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0089dd8819
Keep the sample pressure start/end data separate from the overall cylinder start/end data - and clean the overall cylinder start/end data if it matches the samples exactly to avoid the redundancy. This breaks all the SAC calculations etc, which expect the cylinder pressures to always be in the cylinder data. I'll fix that up separately. The reason for this is that we really want to keep the manually entered data separate: the pressure plotting doesn't need the confusion, and considers end-point data (with interpolation) very different from sample data. Also, we do not want to pollute the xml save-file with data that is computed. Signed-off-by: Linus Torvalds <torvalds@linux-foundation.org>
318 lines
7.6 KiB
C
318 lines
7.6 KiB
C
#ifndef DIVE_H
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#define DIVE_H
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#include <stdlib.h>
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#include <time.h>
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#include <glib.h>
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#include <libxml/tree.h>
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/*
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* Some silly typedefs to make our units very explicit.
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*
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* Also, the units are chosen so that values can be expressible as
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* integers, so that we never have FP rounding issues. And they
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* are small enough that converting to/from imperial units doesn't
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* really matter.
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*
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* We also strive to make '0' a meaningless number saying "not
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* initialized", since many values are things that may not have
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* been reported (eg cylinder pressure or temperature from dive
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* computers that don't support them). But sometimes -1 is an even
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* more explicit way of saying "not there".
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*
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* Thus "millibar" for pressure, for example, or "millikelvin" for
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* temperatures. Doing temperatures in celsius or fahrenheit would
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* make for loss of precision when converting from one to the other,
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* and using millikelvin is SI-like but also means that a temperature
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* of '0' is clearly just a missing temperature or cylinder pressure.
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*
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* Also strive to use units that can not possibly be mistaken for a
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* valid value in a "normal" system without conversion. If the max
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* depth of a dive is '20000', you probably didn't convert from mm on
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* output, or if the max depth gets reported as "0.2ft" it was either
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* a really boring dive, or there was some missing input conversion,
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* and a 60-ft dive got recorded as 60mm.
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*
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* Doing these as "structs containing value" means that we always
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* have to explicitly write out those units in order to get at the
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* actual value. So there is hopefully little fear of using a value
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* in millikelvin as Fahrenheit by mistake.
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*
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* We don't actually use these all yet, so maybe they'll change, but
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* I made a number of types as guidelines.
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*/
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typedef struct {
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int seconds;
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} duration_t;
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typedef struct {
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int mm;
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} depth_t;
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typedef struct {
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int mbar;
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} pressure_t;
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typedef struct {
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int mkelvin;
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} temperature_t;
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typedef struct {
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int mliter;
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} volume_t;
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typedef struct {
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int permille;
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} fraction_t;
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typedef struct {
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int grams;
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} weight_t;
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struct gasmix {
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fraction_t o2;
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fraction_t he;
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};
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typedef struct {
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volume_t size;
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pressure_t workingpressure;
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const char *description; /* "LP85", "AL72", "AL80", "HP100+" or whatever */
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} cylinder_type_t;
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typedef struct {
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cylinder_type_t type;
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struct gasmix gasmix;
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pressure_t start, end, sample_start, sample_end;
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} cylinder_t;
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extern int get_pressure_units(unsigned int mb, const char **units);
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extern double get_depth_units(unsigned int mm, int *frac, const char **units);
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extern double get_volume_units(unsigned int mm, int *frac, const char **units);
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extern double get_temp_units(unsigned int mm, const char **units);
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static inline double ml_to_cuft(int ml)
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{
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return ml / 28316.8466;
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}
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static inline double cuft_to_l(double cuft)
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{
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return cuft * 28.3168466;
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}
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static inline double mm_to_feet(int mm)
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{
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return mm * 0.00328084;
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}
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static inline int to_feet(depth_t depth)
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{
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return mm_to_feet(depth.mm) + 0.5;
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}
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static double mkelvin_to_C(int mkelvin)
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{
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return (mkelvin - 273150) / 1000.0;
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}
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static double mkelvin_to_F(int mkelvin)
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{
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return mkelvin * 9 / 5000.0 - 459.670;
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}
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static inline int to_C(temperature_t temp)
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{
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if (!temp.mkelvin)
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return 0;
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return mkelvin_to_C(temp.mkelvin) + 0.5;
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}
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static inline int to_F(temperature_t temp)
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{
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if (!temp.mkelvin)
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return 0;
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return mkelvin_to_F(temp.mkelvin) + 0.5;
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}
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static inline int to_K(temperature_t temp)
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{
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if (!temp.mkelvin)
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return 0;
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return (temp.mkelvin + 499)/1000;
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}
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static inline double psi_to_bar(double psi)
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{
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return psi / 14.5037738;
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}
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static inline int to_PSI(pressure_t pressure)
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{
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return pressure.mbar * 0.0145037738 + 0.5;
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}
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static inline double bar_to_atm(double bar)
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{
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return bar / 1.01325;
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}
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static inline double to_ATM(pressure_t pressure)
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{
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return pressure.mbar / 1013.25;
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}
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static inline int mbar_to_PSI(int mbar)
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{
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pressure_t p = {mbar};
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return to_PSI(p);
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}
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struct sample {
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duration_t time;
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depth_t depth;
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temperature_t temperature;
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pressure_t cylinderpressure;
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int cylinderindex;
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};
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/*
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* Events are currently pretty meaningless. This is
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* just based on the random data that libdivecomputer
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* gives us. I'm not sure what a real "architected"
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* event model would actually look like, but right
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* now you can associate a list of events with a dive,
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* and we'll do something about it.
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*/
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struct event {
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struct event *next;
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duration_t time;
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int type, flags, value;
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char name[];
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};
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#define MAX_CYLINDERS (8)
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struct dive {
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int number;
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time_t when;
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char *location;
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char *notes;
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char *divemaster, *buddy;
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double latitude, longitude;
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depth_t maxdepth, meandepth;
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duration_t duration, surfacetime;
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depth_t visibility;
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temperature_t airtemp, watertemp;
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cylinder_t cylinder[MAX_CYLINDERS];
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int sac, otu;
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struct event *events;
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int samples, alloc_samples;
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struct sample sample[];
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};
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/*
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* We keep our internal data in well-specified units, but
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* the input and output may come in some random format. This
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* keeps track of those units.
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*/
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/* turns out in Win32 PASCAL is defined as a calling convention */
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#ifdef WIN32
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#undef PASCAL
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#endif
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struct units {
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enum { METERS, FEET } length;
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enum { LITER, CUFT } volume;
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enum { BAR, PSI, PASCAL } pressure;
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enum { CELSIUS, FAHRENHEIT, KELVIN } temperature;
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enum { KG, LBS } weight;
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};
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extern const struct units SI_units, IMPERIAL_units;
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extern struct units input_units, output_units;
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extern int verbose;
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struct dive_table {
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int nr, allocated, preexisting;
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struct dive **dives;
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};
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extern struct dive_table dive_table;
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extern int selected_dive;
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#define current_dive (get_dive(selected_dive))
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static inline struct dive *get_dive(unsigned int nr)
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{
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if (nr >= dive_table.nr)
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return NULL;
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return dive_table.dives[nr];
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}
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extern void parse_xml_init(void);
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extern void parse_xml_file(const char *filename, GError **error);
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extern void set_filename(const char *filename);
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#ifdef XSLT
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extern xmlDoc *test_xslt_transforms(xmlDoc *doc);
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#endif
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extern void show_dive_info(struct dive *);
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extern void flush_dive_info_changes(struct dive *);
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extern void show_dive_equipment(struct dive *);
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extern void flush_dive_equipment_changes(struct dive *);
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extern void show_dive_stats(struct dive *);
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extern void update_dive(struct dive *new_dive);
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extern void save_dives(const char *filename);
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static inline unsigned int dive_size(int samples)
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{
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return sizeof(struct dive) + samples*sizeof(struct sample);
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}
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extern time_t utc_mktime(struct tm *tm);
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extern struct dive *alloc_dive(void);
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extern void record_dive(struct dive *dive);
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extern struct sample *prepare_sample(struct dive **divep);
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extern void finish_sample(struct dive *dive, struct sample *sample);
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extern void report_dives(gboolean imported);
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extern struct dive *fixup_dive(struct dive *dive);
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extern struct dive *try_to_merge(struct dive *a, struct dive *b);
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extern void renumber_dives(int nr);
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extern void add_event(struct dive *dive, int time, int type, int flags, int value, const char *name);
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/* UI related protopypes */
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extern void init_ui(int *argcp, char ***argvp);
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extern void run_ui(void);
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extern void report_error(GError* error);
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extern void add_cylinder_description(cylinder_type_t *);
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extern void add_people(const char *string);
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extern void add_location(const char *string);
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extern void remember_event(const char *eventname);
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extern void evn_foreach(void (*callback)(const char *, int *, void *), void *data);
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extern void dive_list_update_dives(void);
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extern void flush_divelist(struct dive *dive);
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#define DIVE_ERROR_PARSE 1
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const char *weekday(int wday);
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const char *monthname(int mon);
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#define UTF8_DEGREE "\xc2\xb0"
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#define UTF8_SUBSCRIPT_2 "\xe2\x82\x82"
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#endif /* DIVE_H */
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