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[/] [amber/] [trunk/] [sw/] [boot-loader-ethmac/] [boot-loader-ethmac.c] - Blame information for rev 69

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Line No. Rev Author Line
1 61 csantifort
/*----------------------------------------------------------------
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//                                                              //
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//  boot-loader-ethmac.c                                        //
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//                                                              //
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//  This file is part of the Amber project                      //
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//  http://www.opencores.org/project,amber                      //
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//                                                              //
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//  Description                                                 //
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//  The main functions for the boot loader application. This    //
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//  application is embedded in the FPGA's SRAM and is used      //
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//  to load larger applications into the DDR3 memory on         //
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//  the development board.                                      //
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//                                                              //
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//  Author(s):                                                  //
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//      - Conor Santifort, csantifort.amber@gmail.com           //
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//                                                              //
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//////////////////////////////////////////////////////////////////
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//                                                              //
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// Copyright (C) 2011 Authors and OPENCORES.ORG                 //
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//                                                              //
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// This source file may be used and distributed without         //
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// restriction provided that this copyright statement is not    //
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// removed from the file and that any derivative work contains  //
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// the original copyright notice and the associated disclaimer. //
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//                                                              //
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// This source file is free software; you can redistribute it   //
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// and/or modify it under the terms of the GNU Lesser General   //
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// Public License as published by the Free Software Foundation; //
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// either version 2.1 of the License, or (at your option) any   //
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// later version.                                               //
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//                                                              //
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// This source is distributed in the hope that it will be       //
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// useful, but WITHOUT ANY WARRANTY; without even the implied   //
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// warranty of MERCHANTABILITY or FITNESS FOR A PARTICULAR      //
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// PURPOSE.  See the GNU Lesser General Public License for more //
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// details.                                                     //
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//                                                              //
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// You should have received a copy of the GNU Lesser General    //
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// Public License along with this source; if not, download it   //
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// from http://www.opencores.org/lgpl.shtml                     //
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//                                                              //
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----------------------------------------------------------------*/
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// TODO list
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// tcp.c clean up
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// Cleanup self_g structure and usage
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// tcp window - what is it, whats it set to? Add it to status stuff
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// Get A25 version working
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// test with booting linux
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#include "amber_registers.h"
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#include "address_map.h"
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#include "line-buffer.h"
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#include "timer.h"
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#include "utilities.h"
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#include "ethmac.h"
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#include "packet.h"
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#include "tcp.h"
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#include "udp.h"
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#include "telnet.h"
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#include "elfsplitter.h"
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#include "boot-loader-ethmac.h"
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66
 
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int main ( void ) {
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    char* line;
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    time_t* led_flash_timer;
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    time_t* reboot_timer;
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    socket_t* socket = socket0_g;
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    int reboot_stage = 0;
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    /* Turn off all LEDs as a starting point */
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    led_clear();
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    /* this must be first, because all the other init functions call malloc */
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    init_malloc();
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    /* Initialize current time and some timers */
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    init_current_time();
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    led_flash_timer = init_timer();
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    set_timer(led_flash_timer, 500);
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    reboot_timer = init_timer();
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86
 
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    /* receive packet buffer */
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    rx_packet_g = malloc(sizeof(packet_t));
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90
    /* socket init */
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    socket0_g = init_socket(0);
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    socket1_g = init_socket(1);
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94
    /* open ethernet port and wait for connection requests
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       keep trying forever */
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    while (!open_link());
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98
    /* infinite loop. Everything is timer, interrupt and queue driven from here on down */
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    while (1) {
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101
        /* Flash a heartbeat LED */
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        if (timer_expired(led_flash_timer)) {
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            led_flip(0);
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            set_timer(led_flash_timer, 500);
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            }
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107
 
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        /* Check for newly downloaded tftp file. Add to all tx buffers */
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        /* Has a file been uploaded via tftp ? */
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        if (udp_file_g != NULL) {
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            /* Notify telnet clients that file has been received */
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            if (udp_file_g->ready) {
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                udp_file_g->ready = 0;
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                telnet_broadcast("Received file %s, %d bytes, linux %d\r\n",
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                    udp_file_g->filename, udp_file_g->total_bytes, udp_file_g->linux_boot);
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                if (process_file(socket0_g) == 0)
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                    /* Disconnect in 1 second */
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                    set_timer(reboot_timer, 1000);
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                else
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                    telnet_broadcast("Not an elf file\r\n");
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                }
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            }
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125
        /* reboot timer expired */
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        if (timer_expired(reboot_timer)) {
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            /* First stage of reboot sequence is to nicely disconnect */
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            if (reboot_stage == 0) {
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                set_timer(reboot_timer, 1000);
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                reboot_stage = 1;
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                socket0_g->tcp_disconnect = 1;
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                socket1_g->tcp_disconnect = 1;
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                }
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            else {
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            /* Second stage of reboot sequence is to turn off ethmac and then jump to restart vector */
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                close_link();
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                reboot();
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                }
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            }
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        /* Poll both sockets in turn for activity */
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        if (socket == socket0_g)
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            socket = socket1_g;
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        else
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            socket = socket0_g;
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148
 
149
        /* Check if any tcp packets need to be re-transmitted */
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        tcp_retransmit(socket);
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152
 
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        /* Handle exit command */
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        if (socket->tcp_disconnect && socket->tcp_connection_state == TCP_OPEN) {
155
            tcp_disconnect(socket);
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            }
157
 
158
 
159
        /* Reset connection */
160
        if (socket->tcp_reset) {
161
            socket->tcp_connection_state = TCP_CLOSED;
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            socket->telnet_connection_state = TELNET_CLOSED;
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            socket->telnet_options_sent = 0;
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            tcp_reply(socket, NULL, 0);
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            socket->tcp_reset = 0;
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            }
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168
 
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        /* Send telnet options */
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        if (socket->tcp_connection_state == TCP_OPEN && !socket->telnet_options_sent){
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            telnet_options(socket);
172
            socket->telnet_options_sent = 1;
173
            }
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175
        /* telnet connection open
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           Communicate with client */
177
        else if (socket->telnet_connection_state == TELNET_OPEN) {
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            /* Send telnet greeting */
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            if (!socket->telnet_sent_opening_message){
180
                put_line (socket->telnet_txbuf, "Amber Processor Boot Loader\r\n> ");
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                socket->telnet_sent_opening_message = 1;
182
                }
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            /* Parse telnet rx buffer */
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            if (get_line(socket->telnet_rxbuf, &line))
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                parse_command (socket, line);
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188
            /* Transmit text from telnet tx buffer */
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            telnet_tx(socket, socket->telnet_txbuf);
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        }
191
    }
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}
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/* Parse a command line passed from main and execute the command */
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/* returns the length of the reply string */
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int parse_command (socket_t* socket, char* line)
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{
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    unsigned int start_addr;
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    unsigned int address;
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    unsigned int range;
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    int len, error = 0;
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    /* All commands are just a single character.
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       Just ignore anything else  */
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    switch (line[0]) {
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        /* Disconnect */
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        case 'e':
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        case 'x':
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        case 'q':
212
            socket->tcp_disconnect = 1;
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            return 0;
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        case 'r': /* Read mem */
216
            {
217
            if (len = get_hex (&line[2], &start_addr)) {
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                if (len = get_hex (&line[3+len], &range)) {
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                    for (address=start_addr; address<start_addr+range; address+=4) {
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                        put_line (socket->telnet_txbuf, "0x%08x 0x%08x\r\n",
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                                    address, *(unsigned int *)address);
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                        }
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                    }
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                else {
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                    put_line (socket->telnet_txbuf, "0x%08x 0x%08x\r\n",
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                                    start_addr, *(unsigned int *)start_addr);
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                    }
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                }
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            else
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                error=1;
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            break;
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            }
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234
 
235
        case 'h': {/* Help */
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            put_line (socket->telnet_txbuf, "You need help alright\r\n");
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            break;
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            }
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240
 
241
        case 's': {/* Status */
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            put_line (socket->telnet_txbuf, "Socket ID           %d\r\n", socket->id);
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            put_line (socket->telnet_txbuf, "Packets received    %d\r\n", socket->packets_received);
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            put_line (socket->telnet_txbuf, "Packets transmitted %d\r\n", socket->packets_sent);
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            put_line (socket->telnet_txbuf, "Packets resent      %d\r\n", socket->packets_resent);
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            put_line (socket->telnet_txbuf, "TCP checksum errors %d\r\n", tcp_checksum_errors_g);
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            put_line (socket->telnet_txbuf, "Counterparty IP %d.%d.%d.%d\r\n",
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                socket->rx_packet->src_ip[0],
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                socket->rx_packet->src_ip[1],
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                socket->rx_packet->src_ip[2],
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                socket->rx_packet->src_ip[3]);
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            put_line (socket->telnet_txbuf, "Counterparty Port %d\r\n",
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                socket->rx_packet->tcp_src_port);
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            put_line (socket->telnet_txbuf, "Malloc pointer 0x%08x\r\n",
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                *(unsigned int *)(ADR_MALLOC_POINTER));
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            put_line (socket->telnet_txbuf, "Malloc count %d\r\n",
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                *(unsigned int *)(ADR_MALLOC_COUNT));
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            put_line (socket->telnet_txbuf, "Uptime %d seconds\r\n", current_time_g->seconds);
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            break;
263
            }
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265
 
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        default: {
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            error=1; break;
268
            }
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        }
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271
 
272
    if (error)
273
            put_line (socket->telnet_txbuf, "You're not making any sense\r\n",
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                        line[0], line[1], line[2]);
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    put_line (socket->telnet_txbuf, "> ");
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    return 0;
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}
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/* copy tftp file into a single contiguous buffer so
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   if can be processed by elf splitter */
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int process_file(socket_t* socket)
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{
285
    block_t* block;
286
    char*    buf512;
287
    char*    tftp_file;
288
    char*    line;
289
    int      line_len;
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    int      ret;
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292
    tftp_file = malloc(udp_file_g->total_bytes);
293
 
294
    block = udp_file_g;
295
    buf512= tftp_file;
296
 
297
    while (block->next) {
298
        memcpy(buf512, block->buf512, block->bytes);
299
        buf512=&buf512[512];
300
        block=block->next;
301
        }
302
    memcpy(buf512, block->buf512, block->bytes);
303
    buf512=&buf512[512];
304
 
305
    return elfsplitter(tftp_file, socket);
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}
307
 
308
 
309
/* Disable interrupts
310
   Load new values into the interrupt vector memory space
311
   Jump to address 0
312
*/
313
void reboot()
314
{
315
   int i;
316
 
317
   /* Disable all interrupts */
318
   /* Disable ethmac_int interrupt */
319
   /* Disable timer 0 interrupt in interrupt controller */
320
   *(unsigned int *) ( ADR_AMBER_IC_IRQ0_ENABLECLR ) = 0x120;
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322
   for(i=0;i<MEM_BUF_ENTRIES;i++)
323
       if (elf_mem0_g->entry[i].valid)
324
           *(char *)(i) = elf_mem0_g->entry[i].data;
325
 
326
   if (udp_file_g->linux_boot)
327
      _jump_to_program(LINUX_JUMP_ADR);
328
   else
329
      _restart();
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}
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