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https://github.com/arduino/Arduino.git
synced 2024-12-01 12:24:14 +01:00
Fix issue with peek function
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parent
f213e69e73
commit
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@ -27,7 +27,7 @@
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</dictionary>
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<dictionary>
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<key>org.eclipse.cdt.make.core.buildLocation</key>
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<value>${workspace_loc:/wifiHD/Release}</value>
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<value>${workspace_loc:/wifiHD/Debug}</value>
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</dictionary>
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<dictionary>
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<key>org.eclipse.cdt.make.core.contents</key>
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Binary file not shown.
@ -199,6 +199,7 @@
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/* Pin related to shield communication */
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#define ARDUINO_HANDSHAKE_PIN AVR32_PIN_PA25
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#define ARDUINO_EXTINT_PIN AVR32_PIN_PA04 //not used
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#define AVR32_PDCA_PID_TX AVR32_PDCA_PID_SPI1_TX
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#define AVR32_PDCA_PID_RX AVR32_PDCA_PID_SPI1_RX
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@ -57,7 +57,7 @@
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#include "lwip/snmp.h"
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#include <string.h>
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#define _TEST_HD_
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/* Forward declarations.*/
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static void tcp_output_segment(struct tcp_seg *seg, struct tcp_pcb *pcb);
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@ -699,6 +699,19 @@ tcp_output_segment(struct tcp_seg *seg, struct tcp_pcb *pcb)
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}
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#endif
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#ifdef _TEST_HD_
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/* ANGR: set rtime this _before_ checking ip_route(). Otherwise TCP_SYN will
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* not be retransmitted in case the interface was down and tcp_connect()
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* will not return any error. Since we still want the err_cb() (or maybe
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* the wifi link comes up), make sure that we fulfill the retransmissions in
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* tcp_slowtmr()
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*/
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/* Set retransmission timer running if it is not currently enabled */
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if(pcb->rtime == -1)
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pcb->rtime = 0;
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#endif
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/* If we don't have a local IP address, we get one by
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calling ip_route(). */
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if (ip_addr_isany(&(pcb->local_ip))) {
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@ -709,9 +722,11 @@ tcp_output_segment(struct tcp_seg *seg, struct tcp_pcb *pcb)
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ip_addr_set(&(pcb->local_ip), &(netif->ip_addr));
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}
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/* Set retransmission timer running if it is not currently enabled */
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#ifndef _TEST_HD_
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//Set retransmission timer running if it is not currently enabled
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if(pcb->rtime == -1)
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pcb->rtime = 0;
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#endif
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if (pcb->rttest == 0) {
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pcb->rttest = tcp_ticks;
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@ -204,7 +204,11 @@ void setMapSock(uint8_t sock, void* _ttcp)
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void clearMapSockTcp(uint8_t sock)
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{
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if (sock < MAX_SOCK_NUM)
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{
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//printk("UnMap [%d, %p]\n", sock, mapSockTCP[sock]);
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mapSockTCP[sock] = NULL;
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}
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}
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void initMapSockTcp()
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@ -649,7 +653,7 @@ int start_server_tcp(uint16_t port, uint8_t sock)
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err = WL_SUCCESS;
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}else{
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INFO_SPI("Start Server [%d, %d] FAILED!\n", port, sock);
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WARN("Start Server [%d, %d] FAILED!\n", port, sock);
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clearMapSockTcp(sock);
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}
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return err;
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@ -1140,7 +1144,6 @@ cmd_spi_state_t get_client_state_tcp_cmd_cb(char* recv, char* reply, void* ctx,
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((struct ttcp*) p)->tpcb->state,
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((struct ttcp*) p)->lpcb->state,
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_state);
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}
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}
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}
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@ -1226,10 +1229,16 @@ cmd_spi_state_t get_data_tcp_cmd_cb(char* recv, char* reply, void* ctx, uint16_t
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CHECK_ARD_NETIF(recv, reply, count);
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tParam* params = (tParam*)&recv[3];
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GET_PARAM_NEXT(BYTE, params, _sock);
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GET_PARAM_NEXT(INT, params, _peek);
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if ((recv[3]==1)&&(recv[4]>=0)&&(recv[4]<MAX_SOCK_NUM))
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{
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SIGN2_DN();
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if (getTcpDataByte((uint8_t)recv[4], &data))
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if (getTcpDataByte((uint8_t)recv[4], &data, _peek))
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{
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CREATE_HEADER_REPLY(reply, recv, PARAM_NUMS_1);
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PUT_DATA_BYTE(data, reply, 3);
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@ -36,6 +36,8 @@ static int isDataSentCount = 0;
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bool pending_close = false;
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bool pending_accept = false;
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static err_t tcp_data_sent(void *arg, struct tcp_pcb *pcb, u16_t len);
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static void atcp_init()
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{
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pending_close = false;
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@ -48,12 +50,16 @@ static void ard_tcp_destroy(struct ttcp* ttcp) {
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err_t err = ERR_OK;
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DUMP_TCP_STATE(ttcp);
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if (getSock(ttcp)==-1)
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WARN("ttcp already deallocated!\n");
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if (ttcp->tpcb) {
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tcp_arg(ttcp->tpcb, NULL);
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tcp_sent(ttcp->tpcb, NULL);
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tcp_recv(ttcp->tpcb, NULL);
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tcp_err(ttcp->tpcb, NULL);
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err = tcp_close(ttcp->tpcb);
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//TEMPORAQARY
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//err = tcp_close(ttcp->tpcb);
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INFO_TCP("Closing tpcb: state:0x%x err:%d\n", ttcp->tpcb->state, err);
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}
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@ -118,6 +124,7 @@ static void ard_tcp_done(struct ttcp* ttcp, int result) {
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ttcp->done_cb(ttcp->opaque, result);
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ard_tcp_destroy(ttcp);
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clearMapSockTcp(getSock(ttcp));
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}
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static void
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@ -233,8 +240,16 @@ static void atcp_conn_cli_err_cb(void *arg, err_t err) {
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if (ifStatus == false)
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printk("Abort connection\n");
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ard_tcp_destroy(_ttcp);
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cleanSockState_cb(_ttcp);
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if ((_ttcp)&&(err == ERR_ABRT))
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{
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WARN("TTCP [%p]: free memory\n", _ttcp);
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tcp_poll_retries = 0;
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cleanSockState_cb(_ttcp);
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if (_ttcp->payload)
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free(_ttcp->payload);
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free(_ttcp);
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}
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pending_close = false;
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}
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@ -269,7 +284,7 @@ void closeConnections()
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_ttcp->tpcb, _ttcp->tpcb->state, _ttcp->lpcb, _ttcp->lpcb->state);
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//tcp_close(_ttcp->tpcb);
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ard_tcp_destroy(_ttcp);
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cleanSockState_cb(_ttcp);
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clearMapSockTcp(getSock(_ttcp));
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}
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}
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}
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@ -305,6 +320,8 @@ static err_t atcp_recv_cb(void *arg, struct tcp_pcb *pcb, struct pbuf *p,
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close_conn(ttcp);
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}
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if (err!=ERR_OK)
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WARN("err=%d p=%p\n", err, p);
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return ERR_OK;
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}
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@ -352,21 +369,18 @@ static err_t atcp_poll_conn(void *arg, struct tcp_pcb *pcb) {
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struct ttcp* _ttcp = arg;
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++tcp_poll_retries;
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if (tcp_poll_retries > 4) {
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WARN("ARD TCP [%p] arg=%p retries=%d\n",
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pcb, arg, tcp_poll_retries);
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if (tcp_poll_retries > 8) {
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WARN("ARD TCP [%p-%p] arg=%p retries=%d\n",
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pcb, _ttcp->tpcb, arg, tcp_poll_retries);
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tcp_poll_retries = 0;
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tcp_abort(pcb);
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ard_tcp_destroy(_ttcp);
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cleanSockState_cb(_ttcp);
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pending_close = false;
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return ERR_ABRT;
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return ERR_ABRT;
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}
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WARN("ARD TCP [%p-%p] arg=%p retries=%d pend.close:%d\n", (_ttcp)?_ttcp->tpcb:0, pcb, arg,
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tcp_poll_retries, pending_close);
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WARN("ARD TCP [%p-%p] arg=%p retries=%d pend.close:%d conn:%d\n", (_ttcp)?_ttcp->tpcb:0, pcb, arg,
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tcp_poll_retries, pending_close, _connected);
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if (_ttcp) tcp_send_data(_ttcp);
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if ((_ttcp)&&(_connected)) tcp_send_data(_ttcp);
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if (pending_close)
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{
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@ -377,7 +391,12 @@ static err_t atcp_poll_conn(void *arg, struct tcp_pcb *pcb) {
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}
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else
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{
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cleanSockState_cb(_ttcp);
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if (_ttcp->payload)
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free(_ttcp->payload);
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free(_ttcp);
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pending_close = false;
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}
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INFO_TCP("ARD TCP [%p-%p] try to close pending:%d\n", pcb, (_ttcp)?_ttcp->tpcb:0, pending_close);
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@ -423,7 +442,7 @@ static int atcp_start(struct ttcp* ttcp) {
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WARN("TTCP [%p]: could not allocate pcb\n", ttcp);
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return -1;
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}
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INFO_TCP("tcp:%x\n", ttcp->tpcb);
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ttcp->payload = malloc(ttcp->buflen);
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if (ttcp->payload == NULL) {
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WARN("TTCP [%p]: could not allocate payload\n", ttcp);
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@ -436,14 +455,14 @@ static int atcp_start(struct ttcp* ttcp) {
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if (ttcp->mode == TTCP_MODE_TRANSMIT) {
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tcp_err(ttcp->tpcb, atcp_conn_cli_err_cb);
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tcp_recv(ttcp->tpcb, atcp_recv_cb);
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tcp_poll(ttcp->tpcb, atcp_poll, 4);
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tcp_sent(ttcp->tpcb, tcp_data_sent);
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tcp_poll(ttcp->tpcb, atcp_poll_conn, 4);
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_connected = false;
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INFO_TCP("[tpcb]- %p\n", ttcp->tpcb);
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INFO_TCP("[tpcb]-%p payload:%p\n", ttcp->tpcb, ttcp->payload);
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DUMP_TCP_STATE(ttcp);
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if (tcp_connect(ttcp->tpcb, &ttcp->addr, ttcp->port, tcp_connect_cb)
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!= ERR_OK) {
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WARN("TTCP [%p]: tcp connect failed\n", ttcp);
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atcp_conn_err_cb(ttcp, err);
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return -1;
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}
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@ -681,6 +700,7 @@ void ard_tcp_stop(void* ttcp) {
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INFO_TCP("Destroy TCP connection...state:%d\n", _ttcp->tpcb->state);
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ard_tcp_destroy(_ttcp);
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clearMapSockTcp(getSock(_ttcp));
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tcp_poll_retries = 0;
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}else{
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INFO_TCP("Closing connection...state:%d\n", _ttcp->tpcb->state);
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DUMP_TCP_STATE(_ttcp);
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@ -688,6 +708,7 @@ void ard_tcp_stop(void* ttcp) {
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{
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close_conn(_ttcp);
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}
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pending_accept = false;
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}
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}
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@ -756,7 +777,7 @@ int sendTcpData(void* p, uint8_t* buf, uint16_t len) {
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if (_ttcp==NULL)
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{
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WARN("ttcp == NULL!");
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WARN("ttcp == NULL!\n");
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return WL_FAILURE;
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}
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@ -88,9 +88,10 @@ bool isAvailTcpDataByte(uint8_t sock)
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INFO_UTIL("check:%d %d %p\n",p->idx, p->len, p->data);
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if (p->idx == p->len)
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{
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INFO_UTIL("Free %p other buf %d\n", p->data, IS_BUF_AVAIL());
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freetData(p->data);
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ack_recved(p->pcb, p->len);
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INFO_UTIL("Free %p other buf %d tail:%d head:%d\n",
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p->data, IS_BUF_AVAIL(), tailBuf, headBuf);
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return (IS_BUF_AVAIL());
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}else{
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return true;
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@ -101,7 +102,7 @@ bool isAvailTcpDataByte(uint8_t sock)
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bool getTcpDataByte(uint8_t sock, uint8_t* payload)
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bool getTcpDataByte(uint8_t sock, uint8_t* payload, uint8_t peek)
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{
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// ref field in struct pbuf has been used as index pointer for byte data
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tData* p = get_pBuf(sock);
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@ -111,7 +112,10 @@ bool getTcpDataByte(uint8_t sock, uint8_t* payload)
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if (p->idx < p->len)
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{
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uint8_t* buf = (uint8_t*)p->data;
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*payload = buf[p->idx++];
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if (peek)
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*payload = buf[p->idx];
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else
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*payload = buf[p->idx++];
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INFO_UTIL("get:%d %p %d\n",p->idx, p->data, *payload);
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return true;
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}else{
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@ -25,7 +25,7 @@
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#define LED2_DN() gpio_clr_gpio_pin(LED2_GPIO)
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#define LED2_TL() gpio_tgl_gpio_pin(LED2_GPIO)
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#define _DEBUG_
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#ifdef _DEBUG_
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#define SIGN0_UP LED0_UP
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#define SIGN0_DN LED0_DN
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@ -238,7 +238,7 @@ bool isBufAvail();
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bool getTcpData(uint8_t sock, void** payload, uint16_t* len);
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bool getTcpDataByte(uint8_t sock, uint8_t* payload);
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bool getTcpDataByte(uint8_t sock, uint8_t* payload, uint8_t peek);
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bool isAvailTcpDataByte(uint8_t sock);
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//#define IP_DEBUG LWIP_DBG_ON
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//#define TCP_CWND_DEBUG LWIP_DBG_ON
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//#define ETHARP_DEBUG LWIP_DBG_ON
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//#define PBUF_DEBUG LWIP_DBG_ON
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#define TCP_INPUT_DEBUG LWIP_DBG_ON
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#define TCP_OUTPUT_DEBUG LWIP_DBG_ON
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#define PBUF_DEBUG LWIP_DBG_ON
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//#define TCP_INPUT_DEBUG LWIP_DBG_ON
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//#define TCP_OUTPUT_DEBUG LWIP_DBG_ON
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#endif
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#define ETH_PAD_SIZE WL_HEADER_SIZE /* size of wifiengine header */
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