pcb->local_ip = *ipaddr;
darran 0:55a05330f8cc 433 }
darran 0:55a05330f8cc 434 pcb->local_port = port;
darran 0:55a05330f8cc 435 TCP_REG(&tcp_bound_pcbs, pcb);
darran 0:55a05330f8cc 436 LWIP_DEBUGF(TCP_DEBUG, ("tcp_bind: bind to port %"U16_F"\n", port));
darran 0:55a05330f8cc 437 return ERR_OK;
darran 0:55a05330f8cc 438 }
darran 0:55a05330f8cc 439 #if LWIP_CALLBACK_API
darran 0:55a05330f8cc 440 /**
darran 0:55a05330f8cc 441 * Default accept callback if no accept callback is specified by the user.
darran 0:55a05330f8cc 442 */
darran 0:55a05330f8cc 443 static err_t
darran 0:55a05330f8cc 444 tcp_accept_null(void *arg, struct tcp_pcb *pcb, err_t err)
darran 0:55a05330f8cc 445 {
darran 0:55a05330f8cc 446 LWIP_UNUSED_ARG(arg);
darran 0:55a05330f8cc 447 LWIP_UNUSED_ARG(pcb);
darran 0:55a05330f8cc 448 LWIP_UNUSED_ARG(err);
darran 0:55a05330f8cc 449
darran 0:55a05330f8cc 450 return ERR_ABRT;
darran 0:55a05330f8cc 451 }
darran 0:55a05330f8cc 452 #endif /* LWIP_CALLBACK_API */
darran 0:55a05330f8cc 453
darran 0:55a05330f8cc 454 /**
darran 0:55a05330f8cc 455 * Set the state of the connection to be LISTEN, which means that it
darran 0:55a05330f8cc 456 * is able to accept incoming connections. The protocol control block
darran 0:55a05330f8cc 457 * is reallocated in order to consume less memory. Setting the
darran 0:55a05330f8cc 458 * connection to LISTEN is an irreversible process.
darran 0:55a05330f8cc 459 *
darran 0:55a05330f8cc 460 * @param pcb the original tcp_pcb
darran 0:55a05330f8cc 461 * @param backlog the incoming connections queue limit
darran 0:55a05330f8cc 462 * @return tcp_pcb used for listening, consumes less memory.
darran 0:55a05330f8cc 463 *
darran 0:55a05330f8cc 464 * @note The original tcp_pcb is freed. This function therefore has to be
darran 0:55a05330f8cc 465 * called like this:
darran 0:55a05330f8cc 466 * tpcb = tcp_listen(tpcb);
darran 0:55a05330f8cc 467 */
darran 0:55a05330f8cc 468 struct tcp_pcb *
darran 0:55a05330f8cc 469 tcp_listen_with_backlog(struct tcp_pcb *pcb, u8_t backlog)
darran 0:55a05330f8cc 470 {
darran 0:55a05330f8cc 471 struct tcp_pcb_listen *lpcb;
darran 0:55a05330f8cc 472
darran 0:55a05330f8cc 473 LWIP_UNUSED_ARG(backlog);
darran 0:55a05330f8cc 474 LWIP_ERROR("tcp_listen: pcb already connected", pcb->state == CLOSED, return NULL);
darran 0:55a05330f8cc 475
darran 0:55a05330f8cc 476 /* already listening? */
darran 0:55a05330f8cc 477 if (pcb->state == LISTEN) {
darran 0:55a05330f8cc 478 return pcb;
darran 0:55a05330f8cc 479 }
darran 0:55a05330f8cc 480 lpcb = (struct tcp_pcb_listen *)memp_malloc(MEMP_TCP_PCB_LISTEN);
darran 0:55a05330f8cc 481 if (lpcb == NULL) {
darran 0:55a05330f8cc 482 return NULL;
darran 0:55a05330f8cc 483 }
darran 0:55a05330f8cc 484 lpcb->callback_arg = pcb->callback_arg;
darran 0:55a05330f8cc 485 lpcb->local_port = pcb->local_port;
darran 0:55a05330f8cc 486 lpcb->state = LISTEN;
darran 0:55a05330f8cc 487 lpcb->so_options = pcb->so_options;
darran 0:55a05330f8cc 488 lpcb->so_options |= SOF_ACCEPTCONN;
darran 0:55a05330f8cc 489 lpcb->ttl = pcb->ttl;
darran 0:55a05330f8cc 490 lpcb->tos = pcb->tos;
darran 0:55a05330f8cc 491 ip_addr_copy(lpcb->local_ip, pcb->local_ip);
darran 0:55a05330f8cc 492 TCP_RMV(&tcp_bound_pcbs, pcb);
darran 0:55a05330f8cc 493 memp_free(MEMP_TCP_PCB, pcb);
darran 0:55a05330f8cc 494 #if LWIP_CALLBACK_API
darran 0:55a05330f8cc 495 lpcb->accept = tcp_accept_null;
darran 0:55a05330f8cc 496 #endif /* LWIP_CALLBACK_API */
darran 0:55a05330f8cc 497 #if TCP_LISTEN_BACKLOG
darran 0:55a05330f8cc 498 lpcb->accepts_pending = 0;
darran 0:55a05330f8cc 499 lpcb->backlog = (backlog ? backlog : 1);
darran 0:55a05330f8cc 500 #endif /* TCP_LISTEN_BACKLOG */
darran 0:55a05330f8cc 501 TCP_REG(&tcp_listen_pcbs.listen_pcbs, lpcb);
darran 0:55a05330f8cc 502 return (struct tcp_pcb *)lpcb;
darran 0:55a05330f8cc 503 }
darran 0:55a05330f8cc 504
darran 0:55a05330f8cc 505 /**
darran 0:55a05330f8cc 506 * Update the state that tracks the available window space to advertise.
darran 0:55a05330f8cc 507 *
darran 0:55a05330f8cc 508 * Returns how much extra window would be advertised if we sent an
darran 0:55a05330f8cc 509 * update now.
darran 0:55a05330f8cc 510 */
darran 0:55a05330f8cc 511 u32_t tcp_update_rcv_ann_wnd(struct tcp_pcb *pcb)
darran 0:55a05330f8cc 512 {
darran 0:55a05330f8cc 513 u32_t new_right_edge = pcb->rcv_nxt + pcb->rcv_wnd;
darran 0:55a05330f8cc 514
darran 0:55a05330f8cc 515 if (TCP_SEQ_GEQ(new_right_edge, pcb->rcv_ann_right_edge + LWIP_MIN((TCP_WND / 2), pcb->mss))) {
darran 0:55a05330f8cc 516 /* we can advertise more window */
darran 0:55a05330f8cc 517 pcb->rcv_ann_wnd = pcb->rcv_wnd;
darran 0:55a05330f8cc 518 return new_right_edge - pcb->rcv_ann_right_edge;
darran 0:55a05330f8cc 519 } else {
darran 0:55a05330f8cc 520 if (TCP_SEQ_GT(pcb->rcv_nxt, pcb->rcv_ann_right_edge)) {
darran 0:55a05330f8cc 521 /* Can happen due to other end sending out of advertised window,
darran 0:55a05330f8cc 522 * but within actual available (but not yet advertised) window */
darran 0:55a05330f8cc 523 pcb->rcv_ann_wnd = 0;
darran 0:55a05330f8cc 524 } else {
darran 0:55a05330f8cc 525 /* keep the right edge of window constant */
darran 0:55a05330f8cc 526 u32_t new_rcv_ann_wnd = pcb->rcv_ann_right_edge - pcb->rcv_nxt;
darran 0:55a05330f8cc 527 LWIP_ASSERT("new_rcv_ann_wnd <= 0xffff", new_rcv_ann_wnd <= 0xffff);
darran 0:55a05330f8cc 528 pcb->rcv_ann_wnd = (u16_t)new_rcv_ann_wnd;
darran 0:55a05330f8cc 529 }
darran 0:55a05330f8cc 530 return 0;
darran 0:55a05330f8cc 531 }
darran 0:55a05330f8cc 532 }
darran 0:55a05330f8cc 533
darran 0:55a05330f8cc 534 /**
darran 0:55a05330f8cc 535 * This function should be called by the application when it has
darran 0:55a05330f8cc 536 * processed the data. The purpose is to advertise a larger window
darran 0:55a05330f8cc 537 * when the data has been processed.
darran 0:55a05330f8cc 538 *
darran 0:55a05330f8cc 539 * @param pcb the tcp_pcb for which data is read
darran 0:55a05330f8cc 540 * @param len the amount of bytes that have been read by the application
darran 0:55a05330f8cc 541 */
darran 0:55a05330f8cc 542 void
darran 0:55a05330f8cc 543 tcp_recved(struct tcp_pcb *pcb, u16_t len)
darran 0:55a05330f8cc 544 {
darran 0:55a05330f8cc 545 int wnd_inflation;
darran 0:55a05330f8cc 546
darran 0:55a05330f8cc 547 LWIP_ASSERT("tcp_recved: len would wrap rcv_wnd\n",
darran 0:55a05330f8cc 548 len <= 0xffff - pcb->rcv_wnd );
darran 0:55a05330f8cc 549
darran 0:55a05330f8cc 550 pcb->rcv_wnd += len;
darran 0:55a05330f8cc 551 if (pcb->rcv_wnd > TCP_WND) {
darran 0:55a05330f8cc 552 pcb->rcv_wnd = TCP_WND;
darran 0:55a05330f8cc 553 }
darran 0:55a05330f8cc 554
darran 0:55a05330f8cc 555 wnd_inflation = tcp_update_rcv_ann_wnd(pcb);
darran 0:55a05330f8cc 556
darran 0:55a05330f8cc 557 /* If the change in the right edge of window is significant (default
darran 0:55a05330f8cc 558 * watermark is TCP_WND/4), then send an explicit update now.
darran 0:55a05330f8cc 559 * Otherwise wait for a packet to be sent in the normal course of
darran 0:55a05330f8cc 560 * events (or more window to be available later) */
darran 0:55a05330f8cc 561 if (wnd_inflation >= TCP_WND_UPDATE_THRESHOLD) {
darran 0:55a05330f8cc 562 tcp_ack_now(pcb);
darran 0:55a05330f8cc 563 tcp_output(pcb);
darran 0:55a05330f8cc 564 }
darran 0:55a05330f8cc 565
darran 0:55a05330f8cc 566 LWIP_DEBUGF(TCP_DEBUG, ("tcp_recved: recveived %"U16_F" bytes, wnd %"U16_F" (%"U16_F").\n",
darran 0:55a05330f8cc 567 len, pcb->rcv_wnd, TCP_WND - pcb->rcv_wnd));
darran 0:55a05330f8cc 568 }
darran 0:55a05330f8cc 569
darran 0:55a05330f8cc 570 /**
darran 0:55a05330f8cc 571 * A nastly hack featuring 'goto' statements that allocates a
darran 0:55a05330f8cc 572 * new TCP local port.
darran 0:55a05330f8cc 573 *
darran 0:55a05330f8cc 574 * @return a new (free) local TCP port number
darran 0:55a05330f8cc 575 */
darran 0:55a05330f8cc 576 static u16_t
darran 0:55a05330f8cc 577 tcp_new_port(void)
darran 0:55a05330f8cc 578 {
darran 0:55a05330f8cc 579 struct tcp_pcb *pcb;
darran 0:55a05330f8cc 580 #ifndef TCP_LOCAL_PORT_RANGE_START
darran 0:55a05330f8cc 581 #define TCP_LOCAL_PORT_RANGE_START 4096
darran 0:55a05330f8cc 582 #define TCP_LOCAL_PORT_RANGE_END 0x7fff
darran 0:55a05330f8cc 583 #endif
darran 0:55a05330f8cc 584 static u16_t port = TCP_LOCAL_PORT_RANGE_START;
darran 0:55a05330f8cc 585
darran 0:55a05330f8cc 586 again:
darran 0:55a05330f8cc 587 if (++port > TCP_LOCAL_PORT_RANGE_END) {
darran 0:55a05330f8cc 588 port = TCP_LOCAL_PORT_RANGE_START;
darran 0:55a05330f8cc 589 }
darran 0:55a05330f8cc 590
darran 0:55a05330f8cc 591 for(pcb = tcp_active_pcbs; pcb != NULL; pcb = pcb->next) {
darran 0:55a05330f8cc 592 if (pcb->local_port == port) {
darran 0:55a05330f8cc 593 goto again;
darran 0:55a05330f8cc 594 }
darran 0:55a05330f8cc 595 }
darran 0:55a05330f8cc 596 for(pcb = tcp_tw_pcbs; pcb != NULL; pcb = pcb->next) {
darran 0:55a05330f8cc 597 if (pcb->local_port == port) {
darran 0:55a05330f8cc 598 goto again;
darran 0:55a05330f8cc 599 }
darran 0:55a05330f8cc 600 }
darran 0:55a05330f8cc 601 for(pcb = (struct tcp_pcb *)tcp_listen_pcbs.pcbs; pcb != NULL; pcb = pcb->next) {
darran 0:55a05330f8cc 602 if (pcb->local_port == port) {
darran 0:55a05330f8cc 603 goto again;
darran 0:55a05330f8cc 604 }
darran 0:55a05330f8cc 605 }
darran 0:55a05330f8cc 606 return port;
darran 0:55a05330f8cc 607 }
darran 0:55a05330f8cc 608
darran 0:55a05330f8cc 609 /**
darran 0:55a05330f8cc 610 * Connects to another host. The function given as the "connected"
darran 0:55a05330f8cc 611 * argument will be called when the connection has been established.
darran 0:55a05330f8cc 612 *
darran 0:55a05330f8cc 613 * @param pcb the tcp_pcb used to establish the connection
darran 0:55a05330f8cc 614 * @param ipaddr the remote ip address to connect to
darran 0:55a05330f8cc 615 * @param port the remote tcp port to connect to
darran 0:55a05330f8cc 616 * @param connected callback function to call when connected (or on error)
darran 0:55a05330f8cc 617 * @return ERR_VAL if invalid arguments are given
darran 0:55a05330f8cc 618 * ERR_OK if connect request has been sent
darran 0:55a05330f8cc 619 * other err_t values if connect request couldn't be sent
darran 0:55a05330f8cc 620 */
darran 0:55a05330f8cc 621 err_t
darran 0:55a05330f8cc 622 tcp_connect(struct tcp_pcb *pcb, ip_addr_t *ipaddr, u16_t port,
darran 0:55a05330f8cc 623 tcp_connected_fn connected)
darran 0:55a05330f8cc 624 {
darran 0:55a05330f8cc 625 err_t ret;
darran 0:55a05330f8cc 626 u32_t iss;
darran 0:55a05330f8cc 627
darran 0:55a05330f8cc 628 LWIP_ERROR("tcp_connect: can only connected from state CLOSED", pcb->state == CLOSED, return ERR_ISCONN);
darran 0:55a05330f8cc 629
darran 0:55a05330f8cc 630 LWIP_DEBUGF(TCP_DEBUG, ("tcp_connect to port %"U16_F"\n", port));
darran 0:55a05330f8cc 631 if (ipaddr != NULL) {
darran 0:55a05330f8cc 632 pcb->remote_ip = *ipaddr;
darran 0:55a05330f8cc 633 } else {
darran 0:55a05330f8cc 634 return ERR_VAL;
darran 0:55a05330f8cc 635 }
darran 0:55a05330f8cc 636 pcb->remote_port = port;
darran 0:55a05330f8cc 637 if (pcb->local_port == 0) {
darran 0:55a05330f8cc 638 pcb->local_port = tcp_new_port();
darran 0:55a05330f8cc 639 }
darran 0:55a05330f8cc 640 iss = tcp_next_iss();
darran 0:55a05330f8cc 641 pcb->rcv_nxt = 0;
darran 0:55a05330f8cc 642 pcb->snd_nxt = iss;
darran 0:55a05330f8cc 643 pcb->lastack = iss - 1;
darran 0:55a05330f8cc 644 pcb->snd_lbb = iss - 1;
darran 0:55a05330f8cc 645 pcb->rcv_wnd = TCP_WND;
darran 0:55a05330f8cc 646 pcb->rcv_ann_wnd = TCP_WND;
darran 0:55a05330f8cc 647 pcb->rcv_ann_right_edge = pcb->rcv_nxt;
darran 0:55a05330f8cc 648 pcb->snd_wnd = TCP_WND;
darran 0:55a05330f8cc 649 /* As initial send MSS, we use TCP_MSS but limit it to 536.
darran 0:55a05330f8cc 650 The send MSS is updated when an MSS option is received. */
darran 0:55a05330f8cc 651 pcb->mss = (TCP_MSS > 536) ? 536 : TCP_MSS;
darran 0:55a05330f8cc 652 #if TCP_CALCULATE_EFF_SEND_MSS
darran 0:55a05330f8cc 653 pcb->mss = tcp_eff_send_mss(pcb->mss, ipaddr);
darran 0:55a05330f8cc 654 #endif /* TCP_CALCULATE_EFF_SEND_MSS */
darran 0:55a05330f8cc 655 pcb->cwnd = 1;
darran 0:55a05330f8cc 656 pcb->ssthresh = pcb->mss * 10;
darran 0:55a05330f8cc 657 #if LWIP_CALLBACK_API
darran 0:55a05330f8cc 658 pcb->connected = connected;
darran 0:55a05330f8cc 659 #endif /* LWIP_CALLBACK_API */
darran 0:55a05330f8cc 660
darran 0:55a05330f8cc 661 /* Send a SYN together with the MSS option. */
darran 0:55a05330f8cc 662 ret = tcp_enqueue_flags(pcb, TCP_SYN);
darran 0:55a05330f8cc 663 if (ret == ERR_OK) {
darran 0:55a05330f8cc 664 /* SYN segment was enqueued, changed the pcbs state now */
darran 0:55a05330f8cc 665 pcb->state = SYN_SENT;
darran 0:55a05330f8cc 666 TCP_RMV(&tcp_bound_pcbs, pcb);
darran 0:55a05330f8cc 667 TCP_REG(&tcp_active_pcbs, pcb);
darran 0:55a05330f8cc 668 snmp_inc_tcpactiveopens();
darran 0:55a05330f8cc 669
darran 0:55a05330f8cc 670 tcp_output(pcb);
darran 0:55a05330f8cc 671 }
darran 0:55a05330f8cc 672 return ret;
darran 0:55a05330f8cc 673 }
darran 0:55a05330f8cc 674
darran 0:55a05330f8cc 675 /**
darran 0:55a05330f8cc 676 * Called every 500 ms and implements the retransmission timer and the timer that
darran 0:55a05330f8cc 677 * removes PCBs that have been in TIME-WAIT for enough time. It also increments
darran 0:55a05330f8cc 678 * various timers such as the inactivity timer in each PCB.
darran 0:55a05330f8cc 679 *
darran 0:55a05330f8cc 680 * Automatically called from tcp_tmr().
darran 0:55a05330f8cc 681 */
darran 0:55a05330f8cc 682 void
darran 0:55a05330f8cc 683 tcp_slowtmr(void)
darran 0:55a05330f8cc 684 {
darran 0:55a05330f8cc 685 struct tcp_pcb *pcb, *pcb2, *prev;
darran 0:55a05330f8cc 686 u16_t eff_wnd;
darran 0:55a05330f8cc 687 u8_t pcb_remove; /* flag if a PCB should be removed */
darran 0:55a05330f8cc 688 u8_t pcb_reset; /* flag if a RST should be sent when removing */
darran 0:55a05330f8cc 689 err_t err;
darran 0:55a05330f8cc 690
darran 0:55a05330f8cc 691 err = ERR_OK;
darran 0:55a05330f8cc 692
darran 0:55a05330f8cc 693 ++tcp_ticks;
darran 0:55a05330f8cc 694
darran 0:55a05330f8cc 695 /* Steps through all of the active PCBs. */
darran 0:55a05330f8cc 696 prev = NULL;
darran 0:55a05330f8cc 697 pcb = tcp_active_pcbs;
darran 0:55a05330f8cc 698 if (pcb == NULL) {
darran 0:55a05330f8cc 699 LWIP_DEBUGF(TCP_DEBUG, ("tcp_slowtmr: no active pcbs\n"));
darran 0:55a05330f8cc 700 }
darran 0:55a05330f8cc 701 while (pcb != NULL) {
darran 0:55a05330f8cc 702 LWIP_DEBUGF(TCP_DEBUG, ("tcp_slowtmr: processing active pcb\n"));
darran 0:55a05330f8cc 703 LWIP_ASSERT("tcp_slowtmr: active pcb->state != CLOSED\n", pcb->state != CLOSED);
darran 0:55a05330f8cc 704 LWIP_ASSERT("tcp_slowtmr: active pcb->state != LISTEN\n", pcb->state != LISTEN);
darran 0:55a05330f8cc 705 LWIP_ASSERT("tcp_slowtmr: active pcb->state != TIME-WAIT\n", pcb->state != TIME_WAIT);
darran 0:55a05330f8cc 706
darran 0:55a05330f8cc 707 pcb_remove = 0;
darran 0:55a05330f8cc 708 pcb_reset = 0;
darran 0:55a05330f8cc 709
darran 0:55a05330f8cc 710 if (pcb->state == SYN_SENT && pcb->nrtx == TCP_SYNMAXRTX) {
darran 0:55a05330f8cc 711 ++pcb_remove;
darran 0:55a05330f8cc 712 LWIP_DEBUGF(TCP_DEBUG, ("tcp_slowtmr: max SYN retries reached\n"));
darran 0:55a05330f8cc 713 }
darran 0:55a05330f8cc 714 else if (pcb->nrtx == TCP_MAXRTX) {
darran 0:55a05330f8cc 715 ++pcb_remove;
darran 0:55a05330f8cc 716 LWIP_DEBUGF(TCP_DEBUG, ("tcp_slowtmr: max DATA retries reached\n"));
darran 0:55a05330f8cc 717 } else {
darran 0:55a05330f8cc 718 if (pcb->persist_backoff > 0) {
darran 0:55a05330f8cc 719 /* If snd_wnd is zero, use persist timer to send 1 byte probes
darran 0:55a05330f8cc 720 * instead of using the standard retransmission mechanism. */
darran 0:55a05330f8cc 721 pcb->persist_cnt++;
darran 0:55a05330f8cc 722 if (pcb->persist_cnt >= tcp_persist_backoff[pcb->persist_backoff-1]) {
darran 0:55a05330f8cc 723 pcb->persist_cnt = 0;
darran 0:55a05330f8cc 724 if (pcb->persist_backoff < sizeof(tcp_persist_backoff)) {
darran 0:55a05330f8cc 725 pcb->persist_backoff++;
darran 0:55a05330f8cc 726 }
darran 0:55a05330f8cc 727 tcp_zero_window_probe(pcb);
darran 0:55a05330f8cc 728 }
darran 0:55a05330f8cc 729 } else {
darran 0:55a05330f8cc 730 /* Increase the retransmission timer if it is running */
darran 0:55a05330f8cc 731 if(pcb->rtime >= 0)
darran 0:55a05330f8cc 732 ++pcb->rtime;
darran 0:55a05330f8cc 733
darran 0:55a05330f8cc 734 if (pcb->unacked != NULL && pcb->rtime >= pcb->rto) {
darran 0:55a05330f8cc 735 /* Time for a retransmission. */
darran 0:55a05330f8cc 736 LWIP_DEBUGF(TCP_RTO_DEBUG, ("tcp_slowtmr: rtime %"S16_F
darran 0:55a05330f8cc 737 " pcb->rto %"S16_F"\n",
darran 0:55a05330f8cc 738 pcb->rtime, pcb->rto));
darran 0:55a05330f8cc 739
darran 0:55a05330f8cc 740 /* Double retransmission time-out unless we are trying to
darran 0:55a05330f8cc 741 * connect to somebody (i.e., we are in SYN_SENT). */
darran 0:55a05330f8cc 742 if (pcb->state != SYN_SENT) {
darran 0:55a05330f8cc 743 pcb->rto = ((pcb->sa >> 3) + pcb->sv) << tcp_backoff[pcb->nrtx];
darran 0:55a05330f8cc 744 }
darran 0:55a05330f8cc 745
darran 0:55a05330f8cc 746 /* Reset the retransmission timer. */
darran 0:55a05330f8cc 747 pcb->rtime = 0;
darran 0:55a05330f8cc 748
darran 0:55a05330f8cc 749 /* Reduce congestion window and ssthresh. */
darran 0:55a05330f8cc 750 eff_wnd = LWIP_MIN(pcb->cwnd, pcb->snd_wnd);
darran 0:55a05330f8cc 751 pcb->ssthresh = eff_wnd >> 1;
darran 0:55a05330f8cc 752 if (pcb->ssthresh < (pcb->mss << 1)) {
darran 0:55a05330f8cc 753 pcb->ssthresh = (pcb->mss << 1);
darran 0:55a05330f8cc 754 }
darran 0:55a05330f8cc 755 pcb->cwnd = pcb->mss;
darran 0:55a05330f8cc 756 LWIP_DEBUGF(TCP_CWND_DEBUG, ("tcp_slowtmr: cwnd %"U16_F
darran 0:55a05330f8cc 757 " ssthresh %"U16_F"\n",
darran 0:55a05330f8cc 758 pcb->cwnd, pcb->ssthresh));
darran 0:55a05330f8cc 759
darran 0:55a05330f8cc 760 /* The following needs to be called AFTER cwnd is set to one
darran 0:55a05330f8cc 761 mss - STJ */
darran 0:55a05330f8cc 762 tcp_rexmit_rto(pcb);
darran 0:55a05330f8cc 763 }
darran 0:55a05330f8cc 764 }
darran 0:55a05330f8cc 765 }
darran 0:55a05330f8cc 766 /* Check if this PCB has stayed too long in FIN-WAIT-2 */
darran 0:55a05330f8cc 767 if (pcb->state == FIN_WAIT_2) {
darran 0:55a05330f8cc 768 if ((u32_t)(tcp_ticks - pcb->tmr) >
darran 0:55a05330f8cc 769 TCP_FIN_WAIT_TIMEOUT / TCP_SLOW_INTERVAL) {
darran 0:55a05330f8cc 770 ++pcb_remove;
darran 0:55a05330f8cc 771 LWIP_DEBUGF(TCP_DEBUG, ("tcp_slowtmr: removing pcb stuck in FIN-WAIT-2\n"));
darran 0:55a05330f8cc 772 }
darran 0:55a05330f8cc 773 }
darran 0:55a05330f8cc 774
darran 0:55a05330f8cc 775 /* Check if KEEPALIVE should be sent */
darran 0:55a05330f8cc 776 if((pcb->so_options & SOF_KEEPALIVE) &&
darran 0:55a05330f8cc 777 ((pcb->state == ESTABLISHED) ||
darran 0:55a05330f8cc 778 (pcb->state == CLOSE_WAIT))) {
darran 0:55a05330f8cc 779 #if LWIP_TCP_KEEPALIVE
darran 0:55a05330f8cc 780 if((u32_t)(tcp_ticks - pcb->tmr) >
darran 0:55a05330f8cc 781 (pcb->keep_idle + (pcb->keep_cnt*pcb->keep_intvl))
darran 0:55a05330f8cc 782 / TCP_SLOW_INTERVAL)
darran 0:55a05330f8cc 783 #else
darran 0:55a05330f8cc 784 if((u32_t)(tcp_ticks - pcb->tmr) >
darran 0:55a05330f8cc 785 (pcb->keep_idle + TCP_MAXIDLE) / TCP_SLOW_INTERVAL)
darran 0:55a05330f8cc 786 #endif /* LWIP_TCP_KEEPALIVE */
darran 0:55a05330f8cc 787 {
darran 0:55a05330f8cc 788 LWIP_DEBUGF(TCP_DEBUG, ("tcp_slowtmr: KEEPALIVE timeout. Aborting connection to %"U16_F".%"U16_F".%"U16_F".%"U16_F".\n",
darran 0:55a05330f8cc 789 ip4_addr1_16(&pcb->remote_ip), ip4_addr2_16(&pcb->remote_ip),
darran 0:55a05330f8cc 790 ip4_addr3_16(&pcb->remote_ip), ip4_addr4_16(&pcb->remote_ip)));
darran 0:55a05330f8cc 791
darran 0:55a05330f8cc 792 ++pcb_remove;
darran 0:55a05330f8cc 793 ++pcb_reset;
darran 0:55a05330f8cc 794 }
darran 0:55a05330f8cc 795 #if LWIP_TCP_KEEPALIVE
darran 0:55a05330f8cc 796 else if((u32_t)(tcp_ticks - pcb->tmr) >
darran 0:55a05330f8cc 797 (pcb->keep_idle + pcb->keep_cnt_sent * pcb->keep_intvl)
darran 0:55a05330f8cc 798 / TCP_SLOW_INTERVAL)
darran 0:55a05330f8cc 799 #else
darran 0:55a05330f8cc 800 else if((u32_t)(tcp_ticks - pcb->tmr) >
darran 0:55a05330f8cc 801 (pcb->keep_idle + pcb->keep_cnt_sent * TCP_KEEPINTVL_DEFAULT)
darran 0:55a05330f8cc 802 / TCP_SLOW_INTERVAL)
darran 0:55a05330f8cc 803 #endif /* LWIP_TCP_KEEPALIVE */
darran 0:55a05330f8cc 804 {
darran 0:55a05330f8cc 805 tcp_keepalive(pcb);
darran 0:55a05330f8cc 806 pcb->keep_cnt_sent++;
darran 0:55a05330f8cc 807 }
darran 0:55a05330f8cc 808 }
darran 0:55a05330f8cc 809
darran 0:55a05330f8cc 810 /* If this PCB has queued out of sequence data, but has been
darran 0:55a05330f8cc 811 inactive for too long, will drop the data (it will eventually
darran 0:55a05330f8cc 812 be retransmitted). */
darran 0:55a05330f8cc 813 #if TCP_QUEUE_OOSEQ
darran 0:55a05330f8cc 814 if (pcb->ooseq != NULL &&
darran 0:55a05330f8cc 815 (u32_t)tcp_ticks - pcb->tmr >= pcb->rto * TCP_OOSEQ_TIMEOUT) {
darran 0:55a05330f8cc 816 tcp_segs_free(pcb->ooseq);
darran 0:55a05330f8cc 817 pcb->ooseq = NULL;
darran 0:55a05330f8cc 818 LWIP_DEBUGF(TCP_CWND_DEBUG, ("tcp_slowtmr: dropping OOSEQ queued data\n"));
darran 0:55a05330f8cc 819 }
darran 0:55a05330f8cc 820 #endif /* TCP_QUEUE_OOSEQ */
darran 0:55a05330f8cc 821
darran 0:55a05330f8cc 822 /* Check if this PCB has stayed too long in SYN-RCVD */
darran 0:55a05330f8cc 823 if (pcb->state == SYN_RCVD) {
darran 0:55a05330f8cc 824 if ((u32_t)(tcp_ticks - pcb->tmr) >
darran 0:55a05330f8cc 825 TCP_SYN_RCVD_TIMEOUT / TCP_SLOW_INTERVAL) {
darran 0:55a05330f8cc 826 ++pcb_remove;
darran 0:55a05330f8cc 827 LWIP_DEBUGF(TCP_DEBUG, ("tcp_slowtmr: removing pcb stuck in SYN-RCVD\n"));
darran 0:55a05330f8cc 828 }
darran 0:55a05330f8cc 829 }
darran 0:55a05330f8cc 830
darran 0:55a05330f8cc 831 /* Check if this PCB has stayed too long in LAST-ACK */
darran 0:55a05330f8cc 832 if (pcb->state == LAST_ACK) {
darran 0:55a05330f8cc 833 if ((u32_t)(tcp_ticks - pcb->tmr) > 2 * TCP_MSL / TCP_SLOW_INTERVAL) {
darran 0:55a05330f8cc 834 ++pcb_remove;
darran 0:55a05330f8cc 835 LWIP_DEBUGF(TCP_DEBUG, ("tcp_slowtmr: removing pcb stuck in LAST-ACK\n"));
darran 0:55a05330f8cc 836 }
darran 0:55a05330f8cc 837 }
darran 0:55a05330f8cc 838
darran 0:55a05330f8cc 839 /* If the PCB should be removed, do it. */
darran 0:55a05330f8cc 840 if (pcb_remove) {
darran 0:55a05330f8cc 841 tcp_pcb_purge(pcb);
darran 0:55a05330f8cc 842 /* Remove PCB from tcp_active_pcbs list. */
darran 0:55a05330f8cc 843 if (prev != NULL) {
darran 0:55a05330f8cc 844 LWIP_ASSERT("tcp_slowtmr: middle tcp != tcp_active_pcbs", pcb != tcp_active_pcbs);
darran 0:55a05330f8cc 845 prev->next = pcb->next;
darran 0:55a05330f8cc 846 } else {
darran 0:55a05330f8cc 847 /* This PCB was the first. */
darran 0:55a05330f8cc 848 LWIP_ASSERT("tcp_slowtmr: first pcb == tcp_active_pcbs", tcp_active_pcbs == pcb);
darran 0:55a05330f8cc 849 tcp_active_pcbs = pcb->next;
darran 0:55a05330f8cc 850 }
darran 0:55a05330f8cc 851
darran 0:55a05330f8cc 852 TCP_EVENT_ERR(pcb->errf, pcb->callback_arg, ERR_ABRT);
darran 0:55a05330f8cc 853 if (pcb_reset) {
darran 0:55a05330f8cc 854 tcp_rst(pcb->snd_nxt, pcb->rcv_nxt, &pcb->local_ip, &pcb->remote_ip,
darran 0:55a05330f8cc 855 pcb->local_port, pcb->remote_port);
darran 0:55a05330f8cc 856 }
darran 0:55a05330f8cc 857
darran 0:55a05330f8cc 858 pcb2 = pcb->next;
darran 0:55a05330f8cc 859 memp_free(MEMP_TCP_PCB, pcb);
darran 0:55a05330f8cc 860 pcb = pcb2;
darran 0:55a05330f8cc 861 } else {
darran 0:55a05330f8cc 862 /* get the 'next' element now and work with 'prev' below (in case of abort) */
darran 0:55a05330f8cc 863 prev = pcb;
darran 0:55a05330f8cc 864 pcb = pcb->next;
darran 0:55a05330f8cc 865
darran 0:55a05330f8cc 866 /* We check if we should poll the connection. */
darran 0:55a05330f8cc 867 ++prev->polltmr;
darran 0:55a05330f8cc 868 if (prev->polltmr >= prev->pollinterval) {
darran 0:55a05330f8cc 869 prev->polltmr = 0;
darran 0:55a05330f8cc 870 LWIP_DEBUGF(TCP_DEBUG, ("tcp_slowtmr: polling application\n"));
darran 0:55a05330f8cc 871 TCP_EVENT_POLL(prev, err);
darran 0:55a05330f8cc 872 /* if err == ERR_ABRT, 'prev' is already deallocated */
darran 0:55a05330f8cc 873 if (err == ERR_OK) {
darran 0:55a05330f8cc 874 tcp_output(prev);
darran 0:55a05330f8cc 875 }
darran 0:55a05330f8cc 876 }
darran 0:55a05330f8cc 877 }
darran 0:55a05330f8cc 878 }
darran 0:55a05330f8cc 879
darran 0:55a05330f8cc 880
darran 0:55a05330f8cc 881 /* Steps through all of the TIME-WAIT PCBs. */
darran 0:55a05330f8cc 882 prev = NULL;
darran 0:55a05330f8cc 883 pcb = tcp_tw_pcbs;
darran 0:55a05330f8cc 884 while (pcb != NULL) {
darran 0:55a05330f8cc 885 LWIP_ASSERT("tcp_slowtmr: TIME-WAIT pcb->state == TIME-WAIT", pcb->state == TIME_WAIT);
darran 0:55a05330f8cc 886 pcb_remove = 0;
darran 0:55a05330f8cc 887
darran 0:55a05330f8cc 888 /* Check if this PCB has stayed long enough in TIME-WAIT */
darran 0:55a05330f8cc 889 if ((u32_t)(tcp_ticks - pcb->tmr) > 2 * TCP_MSL / TCP_SLOW_INTERVAL) {
darran 0:55a05330f8cc 890 ++pcb_remove;
darran 0:55a05330f8cc 891 }
darran 0:55a05330f8cc 892
darran 0:55a05330f8cc 893
darran 0:55a05330f8cc 894
darran 0:55a05330f8cc 895 /* If the PCB should be removed, do it. */
darran 0:55a05330f8cc 896 if (pcb_remove) {
darran 0:55a05330f8cc 897 tcp_pcb_purge(pcb);
darran 0:55a05330f8cc 898 /* Remove PCB from tcp_tw_pcbs list. */
darran 0:55a05330f8cc 899 if (prev != NULL) {
darran 0:55a05330f8cc 900 LWIP_ASSERT("tcp_slowtmr: middle tcp != tcp_tw_pcbs", pcb != tcp_tw_pcbs);
darran 0:55a05330f8cc 901 prev->next = pcb->next;
darran 0:55a05330f8cc 902 } else {
darran 0:55a05330f8cc 903 /* This PCB was the first. */
darran 0:55a05330f8cc 904 LWIP_ASSERT("tcp_slowtmr: first pcb == tcp_tw_pcbs", tcp_tw_pcbs == pcb);
darran 0:55a05330f8cc 905 tcp_tw_pcbs = pcb->next;
darran 0:55a05330f8cc 906 }
darran 0:55a05330f8cc 907 pcb2 = pcb->next;
darran 0:55a05330f8cc 908 memp_free(MEMP_TCP_PCB, pcb);
darran 0:55a05330f8cc 909 pcb = pcb2;
darran 0:55a05330f8cc 910 } else {
darran 0:55a05330f8cc 911 prev = pcb;
darran 0:55a05330f8cc 912 pcb = pcb->next;
darran 0:55a05330f8cc 913 }
darran 0:55a05330f8cc 914 }
darran 0:55a05330f8cc 915 }
darran 0:55a05330f8cc 916
darran 0:55a05330f8cc 917 /**
darran 0:55a05330f8cc 918 * Is called every TCP_FAST_INTERVAL (250 ms) and process data previously
darran 0:55a05330f8cc 919 * "refused" by upper layer (application) and sends delayed ACKs.
darran 0:55a05330f8cc 920 *
darran 0:55a05330f8cc 921 * Automatically called from tcp_tmr().
darran 0:55a05330f8cc 922 */
darran 0:55a05330f8cc 923 void
darran 0:55a05330f8cc 924 tcp_fasttmr(void)
darran 0:55a05330f8cc 925 {
darran 0:55a05330f8cc 926 struct tcp_pcb *pcb = tcp_active_pcbs;
darran 0:55a05330f8cc 927
darran 0:55a05330f8cc 928 while(pcb != NULL) {
darran 0:55a05330f8cc 929 struct tcp_pcb *next = pcb->next;
darran 0:55a05330f8cc 930 /* If there is data which was previously "refused" by upper layer */
darran 0:55a05330f8cc 931 if (pcb->refused_data != NULL) {
darran 0:55a05330f8cc 932 /* Notify again application with data previously received. */
darran 0:55a05330f8cc 933 err_t err;
darran 0:55a05330f8cc 934 LWIP_DEBUGF(TCP_INPUT_DEBUG, ("tcp_fasttmr: notify kept packet\n"));
darran 0:55a05330f8cc 935 TCP_EVENT_RECV(pcb, pcb->refused_data, ERR_OK, err);
darran 0:55a05330f8cc 936 if (err == ERR_OK) {
darran 0:55a05330f8cc 937 pcb->refused_data = NULL;
darran 0:55a05330f8cc 938 } else if (err == ERR_ABRT) {
darran 0:55a05330f8cc 939 /* if err == ERR_ABRT, 'pcb' is already deallocated */
darran 0:55a05330f8cc 940 pcb = NULL;
darran 0:55a05330f8cc 941 }
darran 0:55a05330f8cc 942 }
darran 0:55a05330f8cc 943
darran 0:55a05330f8cc 944 /* send delayed ACKs */
darran 0:55a05330f8cc 945 if (pcb && (pcb->flags & TF_ACK_DELAY)) {
darran 0:55a05330f8cc 946 LWIP_DEBUGF(TCP_DEBUG, ("tcp_fasttmr: delayed ACK\n"));
darran 0:55a05330f8cc 947 tcp_ack_now(pcb);
darran 0:55a05330f8cc 948 tcp_output(pcb);
darran 0:55a05330f8cc 949 pcb->flags &= ~(TF_ACK_DELAY | TF_ACK_NOW);
darran 0:55a05330f8cc 950 }
darran 0:55a05330f8cc 951
darran 0:55a05330f8cc 952 pcb = next;
darran 0:55a05330f8cc 953 }
darran 0:55a05330f8cc 954 }
darran 0:55a05330f8cc 955
darran 0:55a05330f8cc 956 /**
darran 0:55a05330f8cc 957 * Deallocates a list of TCP segments (tcp_seg structures).
darran 0:55a05330f8cc 958 *
darran 0:55a05330f8cc 959 * @param seg tcp_seg list of TCP segments to free
darran 0:55a05330f8cc 960 */
darran 0:55a05330f8cc 961 void
darran 0:55a05330f8cc 962 tcp_segs_free(struct tcp_seg *seg)
darran 0:55a05330f8cc 963 {
darran 0:55a05330f8cc 964 while (seg != NULL) {
darran 0:55a05330f8cc 965 struct tcp_seg *next = seg->next;
darran 0:55a05330f8cc 966 tcp_seg_free(seg);
darran 0:55a05330f8cc 967 seg = next;
darran 0:55a05330f8cc 968 }
darran 0:55a05330f8cc 969 }
darran 0:55a05330f8cc 970
darran 0:55a05330f8cc 971 /**
darran 0:55a05330f8cc 972 * Frees a TCP segment (tcp_seg structure).
darran 0:55a05330f8cc 973 *
darran 0:55a05330f8cc 974 * @param seg single tcp_seg to free
darran 0:55a05330f8cc 975 */
darran 0:55a05330f8cc 976 void
darran 0:55a05330f8cc 977 tcp_seg_free(struct tcp_seg *seg)
darran 0:55a05330f8cc 978 {
darran 0:55a05330f8cc 979 if (seg != NULL) {
darran 0:55a05330f8cc 980 if (seg->p != NULL) {
darran 0:55a05330f8cc 981 pbuf_free(seg->p);
darran 0:55a05330f8cc 982 #if TCP_DEBUG
darran 0:55a05330f8cc 983 seg->p = NULL;
darran 0:55a05330f8cc 984 #endif /* TCP_DEBUG */
darran 0:55a05330f8cc 985 }
darran 0:55a05330f8cc 986 memp_free(MEMP_TCP_SEG, seg);
darran 0:55a05330f8cc 987 }
darran 0:55a05330f8cc 988 }
darran 0:55a05330f8cc 989
darran 0:55a05330f8cc 990 /**
darran 0:55a05330f8cc 991 * Sets the priority of a connection.
darran 0:55a05330f8cc 992 *
darran 0:55a05330f8cc 993 * @param pcb the tcp_pcb to manipulate
darran 0:55a05330f8cc 994 * @param prio new priority
darran 0:55a05330f8cc 995 */
darran 0:55a05330f8cc 996 void
darran 0:55a05330f8cc 997 tcp_setprio(struct tcp_pcb *pcb, u8_t prio)
darran 0:55a05330f8cc 998 {
darran 0:55a05330f8cc 999 pcb->prio = prio;
darran 0:55a05330f8cc 1000 }
darran 0:55a05330f8cc 1001 #if TCP_QUEUE_OOSEQ
darran 0:55a05330f8cc 1002
darran 0:55a05330f8cc 1003 /**
darran 0:55a05330f8cc 1004 * Returns a copy of the given TCP segment.
darran 0:55a05330f8cc 1005 * The pbuf and data are not copied, only the pointers
darran 0:55a05330f8cc 1006 *
darran 0:55a05330f8cc 1007 * @param seg the old tcp_seg
darran 0:55a05330f8cc 1008 * @return a copy of seg
darran 0:55a05330f8cc 1009 */
darran 0:55a05330f8cc 1010 struct tcp_seg *
darran 0:55a05330f8cc 1011 tcp_seg_copy(struct tcp_seg *seg)
darran 0:55a05330f8cc 1012 {
darran 0:55a05330f8cc 1013 struct tcp_seg *cseg;
darran 0:55a05330f8cc 1014
darran 0:55a05330f8cc 1015 cseg = (struct tcp_seg *)memp_malloc(MEMP_TCP_SEG);
darran 0:55a05330f8cc 1016 if (cseg == NULL) {
darran 0:55a05330f8cc 1017 return NULL;
darran 0:55a05330f8cc 1018 }
darran 0:55a05330f8cc 1019 SMEMCPY((u8_t *)cseg, (const u8_t *)seg, sizeof(struct tcp_seg));
darran 0:55a05330f8cc 1020 pbuf_ref(cseg->p);
darran 0:55a05330f8cc 1021 return cseg;
darran 0:55a05330f8cc 1022 }
darran 0:55a05330f8cc 1023 #endif
darran 0:55a05330f8cc 1024
darran 0:55a05330f8cc 1025 #if LWIP_CALLBACK_API
darran 0:55a05330f8cc 1026 /**
darran 0:55a05330f8cc 1027 * Default receive callback that is called if the user didn't register
darran 0:55a05330f8cc 1028 * a recv callback for the pcb.
darran 0:55a05330f8cc 1029 */
darran 0:55a05330f8cc 1030 err_t
darran 0:55a05330f8cc 1031 tcp_recv_null(void *arg, struct tcp_pcb *pcb, struct pbuf *p, err_t err)
darran 0:55a05330f8cc 1032 {
darran 0:55a05330f8cc 1033 LWIP_UNUSED_ARG(arg);
darran 0:55a05330f8cc 1034 if (p != NULL) {
darran 0:55a05330f8cc 1035 tcp_recved(pcb, p->tot_len);
darran 0:55a05330f8cc 1036 pbuf_free(p);
darran 0:55a05330f8cc 1037 } else if (err == ERR_OK) {
darran 0:55a05330f8cc 1038 return tcp_close(pcb);
darran 0:55a05330f8cc 1039 }
darran 0:55a05330f8cc 1040 return ERR_OK;
darran 0:55a05330f8cc 1041 }
darran 0:55a05330f8cc 1042 #endif /* LWIP_CALLBACK_API */
darran 0:55a05330f8cc 1043
darran 0:55a05330f8cc 1044 /**
darran 0:55a05330f8cc 1045 * Kills the oldest active connection that has lower priority than prio.
darran 0:55a05330f8cc 1046 *
darran 0:55a05330f8cc 1047 * @param prio minimum priority
darran 0:55a05330f8cc 1048 */
darran 0:55a05330f8cc 1049 static void
darran 0:55a05330f8cc 1050 tcp_kill_prio(u8_t prio)
darran 0:55a05330f8cc 1051 {
darran 0:55a05330f8cc 1052 struct tcp_pcb *pcb, *inactive;
darran 0:55a05330f8cc 1053 u32_t inactivity;
darran 0:55a05330f8cc 1054 u8_t mprio;
darran 0:55a05330f8cc 1055
darran 0:55a05330f8cc 1056
darran 0:55a05330f8cc 1057 mprio = TCP_PRIO_MAX;
darran 0:55a05330f8cc 1058
darran 0:55a05330f8cc 1059 /* We kill the oldest active connection that has lower priority than prio. */
darran 0:55a05330f8cc 1060 inactivity = 0;
darran 0:55a05330f8cc 1061 inactive = NULL;
darran 0:55a05330f8cc 1062 for(pcb = tcp_active_pcbs; pcb != NULL; pcb = pcb->next) {
darran 0:55a05330f8cc 1063 if (pcb->prio <= prio &&
darran 0:55a05330f8cc 1064 pcb->prio <= mprio &&
darran 0:55a05330f8cc 1065 (u32_t)(tcp_ticks - pcb->tmr) >= inactivity) {
darran 0:55a05330f8cc 1066 inactivity = tcp_ticks - pcb->tmr;
darran 0:55a05330f8cc 1067 inactive = pcb;
darran 0:55a05330f8cc 1068 mprio = pcb->prio;
darran 0:55a05330f8cc 1069 }
darran 0:55a05330f8cc 1070 }
darran 0:55a05330f8cc 1071 if (inactive != NULL) {
darran 0:55a05330f8cc 1072 LWIP_DEBUGF(TCP_DEBUG, ("tcp_kill_prio: killing oldest PCB %p (%"S32_F")\n",
darran 0:55a05330f8cc 1073 (void *)inactive, inactivity));
darran 0:55a05330f8cc 1074 tcp_abort(inactive);
darran 0:55a05330f8cc 1075 }
darran 0:55a05330f8cc 1076 }
darran 0:55a05330f8cc 1077
darran 0:55a05330f8cc 1078 /**
darran 0:55a05330f8cc 1079 * Kills the oldest connection that is in TIME_WAIT state.
darran 0:55a05330f8cc 1080 * Called from tcp_alloc() if no more connections are available.
darran 0:55a05330f8cc 1081 */
darran 0:55a05330f8cc 1082 static void
darran 0:55a05330f8cc 1083 tcp_kill_timewait(void)
darran 0:55a05330f8cc 1084 {
darran 0:55a05330f8cc 1085 struct tcp_pcb *pcb, *inactive;
darran 0:55a05330f8cc 1086 u32_t inactivity;
darran 0:55a05330f8cc 1087
darran 0:55a05330f8cc 1088 inactivity = 0;
darran 0:55a05330f8cc 1089 inactive = NULL;
darran 0:55a05330f8cc 1090 /* Go through the list of TIME_WAIT pcbs and get the oldest pcb. */
darran 0:55a05330f8cc 1091 for(pcb = tcp_tw_pcbs; pcb != NULL; pcb = pcb->next) {
darran 0:55a05330f8cc 1092 if ((u32_t)(tcp_ticks - pcb->tmr) >= inactivity) {
darran 0:55a05330f8cc 1093 inactivity = tcp_ticks - pcb->tmr;
darran 0:55a05330f8cc 1094 inactive = pcb;
darran 0:55a05330f8cc 1095 }
darran 0:55a05330f8cc 1096 }
darran 0:55a05330f8cc 1097 if (inactive != NULL) {
darran 0:55a05330f8cc 1098 LWIP_DEBUGF(TCP_DEBUG, ("tcp_kill_timewait: killing oldest TIME-WAIT PCB %p (%"S32_F")\n",
darran 0:55a05330f8cc 1099 (void *)inactive, inactivity));
darran 0:55a05330f8cc 1100 tcp_abort(inactive);
darran 0:55a05330f8cc 1101 }
darran 0:55a05330f8cc 1102 }
darran 0:55a05330f8cc 1103
darran 0:55a05330f8cc 1104 /**
darran 0:55a05330f8cc 1105 * Allocate a new tcp_pcb structure.
darran 0:55a05330f8cc 1106 *
darran 0:55a05330f8cc 1107 * @param prio priority for the new pcb
darran 0:55a05330f8cc 1108 * @return a new tcp_pcb that initially is in state CLOSED
darran 0:55a05330f8cc 1109 */
darran 0:55a05330f8cc 1110 struct tcp_pcb *
darran 0:55a05330f8cc 1111 tcp_alloc(u8_t prio)
darran 0:55a05330f8cc 1112 {
darran 0:55a05330f8cc 1113 struct tcp_pcb *pcb;
darran 0:55a05330f8cc 1114 u32_t iss;
darran 0:55a05330f8cc 1115
darran 0:55a05330f8cc 1116 pcb = (struct tcp_pcb *)memp_malloc(MEMP_TCP_PCB);
darran 0:55a05330f8cc 1117 if (pcb == NULL) {
darran 0:55a05330f8cc 1118 /* Try killing oldest connection in TIME-WAIT. */
darran 0:55a05330f8cc 1119 LWIP_DEBUGF(TCP_DEBUG, ("tcp_alloc: killing off oldest TIME-WAIT connection\n"));
darran 0:55a05330f8cc 1120 tcp_kill_timewait();
darran 0:55a05330f8cc 1121 /* Try to allocate a tcp_pcb again. */
darran 0:55a05330f8cc 1122 pcb = (struct tcp_pcb *)memp_malloc(MEMP_TCP_PCB);
darran 0:55a05330f8cc 1123 if (pcb == NULL) {
darran 0:55a05330f8cc 1124 /* Try killing active connections with lower priority than the new one. */
darran 0:55a05330f8cc 1125 LWIP_DEBUGF(TCP_DEBUG, ("tcp_alloc: killing connection with prio lower than %d\n", prio));
darran 0:55a05330f8cc 1126 tcp_kill_prio(prio);
darran 0:55a05330f8cc 1127 /* Try to allocate a tcp_pcb again. */
darran 0:55a05330f8cc 1128 pcb = (struct tcp_pcb *)memp_malloc(MEMP_TCP_PCB);
darran 0:55a05330f8cc 1129 if (pcb != NULL) {
darran 0:55a05330f8cc 1130 /* adjust err stats: memp_malloc failed twice before */
darran 0:55a05330f8cc 1131 MEMP_STATS_DEC(err, MEMP_TCP_PCB);
darran 0:55a05330f8cc 1132 }
darran 0:55a05330f8cc 1133 }
darran 0:55a05330f8cc 1134 if (pcb != NULL) {
darran 0:55a05330f8cc 1135 /* adjust err stats: timewait PCB was freed above */
darran 0:55a05330f8cc 1136 MEMP_STATS_DEC(err, MEMP_TCP_PCB);
darran 0:55a05330f8cc 1137 }
darran 0:55a05330f8cc 1138 }
darran 0:55a05330f8cc 1139 if (pcb != NULL) {
darran 0:55a05330f8cc 1140 memset(pcb, 0, sizeof(struct tcp_pcb));
darran 0:55a05330f8cc 1141 pcb->prio = prio;
darran 0:55a05330f8cc 1142 pcb->snd_buf = TCP_SND_BUF;
darran 0:55a05330f8cc 1143 pcb->snd_queuelen = 0;
darran 0:55a05330f8cc 1144 pcb->rcv_wnd = TCP_WND;
darran 0:55a05330f8cc 1145 pcb->rcv_ann_wnd = TCP_WND;
darran 0:55a05330f8cc 1146 pcb->tos = 0;
darran 0:55a05330f8cc 1147 pcb->ttl = TCP_TTL;
darran 0:55a05330f8cc 1148 /* As initial send MSS, we use TCP_MSS but limit it to 536.
darran 0:55a05330f8cc 1149 The send MSS is updated when an MSS option is received. */
darran 0:55a05330f8cc 1150 pcb->mss = (TCP_MSS > 536) ? 536 : TCP_MSS;
darran 0:55a05330f8cc 1151 pcb->rto = 3000 / TCP_SLOW_INTERVAL;
darran 0:55a05330f8cc 1152 pcb->sa = 0;
darran 0:55a05330f8cc 1153 pcb->sv = 3000 / TCP_SLOW_INTERVAL;
darran 0:55a05330f8cc 1154 pcb->rtime = -1;
darran 0:55a05330f8cc 1155 pcb->cwnd = 1;
darran 0:55a05330f8cc 1156 iss = tcp_next_iss();
darran 0:55a05330f8cc 1157 pcb->snd_wl2 = iss;
darran 0:55a05330f8cc 1158 pcb->snd_nxt = iss;
darran 0:55a05330f8cc 1159 pcb->lastack = iss;
darran 0:55a05330f8cc 1160 pcb->snd_lbb = iss;
darran 0:55a05330f8cc 1161 pcb->tmr = tcp_ticks;
darran 0:55a05330f8cc 1162
darran 0:55a05330f8cc 1163 pcb->polltmr = 0;
darran 0:55a05330f8cc 1164
darran 0:55a05330f8cc 1165 #if LWIP_CALLBACK_API
darran 0:55a05330f8cc 1166 pcb->recv = tcp_recv_null;
darran 0:55a05330f8cc 1167 #endif /* LWIP_CALLBACK_API */
darran 0:55a05330f8cc 1168
darran 0:55a05330f8cc 1169 /* Init KEEPALIVE timer */
darran 0:55a05330f8cc 1170 pcb->keep_idle = TCP_KEEPIDLE_DEFAULT;
darran 0:55a05330f8cc 1171
darran 0:55a05330f8cc 1172 #if LWIP_TCP_KEEPALIVE
darran 0:55a05330f8cc 1173 pcb->keep_intvl = TCP_KEEPINTVL_DEFAULT;
darran 0:55a05330f8cc 1174 pcb->keep_cnt = TCP_KEEPCNT_DEFAULT;
darran 0:55a05330f8cc 1175 #endif /* LWIP_TCP_KEEPALIVE */
darran 0:55a05330f8cc 1176
darran 0:55a05330f8cc 1177 pcb->keep_cnt_sent = 0;
darran 0:55a05330f8cc 1178 }
darran 0:55a05330f8cc 1179 return pcb;
darran 0:55a05330f8cc 1180 }
darran 0:55a05330f8cc 1181
darran 0:55a05330f8cc 1182 /**
darran 0:55a05330f8cc 1183 * Creates a new TCP protocol control block but doesn't place it on
darran 0:55a05330f8cc 1184 * any of the TCP PCB lists.
darran 0:55a05330f8cc 1185 * The pcb is not put on any list until binding using tcp_bind().
darran 0:55a05330f8cc 1186 *
darran 0:55a05330f8cc 1187 * @internal: Maybe there should be a idle TCP PCB list where these
darran 0:55a05330f8cc 1188 * PCBs are put on. Port reservation using tcp_bind() is implemented but
darran 0:55a05330f8cc 1189 * allocated pcbs that are not bound can't be killed automatically if wanting
darran 0:55a05330f8cc 1190 * to allocate a pcb with higher prio (@see tcp_kill_prio())
darran 0:55a05330f8cc 1191 *
darran 0:55a05330f8cc 1192 * @return a new tcp_pcb that initially is in state CLOSED
darran 0:55a05330f8cc 1193 */
darran 0:55a05330f8cc 1194 struct tcp_pcb *
darran 0:55a05330f8cc 1195 tcp_new(void)
darran 0:55a05330f8cc 1196 {
darran 0:55a05330f8cc 1197 return tcp_alloc(TCP_PRIO_NORMAL);
darran 0:55a05330f8cc 1198 }
darran 0:55a05330f8cc 1199
darran 0:55a05330f8cc 1200 /**
darran 0:55a05330f8cc 1201 * Used to specify the argument that should be passed callback
darran 0:55a05330f8cc 1202 * functions.
darran 0:55a05330f8cc 1203 *
darran 0:55a05330f8cc 1204 * @param pcb tcp_pcb to set the callback argument
darran 0:55a05330f8cc 1205 * @param arg void pointer argument to pass to callback functions
darran 0:55a05330f8cc 1206 */
darran 0:55a05330f8cc 1207 void
darran 0:55a05330f8cc 1208 tcp_arg(struct tcp_pcb *pcb, void *arg)
darran 0:55a05330f8cc 1209 {
darran 0:55a05330f8cc 1210 pcb->callback_arg = arg;
darran 0:55a05330f8cc 1211 }
darran 0:55a05330f8cc 1212 #if LWIP_CALLBACK_API
darran 0:55a05330f8cc 1213
darran 0:55a05330f8cc 1214 /**
darran 0:55a05330f8cc 1215 * Used to specify the function that should be called when a TCP
darran 0:55a05330f8cc 1216 * connection receives data.
darran 0:55a05330f8cc 1217 *
darran 0:55a05330f8cc 1218 * @param pcb tcp_pcb to set the recv callback
darran 0:55a05330f8cc 1219 * @param recv callback function to call for this pcb when data is received
darran 0:55a05330f8cc 1220 */
darran 0:55a05330f8cc 1221 void
darran 0:55a05330f8cc 1222 tcp_recv(struct tcp_pcb *pcb, tcp_recv_fn recv)
darran 0:55a05330f8cc 1223 {
darran 0:55a05330f8cc 1224 pcb->recv = recv;
darran 0:55a05330f8cc 1225 }
darran 0:55a05330f8cc 1226
darran 0:55a05330f8cc 1227 /**
darran 0:55a05330f8cc 1228 * Used to specify the function that should be called when TCP data
darran 0:55a05330f8cc 1229 * has been successfully delivered to the remote host.
darran 0:55a05330f8cc 1230 *
darran 0:55a05330f8cc 1231 * @param pcb tcp_pcb to set the sent callback
darran 0:55a05330f8cc 1232 * @param sent callback function to call for this pcb when data is successfully sent
darran 0:55a05330f8cc 1233 */
darran 0:55a05330f8cc 1234 void
darran 0:55a05330f8cc 1235 tcp_sent(struct tcp_pcb *pcb, tcp_sent_fn sent)
darran 0:55a05330f8cc 1236 {
darran 0:55a05330f8cc 1237 pcb->sent = sent;
darran 0:55a05330f8cc 1238 }
darran 0:55a05330f8cc 1239
darran 0:55a05330f8cc 1240 /**
darran 0:55a05330f8cc 1241 * Used to specify the function that should be called when a fatal error
darran 0:55a05330f8cc 1242 * has occured on the connection.
darran 0:55a05330f8cc 1243 *
darran 0:55a05330f8cc 1244 * @param pcb tcp_pcb to set the err callback
darran 0:55a05330f8cc 1245 * @param err callback function to call for this pcb when a fatal error
darran 0:55a05330f8cc 1246 * has occured on the connection
darran 0:55a05330f8cc 1247 */
darran 0:55a05330f8cc 1248 void
darran 0:55a05330f8cc 1249 tcp_err(struct tcp_pcb *pcb, tcp_err_fn err)
darran 0:55a05330f8cc 1250 {
darran 0:55a05330f8cc 1251 pcb->errf = err;
darran 0:55a05330f8cc 1252 }
darran 0:55a05330f8cc 1253
darran 0:55a05330f8cc 1254 /**
darran 0:55a05330f8cc 1255 * Used for specifying the function that should be called when a
darran 0:55a05330f8cc 1256 * LISTENing connection has been connected to another host.
darran 0:55a05330f8cc 1257 *
darran 0:55a05330f8cc 1258 * @param pcb tcp_pcb to set the accept callback
darran 0:55a05330f8cc 1259 * @param accept callback function to call for this pcb when LISTENing
darran 0:55a05330f8cc 1260 * connection has been connected to another host
darran 0:55a05330f8cc 1261 */
darran 0:55a05330f8cc 1262 void
darran 0:55a05330f8cc 1263 tcp_accept(struct tcp_pcb *pcb, tcp_accept_fn accept)
darran 0:55a05330f8cc 1264 {
darran 0:55a05330f8cc 1265 pcb->accept = accept;
darran 0:55a05330f8cc 1266 }
darran 0:55a05330f8cc 1267 #endif /* LWIP_CALLBACK_API */
darran 0:55a05330f8cc 1268
darran 0:55a05330f8cc 1269
darran 0:55a05330f8cc 1270 /**
darran 0:55a05330f8cc 1271 * Used to specify the function that should be called periodically
darran 0:55a05330f8cc 1272 * from TCP. The interval is specified in terms of the TCP coarse
darran 0:55a05330f8cc 1273 * timer interval, which is called twice a second.
darran 0:55a05330f8cc 1274 *
darran 0:55a05330f8cc 1275 */
darran 0:55a05330f8cc 1276 void
darran 0:55a05330f8cc 1277 tcp_poll(struct tcp_pcb *pcb, tcp_poll_fn poll, u8_t interval)
darran 0:55a05330f8cc 1278 {
darran 0:55a05330f8cc 1279 #if LWIP_CALLBACK_API
darran 0:55a05330f8cc 1280 pcb->poll = poll;
darran 0:55a05330f8cc 1281 #endif /* LWIP_CALLBACK_API */
darran 0:55a05330f8cc 1282 pcb->pollinterval = interval;
darran 0:55a05330f8cc 1283 }
darran 0:55a05330f8cc 1284
darran 0:55a05330f8cc 1285 /**
darran 0:55a05330f8cc 1286 * Purges a TCP PCB. Removes any buffered data and frees the buffer memory
darran 0:55a05330f8cc 1287 * (pcb->ooseq, pcb->unsent and pcb->unacked are freed).
darran 0:55a05330f8cc 1288 *
darran 0:55a05330f8cc 1289 * @param pcb tcp_pcb to purge. The pcb itself is not deallocated!
darran 0:55a05330f8cc 1290 */
darran 0:55a05330f8cc 1291 void
darran 0:55a05330f8cc 1292 tcp_pcb_purge(struct tcp_pcb *pcb)
darran 0:55a05330f8cc 1293 {
darran 0:55a05330f8cc 1294 if (pcb->state != CLOSED &&
darran 0:55a05330f8cc 1295 pcb->state != TIME_WAIT &&
darran 0:55a05330f8cc 1296 pcb->state != LISTEN) {
darran 0:55a05330f8cc 1297
darran 0:55a05330f8cc 1298 LWIP_DEBUGF(TCP_DEBUG, ("tcp_pcb_purge\n"));
darran 0:55a05330f8cc 1299
darran 0:55a05330f8cc 1300 #if TCP_LISTEN_BACKLOG
darran 0:55a05330f8cc 1301 if (pcb->state == SYN_RCVD) {
darran 0:55a05330f8cc 1302 /* Need to find the corresponding listen_pcb and decrease its accepts_pending */
darran 0:55a05330f8cc 1303 struct tcp_pcb_listen *lpcb;
darran 0:55a05330f8cc 1304 LWIP_ASSERT("tcp_pcb_purge: pcb->state == SYN_RCVD but tcp_listen_pcbs is NULL",
darran 0:55a05330f8cc 1305 tcp_listen_pcbs.listen_pcbs != NULL);
darran 0:55a05330f8cc 1306 for (lpcb = tcp_listen_pcbs.listen_pcbs; lpcb != NULL; lpcb = lpcb->next) {
darran 0:55a05330f8cc 1307 if ((lpcb->local_port == pcb->local_port) &&
darran 0:55a05330f8cc 1308 (ip_addr_isany(&lpcb->local_ip) ||
darran 0:55a05330f8cc 1309 ip_addr_cmp(&pcb->local_ip, &lpcb->local_ip))) {
darran 0:55a05330f8cc 1310 /* port and address of the listen pcb match the timed-out pcb */
darran 0:55a05330f8cc 1311 LWIP_ASSERT("tcp_pcb_purge: listen pcb does not have accepts pending",
darran 0:55a05330f8cc 1312 lpcb->accepts_pending > 0);
darran 0:55a05330f8cc 1313 lpcb->accepts_pending--;
darran 0:55a05330f8cc 1314 break;
darran 0:55a05330f8cc 1315 }
darran 0:55a05330f8cc 1316 }
darran 0:55a05330f8cc 1317 }
darran 0:55a05330f8cc 1318 #endif /* TCP_LISTEN_BACKLOG */
darran 0:55a05330f8cc 1319
darran 0:55a05330f8cc 1320
darran 0:55a05330f8cc 1321 if (pcb->refused_data != NULL) {
darran 0:55a05330f8cc 1322 LWIP_DEBUGF(TCP_DEBUG, ("tcp_pcb_purge: data left on ->refused_data\n"));
darran 0:55a05330f8cc 1323 pbuf_free(pcb->refused_data);
darran 0:55a05330f8cc 1324 pcb->refused_data = NULL;
darran 0:55a05330f8cc 1325 }
darran 0:55a05330f8cc 1326 if (pcb->unsent != NULL) {
darran 0:55a05330f8cc 1327 LWIP_DEBUGF(TCP_DEBUG, ("tcp_pcb_purge: not all data sent\n"));
darran 0:55a05330f8cc 1328 }
darran 0:55a05330f8cc 1329 if (pcb->unacked != NULL) {
darran 0:55a05330f8cc 1330 LWIP_DEBUGF(TCP_DEBUG, ("tcp_pcb_purge: data left on ->unacked\n"));
darran 0:55a05330f8cc 1331 }
darran 0:55a05330f8cc 1332 #if TCP_QUEUE_OOSEQ /* LW */
darran 0:55a05330f8cc 1333 if (pcb->ooseq != NULL) {
darran 0:55a05330f8cc 1334 LWIP_DEBUGF(TCP_DEBUG, ("tcp_pcb_purge: data left on ->ooseq\n"));
darran 0:55a05330f8cc 1335 }
darran 0:55a05330f8cc 1336 tcp_segs_free(pcb->ooseq);
darran 0:55a05330f8cc 1337 pcb->ooseq = NULL;
darran 0:55a05330f8cc 1338 #endif /* TCP_QUEUE_OOSEQ */
darran 0:55a05330f8cc 1339
darran 0:55a05330f8cc 1340 /* Stop the retransmission timer as it will expect data on unacked
darran 0:55a05330f8cc 1341 queue if it fires */
darran 0:55a05330f8cc 1342 pcb->rtime = -1;
darran 0:55a05330f8cc 1343
darran 0:55a05330f8cc 1344 tcp_segs_free(pcb->unsent);
darran 0:55a05330f8cc 1345 tcp_segs_free(pcb->unacked);
darran 0:55a05330f8cc 1346 pcb->unacked = pcb->unsent = NULL;
darran 0:55a05330f8cc 1347 #if TCP_OVERSIZE
darran 0:55a05330f8cc 1348 pcb->unsent_oversize = 0;
darran 0:55a05330f8cc 1349 #endif /* TCP_OVERSIZE */
darran 0:55a05330f8cc 1350 }
darran 0:55a05330f8cc 1351 }
darran 0:55a05330f8cc 1352
darran 0:55a05330f8cc 1353 /**
darran 0:55a05330f8cc 1354 * Purges the PCB and removes it from a PCB list. Any delayed ACKs are sent first.
darran 0:55a05330f8cc 1355 *
darran 0:55a05330f8cc 1356 * @param pcblist PCB list to purge.
darran 0:55a05330f8cc 1357 * @param pcb tcp_pcb to purge. The pcb itself is NOT deallocated!
darran 0:55a05330f8cc 1358 */
darran 0:55a05330f8cc 1359 void
darran 0:55a05330f8cc 1360 tcp_pcb_remove(struct tcp_pcb **pcblist, struct tcp_pcb *pcb)
darran 0:55a05330f8cc 1361 {
darran 0:55a05330f8cc 1362 TCP_RMV(pcblist, pcb);
darran 0:55a05330f8cc 1363
darran 0:55a05330f8cc 1364 tcp_pcb_purge(pcb);
darran 0:55a05330f8cc 1365
darran 0:55a05330f8cc 1366 /* if there is an outstanding delayed ACKs, send it */
darran 0:55a05330f8cc 1367 if (pcb->state != TIME_WAIT &&
darran 0:55a05330f8cc 1368 pcb->state != LISTEN &&
darran 0:55a05330f8cc 1369 pcb->flags & TF_ACK_DELAY) {
darran 0:55a05330f8cc 1370 pcb->flags |= TF_ACK_NOW;
darran 0:55a05330f8cc 1371 tcp_output(pcb);
darran 0:55a05330f8cc 1372 }
darran 0:55a05330f8cc 1373
darran 0:55a05330f8cc 1374 if (pcb->state != LISTEN) {
darran 0:55a05330f8cc 1375 LWIP_ASSERT("unsent segments leaking", pcb->unsent == NULL);
darran 0:55a05330f8cc 1376 LWIP_ASSERT("unacked segments leaking", pcb->unacked == NULL);
darran 0:55a05330f8cc 1377 #if TCP_QUEUE_OOSEQ
darran 0:55a05330f8cc 1378 LWIP_ASSERT("ooseq segments leaking", pcb->ooseq == NULL);
darran 0:55a05330f8cc 1379 #endif /* TCP_QUEUE_OOSEQ */
darran 0:55a05330f8cc 1380 }
darran 0:55a05330f8cc 1381
darran 0:55a05330f8cc 1382 pcb->state = CLOSED;
darran 0:55a05330f8cc 1383
darran 0:55a05330f8cc 1384 LWIP_ASSERT("tcp_pcb_remove: tcp_pcbs_sane()", tcp_pcbs_sane());
darran 0:55a05330f8cc 1385 }
darran 0:55a05330f8cc 1386
darran 0:55a05330f8cc 1387 /**
darran 0:55a05330f8cc 1388 * Calculates a new initial sequence number for new connections.
darran 0:55a05330f8cc 1389 *
darran 0:55a05330f8cc 1390 * @return u32_t pseudo random sequence number
darran 0:55a05330f8cc 1391 */
darran 0:55a05330f8cc 1392 u32_t
darran 0:55a05330f8cc 1393 tcp_next_iss(void)
darran 0:55a05330f8cc 1394 {
darran 0:55a05330f8cc 1395 static u32_t iss = 6510;
darran 0:55a05330f8cc 1396
darran 0:55a05330f8cc 1397 iss += tcp_ticks; /* XXX */
darran 0:55a05330f8cc 1398 return iss;
darran 0:55a05330f8cc 1399 }
darran 0:55a05330f8cc 1400
darran 0:55a05330f8cc 1401 #if TCP_CALCULATE_EFF_SEND_MSS
darran 0:55a05330f8cc 1402 /**
darran 0:55a05330f8cc 1403 * Calcluates the effective send mss that can be used for a specific IP address
darran 0:55a05330f8cc 1404 * by using ip_route to determin the netif used to send to the address and
darran 0:55a05330f8cc 1405 * calculating the minimum of TCP_MSS and that netif's mtu (if set).
darran 0:55a05330f8cc 1406 */
darran 0:55a05330f8cc 1407 u16_t
darran 0:55a05330f8cc 1408 tcp_eff_send_mss(u16_t sendmss, ip_addr_t *addr)
darran 0:55a05330f8cc 1409 {
darran 0:55a05330f8cc 1410 u16_t mss_s;
darran 0:55a05330f8cc 1411 struct netif *outif;
darran 0:55a05330f8cc 1412
darran 0:55a05330f8cc 1413 outif = ip_route(addr);
darran 0:55a05330f8cc 1414 if ((outif != NULL) && (outif->mtu != 0)) {
darran 0:55a05330f8cc 1415 mss_s = outif->mtu - IP_HLEN - TCP_HLEN;
darran 0:55a05330f8cc 1416 /* RFC 1122, chap 4.2.2.6:
darran 0:55a05330f8cc 1417 * Eff.snd.MSS = min(SendMSS+20, MMS_S) - TCPhdrsize - IPoptionsize
darran 0:55a05330f8cc 1418 * We correct for TCP options in tcp_write(), and don't support IP options.
darran 0:55a05330f8cc 1419 */
darran 0:55a05330f8cc 1420 sendmss = LWIP_MIN(sendmss, mss_s);
darran 0:55a05330f8cc 1421 }
darran 0:55a05330f8cc 1422 return sendmss;
darran 0:55a05330f8cc 1423 }
darran 0:55a05330f8cc 1424 #endif /* TCP_CALCULATE_EFF_SEND_MSS */
darran 0:55a05330f8cc 1425
darran 0:55a05330f8cc 1426 const char*
darran 0:55a05330f8cc 1427 tcp_debug_state_str(enum tcp_state s)
darran 0:55a05330f8cc 1428 {
darran 0:55a05330f8cc 1429 return tcp_state_str[s];
darran 0:55a05330f8cc 1430 }
darran 0:55a05330f8cc 1431
darran 0:55a05330f8cc 1432 #if TCP_DEBUG || TCP_INPUT_DEBUG || TCP_OUTPUT_DEBUG
darran 0:55a05330f8cc 1433 /**
darran 0:55a05330f8cc 1434 * Print a tcp header for debugging purposes.
darran 0:55a05330f8cc 1435 *
darran 0:55a05330f8cc 1436 * @param tcphdr pointer to a struct tcp_hdr
darran 0:55a05330f8cc 1437 */
darran 0:55a05330f8cc 1438 void
darran 0:55a05330f8cc 1439 tcp_debug_print(struct tcp_hdr *tcphdr)
darran 0:55a05330f8cc 1440 {
darran 0:55a05330f8cc 1441 LWIP_DEBUGF(TCP_DEBUG, ("TCP header:\n"));
darran 0:55a05330f8cc 1442 LWIP_DEBUGF(TCP_DEBUG, ("+-------------------------------+\n"));
darran 0:55a05330f8cc 1443 LWIP_DEBUGF(TCP_DEBUG, ("| %5"U16_F" | %5"U16_F" | (src port, dest port)\n",
darran 0:55a05330f8cc 1444 ntohs(tcphdr->src), ntohs(tcphdr->dest)));
darran 0:55a05330f8cc 1445 LWIP_DEBUGF(TCP_DEBUG, ("+-------------------------------+\n"));
darran 0:55a05330f8cc 1446 LWIP_DEBUGF(TCP_DEBUG, ("| %010"U32_F" | (seq no)\n",
darran 0:55a05330f8cc 1447 ntohl(tcphdr->seqno)));
darran 0:55a05330f8cc 1448 LWIP_DEBUGF(TCP_DEBUG, ("+-------------------------------+\n"));
darran 0:55a05330f8cc 1449 LWIP_DEBUGF(TCP_DEBUG, ("| %010"U32_F" | (ack no)\n",
darran 0:55a05330f8cc 1450 ntohl(tcphdr->ackno)));
darran 0:55a05330f8cc 1451 LWIP_DEBUGF(TCP_DEBUG, ("+-------------------------------+\n"));
darran 0:55a05330f8cc 1452 LWIP_DEBUGF(TCP_DEBUG, ("| %2"U16_F" | |%"U16_F"%"U16_F"%"U16_F"%"U16_F"%"U16_F"%"U16_F"| %5"U16_F" | (hdrlen, flags (",
darran 0:55a05330f8cc 1453 TCPH_HDRLEN(tcphdr),
darran 0:55a05330f8cc 1454 TCPH_FLAGS(tcphdr) >> 5 & 1,
darran 0:55a05330f8cc 1455 TCPH_FLAGS(tcphdr) >> 4 & 1,
darran 0:55a05330f8cc 1456 TCPH_FLAGS(tcphdr) >> 3 & 1,
darran 0:55a05330f8cc 1457 TCPH_FLAGS(tcphdr) >> 2 & 1,
darran 0:55a05330f8cc 1458 TCPH_FLAGS(tcphdr) >> 1 & 1,
darran 0:55a05330f8cc 1459 TCPH_FLAGS(tcphdr) & 1,
darran 0:55a05330f8cc 1460 ntohs(tcphdr->wnd)));
darran 0:55a05330f8cc 1461 tcp_debug_print_flags(TCPH_FLAGS(tcphdr));
darran 0:55a05330f8cc 1462 LWIP_DEBUGF(TCP_DEBUG, ("), win)\n"));
darran 0:55a05330f8cc 1463 LWIP_DEBUGF(TCP_DEBUG, ("+-------------------------------+\n"));
darran 0:55a05330f8cc 1464 LWIP_DEBUGF(TCP_DEBUG, ("| 0x%04"X16_F" | %5"U16_F" | (chksum, urgp)\n",
darran 0:55a05330f8cc 1465 ntohs(tcphdr->chksum), ntohs(tcphdr->urgp)));
darran 0:55a05330f8cc 1466 LWIP_DEBUGF(TCP_DEBUG, ("+-------------------------------+\n"));
darran 0:55a05330f8cc 1467 }
darran 0:55a05330f8cc 1468
darran 0:55a05330f8cc 1469 /**
darran 0:55a05330f8cc 1470 * Print a tcp state for debugging purposes.
darran 0:55a05330f8cc 1471 *
darran 0:55a05330f8cc 1472 * @param s enum tcp_state to print
darran 0:55a05330f8cc 1473 */
darran 0:55a05330f8cc 1474 void
darran 0:55a05330f8cc 1475 tcp_debug_print_state(enum tcp_state s)
darran 0:55a05330f8cc 1476 {
darran 0:55a05330f8cc 1477 LWIP_DEBUGF(TCP_DEBUG, ("State: %s\n", tcp_state_str[s]));
darran 0:55a05330f8cc 1478 }
darran 0:55a05330f8cc 1479
darran 0:55a05330f8cc 1480 /**
darran 0:55a05330f8cc 1481 * Print tcp flags for debugging purposes.
darran 0:55a05330f8cc 1482 *
darran 0:55a05330f8cc 1483 * @param flags tcp flags, all active flags are printed
darran 0:55a05330f8cc 1484 */
darran 0:55a05330f8cc 1485 void
darran 0:55a05330f8cc 1486 tcp_debug_print_flags(u8_t flags)
darran 0:55a05330f8cc 1487 {
darran 0:55a05330f8cc 1488 if (flags & TCP_FIN) {
darran 0:55a05330f8cc 1489 LWIP_DEBUGF(TCP_DEBUG, ("FIN "));
darran 0:55a05330f8cc 1490 }
darran 0:55a05330f8cc 1491 if (flags & TCP_SYN) {
darran 0:55a05330f8cc 1492 LWIP_DEBUGF(TCP_DEBUG, ("SYN "));
darran 0:55a05330f8cc 1493 }
darran 0:55a05330f8cc 1494 if (flags & TCP_RST) {
darran 0:55a05330f8cc 1495 LWIP_DEBUGF(TCP_DEBUG, ("RST "));
darran 0:55a05330f8cc 1496 }
darran 0:55a05330f8cc 1497 if (flags & TCP_PSH) {
darran 0:55a05330f8cc 1498 LWIP_DEBUGF(TCP_DEBUG, ("PSH "));
darran 0:55a05330f8cc 1499 }
darran 0:55a05330f8cc 1500 if (flags & TCP_ACK) {
darran 0:55a05330f8cc 1501 LWIP_DEBUGF(TCP_DEBUG, ("ACK "));
darran 0:55a05330f8cc 1502 }
darran 0:55a05330f8cc 1503 if (flags & TCP_URG) {
darran 0:55a05330f8cc 1504 LWIP_DEBUGF(TCP_DEBUG, ("URG "));
darran 0:55a05330f8cc 1505 }
darran 0:55a05330f8cc 1506 if (flags & TCP_ECE) {
darran 0:55a05330f8cc 1507 LWIP_DEBUGF(TCP_DEBUG, ("ECE "));
darran 0:55a05330f8cc 1508 }
darran 0:55a05330f8cc 1509 if (flags & TCP_CWR) {
darran 0:55a05330f8cc 1510 LWIP_DEBUGF(TCP_DEBUG, ("CWR "));
darran 0:55a05330f8cc 1511 }
darran 0:55a05330f8cc 1512 LWIP_DEBUGF(TCP_DEBUG, ("\n"));
darran 0:55a05330f8cc 1513 }
darran 0:55a05330f8cc 1514
darran 0:55a05330f8cc 1515 /**
darran 0:55a05330f8cc 1516 * Print all tcp_pcbs in every list for debugging purposes.
darran 0:55a05330f8cc 1517 */
darran 0:55a05330f8cc 1518 void
darran 0:55a05330f8cc 1519 tcp_debug_print_pcbs(void)
darran 0:55a05330f8cc 1520 {
darran 0:55a05330f8cc 1521 struct tcp_pcb *pcb;
darran 0:55a05330f8cc 1522 LWIP_DEBUGF(TCP_DEBUG, ("Active PCB states:\n"));
darran 0:55a05330f8cc 1523 for(pcb = tcp_active_pcbs; pcb != NULL; pcb = pcb->next) {
darran 0:55a05330f8cc 1524 LWIP_DEBUGF(TCP_DEBUG, ("Local port %"U16_F", foreign port %"U16_F" snd_nxt %"U32_F" rcv_nxt %"U32_F" ",
darran 0:55a05330f8cc 1525 pcb->local_port, pcb->remote_port,
darran 0:55a05330f8cc 1526 pcb->snd_nxt, pcb->rcv_nxt));
darran 0:55a05330f8cc 1527 tcp_debug_print_state(pcb->state);
darran 0:55a05330f8cc 1528 }
darran 0:55a05330f8cc 1529 LWIP_DEBUGF(TCP_DEBUG, ("Listen PCB states:\n"));
darran 0:55a05330f8cc 1530 for(pcb = (struct tcp_pcb *)tcp_listen_pcbs.pcbs; pcb != NULL; pcb = pcb->next) {
darran 0:55a05330f8cc 1531 LWIP_DEBUGF(TCP_DEBUG, ("Local port %"U16_F", foreign port %"U16_F" snd_nxt %"U32_F" rcv_nxt %"U32_F" ",
darran 0:55a05330f8cc 1532 pcb->local_port, pcb->remote_port,
darran 0:55a05330f8cc 1533 pcb->snd_nxt, pcb->rcv_nxt));
darran 0:55a05330f8cc 1534 tcp_debug_print_state(pcb->state);
darran 0:55a05330f8cc 1535 }
darran 0:55a05330f8cc 1536 LWIP_DEBUGF(TCP_DEBUG, ("TIME-WAIT PCB states:\n"));
darran 0:55a05330f8cc 1537 for(pcb = tcp_tw_pcbs; pcb != NULL; pcb = pcb->next) {
darran 0:55a05330f8cc 1538 LWIP_DEBUGF(TCP_DEBUG, ("Local port %"U16_F", foreign port %"U16_F" snd_nxt %"U32_F" rcv_nxt %"U32_F" ",
darran 0:55a05330f8cc 1539 pcb->local_port, pcb->remote_port,
darran 0:55a05330f8cc 1540 pcb->snd_nxt, pcb->rcv_nxt));
darran 0:55a05330f8cc 1541 tcp_debug_print_state(pcb->state);
darran 0:55a05330f8cc 1542 }
darran 0:55a05330f8cc 1543 }
darran 0:55a05330f8cc 1544
darran 0:55a05330f8cc 1545 /**
darran 0:55a05330f8cc 1546 * Check state consistency of the tcp_pcb lists.
darran 0:55a05330f8cc 1547 */
darran 0:55a05330f8cc 1548 s16_t
darran 0:55a05330f8cc 1549 tcp_pcbs_sane(void)
darran 0:55a05330f8cc 1550 {
darran 0:55a05330f8cc 1551 struct tcp_pcb *pcb;
darran 0:55a05330f8cc 1552 for(pcb = tcp_active_pcbs; pcb != NULL; pcb = pcb->next) {
darran 0:55a05330f8cc 1553 LWIP_ASSERT("tcp_pcbs_sane: active pcb->state != CLOSED", pcb->state != CLOSED);
darran 0:55a05330f8cc 1554 LWIP_ASSERT("tcp_pcbs_sane: active pcb->state != LISTEN", pcb->state != LISTEN);
darran 0:55a05330f8cc 1555 LWIP_ASSERT("tcp_pcbs_sane: active pcb->state != TIME-WAIT", pcb->state != TIME_WAIT);
darran 0:55a05330f8cc 1556 }
darran 0:55a05330f8cc 1557 for(pcb = tcp_tw_pcbs; pcb != NULL; pcb = pcb->next) {
darran 0:55a05330f8cc 1558 LWIP_ASSERT("tcp_pcbs_sane: tw pcb->state == TIME-WAIT", pcb->state == TIME_WAIT);
darran 0:55a05330f8cc 1559 }
darran 0:55a05330f8cc 1560 return 1;
darran 0:55a05330f8cc 1561 }
darran 0:55a05330f8cc 1562 #endif /* TCP_DEBUG */
darran 0:55a05330f8cc 1563
darran 0:55a05330f8cc 1564 #endif /* LWIP_TCP */