371 lines
9.4 KiB
C
371 lines
9.4 KiB
C
#include <sysinit.h>
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#include <stdlib.h>
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#include <string.h>
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#include <stdio.h>
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#include <stdint.h>
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#include "basic/basic.h"
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#include "lcd/render.h"
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#include "lcd/allfonts.h"
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#include "basic/ecc.h"
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#include "funk/nrf24l01p.h"
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#include "filesystem/ff.h"
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#include "filesystem/diskio.h"
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#include "funk/filetransfer.h"
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#include "lcd/print.h"
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#include <string.h>
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#include "funk/nrf24l01p.h"
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#include "funk/filetransfer.h"
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#include "funk/rftransfer.h"
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#include "basic/basic.h"
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#include "basic/xxtea.h"
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#include "filesystem/ff.h"
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#include "lcd/print.h"
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#include "usetable.h"
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uint8_t mac[5] = {1,2,3,2,1};
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struct NRF_CFG config = {
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.channel= 81,
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.txmac= "\x1\x2\x3\x2\x1",
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.nrmacs=1,
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.mac0= "\x1\x2\x3\x2\x1",
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.maclen ="\x20",
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};
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void ram(void)
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{
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nrf_config_set(&config);
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if( sendKeys() )
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return;
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char priv[42];
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UINT readbytes;
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FIL file;
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if( f_open(&file, "priv.key", FA_OPEN_EXISTING|FA_READ) ){
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return;
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}
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if( f_read(&file, priv, 41, &readbytes) || readbytes != 41 ){
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return;
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}
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f_close(&file);
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priv[41] = 0;
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uint8_t done = 0;
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uint8_t key;
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uint8_t k1[16], k2[16], rx[4*NUMWORDS], ry[4*NUMWORDS];
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while( !done ){
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lcdClear();
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lcdPrintln("Receiving file");
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lcdPrintln("Down=Abort");
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lcdRefresh();
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key = getInput();
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delayms(20);
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if( key == BTN_DOWN ){
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return -1;
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}
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if( receiveR(rx,ry) )
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continue;
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lcdPrintln("Creating key");
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lcdRefresh();
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ECIES_decryptkeygen(rx, ry, k1, k2, priv);
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if( filetransfer_receive(mac,(uint32_t*)k1) < 0 )
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continue;
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lcdPrintln("Right=OK");
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lcdPrintln("Left=Retry");
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lcdPrintln("Down=Abort");
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lcdRefresh();
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while(1){
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key = getInput();
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delayms(20);
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if( key == BTN_LEFT ){
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break;
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}else if( key == BTN_RIGHT ){
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done = 1;
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break;
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}else if( key == BTN_DOWN ){
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return -1;
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}
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}
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}
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}
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void sendPublicKey(void)
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{
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uint8_t exp[2 + 4*NUMWORDS + 2];
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char buf[42];
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UINT readbytes;
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FIL file;
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if( f_open(&file, "pubx.key", FA_OPEN_EXISTING|FA_READ) ){
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lcdPrint("pubx.key");
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lcdRefresh();
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while(1);
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return;
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}
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if( f_read(&file, buf, 41, &readbytes) || readbytes != 41 ){
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lcdPrint("read x");
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lcdRefresh();
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while(1);
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return;
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}
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f_close(&file);
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buf[41] = 0;
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exp[0] = 'P';
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bitstr_parse_export((char*)exp+2, buf);
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exp[1] = 'X';
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nrf_config_set(&config);
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nrf_snd_pkt_crc(32, exp);
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delayms(10);
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if( f_open(&file, "puby.key", FA_OPEN_EXISTING|FA_READ) ){
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lcdPrint("puby.key");
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lcdRefresh();
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while(1);
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return;
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}
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if( f_read(&file, buf, 41, &readbytes) || readbytes != 41 ){
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lcdPrint("read x");
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lcdRefresh();
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while(1);
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return;
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}
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f_close(&file);
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buf[41] = 0;
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exp[1] = 'Y';
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bitstr_parse_export((char*)exp+2, buf);
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nrf_config_set(&config);
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nrf_snd_pkt_crc(32, exp);
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delayms(10);
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}
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int receiveKey(uint8_t type, uint8_t *x, uint8_t *y)
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{
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uint8_t buf[32];
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uint8_t n;
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nrf_config_set(&config);
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n = nrf_rcv_pkt_time(1000, 32, buf);
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if( n == 32 && buf[0] == type && buf[1] == 'X' ){
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for(int i=0; i<NUMWORDS*4; i++)
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x[i] = buf[i+2];
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nrf_config_set(&config);
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n = nrf_rcv_pkt_time(100, 32, buf);
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if( n == 32 && buf[0] ==type && buf[1] == 'Y' ){
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for(int i=0; i<NUMWORDS*4; i++)
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y[i] = buf[i+2];
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return 0;
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}
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}
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return -1;
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}
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int receiveR(uint8_t *rx, uint8_t *ry)
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{
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return receiveKey('R',rx,ry);
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}
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void sendMac(void)
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{
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uint8_t buf[32];
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buf[0] = 'M';
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buf[1] = 'C';
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buf[2] = mac[0];
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buf[3] = mac[1];
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buf[4] = mac[2];
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buf[5] = mac[3];
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buf[6] = mac[4];
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nrf_config_set(&config);
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nrf_snd_pkt_crc(32, buf);
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delayms(10);
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}
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int sendKeys(void)
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{
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uint8_t done = 0;
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char key;
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while( !done ){
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lcdClear();
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lcdPrintln("Sending PUBKEX");lcdRefresh();
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sendPublicKey();
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sendMac();
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lcdPrintln("Done");
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lcdPrintln("Right=OK");
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lcdPrintln("Left=Retry");
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lcdPrintln("Down=Abort");
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lcdRefresh();
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while(1){
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key = getInput();
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delayms(20);
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if( key == BTN_LEFT ){
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break;
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}else if( key == BTN_RIGHT ){
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done = 1;
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break;
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}else if( key == BTN_DOWN ){
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return -1;
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}
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}
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}
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return 0;
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}
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int filetransfer_receive(uint8_t *mac, uint32_t const k[4])
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{
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uint8_t buf[MAXSIZE+1];
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uint16_t size;
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uint8_t n;
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UINT written = 0;
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FIL file;
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FRESULT res;
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//uint8_t macbuf[5];
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//nrf_get_rx_max(0,5,macbuf);
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uint8_t metadata[32];
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//nrf_set_rx_mac(0, 32, 5, mac);
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nrf_config_set(&config);
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n = nrf_rcv_pkt_time_encr(3000, 32, metadata, k);
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if( n != 32 )
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return 1; //timeout
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//nrf_set_rx_mac(0, 32, 5, macbuf);
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//lcdPrintln("got meta"); lcdRefresh();
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metadata[19] = 0; //enforce termination
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size = (metadata[20] << 8) | metadata[21];
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if( size > MAXSIZE ) {lcdPrintln("too big"); lcdRefresh(); while(1);}
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if( size > MAXSIZE ) return 1; //file to big
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//if(fileexists(metadata)) return 1; //file already exists
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//lcdPrint("open"); lcdPrintln((const char*)metadata); lcdRefresh();
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res = f_open(&file, (const char*)metadata, FA_OPEN_ALWAYS|FA_WRITE);
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//lcdPrintln("file opened"); lcdRefresh();
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if( res ) {lcdPrintln("res"); lcdPrint(f_get_rc_string(res)); lcdRefresh(); while(1);}
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if( res )
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return res;
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uint16_t wordcount = (size+3)/4;
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//nrf_set_rx_mac(0, 32, 5, mac);
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//lcdPrintln("get file"); lcdRefresh();
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int fres = rftransfer_receive(buf, wordcount*4, 1000);
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if( fres == -1 ){
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lcdPrintln("checksum wrong");
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}else if( fres == -2 ){
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lcdPrintln("timeout");
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}else{
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//lcdPrintln("got file");
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}
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lcdRefresh();
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if( fres < 0 )
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return 1;
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//nrf_set_rx_mac(0, 32, 5, macbuf);
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xxtea_decode_words((uint32_t *)buf, wordcount, k);
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res = f_write(&file, buf, size, &written);
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f_close(&file);
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if( res )
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return res;
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if( written != size )
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return 1; //error while writing
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lcdClear();
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lcdPrintln("Received"); lcdPrintln((const char*)metadata); lcdRefresh();
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return 0;
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}
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#define MAXPACKET 32
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int16_t rftransfer_receive(uint8_t *buffer, uint16_t maxlen, uint16_t timeout)
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{
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uint8_t buf[MAXPACKET];
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uint8_t state = 0;
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uint16_t pos = 0, seq = 0, size = 0, rand = 0, crc = 0;
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int n,i;
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unsigned int currentTick = systickGetTicks();
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unsigned int startTick = currentTick;
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while(systickGetTicks() < (startTick+timeout) ){//this fails if either overflows
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nrf_config_set(&config);
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n = nrf_rcv_pkt_time(1000, MAXPACKET, buf);
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switch(state){
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case 0:
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if( n == 32 && buf[0] == 'L' ){
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size = (buf[1] << 8) | buf[2];
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rand = (buf[3] << 8) | buf[4];
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seq = 0;
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pos = 0;
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if( size <= maxlen ){
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//lcdClear();
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//lcdPrint("got l="); lcdPrintInt(size);
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//lcdPrintln(""); lcdRefresh();
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state = 1;
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}
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}
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break;
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case 1:
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if( n == 32 && buf[0] == 'D' && ((buf[3]<<8)|buf[4])==rand ){
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//lcdPrint("got d"); lcdRefresh();
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if( seq == ((buf[1]<<8)|buf[2]) ){
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//lcdPrintln(" in seq"); lcdRefresh();
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for(i=5; i<n-2 && pos<size; i++,pos++){
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buffer[pos] = buf[i];
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}
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seq++;
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}
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}
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if( pos == size ){
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//lcdPrintln("got all"); lcdRefresh();
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crc = crc16(buffer, size);
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state = 2;
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}
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break;
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case 2:
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if( n == 32 && buf[0] == 'C' && ((buf[3]<<8)|buf[4])==rand){
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//lcdPrint("got crc"); lcdRefresh();
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if( crc == ((buf[1]<<8)|buf[2]) ){
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//lcdPrintln(" ok"); lcdRefresh();
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return size;
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}else{
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//lcdPrintln(" nok"); lcdRefresh();
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return -1;
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}
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}
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break;
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};
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}
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//lcdPrintln("Timeout"); lcdRefresh();
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return -2;
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}
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#if 0
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int ECIES_decryptkeygen(uint8_t *rx, uint8_t *ry,
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uint8_t k1[16], uint8_t k2[16], const char *privkey)
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{
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elem_t Rx, Ry, Zx, Zy;
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exp_t d;
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bitstr_import(Rx, (char*)rx);
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bitstr_import(Ry, (char*)ry);
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if (ECIES_embedded_public_key_validation(Rx, Ry) < 0)
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return -1;
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bitstr_parse(d, privkey);
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point_copy(Zx, Zy, Rx, Ry);
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point_mult(Zx, Zy, d);
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point_double(Zx, Zy); /* cofactor h = 2 on B163 */
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if (point_is_zero(Zx, Zy))
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return -1;
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ECIES_kdf((char*)k1,(char*) k2, Zx, Rx, Ry);
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return 0;
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}
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#endif
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