Mercurial > public > ostc4
annotate Discovery/Src/simulation.c @ 695:49b164022335 Betatest
1.6.0 release
author | heinrichsweikamp |
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date | Fri, 19 Aug 2022 11:27:44 +0200 |
parents | 05cdd367dbd0 |
children | 01f40cb1057e |
rev | line source |
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38 | 1 /////////////////////////////////////////////////////////////////////////////// |
2 /// -*- coding: UTF-8 -*- | |
3 /// | |
4 /// \file Discovery/Src/simulation.c | |
5 /// \brief Contains dive simulation functionality | |
6 /// \author Heinrichs Weikamp gmbh | |
7 /// \date 13-Oct-2014 | |
8 /// | |
9 /// \details | |
10 /// The simulation uses "extern SDiveState stateSim" defined in dataCentral.h" | |
11 /// | |
12 /// simulation_start(void) sets stateUsed to stateSim and initializes simulation | |
13 /// simulation_UpdateLifeData should be called at least once per second | |
14 /// simulation_end() sets stateUsed back to stateReal | |
15 /// | |
16 /// $Id$ | |
17 /////////////////////////////////////////////////////////////////////////////// | |
18 /// \par Copyright (c) 2014-2018 Heinrichs Weikamp gmbh | |
19 /// | |
20 /// This program is free software: you can redistribute it and/or modify | |
21 /// it under the terms of the GNU General Public License as published by | |
22 /// the Free Software Foundation, either version 3 of the License, or | |
23 /// (at your option) any later version. | |
24 /// | |
25 /// This program is distributed in the hope that it will be useful, | |
26 /// but WITHOUT ANY WARRANTY; without even the implied warranty of | |
27 /// MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the | |
28 /// GNU General Public License for more details. | |
29 /// | |
30 /// You should have received a copy of the GNU General Public License | |
31 /// along with this program. If not, see <http://www.gnu.org/licenses/>. | |
32 ////////////////////////////////////////////////////////////////////////////// | |
33 | |
34 #include <string.h> | |
35 #include "simulation.h" | |
36 | |
37 #include "decom.h" | |
38 #include "calc_crush.h" | |
39 #include "data_exchange.h" | |
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40 #include "data_exchange_main.h" |
38 | 41 #include "timer.h" |
42 #include "check_warning.h" | |
43 #include "vpm.h" | |
44 #include "buehlmann.h" | |
45 #include "logbook_miniLive.h" | |
46 | |
450 | 47 #include "configuration.h" |
48 | |
38 | 49 //Private state variables |
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50 static float sim_aim_depth_meter; |
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51 static _Bool sim_heed_decostops = 1; |
38 | 52 |
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53 static const float sim_descent_rate_meter_per_min = 20; |
38 | 54 |
55 | |
56 //Private functions | |
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57 static float sim_get_ambient_pressure(SDiveState * pDiveState); |
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58 static void sim_reduce_deco_time_one_second(SDiveState* pDiveState); |
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59 static void simulation_set_aim_depth(int depth_meter); |
38 | 60 |
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61 #define NUM_OF_SENSORS (3u) |
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62 #define SIM_PPO2_STEP (1.1f) |
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63 static float simSensmVOffset[NUM_OF_SENSORS]; |
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64 |
38 | 65 /** |
66 ****************************************************************************** | |
67 * @brief sets heed_decostops_while_ascending | |
68 ****************************************************************************** | |
69 * @param heed_decostops_while_ascending : true -> deco_stops are considered while ascending | |
70 * @return void | |
71 */ | |
72 void simulation_set_heed_decostops(_Bool heed_decostops_while_ascending) | |
73 { | |
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74 sim_heed_decostops = heed_decostops_while_ascending; |
38 | 75 } |
76 | |
77 /** | |
78 ****************************************************************************** | |
79 * @brief start of simulation | |
80 ****************************************************************************** | |
81 * @return void | |
82 */ | |
83 void simulation_start(int aim_depth) | |
84 { | |
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85 copyDiveSettingsToSim(); |
38 | 86 copyVpmRepetetiveDataToSim(); |
87 //vpm_init(&stateSimGetPointerWrite()->vpm, stateSimGetPointerWrite()->diveSettings.vpm_conservatism, 0, 0); | |
88 stateSimGetPointerWrite()->lifeData.counterSecondsShallowDepth = 0; | |
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89 stateSimGetPointerWrite()->mode = MODE_DIVE; |
38 | 90 if(aim_depth <= 0) |
91 aim_depth = 20; | |
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92 simulation_set_aim_depth(aim_depth); |
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93 timer_init(); |
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94 set_stateUsedToSim(); |
38 | 95 stateSim.lifeData.boolResetAverageDepth = 1; |
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96 decoLock = DECO_CALC_init_as_is_start_of_dive; |
38 | 97 |
98 stateSim.lifeData.apnea_total_max_depth_meter = 0; | |
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99 memset(simSensmVOffset,0,sizeof(simSensmVOffset)); |
38 | 100 } |
101 | |
102 /** | |
103 ****************************************************************************** | |
104 * @brief end of simulation | |
105 ****************************************************************************** | |
106 * | |
107 * @return void | |
108 */ | |
109 void simulation_exit(void) | |
110 { | |
111 timer_Stopwatch_Stop(); | |
112 set_stateUsedToReal(); | |
113 } | |
114 | |
115 /** | |
116 ****************************************************************************** | |
117 * @brief simulates change of Lifedata (saturation, depth change, etc.) within one second | |
118 ****************************************************************************** | |
119 * | |
120 * @param checkOncePerSecond : true -> simulation in real time (function is evaluated only once per second) | |
121 * and copy of parts of LifeData from SmallCPU with each call from HAL_TIM_PeriodElapsedCallback() | |
122 * : false -> fast simulation (many simulation cycles per second are possible) | |
123 * @return void | |
124 */ | |
125 void simulation_UpdateLifeData( _Bool checkOncePerSecond) | |
126 { | |
127 SDiveState * pDiveState = &stateSim; | |
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128 SSettings *pSettings; |
38 | 129 |
130 static int last_second = -1; | |
131 static _Bool two_second = 0; | |
132 static float lastPressure_bar = 0; | |
133 | |
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134 float localCalibCoeff[3]; |
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135 uint8_t index, index2; |
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136 |
38 | 137 if(checkOncePerSecond) |
138 { | |
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139 |
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140 pSettings = settingsGetPointer(); |
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141 for(index = 0; index < 3; index++) |
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142 { |
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143 localCalibCoeff[index] = pSettings->ppo2sensors_calibCoeff[index]; |
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144 if(localCalibCoeff[index] < 0.01) |
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145 { |
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146 for(index2 = 0; index2 < 3; index2++) /* no valid coeff => check other entries */ |
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147 { |
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148 if(pSettings->ppo2sensors_calibCoeff[index2] > 0.01) |
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149 { |
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150 localCalibCoeff[index] = pSettings->ppo2sensors_calibCoeff[index2]; |
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151 break; |
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152 } |
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153 if(index2 == 3) /* no coeff at all => use default */ |
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154 { |
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155 localCalibCoeff[index] = 0.02; |
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156 } |
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157 } |
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158 } |
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159 } |
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160 |
38 | 161 pDiveState->lifeData.temperature_celsius = stateRealGetPointer()->lifeData.temperature_celsius; |
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162 pDiveState->lifeData.battery_charge = stateRealGetPointer()->lifeData.battery_charge; |
38 | 163 pDiveState->lifeData.compass_heading = stateRealGetPointer()->lifeData.compass_heading; |
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164 pDiveState->lifeData.compass_roll = stateRealGetPointer()->lifeData.compass_roll; |
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165 pDiveState->lifeData.compass_pitch = stateRealGetPointer()->lifeData.compass_pitch; |
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166 |
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167 #ifdef ENABLE_BOTTLE_SENSOR |
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168 pDiveState->lifeData.bottle_bar[pDiveState->lifeData.actualGas.GasIdInSettings] = stateRealGetPointer()->lifeData.bottle_bar[stateRealGetPointer()->lifeData.actualGas.GasIdInSettings]; |
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169 pDiveState->lifeData.bottle_bar_age_MilliSeconds[pDiveState->lifeData.actualGas.GasIdInSettings] = stateRealGetPointer()->lifeData.bottle_bar_age_MilliSeconds[stateRealGetPointer()->lifeData.actualGas.GasIdInSettings]; |
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170 #endif |
38 | 171 int now = current_second(); |
172 if( last_second == now) | |
173 return; | |
174 last_second = now; | |
175 | |
176 if(!two_second) | |
177 two_second = 1; | |
178 else | |
179 { | |
180 two_second = 0; | |
181 if(lastPressure_bar >= 0) | |
182 { | |
183 //2 seconds * 30 == 1 minute, bar * 10 = meter | |
184 pDiveState->lifeData.ascent_rate_meter_per_min = (lastPressure_bar - pDiveState->lifeData.pressure_ambient_bar) * 30 * 10; | |
185 } | |
186 lastPressure_bar = pDiveState->lifeData.pressure_ambient_bar; | |
187 } | |
188 } | |
189 else if(pDiveState->lifeData.depth_meter <= (float)(decom_get_actual_deco_stop(pDiveState) + 0.001)) | |
190 sim_reduce_deco_time_one_second(pDiveState); | |
191 | |
192 pDiveState->lifeData.dive_time_seconds += 1; | |
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193 pDiveState->lifeData.pressure_ambient_bar = sim_get_ambient_pressure(pDiveState); |
38 | 194 |
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195 pDiveState->lifeData.sensorVoltage_mV[0] = stateRealGetPointer()->lifeData.sensorVoltage_mV[0] + simSensmVOffset[0]; |
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196 if(pDiveState->lifeData.sensorVoltage_mV[0] < 0.0) { pDiveState->lifeData.sensorVoltage_mV[0] = 0.0; } |
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197 pDiveState->lifeData.sensorVoltage_mV[1] = stateRealGetPointer()->lifeData.sensorVoltage_mV[1] + simSensmVOffset[1]; |
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198 if(pDiveState->lifeData.sensorVoltage_mV[1] < 0.0) { pDiveState->lifeData.sensorVoltage_mV[1] = 0.0; } |
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199 pDiveState->lifeData.sensorVoltage_mV[2] = stateRealGetPointer()->lifeData.sensorVoltage_mV[2] + simSensmVOffset[2]; |
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200 if(pDiveState->lifeData.sensorVoltage_mV[2] < 0.0) { pDiveState->lifeData.sensorVoltage_mV[2] = 0.0; } |
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201 |
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202 pDiveState->lifeData.ppO2Sensor_bar[0] = pDiveState->lifeData.sensorVoltage_mV[0] * localCalibCoeff[0] * pDiveState->lifeData.pressure_ambient_bar; |
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203 pDiveState->lifeData.ppO2Sensor_bar[1] = pDiveState->lifeData.sensorVoltage_mV[1] * localCalibCoeff[1] * pDiveState->lifeData.pressure_ambient_bar; |
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204 pDiveState->lifeData.ppO2Sensor_bar[2] = pDiveState->lifeData.sensorVoltage_mV[2] * localCalibCoeff[2] * pDiveState->lifeData.pressure_ambient_bar; |
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205 |
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206 |
38 | 207 if(is_ambient_pressure_close_to_surface(&pDiveState->lifeData)) // new hw 170214 |
208 { | |
209 if(!(stateSimGetPointer()->lifeData.counterSecondsShallowDepth)) | |
210 { | |
211 if(pDiveState->diveSettings.diveMode != DIVEMODE_Apnea) | |
212 pDiveState->lifeData.counterSecondsShallowDepth = settingsGetPointer()->timeoutDiveReachedZeroDepth - 15; | |
213 else | |
214 { | |
215 pDiveState->lifeData.apnea_last_dive_time_seconds = pDiveState->lifeData.dive_time_seconds; | |
216 if(pDiveState->lifeData.apnea_last_dive_time_seconds > pDiveState->lifeData.dive_time_seconds_without_surface_time) | |
217 pDiveState->lifeData.apnea_last_dive_time_seconds = pDiveState->lifeData.dive_time_seconds_without_surface_time; | |
218 pDiveState->lifeData.apnea_last_max_depth_meter = pDiveState->lifeData.max_depth_meter; | |
219 pDiveState->lifeData.counterSecondsShallowDepth = 1; | |
220 } | |
221 } | |
222 } | |
223 else | |
224 { | |
225 pDiveState->lifeData.counterSecondsShallowDepth = 0; | |
226 } | |
227 | |
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228 if(!is_ambient_pressure_close_to_surface(&pDiveState->lifeData) && !(stateSimGetPointer()->lifeData.counterSecondsShallowDepth) ) |
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229 { |
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230 pDiveState->lifeData.dive_time_seconds_without_surface_time += 1; |
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231 } |
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232 |
38 | 233 pDiveState->lifeData.depth_meter = (pDiveState->lifeData.pressure_ambient_bar - pDiveState->lifeData.pressure_surface_bar) * 10.0f; |
234 if(pDiveState->lifeData.max_depth_meter < pDiveState->lifeData.depth_meter) | |
235 pDiveState->lifeData.max_depth_meter = pDiveState->lifeData.depth_meter; | |
236 | |
237 /* apnoe specials | |
238 */ | |
239 if(pDiveState->diveSettings.diveMode == DIVEMODE_Apnea) | |
240 { | |
241 if(pDiveState->lifeData.max_depth_meter > pDiveState->lifeData.apnea_total_max_depth_meter) | |
242 pDiveState->lifeData.apnea_total_max_depth_meter = pDiveState->lifeData.max_depth_meter; | |
243 | |
244 if(pDiveState->lifeData.counterSecondsShallowDepth) | |
245 { | |
246 pDiveState->lifeData.dive_time_seconds = 0; | |
247 pDiveState->lifeData.max_depth_meter = 0; | |
248 pDiveState->lifeData.boolResetAverageDepth = 1; | |
249 } | |
250 } | |
251 | |
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252 setAvgDepth(pDiveState); |
38 | 253 |
254 /* Exposure Tissues | |
255 */ | |
256 decom_tissues_exposure(1, &pDiveState->lifeData); | |
257 decom_oxygen_calculate_cns_exposure(1, &pDiveState->lifeData.actualGas, pDiveState->lifeData.pressure_ambient_bar, &pDiveState->lifeData.cns); | |
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258 |
38 | 259 if(stateSimGetPointer()->lifeData.counterSecondsShallowDepth) |
260 { | |
261 stateSimGetPointerWrite()->lifeData.counterSecondsShallowDepth += 1; | |
262 if(stateSimGetPointer()->lifeData.counterSecondsShallowDepth >= settingsGetPointer()->timeoutDiveReachedZeroDepth) | |
263 simulation_exit(); | |
264 } | |
265 vpm_crush(pDiveState); | |
266 } | |
267 | |
268 /** | |
269 ****************************************************************************** | |
270 * @brief adds extra time for fast simulation | |
271 ****************************************************************************** | |
272 *@param minutes | |
273 * @return float : new pressure | |
274 */ | |
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275 static void simulation_add_time(int minutes) |
38 | 276 { |
277 for(int i = 0; i < 60 * minutes; i++) | |
278 { | |
279 simulation_UpdateLifeData(0); | |
280 updateMiniLiveLogbook(0); | |
281 timer_UpdateSecond(0); | |
282 } | |
283 } | |
284 | |
285 /** | |
286 ****************************************************************************** | |
287 * @brief get aim_depth | |
288 ****************************************************************************** | |
289 * @return sim_aim_depth_meter; | |
290 */ | |
291 | |
292 uint16_t simulation_get_aim_depth(void) | |
293 { | |
294 return (uint16_t)sim_aim_depth_meter; | |
295 } | |
296 | |
297 /** | |
298 ****************************************************************************** | |
299 * @brief get heed decostops | |
300 ****************************************************************************** | |
301 * @return true if ascend follows decostops; | |
302 */ | |
303 | |
304 _Bool simulation_get_heed_decostops(void) | |
305 { | |
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306 return sim_heed_decostops; |
38 | 307 } |
308 | |
309 /** | |
310 ****************************************************************************** | |
311 * @brief sets aim_depth | |
312 ****************************************************************************** | |
313 *@param depth_meter | |
314 * @return float : new pressure | |
315 */ | |
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316 static void simulation_set_aim_depth(int depth_meter) |
38 | 317 { |
318 sim_aim_depth_meter = depth_meter; | |
319 } | |
320 | |
321 /** | |
322 ****************************************************************************** | |
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323 * @brief simulates ambient pressure depending on aim depth |
38 | 324 ****************************************************************************** |
325 * @note if aim_depth != actual depth, the depth change within one second | |
326 * (depending on descent or ascent) rate is calculated | |
327 * @param SDiveState* pDiveState: | |
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328 * @return float : new ambient pressure |
38 | 329 */ |
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330 static float sim_get_ambient_pressure(SDiveState * pDiveState) |
38 | 331 { |
332 //Calc next depth | |
333 uint8_t actual_deco_stop = decom_get_actual_deco_stop(pDiveState); | |
334 float depth_meter = pDiveState->lifeData.depth_meter; | |
335 float surface_pressure_bar = pDiveState->lifeData.pressure_surface_bar; | |
336 if(depth_meter < sim_aim_depth_meter) | |
337 { | |
338 depth_meter = depth_meter + sim_descent_rate_meter_per_min / 60; | |
339 if(depth_meter > sim_aim_depth_meter) | |
340 depth_meter = sim_aim_depth_meter; | |
341 } | |
342 else if(depth_meter > sim_aim_depth_meter) | |
343 { | |
344 | |
345 depth_meter -= pDiveState->diveSettings.ascentRate_meterperminute / 60; | |
346 if(depth_meter < sim_aim_depth_meter) | |
347 depth_meter = sim_aim_depth_meter; | |
348 | |
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349 if(sim_heed_decostops && depth_meter < actual_deco_stop) |
38 | 350 { |
351 if(actual_deco_stop < (depth_meter + pDiveState->diveSettings.ascentRate_meterperminute / 60)) | |
352 depth_meter = actual_deco_stop; | |
353 else | |
354 depth_meter += pDiveState->diveSettings.ascentRate_meterperminute / 60; | |
355 } | |
356 | |
357 } | |
358 | |
359 return surface_pressure_bar + depth_meter / 10; | |
360 } | |
361 | |
362 | |
363 /** | |
364 ****************************************************************************** | |
365 * @brief Reduces deco time of deepest stop by one second | |
366 ****************************************************************************** | |
367 * @note called during fast simulation | |
368 * @param SDiveState* pDiveState: | |
369 * @return void | |
370 */ | |
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371 static void sim_reduce_deco_time_one_second(SDiveState* pDiveState) |
38 | 372 { |
373 SDecoinfo* pDecoinfo; | |
374 if(pDiveState->diveSettings.deco_type.ub.standard == GF_MODE) | |
375 pDecoinfo = &pDiveState->decolistBuehlmann; | |
376 else | |
377 pDecoinfo = &pDiveState->decolistVPM; | |
378 | |
379 //Reduce deco time of deepest stop by one second | |
380 for(int i = DECOINFO_STRUCT_MAX_STOPS -1 ;i >= 0; i--) | |
381 { | |
382 if(pDecoinfo->output_stop_length_seconds[i] > 0) | |
383 { | |
384 pDecoinfo->output_stop_length_seconds[i]--; | |
385 break; | |
386 } | |
387 } | |
388 } | |
389 | |
390 SDecoinfo* simulation_decoplaner(uint16_t depth_meter, uint16_t intervall_time_minutes, uint16_t dive_time_minutes, uint8_t *gasChangeListDepthGas20x2) | |
391 { | |
392 uint8_t ptrGasChangeList = 0; // new hw 160704 | |
393 | |
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394 for (int i = 0; i < 40; i++) |
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395 gasChangeListDepthGas20x2[i] = 0; |
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396 |
38 | 397 SDiveState * pDiveState = &stateSim; |
398 copyDiveSettingsToSim(); | |
399 vpm_init(&pDiveState->vpm, pDiveState->diveSettings.vpm_conservatism, 0, 0); | |
400 //buehlmann_init(); | |
401 //timer_init(); | |
402 memset(&pDiveState->events,0, sizeof(SEvents)); | |
403 pDiveState->diveSettings.internal__pressure_first_stop_ambient_bar_as_upper_limit_for_gf_low_otherwise_zero = 0; | |
404 //Calc desaturation during intervall (with Air) | |
405 setActualGasAir(&pDiveState->lifeData); | |
406 if(intervall_time_minutes > 0) | |
407 { | |
408 decom_tissues_exposure(intervall_time_minutes * 60, &pDiveState->lifeData); | |
409 decom_oxygen_calculate_cns_degrade(&pDiveState->lifeData.cns, intervall_time_minutes * 60); | |
410 } | |
411 | |
412 //Switch to first Gas | |
413 setActualGasFirst(&pDiveState->lifeData); | |
414 | |
415 // new hw 160704 | |
416 if(gasChangeListDepthGas20x2) | |
417 { | |
418 gasChangeListDepthGas20x2[ptrGasChangeList++] = 0; | |
419 gasChangeListDepthGas20x2[ptrGasChangeList++] = pDiveState->lifeData.actualGas.GasIdInSettings; | |
420 gasChangeListDepthGas20x2[0] =0; // depth zero | |
421 } | |
422 | |
423 //Going down / descent | |
424 simulation_set_aim_depth(depth_meter); | |
425 for(int i = 0; i < 60 * dive_time_minutes; i++) | |
426 { | |
427 simulation_UpdateLifeData(0); | |
428 check_warning2(pDiveState); | |
429 if(pDiveState->warnings.betterGas) | |
430 { | |
431 setActualGas(&pDiveState->lifeData,actualBetterGasId(),pDiveState->lifeData.actualGas.setPoint_cbar); | |
432 if(gasChangeListDepthGas20x2 && (pDiveState->diveSettings.diveMode == DIVEMODE_OC)) | |
433 { | |
434 gasChangeListDepthGas20x2[ptrGasChangeList++] = pDiveState->lifeData.depth_meter; | |
435 gasChangeListDepthGas20x2[ptrGasChangeList++] = actualBetterGasId(); | |
436 } | |
437 } | |
438 } | |
439 | |
440 decom_CreateGasChangeList(&pDiveState->diveSettings, &pDiveState->lifeData); // was there before and needed for buehlmann_calc_deco and vpm_calc | |
441 | |
442 // new hw 160704 | |
443 if(gasChangeListDepthGas20x2 && (pDiveState->diveSettings.diveMode == DIVEMODE_OC)) | |
444 { | |
445 // change direction from better gas to deco gas | |
446 gasChangeListDepthGas20x2[ptrGasChangeList++] = 255; | |
447 gasChangeListDepthGas20x2[ptrGasChangeList++] = 255; | |
448 | |
449 // ascend (deco) gases | |
450 for(int i=1; i<=5;i++) | |
451 { | |
452 if(pDiveState->diveSettings.decogaslist[i].change_during_ascent_depth_meter_otherwise_zero == 0) | |
453 break; | |
454 gasChangeListDepthGas20x2[ptrGasChangeList++] = pDiveState->diveSettings.decogaslist[i].change_during_ascent_depth_meter_otherwise_zero; | |
455 gasChangeListDepthGas20x2[ptrGasChangeList++] = pDiveState->diveSettings.decogaslist[i].GasIdInSettings; | |
456 } | |
457 gasChangeListDepthGas20x2[0] = 0; | |
458 } | |
459 | |
460 // deco and ascend calc | |
461 if(pDiveState->diveSettings.deco_type.ub.standard == GF_MODE) | |
462 { | |
463 /* this does modify the cns now 11.06.2015 */ | |
464 buehlmann_calc_deco(&pDiveState->lifeData,&pDiveState->diveSettings,&pDiveState->decolistBuehlmann); | |
465 pDiveState->lifeData.cns += buehlmann_get_gCNS(); | |
466 return &pDiveState->decolistBuehlmann; | |
467 } | |
468 else | |
469 { | |
470 /* this does modify the cns now 11.06.2015 */ | |
471 vpm_calc(&pDiveState->lifeData,&pDiveState->diveSettings,&pDiveState->vpm,&pDiveState->decolistVPM, DECOSTOPS); | |
472 pDiveState->lifeData.cns += vpm_get_CNS(); | |
473 return &pDiveState->decolistVPM; | |
474 } | |
475 } | |
476 | |
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477 static float sGChelper_bar(uint16_t depth_meter) |
38 | 478 { |
479 SDiveState * pDiveState = &stateSim; | |
480 float ambient, surface, density, meter; | |
481 | |
482 surface = pDiveState->lifeData.pressure_surface_bar; | |
483 | |
484 if(!depth_meter) | |
485 return surface; | |
486 | |
487 density = ((float)( 100 + settingsGetPointer()->salinity)) / 100.0f; | |
488 meter = depth_meter * (0.09807f * density); | |
489 ambient = (meter + surface); | |
490 | |
491 return ambient; | |
492 } | |
493 | |
494 | |
495 /** | |
496 ****************************************************************************** | |
497 * @brief simulation_helper_change_points | |
498 ****************************************************************************** | |
499 * @param | |
500 * @return void | |
501 */ | |
502 void simulation_helper_change_points(SSimDataSummary *outputSummary, uint16_t depth_meter, uint16_t dive_time_minutes, SDecoinfo *decoInfoInput, const uint8_t *gasChangeListDepthGas20x2) | |
503 { | |
504 uint8_t ptrDecoInfo = 0; | |
505 uint16_t actualDepthPoint = 0; | |
506 uint16_t nextDepthPoint = 0; | |
507 uint8_t actualConsumGasId = 0; | |
508 uint8_t nextGasChangeMeter = 0; | |
509 uint8_t ptrChangeList = 0; | |
510 | |
511 float timeThis = 0; | |
512 float timeSummary = 0; | |
513 float sim_descent_rate_meter_per_min_local = 10; | |
514 float sim_ascent_rate_meter_per_min_local = 10; | |
515 | |
516 SDiveState * pDiveState = &stateSim; | |
517 | |
518 uint8_t depthDecoNext, depthLast, depthSecond, depthInc; | |
519 | |
520 if(pDiveState->diveSettings.deco_type.ub.standard == GF_MODE) | |
521 { | |
522 sim_descent_rate_meter_per_min_local = sim_descent_rate_meter_per_min; // const float | |
523 sim_ascent_rate_meter_per_min_local = pDiveState->diveSettings.ascentRate_meterperminute; | |
524 } | |
525 else | |
526 { | |
527 sim_descent_rate_meter_per_min_local = sim_descent_rate_meter_per_min; // const float | |
528 sim_ascent_rate_meter_per_min_local = 10;// fix in vpm_calc_deco(); | |
529 } | |
530 | |
531 outputSummary->descentRateMeterPerMinute = sim_descent_rate_meter_per_min_local; | |
532 outputSummary->ascentRateMeterPerMinute = sim_ascent_rate_meter_per_min_local; | |
533 | |
534 // bottom gas ppO2 | |
535 if(gasChangeListDepthGas20x2) | |
536 { | |
537 nextGasChangeMeter = gasChangeListDepthGas20x2[ptrChangeList++]; | |
538 actualConsumGasId = gasChangeListDepthGas20x2[ptrChangeList++]; | |
539 nextGasChangeMeter = gasChangeListDepthGas20x2[ptrChangeList++]; | |
540 | |
541 while(actualDepthPoint < depth_meter) | |
542 { | |
543 if(nextGasChangeMeter && (nextGasChangeMeter < depth_meter) && (gasChangeListDepthGas20x2[ptrChangeList] != 255)) // list has 255,255 for turn from travel to deco | |
544 { | |
545 nextDepthPoint = nextGasChangeMeter; | |
546 } | |
547 else | |
548 { | |
549 nextDepthPoint = depth_meter; | |
550 } | |
551 | |
552 if(actualConsumGasId > 5) // safety first | |
553 actualConsumGasId = 0; | |
554 | |
555 actualDepthPoint = nextDepthPoint; | |
556 | |
557 if(actualDepthPoint != depth_meter) | |
558 { | |
559 actualConsumGasId = gasChangeListDepthGas20x2[ptrChangeList++]; | |
560 nextGasChangeMeter = gasChangeListDepthGas20x2[ptrChangeList++]; | |
561 } | |
562 } | |
563 } | |
564 else | |
565 { | |
566 actualConsumGasId = pDiveState->lifeData.actualGas.GasIdInSettings; | |
567 nextGasChangeMeter = 0; | |
568 } | |
569 outputSummary->ppO2AtBottom = (sGChelper_bar(depth_meter) - WATER_VAPOUR_PRESSURE) * pDiveState->diveSettings.gas[actualConsumGasId].oxygen_percentage / 100.0f; | |
570 | |
571 | |
572 // going down | |
573 actualDepthPoint = 0; | |
574 nextDepthPoint = depth_meter; | |
575 | |
576 timeThis = ((float)(nextDepthPoint - actualDepthPoint)) / sim_descent_rate_meter_per_min_local; | |
577 timeSummary += timeThis; | |
578 outputSummary->timeToBottom = (uint16_t)timeThis; | |
579 | |
580 // bottom time | |
581 timeThis = ((float)dive_time_minutes) - timeSummary; | |
582 timeSummary += timeThis; | |
583 outputSummary->timeAtBottom = (uint16_t)timeSummary; | |
584 | |
585 | |
586 // ascend to first deco stop | |
587 actualDepthPoint = depth_meter; // that is where we are | |
588 timeThis = 0; | |
589 | |
590 if(!decoInfoInput->output_stop_length_seconds[0]) // NDL dive | |
591 { | |
592 depthLast = 0; | |
593 ptrDecoInfo = 0; | |
594 depthDecoNext = 0; | |
595 } | |
596 else | |
597 { | |
598 // prepare deco stop list | |
599 depthLast = (uint8_t)(stateUsed->diveSettings.last_stop_depth_bar * 10); | |
600 depthSecond = (uint8_t)(stateUsed->diveSettings.input_second_to_last_stop_depth_bar * 10); | |
601 depthInc = (uint8_t)(stateUsed->diveSettings.input_next_stop_increment_depth_bar * 10); | |
602 | |
603 for(ptrDecoInfo=DECOINFO_STRUCT_MAX_STOPS-1; ptrDecoInfo>0; ptrDecoInfo--) | |
604 if(decoInfoInput->output_stop_length_seconds[ptrDecoInfo]) break; | |
605 | |
606 if(ptrDecoInfo == 0) | |
607 { | |
608 depthDecoNext = depthLast; | |
609 } | |
610 else | |
611 depthDecoNext = depthSecond + (( ptrDecoInfo - 1 )* depthInc); | |
612 } | |
613 | |
614 nextDepthPoint = depthDecoNext; | |
615 if(actualDepthPoint > nextDepthPoint) | |
616 { | |
617 // flip signs! It's going up | |
618 timeThis = ((float)(actualDepthPoint - nextDepthPoint)) / sim_ascent_rate_meter_per_min_local; | |
619 actualDepthPoint = nextDepthPoint; // that is where we are | |
620 } | |
621 timeSummary += timeThis; | |
622 outputSummary->timeToFirstStop = (uint16_t)timeSummary; | |
623 outputSummary->depthMeterFirstStop = actualDepthPoint; | |
624 | |
625 //ascent | |
626 nextDepthPoint = 0; | |
627 timeThis = 0; | |
628 if(actualDepthPoint > nextDepthPoint) // only if deco | |
629 { | |
630 // ascent time | |
631 timeThis = ((float)(actualDepthPoint - nextDepthPoint)) / sim_ascent_rate_meter_per_min_local; | |
632 | |
633 // deco stop time | |
634 for(ptrDecoInfo=0;ptrDecoInfo < DECOINFO_STRUCT_MAX_STOPS; ptrDecoInfo++) | |
635 { | |
636 timeThis += decoInfoInput->output_stop_length_seconds[ptrDecoInfo] / 60; | |
637 if(!decoInfoInput->output_stop_length_seconds[ptrDecoInfo]) break; | |
638 } | |
639 } | |
640 timeSummary += timeThis; | |
641 outputSummary->timeToSurface = (uint16_t)timeSummary; | |
642 | |
643 } | |
644 | |
645 | |
646 /** | |
647 ****************************************************************************** | |
648 * @brief simulation_gas_consumption | |
649 ****************************************************************************** | |
650 * @note called by openEdit_PlanResult() in tMenuEditPlanner.c | |
651 * @note the ascend and descend time is taken from pDiveState->lifeData.ascent_rate_meter_per_min and const float sim_descent_rate_meter_per_min | |
652 * @param outputConsumptionList list from 1 to 5 for gas 1 to 5 | |
653 * @param depth_meter for descend | |
654 * @param dive_time_minutes for descend and bottom time | |
655 * @param the calculated deco list | |
656 * @param gasConsumTravelInput: how many l/min for all but deco stops | |
657 * @param gasConsumDecoInput: how many l/min for deco stops only | |
658 * @return void | |
659 */ | |
660 | |
661 void simulation_gas_consumption(uint16_t *outputConsumptionList, uint16_t depth_meter, uint16_t dive_time_minutes, SDecoinfo *decoInfoInput, uint8_t gasConsumTravelInput, uint8_t gasConsumDecoInput, const uint8_t *gasChangeListDepthGas20x2) | |
662 { | |
663 uint8_t ptrDecoInfo = 0; | |
664 uint8_t ptrChangeList = 0; | |
665 uint8_t actualConsumGasId = 0; | |
666 uint8_t nextGasChangeMeter = 0; | |
667 uint16_t actualDepthPoint = 0; | |
668 uint16_t nextDepthPoint = 0; | |
669 uint16_t inBetweenDepthPoint = 0; | |
670 float timeThis = 0; | |
671 float consumThis = 0; | |
672 float timeSummary = 0; | |
673 float outputConsumptionTempFloat[6]; | |
674 float sim_descent_rate_meter_per_min_local = 10; | |
675 float sim_ascent_rate_meter_per_min_local = 10; | |
676 | |
677 SDiveState * pDiveState = &stateSim; | |
678 | |
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679 uint8_t depthDecoNext = 0; |
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680 uint8_t depthLast = 0; |
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681 uint8_t depthSecond = 0; |
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682 uint8_t depthInc = 0; |
38 | 683 |
684 for(int i = 1; i < 6; i++) | |
685 outputConsumptionTempFloat[i] = 0; | |
686 | |
687 if(gasChangeListDepthGas20x2) | |
688 { | |
689 nextGasChangeMeter = gasChangeListDepthGas20x2[ptrChangeList++]; | |
690 actualConsumGasId = gasChangeListDepthGas20x2[ptrChangeList++]; | |
691 nextGasChangeMeter = gasChangeListDepthGas20x2[ptrChangeList++]; | |
692 } | |
693 else | |
694 { | |
695 actualConsumGasId = pDiveState->lifeData.actualGas.GasIdInSettings; | |
696 nextGasChangeMeter = 0; | |
697 } | |
698 | |
699 if(pDiveState->diveSettings.deco_type.ub.standard == GF_MODE) | |
700 { | |
701 sim_descent_rate_meter_per_min_local = sim_descent_rate_meter_per_min; // const float | |
702 sim_ascent_rate_meter_per_min_local = pDiveState->diveSettings.ascentRate_meterperminute; | |
703 } | |
704 else | |
705 { | |
706 sim_descent_rate_meter_per_min_local = sim_descent_rate_meter_per_min; // const float | |
707 sim_ascent_rate_meter_per_min_local = 10;// fix in vpm_calc_deco(); | |
708 } | |
709 | |
710 // while((nextGasChangeMeter < depth_meter) && (actualDepthPoint < depth_meter)) | |
711 while(actualDepthPoint < depth_meter) | |
712 { | |
713 if(nextGasChangeMeter && (nextGasChangeMeter < depth_meter) && (gasChangeListDepthGas20x2[ptrChangeList] != 255)) // list has 255,255 for turn from travel to deco | |
714 { | |
715 nextDepthPoint = nextGasChangeMeter; | |
716 } | |
717 else | |
718 { | |
719 nextDepthPoint = depth_meter; | |
720 } | |
721 | |
722 if(actualConsumGasId > 5) // safety first | |
723 actualConsumGasId = 0; | |
724 | |
725 timeThis = ((float)(nextDepthPoint - actualDepthPoint)) / sim_descent_rate_meter_per_min_local; | |
726 if(actualDepthPoint) // not if on surface | |
727 { | |
728 consumThis = ((float)gasConsumTravelInput) * sGChelper_bar(actualDepthPoint) * timeThis; | |
729 } | |
730 consumThis += ((float)gasConsumTravelInput) * sGChelper_bar(nextDepthPoint -actualDepthPoint) * timeThis / 2; | |
731 outputConsumptionTempFloat[actualConsumGasId] += consumThis; | |
732 timeSummary += timeThis; | |
733 | |
734 actualDepthPoint = nextDepthPoint; | |
735 | |
736 if(actualDepthPoint != depth_meter) | |
737 { | |
738 actualConsumGasId = gasChangeListDepthGas20x2[ptrChangeList++]; | |
739 nextGasChangeMeter = gasChangeListDepthGas20x2[ptrChangeList++]; | |
740 } | |
741 } | |
742 | |
743 // bottom Time | |
744 timeThis = ((float)dive_time_minutes) - timeSummary; | |
745 | |
746 if(timeThis > 0) | |
747 { | |
748 consumThis = ((float)gasConsumTravelInput) * sGChelper_bar(depth_meter) * timeThis; | |
749 outputConsumptionTempFloat[actualConsumGasId] += consumThis; | |
750 } | |
751 | |
752 // ascend with deco stops prepare | |
753 if(gasChangeListDepthGas20x2) | |
754 { | |
755 ptrChangeList++;// gasChangeListDepthGas20x2[ptrChangeList++]; // should be the 255 | |
756 nextGasChangeMeter = gasChangeListDepthGas20x2[ptrChangeList++]; | |
757 } | |
758 else | |
759 { | |
760 nextGasChangeMeter = 0; | |
761 } | |
762 | |
763 | |
764 if(!decoInfoInput->output_stop_length_seconds[0]) // NDL dive | |
765 { | |
766 depthLast = 0; | |
767 ptrDecoInfo = 0; | |
768 } | |
769 else | |
770 { | |
771 // prepare deco stop list | |
772 depthLast = (uint8_t)(stateUsed->diveSettings.last_stop_depth_bar * 10); | |
773 depthSecond = (uint8_t)(stateUsed->diveSettings.input_second_to_last_stop_depth_bar * 10); | |
774 depthInc = (uint8_t)(stateUsed->diveSettings.input_next_stop_increment_depth_bar * 10); | |
775 | |
776 for(ptrDecoInfo=DECOINFO_STRUCT_MAX_STOPS-1; ptrDecoInfo>0; ptrDecoInfo--) | |
777 if(decoInfoInput->output_stop_length_seconds[ptrDecoInfo]) break; | |
778 } | |
779 | |
780 actualDepthPoint = depth_meter; // that is where we are | |
781 | |
782 // ascend with deco stops | |
783 while(actualDepthPoint) | |
784 { | |
785 if(ptrDecoInfo == 0) | |
786 { | |
787 depthDecoNext = depthLast; | |
788 } | |
789 else | |
790 depthDecoNext = depthSecond + (( ptrDecoInfo - 1 )* depthInc); | |
791 | |
792 if(nextGasChangeMeter && (nextGasChangeMeter > depthDecoNext)) | |
793 { | |
794 nextDepthPoint = nextGasChangeMeter; | |
795 } | |
796 else | |
797 { | |
798 nextDepthPoint = depthDecoNext; | |
799 } | |
800 | |
801 if(actualConsumGasId > 5) // safety first | |
802 actualConsumGasId = 0; | |
803 | |
804 if(actualDepthPoint > nextDepthPoint) | |
805 { | |
806 // flip signs! It's going up | |
807 timeThis = ((float)(actualDepthPoint - nextDepthPoint)) / sim_ascent_rate_meter_per_min_local; | |
808 inBetweenDepthPoint = nextDepthPoint + ((actualDepthPoint - nextDepthPoint)/2); | |
809 consumThis = ((float)gasConsumDecoInput) * sGChelper_bar(inBetweenDepthPoint) * timeThis; | |
810 /* | |
811 if(nextDepthPoint) | |
812 { | |
813 consumThis = ((float)gasConsumDecoInput) * sGChelper_bar(nextDepthPoint) * timeThis; | |
814 } | |
815 else | |
816 { | |
817 consumThis = 0; | |
818 } | |
819 consumThis += ((float)gasConsumDecoInput) * sGChelper_bar(actualDepthPoint - nextDepthPoint) * timeThis / 2; | |
820 */ | |
821 outputConsumptionTempFloat[actualConsumGasId] += consumThis; | |
822 } | |
823 | |
824 if(nextGasChangeMeter && (nextDepthPoint == nextGasChangeMeter)) | |
825 { | |
826 actualConsumGasId = gasChangeListDepthGas20x2[ptrChangeList++]; | |
827 nextGasChangeMeter = gasChangeListDepthGas20x2[ptrChangeList++]; | |
828 } | |
829 | |
830 if(actualConsumGasId > 5) // safety first | |
831 actualConsumGasId = 0; | |
832 | |
833 if(nextDepthPoint && (nextDepthPoint == depthDecoNext)) | |
834 { | |
835 if(decoInfoInput->output_stop_length_seconds[ptrDecoInfo]) | |
836 { | |
837 timeThis = ((float)(decoInfoInput->output_stop_length_seconds[ptrDecoInfo])) / 60.0f; | |
838 consumThis = ((float)gasConsumDecoInput) * sGChelper_bar(nextDepthPoint) * timeThis; | |
839 outputConsumptionTempFloat[actualConsumGasId] += consumThis; | |
840 } | |
841 if(ptrDecoInfo != 0) | |
842 { | |
843 ptrDecoInfo--; | |
844 } | |
845 else | |
846 { | |
847 depthLast = 0; | |
848 } | |
849 } | |
850 actualDepthPoint = nextDepthPoint; | |
851 } | |
852 | |
853 // copy and return | |
854 for(int i = 1; i < 6; i++) | |
855 outputConsumptionList[i] = (uint16_t)(outputConsumptionTempFloat[i]); | |
856 } | |
857 | |
858 /** | |
859 ****************************************************************************** | |
860 * @brief Simulator control during simulated dive | |
861 ****************************************************************************** | |
862 * @note called by user via tHomeDiveMenuControl() | |
863 * @param void | |
864 * @return void | |
865 */ | |
866 | |
867 | |
868 void Sim_Descend (void) | |
869 { | |
870 stateSimGetPointerWrite()->lifeData.counterSecondsShallowDepth = 0; | |
871 if(simulation_get_aim_depth() < 200) | |
872 simulation_set_aim_depth(simulation_get_aim_depth() + 1); | |
873 } | |
874 | |
875 | |
876 void Sim_Ascend (void) | |
877 { | |
878 if(simulation_get_aim_depth() > 0) | |
879 simulation_set_aim_depth(simulation_get_aim_depth() - 1); | |
880 } | |
881 | |
882 | |
883 void Sim_Divetime (void) | |
884 { | |
885 simulation_add_time(5); | |
886 } | |
887 | |
888 | |
889 void Sim_Quit (void) | |
890 { | |
891 if(stateSimGetPointer()->lifeData.counterSecondsShallowDepth) | |
892 { | |
893 simulation_exit(); | |
894 return; | |
895 } | |
896 | |
897 if(simulation_get_aim_depth() > 0) | |
898 { | |
899 simulation_set_aim_depth(0); | |
900 } | |
901 else | |
902 { | |
903 stateSimGetPointerWrite()->lifeData.depth_meter = 0; | |
904 if(stateSimGetPointer()->diveSettings.diveMode == DIVEMODE_Apnea) | |
905 { | |
906 stateSimGetPointerWrite()->lifeData.counterSecondsShallowDepth = 1; | |
907 } | |
908 else | |
909 { | |
910 stateSimGetPointerWrite()->lifeData.counterSecondsShallowDepth = settingsGetPointer()->timeoutDiveReachedZeroDepth - 15; | |
911 } | |
912 } | |
913 } | |
629
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914 void Sim_IncreasePPO(uint8_t sensorIdx) |
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915 { |
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916 if((sensorIdx < NUM_OF_SENSORS) && (simSensmVOffset[sensorIdx] + SIM_PPO2_STEP < 100.0) && ((stateUsed->diveSettings.ppo2sensors_deactivated & (1 << sensorIdx)) == 0)) |
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917 { |
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918 simSensmVOffset[sensorIdx] += SIM_PPO2_STEP; |
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919 } |
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920 } |
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921 void Sim_DecreasePPO(uint8_t sensorIdx) |
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922 { |
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923 if((sensorIdx < NUM_OF_SENSORS) && (simSensmVOffset[sensorIdx] - SIM_PPO2_STEP >= -100.0)) |
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924 { |
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925 simSensmVOffset[sensorIdx] -= SIM_PPO2_STEP; |
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926 } |
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927 } |