There is a new variant of the i200C with a different model number (0x4749) and double the amount of memory (128K).
1114 lines
34 KiB
C
1114 lines
34 KiB
C
/*
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* libdivecomputer
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*
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* Copyright (C) 2009 Jef Driesen
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*
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* This library is free software; you can redistribute it and/or
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* modify it under the terms of the GNU Lesser General Public
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* License as published by the Free Software Foundation; either
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* version 2.1 of the License, or (at your option) any later version.
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*
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* This library is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
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* Lesser General Public License for more details.
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*
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* You should have received a copy of the GNU Lesser General Public
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* License along with this library; if not, write to the Free Software
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* Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston,
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* MA 02110-1301 USA
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*/
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#include <stdlib.h>
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#include <libdivecomputer/units.h>
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#include "oceanic_atom2.h"
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#include "oceanic_common.h"
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#include "context-private.h"
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#include "parser-private.h"
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#include "array.h"
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#define ISINSTANCE(parser) dc_parser_isinstance((parser), &oceanic_atom2_parser_vtable)
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#define ATOM1 0x4250
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#define EPICA 0x4257
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#define VT3 0x4258
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#define T3A 0x4259
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#define ATOM2 0x4342
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#define GEO 0x4344
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#define MANTA 0x4345
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#define DATAMASK 0x4347
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#define COMPUMASK 0x4348
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#define OC1A 0x434E
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#define F10A 0x434D
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#define WISDOM2 0x4350
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#define INSIGHT2 0x4353
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#define ELEMENT2 0x4357
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#define VEO20 0x4359
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#define VEO30 0x435A
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#define ZEN 0x4441
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#define ZENAIR 0x4442
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#define ATMOSAI2 0x4443
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#define PROPLUS21 0x4444
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#define GEO20 0x4446
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#define VT4 0x4447
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#define OC1B 0x4449
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#define VOYAGER2G 0x444B
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#define ATOM3 0x444C
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#define DG03 0x444D
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#define OCS 0x4450
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#define OC1C 0x4451
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#define VT41 0x4452
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#define EPICB 0x4453
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#define T3B 0x4455
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#define ATOM31 0x4456
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#define A300AI 0x4457
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#define WISDOM3 0x4458
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#define A300 0x445A
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#define TX1 0x4542
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#define MUNDIAL2 0x4543
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#define AMPHOS 0x4545
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#define AMPHOSAIR 0x4546
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#define PROPLUS3 0x4548
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#define F11A 0x4549
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#define OCI 0x454B
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#define A300CS 0x454C
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#define TALIS 0x454E
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#define MUNDIAL3 0x4550
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#define PROPLUSX 0x4552
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#define F10B 0x4553
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#define F11B 0x4554
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#define XPAIR 0x4555
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#define VISION 0x4556
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#define VTX 0x4557
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#define I300 0x4559
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#define I750TC 0x455A
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#define I450T 0x4641
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#define I550 0x4642
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#define I200 0x4646
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#define SAGE 0x4647
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#define I300C 0x4648
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#define I200C 0x4649
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#define I100 0x464E
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#define I770R 0x4651
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#define I550C 0x4652
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#define GEO40 0x4653
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#define VEO40 0x4654
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#define WISDOM4 0x4655
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#define PROPLUS4 0x4656
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#define AMPHOS2 0x4657
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#define BEACON 0x4742
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#define I470TC 0x4743
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#define I200CV2 0x4749
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#define NORMAL 0
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#define GAUGE 1
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#define FREEDIVE 2
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#define NGASMIXES 6
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#define HEADER 1
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#define PROFILE 2
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typedef struct oceanic_atom2_parser_t oceanic_atom2_parser_t;
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struct oceanic_atom2_parser_t {
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dc_parser_t base;
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unsigned int model;
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unsigned int headersize;
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unsigned int footersize;
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// Cached fields.
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unsigned int cached;
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unsigned int header;
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unsigned int footer;
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unsigned int mode;
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unsigned int ngasmixes;
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unsigned int oxygen[NGASMIXES];
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unsigned int helium[NGASMIXES];
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unsigned int divetime;
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double maxdepth;
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};
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static dc_status_t oceanic_atom2_parser_set_data (dc_parser_t *abstract, const unsigned char *data, unsigned int size);
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static dc_status_t oceanic_atom2_parser_get_datetime (dc_parser_t *abstract, dc_datetime_t *datetime);
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static dc_status_t oceanic_atom2_parser_get_field (dc_parser_t *abstract, dc_field_type_t type, unsigned int flags, void *value);
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static dc_status_t oceanic_atom2_parser_samples_foreach (dc_parser_t *abstract, dc_sample_callback_t callback, void *userdata);
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static const dc_parser_vtable_t oceanic_atom2_parser_vtable = {
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sizeof(oceanic_atom2_parser_t),
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DC_FAMILY_OCEANIC_ATOM2,
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oceanic_atom2_parser_set_data, /* set_data */
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oceanic_atom2_parser_get_datetime, /* datetime */
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oceanic_atom2_parser_get_field, /* fields */
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oceanic_atom2_parser_samples_foreach, /* samples_foreach */
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NULL /* destroy */
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};
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dc_status_t
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oceanic_atom2_parser_create (dc_parser_t **out, dc_context_t *context, unsigned int model)
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{
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oceanic_atom2_parser_t *parser = NULL;
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if (out == NULL)
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return DC_STATUS_INVALIDARGS;
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// Allocate memory.
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parser = (oceanic_atom2_parser_t *) dc_parser_allocate (context, &oceanic_atom2_parser_vtable);
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if (parser == NULL) {
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ERROR (context, "Failed to allocate memory.");
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return DC_STATUS_NOMEMORY;
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}
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// Set the default values.
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parser->model = model;
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parser->headersize = 9 * PAGESIZE / 2;
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parser->footersize = 2 * PAGESIZE / 2;
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if (model == DATAMASK || model == COMPUMASK ||
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model == GEO || model == GEO20 ||
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model == VEO20 || model == VEO30 ||
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model == OCS || model == PROPLUS3 ||
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model == A300 || model == MANTA ||
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model == INSIGHT2 || model == ZEN ||
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model == I300 || model == I550 ||
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model == I200 || model == I200C ||
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model == I300C || model == GEO40 ||
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model == VEO40 || model == I470TC) {
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parser->headersize -= PAGESIZE;
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} else if (model == VT4 || model == VT41) {
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parser->headersize += PAGESIZE;
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} else if (model == TX1) {
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parser->headersize += 2 * PAGESIZE;
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} else if (model == ATOM1 || model == I100 ||
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model == PROPLUS4) {
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parser->headersize -= 2 * PAGESIZE;
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} else if (model == F10A || model == F10B ||
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model == MUNDIAL2 || model == MUNDIAL3) {
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parser->headersize = 3 * PAGESIZE;
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parser->footersize = 0;
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} else if (model == F11A || model == F11B) {
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parser->headersize = 5 * PAGESIZE;
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parser->footersize = 0;
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} else if (model == A300CS || model == VTX ||
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model == I450T || model == I750TC ||
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model == I770R || model == SAGE ||
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model == BEACON) {
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parser->headersize = 5 * PAGESIZE;
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} else if (model == PROPLUSX) {
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parser->headersize = 3 * PAGESIZE;
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} else if (model == I550C || model == WISDOM4 ||
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model == I200CV2) {
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parser->headersize = 5 * PAGESIZE / 2;
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}
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parser->cached = 0;
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parser->header = 0;
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parser->footer = 0;
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parser->mode = NORMAL;
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parser->ngasmixes = 0;
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for (unsigned int i = 0; i < NGASMIXES; ++i) {
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parser->oxygen[i] = 0;
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parser->helium[i] = 0;
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}
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parser->divetime = 0;
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parser->maxdepth = 0.0;
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*out = (dc_parser_t*) parser;
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return DC_STATUS_SUCCESS;
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}
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static dc_status_t
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oceanic_atom2_parser_set_data (dc_parser_t *abstract, const unsigned char *data, unsigned int size)
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{
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oceanic_atom2_parser_t *parser = (oceanic_atom2_parser_t *) abstract;
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// Reset the cache.
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parser->cached = 0;
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parser->header = 0;
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parser->footer = 0;
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parser->mode = NORMAL;
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parser->ngasmixes = 0;
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for (unsigned int i = 0; i < NGASMIXES; ++i) {
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parser->oxygen[i] = 0;
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parser->helium[i] = 0;
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}
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parser->divetime = 0;
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parser->maxdepth = 0.0;
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return DC_STATUS_SUCCESS;
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}
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static dc_status_t
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oceanic_atom2_parser_get_datetime (dc_parser_t *abstract, dc_datetime_t *datetime)
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{
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oceanic_atom2_parser_t *parser = (oceanic_atom2_parser_t *) abstract;
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unsigned int header = 8;
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if (parser->model == F10A || parser->model == F10B ||
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parser->model == F11A || parser->model == F11B ||
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parser->model == MUNDIAL2 || parser->model == MUNDIAL3)
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header = 32;
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if (abstract->size < header)
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return DC_STATUS_DATAFORMAT;
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const unsigned char *p = abstract->data;
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if (datetime) {
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// AM/PM bit of the 12-hour clock.
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unsigned int pm = p[1] & 0x80;
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switch (parser->model) {
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case OC1A:
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case OC1B:
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case OC1C:
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case OCS:
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case VT4:
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case VT41:
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case ATOM3:
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case ATOM31:
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case A300AI:
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case OCI:
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case I550:
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case I550C:
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case VISION:
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case XPAIR:
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case WISDOM4:
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case I470TC:
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case I200CV2:
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datetime->year = ((p[5] & 0xE0) >> 5) + ((p[7] & 0xE0) >> 2) + 2000;
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datetime->month = (p[3] & 0x0F);
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datetime->day = ((p[0] & 0x80) >> 3) + ((p[3] & 0xF0) >> 4);
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datetime->hour = bcd2dec (p[1] & 0x1F);
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datetime->minute = bcd2dec (p[0] & 0x7F);
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break;
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case VT3:
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case VEO20:
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case VEO30:
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case DG03:
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case T3A:
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case T3B:
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case GEO20:
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case PROPLUS3:
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case DATAMASK:
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case COMPUMASK:
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case INSIGHT2:
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case I300:
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case I200:
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case I200C:
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case I100:
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case I300C:
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case GEO40:
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case VEO40:
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case PROPLUS4:
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datetime->year = ((p[3] & 0xE0) >> 1) + (p[4] & 0x0F) + 2000;
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datetime->month = (p[4] & 0xF0) >> 4;
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datetime->day = p[3] & 0x1F;
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datetime->hour = bcd2dec (p[1] & 0x1F);
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datetime->minute = bcd2dec (p[0]);
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break;
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case ZENAIR:
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case AMPHOS:
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case AMPHOSAIR:
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case VOYAGER2G:
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case TALIS:
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case AMPHOS2:
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datetime->year = (p[3] & 0x1F) + 2000;
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datetime->month = (p[7] & 0xF0) >> 4;
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datetime->day = ((p[3] & 0x80) >> 3) + ((p[5] & 0xF0) >> 4);
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datetime->hour = bcd2dec (p[1] & 0x1F);
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datetime->minute = bcd2dec (p[0]);
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break;
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case F10A:
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case F10B:
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case F11A:
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case F11B:
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case MUNDIAL2:
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case MUNDIAL3:
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datetime->year = bcd2dec (p[6]) + 2000;
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datetime->month = bcd2dec (p[7]);
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datetime->day = bcd2dec (p[8]);
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datetime->hour = bcd2dec (p[13] & 0x7F);
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datetime->minute = bcd2dec (p[12]);
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pm = p[13] & 0x80;
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break;
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case TX1:
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datetime->year = bcd2dec (p[13]) + 2000;
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datetime->month = bcd2dec (p[14]);
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datetime->day = bcd2dec (p[15]);
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datetime->hour = p[11];
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datetime->minute = p[10];
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break;
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case A300CS:
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case VTX:
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case I450T:
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case I750TC:
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case PROPLUSX:
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case I770R:
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case SAGE:
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case BEACON:
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datetime->year = (p[10]) + 2000;
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datetime->month = (p[8]);
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datetime->day = (p[9]);
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datetime->hour = bcd2dec(p[1] & 0x1F);
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datetime->minute = bcd2dec(p[0]);
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break;
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default:
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datetime->year = bcd2dec (((p[3] & 0xC0) >> 2) + (p[4] & 0x0F)) + 2000;
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datetime->month = (p[4] & 0xF0) >> 4;
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datetime->day = bcd2dec (p[3] & 0x3F);
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datetime->hour = bcd2dec (p[1] & 0x1F);
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datetime->minute = bcd2dec (p[0]);
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break;
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}
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datetime->second = 0;
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datetime->timezone = DC_TIMEZONE_NONE;
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// Convert to a 24-hour clock.
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datetime->hour %= 12;
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if (pm)
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datetime->hour += 12;
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/*
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* Workaround for the year 2010 problem.
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*
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* In theory there are more than enough bits available to store years
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* past 2010. Unfortunately some models do not use all those bits and
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* store only the last digit of the year. We try to guess the missing
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* information based on the current year. This should work in most
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* cases, except when the dive is more than 10 years old or in the
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* future (due to an incorrect clock on the device or the host system).
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*
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* Note that we are careful not to apply any guessing when the year is
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* actually stored with more bits. We don't want the code to break when
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* a firmware update fixes this bug.
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*/
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if (datetime->year < 2010) {
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// Retrieve the current year.
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dc_datetime_t now = {0};
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if (dc_datetime_localtime (&now, dc_datetime_now ()) &&
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now.year >= 2010)
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{
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// Guess the correct decade.
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int decade = (now.year / 10) * 10;
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if (datetime->year % 10 > now.year % 10)
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decade -= 10; /* Force back to the previous decade. */
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// Adjust the year.
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datetime->year += decade - 2000;
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}
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}
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}
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return DC_STATUS_SUCCESS;
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}
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static dc_status_t
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oceanic_atom2_parser_cache (oceanic_atom2_parser_t *parser)
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{
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const unsigned char *data = parser->base.data;
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unsigned int size = parser->base.size;
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if (parser->cached) {
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return DC_STATUS_SUCCESS;
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}
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// Get the total amount of bytes before and after the profile data.
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unsigned int headersize = parser->headersize;
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unsigned int footersize = parser->footersize;
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if (size < headersize + footersize)
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return DC_STATUS_DATAFORMAT;
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// Get the offset to the header and footer sample.
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unsigned int header = headersize - PAGESIZE / 2;
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unsigned int footer = size - footersize;
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if (parser->model == VT4 || parser->model == VT41 ||
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parser->model == A300AI || parser->model == VISION ||
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parser->model == XPAIR) {
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header = 3 * PAGESIZE;
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}
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// Get the dive mode.
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unsigned int mode = NORMAL;
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if (parser->model == F10A || parser->model == F10B ||
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parser->model == F11A || parser->model == F11B ||
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parser->model == MUNDIAL2 || parser->model == MUNDIAL3) {
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mode = FREEDIVE;
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} else if (parser->model == T3B || parser->model == VT3 ||
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parser->model == DG03) {
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mode = (data[2] & 0xC0) >> 6;
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} else if (parser->model == VEO20 || parser->model == VEO30 ||
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parser->model == OCS) {
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mode = (data[1] & 0x60) >> 5;
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}
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// Get the gas mixes.
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unsigned int ngasmixes = 0;
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unsigned int o2_offset = 0;
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unsigned int he_offset = 0;
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unsigned int o2_step = 1;
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if (mode == FREEDIVE) {
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ngasmixes = 0;
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} else if (parser->model == DATAMASK || parser->model == COMPUMASK) {
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ngasmixes = 1;
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o2_offset = header + 3;
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} else if (parser->model == VT4 || parser->model == VT41 ||
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parser->model == A300AI || parser->model == VISION ||
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parser->model == XPAIR) {
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o2_offset = header + 4;
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ngasmixes = 4;
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} else if (parser->model == OCI) {
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o2_offset = 0x28;
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ngasmixes = 4;
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} else if (parser->model == TX1) {
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o2_offset = 0x3E;
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he_offset = 0x48;
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ngasmixes = 6;
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} else if (parser->model == A300CS || parser->model == VTX ||
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parser->model == I750TC || parser->model == SAGE ||
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parser->model == BEACON) {
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o2_offset = 0x2A;
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if (data[0x39] & 0x04) {
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ngasmixes = 1;
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} else if (data[0x39] & 0x08) {
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ngasmixes = 2;
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} else if (data[0x39] & 0x10) {
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ngasmixes = 3;
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} else {
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ngasmixes = 4;
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}
|
|
} else if (parser->model == I450T) {
|
|
o2_offset = 0x30;
|
|
ngasmixes = 3;
|
|
} else if (parser->model == ZEN) {
|
|
o2_offset = header + 4;
|
|
ngasmixes = 2;
|
|
} else if (parser->model == PROPLUSX) {
|
|
o2_offset = 0x24;
|
|
ngasmixes = 4;
|
|
} else if (parser->model == I770R) {
|
|
o2_offset = 0x30;
|
|
ngasmixes = 4;
|
|
o2_step = 2;
|
|
} else if (parser->model == I470TC) {
|
|
o2_offset = 0x28;
|
|
ngasmixes = 3;
|
|
o2_step = 2;
|
|
} else if (parser->model == WISDOM4) {
|
|
o2_offset = header + 4;
|
|
ngasmixes = 1;
|
|
} else {
|
|
o2_offset = header + 4;
|
|
ngasmixes = 3;
|
|
}
|
|
|
|
// Cache the data for later use.
|
|
parser->header = header;
|
|
parser->footer = footer;
|
|
parser->mode = mode;
|
|
parser->ngasmixes = ngasmixes;
|
|
for (unsigned int i = 0; i < ngasmixes; ++i) {
|
|
if (data[o2_offset + i * o2_step]) {
|
|
parser->oxygen[i] = data[o2_offset + i * o2_step];
|
|
} else {
|
|
parser->oxygen[i] = 21;
|
|
}
|
|
if (he_offset) {
|
|
parser->helium[i] = data[he_offset + i];
|
|
} else {
|
|
parser->helium[i] = 0;
|
|
}
|
|
}
|
|
parser->cached = HEADER;
|
|
|
|
return DC_STATUS_SUCCESS;
|
|
}
|
|
|
|
|
|
static dc_status_t
|
|
oceanic_atom2_parser_get_field (dc_parser_t *abstract, dc_field_type_t type, unsigned int flags, void *value)
|
|
{
|
|
dc_status_t status = DC_STATUS_SUCCESS;
|
|
oceanic_atom2_parser_t *parser = (oceanic_atom2_parser_t *) abstract;
|
|
const unsigned char *data = abstract->data;
|
|
|
|
// Cache the header data.
|
|
status = oceanic_atom2_parser_cache (parser);
|
|
if (status != DC_STATUS_SUCCESS)
|
|
return status;
|
|
|
|
// Cache the profile data.
|
|
if (parser->cached < PROFILE) {
|
|
sample_statistics_t statistics = SAMPLE_STATISTICS_INITIALIZER;
|
|
status = oceanic_atom2_parser_samples_foreach (
|
|
abstract, sample_statistics_cb, &statistics);
|
|
if (status != DC_STATUS_SUCCESS)
|
|
return status;
|
|
|
|
parser->cached = PROFILE;
|
|
parser->divetime = statistics.divetime;
|
|
parser->maxdepth = statistics.maxdepth;
|
|
}
|
|
|
|
dc_gasmix_t *gasmix = (dc_gasmix_t *) value;
|
|
dc_salinity_t *water = (dc_salinity_t *) value;
|
|
|
|
if (value) {
|
|
switch (type) {
|
|
case DC_FIELD_DIVETIME:
|
|
if (parser->model == F10A || parser->model == F10B ||
|
|
parser->model == F11A || parser->model == F11B ||
|
|
parser->model == MUNDIAL2 || parser->model == MUNDIAL3)
|
|
*((unsigned int *) value) = bcd2dec (data[2]) + bcd2dec (data[3]) * 60;
|
|
else
|
|
*((unsigned int *) value) = parser->divetime;
|
|
break;
|
|
case DC_FIELD_MAXDEPTH:
|
|
if (parser->model == F10A || parser->model == F10B ||
|
|
parser->model == F11A || parser->model == F11B ||
|
|
parser->model == MUNDIAL2 || parser->model == MUNDIAL3)
|
|
*((double *) value) = array_uint16_le (data + 4) / 16.0 * FEET;
|
|
else
|
|
*((double *) value) = (array_uint16_le (data + parser->footer + 4) & 0x0FFF) / 16.0 * FEET;
|
|
break;
|
|
case DC_FIELD_GASMIX_COUNT:
|
|
*((unsigned int *) value) = parser->ngasmixes;
|
|
break;
|
|
case DC_FIELD_GASMIX:
|
|
gasmix->oxygen = parser->oxygen[flags] / 100.0;
|
|
gasmix->helium = parser->helium[flags] / 100.0;
|
|
gasmix->nitrogen = 1.0 - gasmix->oxygen - gasmix->helium;
|
|
break;
|
|
case DC_FIELD_SALINITY:
|
|
if (parser->model == A300CS || parser->model == VTX ||
|
|
parser->model == I750TC) {
|
|
if (data[0x18] & 0x80) {
|
|
water->type = DC_WATER_FRESH;
|
|
} else {
|
|
water->type = DC_WATER_SALT;
|
|
}
|
|
water->density = 0.0;
|
|
} else {
|
|
return DC_STATUS_UNSUPPORTED;
|
|
}
|
|
break;
|
|
case DC_FIELD_DIVEMODE:
|
|
switch (parser->mode) {
|
|
case NORMAL:
|
|
*((unsigned int *) value) = DC_DIVEMODE_OC;
|
|
break;
|
|
case GAUGE:
|
|
*((unsigned int *) value) = DC_DIVEMODE_GAUGE;
|
|
break;
|
|
case FREEDIVE:
|
|
*((unsigned int *) value) = DC_DIVEMODE_FREEDIVE;
|
|
break;
|
|
default:
|
|
return DC_STATUS_DATAFORMAT;
|
|
}
|
|
break;
|
|
default:
|
|
return DC_STATUS_UNSUPPORTED;
|
|
}
|
|
}
|
|
|
|
return DC_STATUS_SUCCESS;
|
|
}
|
|
|
|
static void
|
|
oceanic_atom2_parser_vendor (oceanic_atom2_parser_t *parser, const unsigned char *data, unsigned int size, unsigned int samplesize, dc_sample_callback_t callback, void *userdata)
|
|
{
|
|
unsigned int offset = 0;
|
|
while (offset + samplesize <= size) {
|
|
dc_sample_value_t sample = {0};
|
|
|
|
// Ignore empty samples.
|
|
if ((parser->mode != FREEDIVE &&
|
|
array_isequal (data + offset, samplesize, 0x00)) ||
|
|
array_isequal (data + offset, samplesize, 0xFF)) {
|
|
offset += samplesize;
|
|
continue;
|
|
}
|
|
|
|
// Get the sample type.
|
|
unsigned int sampletype = data[offset + 0];
|
|
if (parser->mode == FREEDIVE)
|
|
sampletype = 0;
|
|
|
|
// Get the sample size.
|
|
unsigned int length = samplesize;
|
|
if (sampletype == 0xBB) {
|
|
length = PAGESIZE;
|
|
}
|
|
|
|
// Vendor specific data
|
|
sample.vendor.type = SAMPLE_VENDOR_OCEANIC_ATOM2;
|
|
sample.vendor.size = length;
|
|
sample.vendor.data = data + offset;
|
|
if (callback) callback (DC_SAMPLE_VENDOR, sample, userdata);
|
|
|
|
offset += length;
|
|
}
|
|
}
|
|
|
|
static dc_status_t
|
|
oceanic_atom2_parser_samples_foreach (dc_parser_t *abstract, dc_sample_callback_t callback, void *userdata)
|
|
{
|
|
dc_status_t status = DC_STATUS_SUCCESS;
|
|
oceanic_atom2_parser_t *parser = (oceanic_atom2_parser_t *) abstract;
|
|
|
|
const unsigned char *data = abstract->data;
|
|
unsigned int size = abstract->size;
|
|
|
|
// Cache the header data.
|
|
status = oceanic_atom2_parser_cache (parser);
|
|
if (status != DC_STATUS_SUCCESS)
|
|
return status;
|
|
|
|
unsigned int extratime = 0;
|
|
unsigned int time = 0;
|
|
unsigned int interval = 1;
|
|
unsigned int samplerate = 1;
|
|
if (parser->mode != FREEDIVE) {
|
|
unsigned int idx = 0x17;
|
|
if (parser->model == A300CS || parser->model == VTX ||
|
|
parser->model == I450T || parser->model == I750TC ||
|
|
parser->model == PROPLUSX || parser->model == I770R ||
|
|
parser->model == SAGE || parser->model == BEACON)
|
|
idx = 0x1f;
|
|
switch (data[idx] & 0x03) {
|
|
case 0:
|
|
interval = 2;
|
|
break;
|
|
case 1:
|
|
interval = 15;
|
|
break;
|
|
case 2:
|
|
interval = 30;
|
|
break;
|
|
case 3:
|
|
interval = 60;
|
|
break;
|
|
}
|
|
} else if (parser->model == F11A || parser->model == F11B) {
|
|
unsigned int idx = 0x29;
|
|
switch (data[idx] & 0x03) {
|
|
case 0:
|
|
interval = 1;
|
|
samplerate = 4;
|
|
break;
|
|
case 1:
|
|
interval = 1;
|
|
samplerate = 2;
|
|
break;
|
|
case 2:
|
|
interval = 1;
|
|
break;
|
|
case 3:
|
|
interval = 2;
|
|
break;
|
|
}
|
|
if (samplerate > 1) {
|
|
// Some models supports multiple samples per second.
|
|
// Since our smallest unit of time is one second, we can't
|
|
// represent this, and the extra samples will get dropped.
|
|
WARNING(abstract->context, "Multiple samples per second are not supported!");
|
|
}
|
|
}
|
|
|
|
unsigned int samplesize = PAGESIZE / 2;
|
|
if (parser->mode == FREEDIVE) {
|
|
if (parser->model == F10A || parser->model == F10B ||
|
|
parser->model == F11A || parser->model == F11B ||
|
|
parser->model == MUNDIAL2 || parser->model == MUNDIAL3) {
|
|
samplesize = 2;
|
|
} else {
|
|
samplesize = 4;
|
|
}
|
|
} else if (parser->model == OC1A || parser->model == OC1B ||
|
|
parser->model == OC1C || parser->model == OCI ||
|
|
parser->model == TX1 || parser->model == A300CS ||
|
|
parser->model == VTX || parser->model == I450T ||
|
|
parser->model == I750TC || parser->model == PROPLUSX ||
|
|
parser->model == I770R || parser->model == I470TC ||
|
|
parser->model == SAGE || parser->model == BEACON) {
|
|
samplesize = PAGESIZE;
|
|
}
|
|
|
|
unsigned int have_temperature = 1, have_pressure = 1;
|
|
if (parser->mode == FREEDIVE) {
|
|
have_temperature = 0;
|
|
have_pressure = 0;
|
|
} else if (parser->model == VEO30 || parser->model == OCS ||
|
|
parser->model == ELEMENT2 || parser->model == VEO20 ||
|
|
parser->model == A300 || parser->model == ZEN ||
|
|
parser->model == GEO || parser->model == GEO20 ||
|
|
parser->model == MANTA || parser->model == I300 ||
|
|
parser->model == I200 || parser->model == I100 ||
|
|
parser->model == I300C || parser->model == TALIS ||
|
|
parser->model == I200C || parser->model == I200CV2 ||
|
|
parser->model == GEO40 || parser->model == VEO40) {
|
|
have_pressure = 0;
|
|
}
|
|
|
|
// Initial temperature.
|
|
unsigned int temperature = 0;
|
|
if (have_temperature) {
|
|
temperature = data[parser->header + 7];
|
|
}
|
|
|
|
// Initial tank pressure.
|
|
unsigned int tank = 0;
|
|
unsigned int pressure = 0;
|
|
if (have_pressure) {
|
|
unsigned int idx = 2;
|
|
if (parser->model == A300CS || parser->model == VTX ||
|
|
parser->model == I750TC)
|
|
idx = 16;
|
|
pressure = array_uint16_le(data + parser->header + idx);
|
|
if (pressure == 10000)
|
|
have_pressure = 0;
|
|
}
|
|
|
|
// Initial gas mix.
|
|
unsigned int gasmix_previous = 0xFFFFFFFF;
|
|
|
|
unsigned int count = 0;
|
|
unsigned int complete = 1;
|
|
unsigned int previous = 0;
|
|
unsigned int offset = parser->headersize;
|
|
while (offset + samplesize <= size - parser->footersize) {
|
|
dc_sample_value_t sample = {0};
|
|
|
|
// Ignore empty samples.
|
|
if ((parser->mode != FREEDIVE &&
|
|
array_isequal (data + offset, samplesize, 0x00)) ||
|
|
array_isequal (data + offset, samplesize, 0xFF)) {
|
|
offset += samplesize;
|
|
continue;
|
|
}
|
|
|
|
if (complete) {
|
|
previous = offset;
|
|
complete = 0;
|
|
}
|
|
|
|
// Get the sample type.
|
|
unsigned int sampletype = data[offset + 0];
|
|
if (parser->mode == FREEDIVE)
|
|
sampletype = 0;
|
|
|
|
// The sample size is usually fixed, but some sample types have a
|
|
// larger size. Check whether we have that many bytes available.
|
|
unsigned int length = samplesize;
|
|
if (sampletype == 0xBB) {
|
|
length = PAGESIZE;
|
|
if (offset + length > size - parser->footersize) {
|
|
ERROR (abstract->context, "Buffer overflow detected!");
|
|
return DC_STATUS_DATAFORMAT;
|
|
}
|
|
}
|
|
|
|
// Check for a tank switch sample.
|
|
if (sampletype == 0xAA) {
|
|
if (parser->model == DATAMASK || parser->model == COMPUMASK) {
|
|
// Tank pressure (1 psi) and number
|
|
tank = 0;
|
|
pressure = (((data[offset + 7] << 8) + data[offset + 6]) & 0x0FFF);
|
|
} else if (parser->model == A300CS || parser->model == VTX ||
|
|
parser->model == I750TC || parser->model == SAGE ||
|
|
parser->model == BEACON) {
|
|
// Tank pressure (1 psi) and number (one based index)
|
|
tank = (data[offset + 1] & 0x03) - 1;
|
|
pressure = ((data[offset + 7] << 8) + data[offset + 6]) & 0x0FFF;
|
|
} else {
|
|
// Tank pressure (2 psi) and number (one based index)
|
|
tank = (data[offset + 1] & 0x03) - 1;
|
|
if (parser->model == ATOM2 || parser->model == EPICA || parser->model == EPICB)
|
|
pressure = (((data[offset + 3] << 8) + data[offset + 4]) & 0x0FFF) * 2;
|
|
else
|
|
pressure = (((data[offset + 4] << 8) + data[offset + 5]) & 0x0FFF) * 2;
|
|
}
|
|
} else if (sampletype == 0xBB) {
|
|
// The surface time is not always a nice multiple of the samplerate.
|
|
// The number of inserted surface samples is therefore rounded down
|
|
// to keep the timestamps aligned at multiples of the samplerate.
|
|
unsigned int surftime = 60 * bcd2dec (data[offset + 1]) + bcd2dec (data[offset + 2]);
|
|
unsigned int nsamples = surftime / interval;
|
|
|
|
for (unsigned int i = 0; i < nsamples; ++i) {
|
|
// Time
|
|
time += interval;
|
|
sample.time = time;
|
|
if (callback) callback (DC_SAMPLE_TIME, sample, userdata);
|
|
|
|
// Vendor specific data
|
|
if (i == 0) {
|
|
oceanic_atom2_parser_vendor (parser,
|
|
data + previous,
|
|
(offset - previous) + length,
|
|
samplesize, callback, userdata);
|
|
}
|
|
|
|
// Depth
|
|
sample.depth = 0.0;
|
|
if (callback) callback (DC_SAMPLE_DEPTH, sample, userdata);
|
|
complete = 1;
|
|
}
|
|
|
|
extratime += surftime;
|
|
} else {
|
|
// Skip the extra samples.
|
|
if ((count % samplerate) != 0) {
|
|
offset += samplesize;
|
|
count++;
|
|
continue;
|
|
}
|
|
|
|
// Time.
|
|
if (parser->model == I450T || parser->model == I470TC) {
|
|
unsigned int minute = bcd2dec(data[offset + 0]);
|
|
unsigned int hour = bcd2dec(data[offset + 1] & 0x0F);
|
|
unsigned int second = bcd2dec(data[offset + 2]);
|
|
unsigned int timestamp = (hour * 3600) + (minute * 60 ) + second + extratime;
|
|
if (timestamp < time) {
|
|
ERROR (abstract->context, "Timestamp moved backwards.");
|
|
return DC_STATUS_DATAFORMAT;
|
|
} else if (timestamp == time) {
|
|
WARNING (abstract->context, "Unexpected sample with the same timestamp ignored.");
|
|
offset += length;
|
|
continue;
|
|
}
|
|
time = timestamp;
|
|
} else {
|
|
time += interval;
|
|
}
|
|
sample.time = time;
|
|
if (callback) callback (DC_SAMPLE_TIME, sample, userdata);
|
|
|
|
// Vendor specific data
|
|
oceanic_atom2_parser_vendor (parser,
|
|
data + previous,
|
|
(offset - previous) + length,
|
|
samplesize, callback, userdata);
|
|
|
|
// Temperature (°F)
|
|
if (have_temperature) {
|
|
if (parser->model == GEO || parser->model == ATOM1 ||
|
|
parser->model == ELEMENT2 || parser->model == MANTA ||
|
|
parser->model == ZEN) {
|
|
temperature = data[offset + 6];
|
|
} else if (parser->model == TALIS) {
|
|
temperature = data[offset + 7];
|
|
} else if (parser->model == GEO20 || parser->model == VEO20 ||
|
|
parser->model == VEO30 || parser->model == OC1A ||
|
|
parser->model == OC1B || parser->model == OC1C ||
|
|
parser->model == OCI || parser->model == A300 ||
|
|
parser->model == I450T || parser->model == I300 ||
|
|
parser->model == I200 || parser->model == I100 ||
|
|
parser->model == I300C || parser->model == I200C ||
|
|
parser->model == GEO40 || parser->model == VEO40 ||
|
|
parser->model == I470TC || parser->model == I200CV2) {
|
|
temperature = data[offset + 3];
|
|
} else if (parser->model == OCS || parser->model == TX1) {
|
|
temperature = data[offset + 1];
|
|
} else if (parser->model == VT4 || parser->model == VT41 ||
|
|
parser->model == ATOM3 || parser->model == ATOM31 ||
|
|
parser->model == A300AI || parser->model == VISION ||
|
|
parser->model == XPAIR) {
|
|
temperature = ((data[offset + 7] & 0xF0) >> 4) | ((data[offset + 7] & 0x0C) << 2) | ((data[offset + 5] & 0x0C) << 4);
|
|
} else if (parser->model == A300CS || parser->model == VTX ||
|
|
parser->model == I750TC || parser->model == PROPLUSX ||
|
|
parser->model == I770R|| parser->model == SAGE ||
|
|
parser->model == BEACON) {
|
|
temperature = data[offset + 11];
|
|
} else {
|
|
unsigned int sign;
|
|
if (parser->model == DG03 || parser->model == PROPLUS3 ||
|
|
parser->model == I550 || parser->model == I550C ||
|
|
parser->model == PROPLUS4 || parser->model == WISDOM4)
|
|
sign = (~data[offset + 5] & 0x04) >> 2;
|
|
else if (parser->model == VOYAGER2G || parser->model == AMPHOS ||
|
|
parser->model == AMPHOSAIR || parser->model == ZENAIR ||
|
|
parser->model == AMPHOS2)
|
|
sign = (data[offset + 5] & 0x04) >> 2;
|
|
else if (parser->model == ATOM2 || parser->model == PROPLUS21 ||
|
|
parser->model == EPICA || parser->model == EPICB ||
|
|
parser->model == ATMOSAI2 ||
|
|
parser->model == WISDOM2 || parser->model == WISDOM3)
|
|
sign = (data[offset + 0] & 0x80) >> 7;
|
|
else
|
|
sign = (~data[offset + 0] & 0x80) >> 7;
|
|
if (sign)
|
|
temperature -= (data[offset + 7] & 0x0C) >> 2;
|
|
else
|
|
temperature += (data[offset + 7] & 0x0C) >> 2;
|
|
}
|
|
sample.temperature = (temperature - 32.0) * (5.0 / 9.0);
|
|
if (callback) callback (DC_SAMPLE_TEMPERATURE, sample, userdata);
|
|
}
|
|
|
|
// Tank Pressure (psi)
|
|
if (have_pressure) {
|
|
if (parser->model == OC1A || parser->model == OC1B ||
|
|
parser->model == OC1C || parser->model == OCI ||
|
|
parser->model == I450T || parser->model == I470TC)
|
|
pressure = (data[offset + 10] + (data[offset + 11] << 8)) & 0x0FFF;
|
|
else if (parser->model == VT4 || parser->model == VT41||
|
|
parser->model == ATOM3 || parser->model == ATOM31 ||
|
|
parser->model == ZENAIR ||parser->model == A300AI ||
|
|
parser->model == DG03 || parser->model == PROPLUS3 ||
|
|
parser->model == AMPHOSAIR || parser->model == I550 ||
|
|
parser->model == VISION || parser->model == XPAIR ||
|
|
parser->model == I550C || parser->model == PROPLUS4 ||
|
|
parser->model == WISDOM4)
|
|
pressure = (((data[offset + 0] & 0x03) << 8) + data[offset + 1]) * 5;
|
|
else if (parser->model == TX1 || parser->model == A300CS ||
|
|
parser->model == VTX || parser->model == I750TC ||
|
|
parser->model == PROPLUSX || parser->model == I770R ||
|
|
parser->model == SAGE || parser->model == BEACON)
|
|
pressure = array_uint16_le (data + offset + 4);
|
|
else
|
|
pressure -= data[offset + 1];
|
|
sample.pressure.tank = tank;
|
|
sample.pressure.value = pressure * PSI / BAR;
|
|
if (callback) callback (DC_SAMPLE_PRESSURE, sample, userdata);
|
|
}
|
|
|
|
// Depth (1/16 ft)
|
|
unsigned int depth;
|
|
if (parser->mode == FREEDIVE)
|
|
depth = array_uint16_le (data + offset);
|
|
else if (parser->model == GEO20 || parser->model == VEO20 ||
|
|
parser->model == VEO30 || parser->model == OC1A ||
|
|
parser->model == OC1B || parser->model == OC1C ||
|
|
parser->model == OCI || parser->model == A300 ||
|
|
parser->model == I450T || parser->model == I300 ||
|
|
parser->model == I200 || parser->model == I100 ||
|
|
parser->model == I300C || parser->model == I200C ||
|
|
parser->model == GEO40 || parser->model == VEO40 ||
|
|
parser->model == I470TC || parser->model == I200CV2)
|
|
depth = (data[offset + 4] + (data[offset + 5] << 8)) & 0x0FFF;
|
|
else if (parser->model == ATOM1)
|
|
depth = data[offset + 3] * 16;
|
|
else
|
|
depth = (data[offset + 2] + (data[offset + 3] << 8)) & 0x0FFF;
|
|
sample.depth = depth / 16.0 * FEET;
|
|
if (callback) callback (DC_SAMPLE_DEPTH, sample, userdata);
|
|
|
|
// Gas mix
|
|
unsigned int have_gasmix = 0;
|
|
unsigned int gasmix = 0;
|
|
if (parser->model == TX1) {
|
|
gasmix = data[offset] & 0x07;
|
|
have_gasmix = 1;
|
|
}
|
|
if (have_gasmix && gasmix != gasmix_previous) {
|
|
if (gasmix < 1 || gasmix > parser->ngasmixes) {
|
|
ERROR (abstract->context, "Invalid gas mix index (%u).", gasmix);
|
|
return DC_STATUS_DATAFORMAT;
|
|
}
|
|
sample.gasmix = gasmix - 1;
|
|
if (callback) callback (DC_SAMPLE_GASMIX, sample, userdata);
|
|
gasmix_previous = gasmix;
|
|
}
|
|
|
|
// NDL / Deco
|
|
unsigned int have_deco = 0;
|
|
unsigned int decostop = 0, decotime = 0;
|
|
if (parser->model == A300CS || parser->model == VTX ||
|
|
parser->model == I750TC || parser->model == SAGE ||
|
|
parser->model == PROPLUSX || parser->model == I770R ||
|
|
parser->model == BEACON) {
|
|
decostop = (data[offset + 15] & 0x70) >> 4;
|
|
decotime = array_uint16_le(data + offset + 6) & 0x03FF;
|
|
have_deco = 1;
|
|
} else if (parser->model == ZEN || parser->model == DG03) {
|
|
decostop = (data[offset + 5] & 0xF0) >> 4;
|
|
decotime = array_uint16_le(data + offset + 4) & 0x0FFF;
|
|
have_deco = 1;
|
|
} else if (parser->model == TX1) {
|
|
decostop = data[offset + 10];
|
|
decotime = array_uint16_le(data + offset + 6);
|
|
have_deco = 1;
|
|
} else if (parser->model == ATOM31 || parser->model == VISION ||
|
|
parser->model == XPAIR || parser->model == I550 ||
|
|
parser->model == I550C || parser->model == WISDOM4) {
|
|
decostop = (data[offset + 5] & 0xF0) >> 4;
|
|
decotime = array_uint16_le(data + offset + 4) & 0x03FF;
|
|
have_deco = 1;
|
|
} else if (parser->model == I200 || parser->model == I300 ||
|
|
parser->model == OC1A || parser->model == OC1B ||
|
|
parser->model == OC1C || parser->model == OCI ||
|
|
parser->model == I100 || parser->model == I300C ||
|
|
parser->model == I450T || parser->model == I200C ||
|
|
parser->model == GEO40 || parser->model == VEO40 ||
|
|
parser->model == I470TC || parser->model == I200CV2) {
|
|
decostop = (data[offset + 7] & 0xF0) >> 4;
|
|
decotime = array_uint16_le(data + offset + 6) & 0x0FFF;
|
|
have_deco = 1;
|
|
}
|
|
if (have_deco) {
|
|
if (decostop) {
|
|
sample.deco.type = DC_DECO_DECOSTOP;
|
|
sample.deco.depth = decostop * 10 * FEET;
|
|
} else {
|
|
sample.deco.type = DC_DECO_NDL;
|
|
sample.deco.depth = 0.0;
|
|
}
|
|
sample.deco.time = decotime * 60;
|
|
if (callback) callback (DC_SAMPLE_DECO, sample, userdata);
|
|
}
|
|
|
|
unsigned int have_rbt = 0;
|
|
unsigned int rbt = 0;
|
|
if (parser->model == ATOM31) {
|
|
rbt = array_uint16_le(data + offset + 6) & 0x01FF;
|
|
have_rbt = 1;
|
|
} else if (parser->model == I450T || parser->model == OC1A ||
|
|
parser->model == OC1B || parser->model == OC1C ||
|
|
parser->model == OCI || parser->model == PROPLUSX ||
|
|
parser->model == I770R || parser->model == I470TC) {
|
|
rbt = array_uint16_le(data + offset + 8) & 0x01FF;
|
|
have_rbt = 1;
|
|
} else if (parser->model == VISION || parser->model == XPAIR ||
|
|
parser->model == I550 || parser->model == I550C ||
|
|
parser->model == WISDOM4) {
|
|
rbt = array_uint16_le(data + offset + 6) & 0x03FF;
|
|
have_rbt = 1;
|
|
}
|
|
if (have_rbt) {
|
|
sample.rbt = rbt;
|
|
if (callback) callback (DC_SAMPLE_RBT, sample, userdata);
|
|
}
|
|
|
|
// Bookmarks
|
|
unsigned int have_bookmark = 0;
|
|
if (parser->model == OC1A || parser->model == OC1B ||
|
|
parser->model == OC1C || parser->model == OCI) {
|
|
have_bookmark = data[offset + 12] & 0x80;
|
|
}
|
|
if (have_bookmark) {
|
|
sample.event.type = SAMPLE_EVENT_BOOKMARK;
|
|
sample.event.time = 0;
|
|
sample.event.flags = 0;
|
|
sample.event.value = 0;
|
|
if (callback) callback (DC_SAMPLE_EVENT, sample, userdata);
|
|
}
|
|
|
|
count++;
|
|
complete = 1;
|
|
}
|
|
|
|
offset += length;
|
|
}
|
|
|
|
return DC_STATUS_SUCCESS;
|
|
}
|