288 lines
7.8 KiB
C
288 lines
7.8 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_veo250.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_veo250_parser_vtable)
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typedef struct oceanic_veo250_parser_t oceanic_veo250_parser_t;
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struct oceanic_veo250_parser_t {
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dc_parser_t base;
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unsigned int model;
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// Cached fields.
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unsigned int cached;
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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_veo250_parser_set_data (dc_parser_t *abstract, const unsigned char *data, unsigned int size);
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static dc_status_t oceanic_veo250_parser_get_datetime (dc_parser_t *abstract, dc_datetime_t *datetime);
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static dc_status_t oceanic_veo250_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_veo250_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_veo250_parser_vtable = {
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sizeof(oceanic_veo250_parser_t),
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DC_FAMILY_OCEANIC_VEO250,
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oceanic_veo250_parser_set_data, /* set_data */
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NULL, /* set_clock */
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NULL, /* set_atmospheric */
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NULL, /* set_density */
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oceanic_veo250_parser_get_datetime, /* datetime */
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oceanic_veo250_parser_get_field, /* fields */
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oceanic_veo250_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_veo250_parser_create (dc_parser_t **out, dc_context_t *context, unsigned int model)
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{
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oceanic_veo250_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_veo250_parser_t *) dc_parser_allocate (context, &oceanic_veo250_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->cached = 0;
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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_veo250_parser_set_data (dc_parser_t *abstract, const unsigned char *data, unsigned int size)
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{
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oceanic_veo250_parser_t *parser = (oceanic_veo250_parser_t *) abstract;
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// Reset the cache.
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parser->cached = 0;
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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_veo250_parser_get_datetime (dc_parser_t *abstract, dc_datetime_t *datetime)
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{
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oceanic_veo250_parser_t *parser = (oceanic_veo250_parser_t *) abstract;
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if (abstract->size < 8)
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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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datetime->year = ((p[5] & 0xF0) >> 4) + ((p[1] & 0xE0) >> 1) + 2000;
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datetime->month = ((p[7] & 0xF0) >> 4);
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datetime->day = p[1] & 0x1F;
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datetime->hour = p[3];
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datetime->minute = p[2];
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datetime->second = 0;
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datetime->timezone = DC_TIMEZONE_NONE;
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if (parser->model == VEO200 || parser->model == VEO250)
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datetime->year += 3;
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else if (parser->model == REACTPRO)
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datetime->year += 2;
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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_veo250_parser_get_field (dc_parser_t *abstract, dc_field_type_t type, unsigned int flags, void *value)
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{
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oceanic_veo250_parser_t *parser = (oceanic_veo250_parser_t *) abstract;
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const unsigned char *data = abstract->data;
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unsigned int size = abstract->size;
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if (size < 7 * PAGESIZE / 2)
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return DC_STATUS_DATAFORMAT;
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if (!parser->cached) {
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sample_statistics_t statistics = SAMPLE_STATISTICS_INITIALIZER;
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dc_status_t rc = oceanic_veo250_parser_samples_foreach (
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abstract, sample_statistics_cb, &statistics);
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if (rc != DC_STATUS_SUCCESS)
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return rc;
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parser->cached = 1;
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parser->divetime = statistics.divetime;
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parser->maxdepth = statistics.maxdepth;
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}
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unsigned int footer = size - PAGESIZE;
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dc_gasmix_t *gasmix = (dc_gasmix_t *) value;
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if (value) {
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switch (type) {
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case DC_FIELD_DIVETIME:
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*((unsigned int *) value) = data[footer + 3] * 60 + data[footer + 4] * 3600;
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break;
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case DC_FIELD_MAXDEPTH:
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*((double *) value) = parser->maxdepth;
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break;
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case DC_FIELD_GASMIX_COUNT:
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*((unsigned int *) value) = 1;
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break;
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case DC_FIELD_GASMIX:
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gasmix->helium = 0.0;
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if (data[footer + 6])
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gasmix->oxygen = data[footer + 6] / 100.0;
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else
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gasmix->oxygen = 0.21;
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gasmix->nitrogen = 1.0 - gasmix->oxygen - gasmix->helium;
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break;
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default:
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return DC_STATUS_UNSUPPORTED;
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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_veo250_parser_samples_foreach (dc_parser_t *abstract, dc_sample_callback_t callback, void *userdata)
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{
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oceanic_veo250_parser_t *parser = (oceanic_veo250_parser_t *) abstract;
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const unsigned char *data = abstract->data;
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unsigned int size = abstract->size;
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if (size < 7 * PAGESIZE / 2)
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return DC_STATUS_DATAFORMAT;
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unsigned int time = 0;
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unsigned int interval = 0;
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unsigned int interval_idx = data[0x27] & 0x03;
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if (parser->model == REACTPRO || parser->model == REACTPROWHITE) {
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interval_idx += 1;
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interval_idx %= 4;
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}
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switch (interval_idx) {
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case 0:
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interval = 2;
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break;
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case 1:
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interval = 15;
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break;
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case 2:
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interval = 30;
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break;
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case 3:
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interval = 60;
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break;
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}
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unsigned int offset = 5 * PAGESIZE / 2;
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while (offset + PAGESIZE / 2 <= size - PAGESIZE) {
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dc_sample_value_t sample = {0};
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// Ignore empty samples.
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if (array_isequal (data + offset, PAGESIZE / 2, 0x00)) {
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offset += PAGESIZE / 2;
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continue;
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}
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// Time.
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time += interval;
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sample.time = time;
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if (callback) callback (DC_SAMPLE_TIME, sample, userdata);
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// Vendor specific data
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sample.vendor.type = SAMPLE_VENDOR_OCEANIC_VEO250;
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sample.vendor.size = PAGESIZE / 2;
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sample.vendor.data = data + offset;
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if (callback) callback (DC_SAMPLE_VENDOR, sample, userdata);
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// Depth (ft)
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unsigned int depth = data[offset + 2];
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sample.depth = depth * FEET;
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if (callback) callback (DC_SAMPLE_DEPTH, sample, userdata);
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// Temperature (°F)
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unsigned int temperature;
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if (parser->model == REACTPRO || parser->model == REACTPROWHITE ||
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parser->model == INSIGHT) {
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temperature = data[offset + 6];
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} else {
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temperature = data[offset + 7];
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}
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sample.temperature = (temperature - 32.0) * (5.0 / 9.0);
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if (callback) callback (DC_SAMPLE_TEMPERATURE, sample, userdata);
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// NDL / Deco
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unsigned int have_deco = 0;
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unsigned int decostop = 0, decotime = 0;
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if (parser->model == REACTPRO || parser->model == REACTPROWHITE ||
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parser->model == INSIGHT) {
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decostop = (data[offset + 7] & 0xF0) >> 4;
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decotime = ((data[offset + 3] & 0xC0) << 2) | data[offset + 4];
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have_deco = 1;
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} else {
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decostop = (data[offset + 5] & 0xF0) >> 4;
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decotime = array_uint16_le(data + offset + 4) & 0x0FFF;
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have_deco = 1;
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}
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if (have_deco) {
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if (decostop) {
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sample.deco.type = DC_DECO_DECOSTOP;
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sample.deco.depth = decostop * 10 * FEET;
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} else {
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sample.deco.type = DC_DECO_NDL;
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sample.deco.depth = 0.0;
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}
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sample.deco.time = decotime * 60;
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if (callback) callback (DC_SAMPLE_DECO, sample, userdata);
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}
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offset += PAGESIZE / 2;
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}
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return DC_STATUS_SUCCESS;
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}
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