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fe0eff8f1e
Thanks Valgrind This diff looks pointless at first until you see that I reference dive again earlier in the loop and then after the end of the loop. Signed-off-by: Dirk Hohndel <dirk@hohndel.org>
289 lines
7.8 KiB
C
289 lines
7.8 KiB
C
/*
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* uemis.c
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*
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* UEMIS SDA file importer
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* AUTHOR: Dirk Hohndel - Copyright 2011
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*
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* Licensed under the MIT license.
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*/
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#include <unistd.h>
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#include <stdio.h>
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#include <string.h>
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#include <stdint.h>
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#include <stdlib.h>
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#define __USE_XOPEN
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#include <time.h>
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#include <regex.h>
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#include "dive.h"
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#include "uemis.h"
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/*
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* following code is based on code found in at base64.sourceforge.net/b64.c
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* AUTHOR: Bob Trower 08/04/01
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* COPYRIGHT: Copyright (c) Trantor Standard Systems Inc., 2001
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* NOTE: This source code may be used as you wish, subject to
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* the MIT license.
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*/
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/*
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* Translation Table to decode (created by Bob Trower)
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*/
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static const char cd64[]="|$$$}rstuvwxyz{$$$$$$$>?@ABCDEFGHIJKLMNOPQRSTUVW$$$$$$XYZ[\\]^_`abcdefghijklmnopq";
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/*
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* decodeblock -- decode 4 '6-bit' characters into 3 8-bit binary bytes
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*/
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static void decodeblock( unsigned char in[4], unsigned char out[3] ) {
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out[ 0 ] = (unsigned char ) (in[0] << 2 | in[1] >> 4);
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out[ 1 ] = (unsigned char ) (in[1] << 4 | in[2] >> 2);
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out[ 2 ] = (unsigned char ) (((in[2] << 6) & 0xc0) | in[3]);
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}
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/*
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* decode a base64 encoded stream discarding padding, line breaks and noise
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*/
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static void decode( uint8_t *inbuf, uint8_t *outbuf, int inbuf_len ) {
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uint8_t in[4], out[3], v;
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int i,len,indx_in=0,indx_out=0;
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while (indx_in < inbuf_len) {
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for (len = 0, i = 0; i < 4 && (indx_in < inbuf_len); i++ ) {
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v = 0;
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while ((indx_in < inbuf_len) && v == 0) {
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v = inbuf[indx_in++];
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v = ((v < 43 || v > 122) ? 0 : cd64[ v - 43 ]);
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if (v)
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v = ((v == '$') ? 0 : v - 61);
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}
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if (indx_in < inbuf_len) {
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len++;
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if (v)
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in[i] = (v - 1);
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}
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else
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in[i] = 0;
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}
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if( len ) {
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decodeblock( in, out );
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for( i = 0; i < len - 1; i++ )
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outbuf[indx_out++] = out[i];
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}
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}
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}
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/* end code from Bob Trower */
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/* small helper functions */
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/* simpleregex allocates (and reallocates) the found buffer
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* don't forget to free it when you are done
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*/
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static int simpleregex(char *buffer, char *regex, char **found) {
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int status;
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regex_t re;
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regmatch_t match[5];
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if (regcomp(&re, regex, 0) !=0) {
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fprintf(stderr,"internal error, regex failed!\n");
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exit(1);
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}
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status = regexec(&re,buffer,5,match,0);
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if(status == 0) {
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*found = realloc(*found,match[1].rm_eo-match[1].rm_so + 1);
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strncpy(*found,buffer+match[1].rm_so,match[1].rm_eo-match[1].rm_so);
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(*found)[match[1].rm_eo-match[1].rm_so] = '\0';
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}
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return(status == 0);
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}
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/* read in line of arbitrary length (important for SDA files that can
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* have lines that are tens of kB long
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* don't forget to free it when you are done
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*/
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#define MYGETL_INCR 1024
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static char * mygetline(FILE * f) {
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size_t size = 0;
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size_t len = 0;
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char * buf = NULL;
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do {
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size += MYGETL_INCR;
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if ((buf = realloc(buf,size)) == NULL)
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break;
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fgets(buf+len,MYGETL_INCR,f);
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len = strlen(buf);
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} while (!feof(f) && buf[len-1]!='\n');
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return buf;
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}
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/* text matching, used to build very poor man's XML parser */
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int matchit(FILE *infd, char *regex, char *typeregex, char **found) {
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char *buffer;
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while (!feof(infd)) {
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buffer = mygetline(infd);
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if (buffer && simpleregex(buffer,regex,found)) {
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buffer = mygetline(infd);
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if (buffer && simpleregex(buffer,typeregex,found)) {
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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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/*
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* pressure_to_depth: In centibar. And when converting to
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* depth, I'm just going to always use saltwater, because I
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* think "true depth" is just stupid. From a diving standpoint,
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* "true depth" is pretty much completely pointless, unless
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* you're doing some kind of underwater surveying work.
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*
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* So I give water depths in "pressure depth", always assuming
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* salt water. So one atmosphere per 10m.
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*/
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static int pressure_to_depth(uint16_t value)
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{
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double atm, cm;
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atm = (value / 100.0) / 1.01325;
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cm = 100 * atm + 0.5;
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return( (cm > 0) ? 10 * (long)cm : 0);
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}
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/*
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* convert the base64 data blog
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*/
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int uemis_convert_base64(char *base64, uint8_t **data) {
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int len,datalen;
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len = strlen(base64);
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datalen = (len/4 + 1)*3;
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if (datalen < 0x123+0x25) {
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/* less than header + 1 sample??? */
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fprintf(stderr,"suspiciously short data block\n");
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}
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*data = malloc(datalen);
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if (! *data) {
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datalen = 0;
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fprintf(stderr,"Out of memory\n");
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goto bail;
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}
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decode(base64, *data, len);
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if (memcmp(*data,"Dive\01\00\00",7))
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fprintf(stderr,"Missing Dive100 header\n");
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bail:
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return datalen;
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}
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/*
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* parse uemis base64 data blob into struct dive
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*/
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static void parse_divelog_binary(char *base64, struct dive **divep) {
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int datalen;
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int i;
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uint8_t *data;
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struct sample *sample;
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struct dive *dive = *divep;
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int template, gasoffset;
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datalen = uemis_convert_base64(base64, &data);
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/* dive template in use:
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0 = air
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1 = nitrox (B)
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2 = nitrox (B+D)
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3 = nitrox (B+T+D)
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uemis cylinder data is insane - it stores seven tank settings in a block
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and the template tells us which of the four groups of tanks we need to look at
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*/
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gasoffset = template = *(uint8_t *)(data+115);
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if (template == 3)
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gasoffset = 4;
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for (i = 0; i < template; i++) {
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float volume = *(float *)(data+116+25*(gasoffset + i)) * 1000.0;
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/* uemis always assumes a working pressure of 3000psi / 206bar - even though that's wrong */
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/* I also think that the unit that it stores (cuft for me) might change with SDA settings */
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// dive->cylinder[i].type.size.mliter = volume * 206.84 / 28.317;
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dive->cylinder[i].type.size.mliter = volume * 200 / 28.317;
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dive->cylinder[i].gasmix.o2.permille = *(uint8_t *)(data+120+25*(gasoffset + i)) * 10 + 0.5;
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dive->cylinder[i].gasmix.he.permille = 0;
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}
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/* first byte of divelog data is at offset 0x123 */
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i = 0x123;
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while ((i < datalen) && (*(uint16_t *)(data+i))) {
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/* it seems that a dive_time of 0 indicates the end of the valid readings */
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/* the SDA usually records more samples after the end of the dive --
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* we want to discard those, but not cut the dive short; sadly the dive
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* duration in the header is a) in minutes and b) up to 3 minutes short */
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if (*(uint16_t *)(data+i) > dive->duration.seconds + 180)
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break;
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sample = prepare_sample(divep);
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dive = *divep; /* prepare_sample might realloc the dive */
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sample->time.seconds = *(uint16_t *)(data+i);
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sample->depth.mm = pressure_to_depth(*(uint16_t *)(data+i+2));
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sample->temperature.mkelvin = (*(uint16_t *)(data+i+4) * 100) + 273150;
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sample->cylinderpressure.mbar= *(uint16_t *)(data+i+23) * 10;
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sample->cylinderindex = *(uint8_t *)(data+i+22);
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finish_sample(dive, sample);
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i += 0x25;
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}
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dive->duration.seconds = sample->time.seconds - 1;
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return;
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}
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/* parse a single file
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* TODO: we don't report any errors when the parse fails - we simply don't add them to the list
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*/
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void
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parse_uemis_file(char *divelogfilename) {
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char *found=NULL;
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struct tm tm;
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struct dive *dive;
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FILE *divelogfile = fopen(divelogfilename,"r");
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dive = alloc_dive();
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if (! matchit(divelogfile,"val key=\"date\"","<ts>\\([^<]*\\)</ts>",&found)) {
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/* some error handling */
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goto bail;
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}
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strptime(found, "%Y-%m-%dT%H:%M:%S", &tm);
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dive->when = utc_mktime(&tm);
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if (! matchit(divelogfile,"<val key=\"duration\">",
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"<float>\\([0-9.]*\\)</float>", &found)) {
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/* some error handling */
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goto bail;
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}
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dive->duration.seconds = 60.0 * atof(found);
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if (! matchit(divelogfile,"<val key=\"depth\">",
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"<int>\\([0-9.]*\\)</int>", &found)) {
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/* some error handling */
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goto bail;
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}
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dive->maxdepth.mm = pressure_to_depth(atoi(found));
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if (! matchit(divelogfile,"<val key=\"file_content\">",
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">\\([a-zA-Z0-9+/=]*\\)<", &found)) {
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/* some error handling */
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goto bail;
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}
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parse_divelog_binary(found,&dive);
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record_dive(dive);
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bail:
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if (found)
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free(found);
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}
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/*
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* parse the two files extracted from the SDA
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*/
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void
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uemis_import() {
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if (open_import_file_dialog("*.SDA","uemis Zurich SDA files",
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&parse_uemis_file))
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report_dives();
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}
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