Mercurial > public > ostc4
annotate Discovery/Src/data_exchange_main.c @ 207:b95741467355 ImprovmentSPI
Introduce scheduler function
The first implementation was only focussed on doing a hard sync and the new one uses an interface instead of global variables
author | ideenmodellierer |
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date | Sun, 24 Mar 2019 22:53:17 +0100 |
parents | 878dc9e0dbc5 |
children | 9fc06e1e0f66 |
rev | line source |
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38 | 1 /** |
2 ****************************************************************************** | |
3 * @file data_exchange_main.c | |
4 * @author heinrichs weikamp gmbh | |
5 * @date 13-Oct-2014 | |
6 * @version V0.0.3 | |
7 * @since 17-Feb-2016 | |
8 | |
9 * @brief Communication with the second CPU == RTE system | |
10 * | |
11 @verbatim | |
12 ============================================================================== | |
13 ##### Version Changes ##### | |
14 ============================================================================== | |
15 160217 V0.0.3 pStateUsed->decolistXXXXX.tickstamp = HAL_GetTick(); added | |
16 150627 V0.0.2 | |
17 | |
18 ============================================================================== | |
19 ##### How to use ##### | |
20 ============================================================================== | |
21 | |
22 ============================================================================== | |
23 ##### Button, Set Time, Clear Deco etc Request ##### | |
24 ============================================================================== | |
25 was updated (151207) for buttons and clear deco at the moment only | |
26 using requestNecessary and checking in DataEX_copy_to_LifeData() | |
27 Hence if there is no confirm from the smallCPU on the data after the request | |
28 the request will be send again. | |
29 | |
30 ============================================================================== | |
31 ##### Device Data ##### | |
32 ============================================================================== | |
33 | |
34 main CPU always sends the device data info that it has at the moment | |
35 | |
36 on start it is INT32_MIN, INT32_MAX and 0 | |
37 as initialized in data_central.c variable declaration | |
38 | |
39 second small CPU gets request to send its device data | |
40 | |
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41 on reception the data is merged with the data in externLogbookFlash, |
38 | 42 stored on the externLogbookFlash and from now on send to small CPU |
43 | |
44 ============================================================================== | |
45 ##### Magnet Reset ##### | |
46 ============================================================================== | |
47 | |
48 @endverbatim | |
49 ****************************************************************************** | |
50 * @attention | |
51 * | |
52 * <h2><center>© COPYRIGHT(c) 2014 heinrichs weikamp</center></h2> | |
53 * | |
54 ****************************************************************************** | |
55 */ | |
56 | |
57 /* Includes ------------------------------------------------------------------*/ | |
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58 #include <stdlib.h> |
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59 #include <string.h> // for memcpy |
38 | 60 #include "stm32f4xx_hal.h" |
61 #include "stdio.h" | |
62 #include "ostc.h" | |
63 #include "settings.h" | |
64 #include "data_central.h" | |
65 #include "data_exchange_main.h" | |
66 #include "base.h" | |
67 #include "decom.h" | |
68 #include "calc_crush.h" /* for vpm_init */ | |
69 #include "simulation.h" | |
70 #include "tCCR.h" | |
71 #include "timer.h" | |
72 #include "buehlmann.h" | |
73 #include "externLogbookFlash.h" | |
74 | |
75 | |
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76 /* Exported variables --------------------------------------------------------*/ |
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77 static uint8_t wasPowerOn = 0; |
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78 static confirmbit8_Type requestNecessary = { .uw = 0 }; |
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79 static uint8_t wasUpdateNotPowerOn = 0; |
38 | 80 |
81 /* Private variables with external access ------------------------------------*/ | |
82 | |
83 /* Private variables ---------------------------------------------------------*/ | |
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84 static uint8_t told_reset_logik_alles_ok = 0; |
38 | 85 |
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86 static SDataReceiveFromMaster dataOut; |
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87 static SDataExchangeSlaveToMaster dataIn; |
38 | 88 |
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89 static uint8_t data_old__lost_connection_to_slave_counter_temp = 0; |
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90 static uint8_t data_old__lost_connection_to_slave_counter_retry = 0; |
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91 static uint32_t data_old__lost_connection_to_slave_counter_total = 0; |
38 | 92 |
93 /* Private types -------------------------------------------------------------*/ | |
94 | |
95 /* Private function prototypes -----------------------------------------------*/ | |
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96 static uint8_t DataEX_check_header_and_footer_ok(void); |
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97 static uint8_t DataEX_check_header_and_footer_shifted(void); |
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98 static uint8_t DataEX_check_header_and_footer_devicedata(void); |
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99 static void DataEX_check_DeviceData(void); |
38 | 100 |
101 /* Exported functions --------------------------------------------------------*/ | |
102 | |
103 uint8_t DataEX_was_power_on(void) | |
104 { | |
105 return wasPowerOn; | |
106 } | |
107 | |
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108 static uint8_t count_DataEX_Error_Handler = 0; |
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109 static uint8_t last_error_DataEX_Error_Handler = 0; |
38 | 110 |
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111 static void DataEX_Error_Handler(uint8_t answer) |
38 | 112 { |
113 count_DataEX_Error_Handler++; | |
114 last_error_DataEX_Error_Handler = answer; | |
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115 |
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116 /* A wrong footer indicates a communication interrupt. State machine is waiting for new data which is not received because no new transmission is triggered */ |
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117 /* ==> Abort data exchange to enable a new RX / TX cycle */ |
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118 if(answer == HAL_BUSY) |
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119 { |
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120 HAL_SPI_Abort_IT(&cpu2DmaSpi); |
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121 } |
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122 |
38 | 123 return; |
124 } | |
125 | |
126 | |
127 uint32_t DataEX_lost_connection_count(void) | |
128 { | |
129 return data_old__lost_connection_to_slave_counter_total; | |
130 } | |
131 | |
132 | |
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133 SDataReceiveFromMaster *dataOutGetPointer(void) |
38 | 134 { |
135 return &dataOut; | |
136 } | |
137 | |
138 void DataEX_init(void) | |
139 { | |
140 SDiveState * pStateReal = stateRealGetPointerWrite(); | |
99 | 141 pStateReal->data_old__lost_connection_to_slave = 0; //initial value |
38 | 142 data_old__lost_connection_to_slave_counter_temp = 0; |
143 data_old__lost_connection_to_slave_counter_total = 0; | |
144 | |
145 memset((void *)&dataOut, 0, sizeof(SDataReceiveFromMaster)); | |
146 | |
147 dataOut.header.checkCode[0] = 0xBB; | |
148 dataOut.header.checkCode[1] = 0x01; | |
149 dataOut.header.checkCode[2] = 0x01; | |
150 dataOut.header.checkCode[3] = 0xBB; | |
151 | |
152 dataOut.footer.checkCode[0] = 0xF4; | |
153 dataOut.footer.checkCode[1] = 0xF3; | |
154 dataOut.footer.checkCode[2] = 0xF2; | |
155 dataOut.footer.checkCode[3] = 0xF1; | |
156 } | |
157 | |
158 | |
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159 static void DataEx_call_helper_requests(void) |
38 | 160 { |
161 static uint8_t setDateWasSend = 0; | |
162 static uint8_t setTimeWasSend = 0; | |
163 static uint8_t calibrateCompassWasSend = 0; | |
164 static uint8_t setButtonSensitivityWasSend = 0; | |
165 static uint8_t clearDecoWasSend = 0; | |
166 static uint8_t getDeviceDataWasSend = 0; | |
167 static uint8_t setAccidentFlagWasSend = 0; | |
168 static uint8_t setEndDiveWasSend = 0; | |
169 | |
170 if(getDeviceDataWasSend) | |
171 { | |
172 dataOut.getDeviceDataNow = 0; | |
173 requestNecessary.ub.devicedata = 1; | |
174 } | |
175 getDeviceDataWasSend = 0; | |
176 if(dataOut.getDeviceDataNow) | |
177 { | |
178 getDeviceDataWasSend = 1; | |
179 } | |
180 | |
181 if(setEndDiveWasSend) | |
182 { | |
183 dataOut.setEndDive = 0; | |
184 //requestNecessary.ub.XXX = 1; not implemented and no space here | |
185 } | |
186 setEndDiveWasSend = 0; | |
187 if(dataOut.setEndDive) | |
188 { | |
189 setEndDiveWasSend = 1; | |
190 } | |
191 | |
192 if(setAccidentFlagWasSend) | |
193 { | |
194 dataOut.setAccidentFlag = 0; | |
195 requestNecessary.ub.accident = 1; | |
196 } | |
197 setAccidentFlagWasSend = 0; | |
198 if(dataOut.setAccidentFlag) | |
199 { | |
200 setAccidentFlagWasSend = 1; | |
201 } | |
202 | |
203 if(setDateWasSend) | |
204 { | |
205 dataOut.setDateNow = 0; | |
206 requestNecessary.ub.date = 1; | |
207 } | |
208 setDateWasSend = 0; | |
209 if(dataOut.setDateNow) | |
210 { | |
211 setDateWasSend = 1; | |
212 } | |
213 | |
214 if(setTimeWasSend) | |
215 { | |
216 dataOut.setTimeNow = 0; | |
217 requestNecessary.ub.time = 1; | |
218 } | |
219 setTimeWasSend = 0; | |
220 if(dataOut.setTimeNow) | |
221 { | |
222 setTimeWasSend = 1; | |
223 } | |
224 | |
225 if(calibrateCompassWasSend) | |
226 { | |
227 dataOut.calibrateCompassNow = 0; | |
228 requestNecessary.ub.compass = 1; | |
229 } | |
230 calibrateCompassWasSend = 0; | |
231 if(dataOut.calibrateCompassNow) | |
232 { | |
233 calibrateCompassWasSend = 1; | |
234 } | |
235 | |
236 if(clearDecoWasSend) | |
237 { | |
238 dataOut.clearDecoNow = 0; | |
239 requestNecessary.ub.clearDeco = 1; | |
240 } | |
241 if(dataOut.clearDecoNow) | |
242 { | |
243 clearDecoWasSend = 1; | |
244 } | |
245 | |
246 if(setButtonSensitivityWasSend) | |
247 { | |
248 dataOut.setButtonSensitivityNow = 0; | |
249 requestNecessary.ub.button = 1; | |
250 } | |
251 setButtonSensitivityWasSend = 0; | |
252 if(dataOut.setButtonSensitivityNow) | |
253 { | |
254 setButtonSensitivityWasSend = 1; | |
255 } | |
256 } | |
257 | |
258 | |
259 uint8_t DataEX_call(void) | |
260 { | |
261 uint8_t SPI_DMA_answer = 0; | |
141 | 262 |
87 | 263 HAL_GPIO_WritePin(SMALLCPU_CSB_GPIO_PORT,SMALLCPU_CSB_PIN,GPIO_PIN_RESET); |
141 | 264 |
38 | 265 if(data_old__lost_connection_to_slave_counter_temp >= 3) |
266 { | |
267 data_old__lost_connection_to_slave_counter_temp = 0; | |
141 | 268 if((DataEX_check_header_and_footer_shifted()) && (data_old__lost_connection_to_slave_counter_retry == 0)) |
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269 { |
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270 HAL_SPI_Abort_IT(&cpu2DmaSpi); |
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271 } |
141 | 272 /* reset of own DMA does not work ==> request reset of slave dma */ |
149 | 273 if((DataEX_check_header_and_footer_shifted()) && (data_old__lost_connection_to_slave_counter_retry == 2)) |
141 | 274 { |
275 dataOut.header.checkCode[SPI_HEADER_INDEX_SLAVE] = 0xA5; | |
276 } | |
38 | 277 data_old__lost_connection_to_slave_counter_retry++; |
278 } | |
149 | 279 #if USE_OLD_SYNC_METHOD |
280 /* one cycle with NotChipSelect true to clear slave spi buffer */ | |
281 else | |
282 { | |
283 HAL_GPIO_WritePin(SMALLCPU_CSB_GPIO_PORT,SMALLCPU_CSB_PIN,GPIO_PIN_RESET); | |
284 } | |
285 #endif | |
38 | 286 |
287 DataEx_call_helper_requests(); | |
288 | |
289 //HAL_GPIO_WritePin(OSCILLOSCOPE2_GPIO_PORT,OSCILLOSCOPE2_PIN,GPIO_PIN_RESET); /* only for testing with Oscilloscope */ | |
290 | |
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291 |
89 | 292 SPI_DMA_answer = HAL_SPI_TransmitReceive_DMA(&cpu2DmaSpi, (uint8_t *)&dataOut, (uint8_t *)&dataIn, EXCHANGE_BUFFERSIZE); |
38 | 293 if(SPI_DMA_answer != HAL_OK) |
149 | 294 { |
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295 DataEX_Error_Handler(SPI_DMA_answer); |
149 | 296 } |
104 | 297 // HAL_GPIO_WritePin(SMALLCPU_CSB_GPIO_PORT,SMALLCPU_CSB_PIN,GPIO_PIN_SET); |
38 | 298 //HAL_Delay(3); |
299 //HAL_GPIO_WritePin(OSCILLOSCOPE2_GPIO_PORT,OSCILLOSCOPE2_PIN,GPIO_PIN_SET); /* only for testing with Oscilloscope */ | |
300 | |
301 return 1; | |
302 } | |
303 | |
82 | 304 |
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305 static uint32_t SPI_CALLBACKS; |
82 | 306 uint32_t get_num_SPI_CALLBACKS(void){ |
307 return SPI_CALLBACKS; | |
308 } | |
309 | |
310 SDataExchangeSlaveToMaster* get_dataInPointer(void){ | |
311 return &dataIn; | |
312 } | |
313 | |
314 | |
315 void HAL_SPI_TxRxCpltCallback(SPI_HandleTypeDef *hspi) | |
316 { | |
317 if(hspi == &cpu2DmaSpi) | |
318 { | |
154 | 319 HAL_GPIO_WritePin(SMALLCPU_CSB_GPIO_PORT,SMALLCPU_CSB_PIN,GPIO_PIN_SET); |
82 | 320 SPI_CALLBACKS+=1; |
321 } | |
322 } | |
323 | |
324 | |
38 | 325 void DateEx_copy_to_dataOut(void) |
326 { | |
327 const SDiveState * pStateReal = stateRealGetPointer(); | |
328 SSettings *settings = settingsGetPointer(); | |
329 | |
330 if(get_globalState() == StStop) | |
331 dataOut.mode = MODE_SHUTDOWN; | |
332 else | |
333 dataOut.mode = 0; | |
334 | |
335 dataOut.diveModeInfo = pStateReal->diveSettings.diveMode; // hw 170215 | |
336 | |
337 memcpy(&dataOut.data.DeviceData, stateDeviceGetPointer(), sizeof(SDevice)); | |
338 | |
339 dataOut.data.VPMconservatism = pStateReal->diveSettings.vpm_conservatism; | |
340 dataOut.data.actualGas = pStateReal->lifeData.actualGas; | |
341 dataOut.data.ambient_pressure_mbar_ceiling = (pStateReal->decolistBuehlmann.output_ceiling_meter * 100) + (pStateReal->lifeData.pressure_surface_bar * 1000); | |
342 dataOut.data.divetimeToCreateLogbook = settings->divetimeToCreateLogbook; | |
343 dataOut.data.timeoutDiveReachedZeroDepth = settings->timeoutDiveReachedZeroDepth; | |
344 | |
345 dataOut.data.offsetPressureSensor_mbar = settings->offsetPressure_mbar; | |
346 dataOut.data.offsetTemperatureSensor_centiDegree = settings->offsetTemperature_centigrad; | |
347 | |
348 if((hardwareDataGetPointer()->primarySerial <= 32) || (((hardwareDataGetPointer()->primarySerial == 72) && (hardwareDataGetPointer()->secondarySerial == 15)))) | |
349 { | |
350 dataOut.revisionHardware = 0x00; | |
351 dataOut.revisionCRCx0x7A = 0x7A; | |
352 } | |
353 else | |
354 if(hardwareDataGetPointer()->primarySerial < 0xFFFF) | |
355 { | |
356 dataOut.revisionHardware = hardwareDataGetPointer()->revision8bit; | |
357 dataOut.revisionCRCx0x7A = hardwareDataGetPointer()->revision8bit ^ 0x7A; | |
358 } | |
359 else | |
360 { | |
361 dataOut.revisionHardware = 0xFF; | |
362 dataOut.revisionCRCx0x7A = 0xFF; | |
363 } | |
364 | |
365 if(DataEX_check_header_and_footer_ok() && !told_reset_logik_alles_ok) | |
366 { | |
367 MX_tell_reset_logik_alles_ok(); | |
368 told_reset_logik_alles_ok = 1; | |
369 } | |
370 | |
371 if(DataEX_check_header_and_footer_ok() && (dataIn.power_on_reset == 1)) | |
372 { | |
373 if(!wasUpdateNotPowerOn) | |
374 wasPowerOn = 1; | |
375 | |
376 RTC_DateTypeDef Sdate; | |
377 RTC_TimeTypeDef Stime; | |
378 | |
379 translateDate(settings->backup_localtime_rtc_dr, &Sdate); | |
380 translateTime(settings->backup_localtime_rtc_tr, &Stime); | |
381 | |
382 dataOut.data.newTime = Stime; | |
383 dataOut.setTimeNow = 1; | |
384 dataOut.data.newDate = Sdate; | |
385 dataOut.setDateNow = 1; | |
386 | |
387 settingsHelperButtonSens_keepPercentageValues(settingsGetPointerStandard()->ButtonResponsiveness[3], settings->ButtonResponsiveness); | |
388 setButtonResponsiveness(settings->ButtonResponsiveness); | |
389 | |
390 // hw 160720 new lastKnownBatteryPercentage | |
391 if(!wasUpdateNotPowerOn) | |
392 { | |
393 // dataOut.data.newBatteryGaugePercentageFloat = settingsGetPointer()->lastKnownBatteryPercentage; | |
394 dataOut.data.newBatteryGaugePercentageFloat = 0; | |
395 dataOut.setBatteryGaugeNow = 1; | |
396 } | |
397 } | |
398 } | |
399 | |
400 | |
401 void DataEX_copy_to_deco(void) | |
402 { | |
403 SDiveState * pStateUsed; | |
404 if(decoLock == DECO_CALC_running) | |
405 return; | |
406 if(stateUsed == stateRealGetPointer()) | |
407 pStateUsed = stateRealGetPointerWrite(); | |
90 | 408 else{ |
38 | 409 pStateUsed = stateSimGetPointerWrite(); |
90 | 410 } |
38 | 411 |
412 if(decoLock == DECO_CALC_init_as_is_start_of_dive) | |
413 { | |
414 vpm_init(&pStateUsed->vpm, pStateUsed->diveSettings.vpm_conservatism, 0, 0); | |
415 buehlmann_init(); | |
416 timer_init(); | |
417 resetEvents(); | |
418 pStateUsed->diveSettings.internal__pressure_first_stop_ambient_bar_as_upper_limit_for_gf_low_otherwise_zero = 0; | |
419 /* | |
420 * ToDo by Peter | |
421 * copy VPM stuff etc. pp. | |
422 * was void initDiveState(SDiveSettings * pDiveSettings, SVpm * pVpm); | |
423 */ | |
424 } | |
425 | |
426 if(decoLock == DECO_CALC_FINSHED_Buehlmann) | |
427 { | |
428 | |
429 } | |
430 switch(decoLock) | |
431 { | |
432 | |
433 //Deco_calculation finished | |
434 case DECO_CALC_FINSHED_vpm: | |
435 memcpy(&pStateUsed->decolistVPM,&stateDeco.decolistVPM,sizeof(SDecoinfo)); | |
436 pStateUsed->decolistVPM.tickstamp = HAL_GetTick(); | |
437 pStateUsed->vpm.deco_zone_reached = stateDeco.vpm.deco_zone_reached; | |
438 for(int i = 0; i< 16; i++) | |
439 { | |
440 pStateUsed->vpm.adjusted_critical_radius_he[i] = stateDeco.vpm.adjusted_critical_radius_he[i]; | |
441 pStateUsed->vpm.adjusted_critical_radius_n2[i] = stateDeco.vpm.adjusted_critical_radius_n2[i]; | |
442 pStateUsed->vpm.adjusted_crushing_pressure_he[i] = stateDeco.vpm.adjusted_crushing_pressure_he[i]; | |
443 pStateUsed->vpm.adjusted_crushing_pressure_n2[i] = stateDeco.vpm.adjusted_crushing_pressure_n2[i]; | |
444 pStateUsed->vpm.initial_allowable_gradient_he[i] = stateDeco.vpm.initial_allowable_gradient_he[i]; | |
445 pStateUsed->vpm.initial_allowable_gradient_n2[i] = stateDeco.vpm.initial_allowable_gradient_n2[i]; | |
446 pStateUsed->vpm.max_actual_gradient[i] = stateDeco.vpm.max_actual_gradient[i]; | |
447 } | |
448 break; | |
449 case DECO_CALC_FINSHED_Buehlmann: | |
450 memcpy(&pStateUsed->decolistBuehlmann,&stateDeco.decolistBuehlmann,sizeof(SDecoinfo)); | |
451 pStateUsed->decolistBuehlmann.tickstamp = HAL_GetTick(); | |
452 //Copy Data to be stored if regular Buehlmann, not FutureBuehlmann | |
453 pStateUsed->diveSettings.internal__pressure_first_stop_ambient_bar_as_upper_limit_for_gf_low_otherwise_zero = stateDeco.diveSettings.internal__pressure_first_stop_ambient_bar_as_upper_limit_for_gf_low_otherwise_zero; | |
454 break; | |
455 case DECO_CALC_FINSHED_FutureBuehlmann: | |
456 memcpy(&pStateUsed->decolistFutureBuehlmann,&stateDeco.decolistFutureBuehlmann,sizeof(SDecoinfo)); | |
457 pStateUsed->decolistFutureBuehlmann.tickstamp = HAL_GetTick(); | |
458 break; | |
459 case DECO_CALC_FINSHED_Futurevpm: | |
460 memcpy(&pStateUsed->decolistFutureVPM,&stateDeco.decolistFutureVPM,sizeof(SDecoinfo)); | |
461 pStateUsed->decolistFutureVPM.tickstamp = HAL_GetTick(); | |
462 break; | |
463 } | |
464 | |
465 //Copy Inputdata from stateReal to stateDeco | |
466 memcpy(&stateDeco.lifeData,&pStateUsed->lifeData,sizeof(SLifeData)); | |
467 memcpy(&stateDeco.diveSettings,&pStateUsed->diveSettings,sizeof(SDiveSettings)); | |
468 | |
469 stateDeco.vpm.deco_zone_reached = pStateUsed->vpm.deco_zone_reached; | |
470 // memcpy(&stateDeco.vpm,&pStateUsed->vpm,sizeof(SVpm)); | |
471 for(int i = 0; i< 16; i++) | |
472 { | |
473 stateDeco.vpm.max_crushing_pressure_he[i] = pStateUsed->vpm.max_crushing_pressure_he[i]; | |
474 stateDeco.vpm.max_crushing_pressure_n2[i] = pStateUsed->vpm.max_crushing_pressure_n2[i]; | |
475 stateDeco.vpm.adjusted_critical_radius_he[i] = pStateUsed->vpm.adjusted_critical_radius_he[i]; | |
476 stateDeco.vpm.adjusted_critical_radius_n2[i] = pStateUsed->vpm.adjusted_critical_radius_n2[i]; | |
477 } | |
478 decoLock = DECO_CALC_ready; | |
479 } | |
480 | |
481 | |
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482 static void DataEX_helper_copy_deviceData(SDeviceLine *lineWrite, const SDeviceLine *lineRead) |
38 | 483 { |
484 lineWrite->date_rtc_dr = lineRead->date_rtc_dr; | |
485 lineWrite->time_rtc_tr = lineRead->time_rtc_tr; | |
486 lineWrite->value_int32 = lineRead->value_int32; | |
487 } | |
488 | |
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489 static void DataEX_helper_SetTime(RTC_TimeTypeDef inStimestructure, uint32_t *outTimetmpreg) |
38 | 490 { |
491 inStimestructure.TimeFormat = RTC_HOURFORMAT_24; | |
492 | |
493 *outTimetmpreg = (uint32_t)(((uint32_t)RTC_ByteToBcd2(inStimestructure.Hours) << 16U) | \ | |
494 ((uint32_t)RTC_ByteToBcd2(inStimestructure.Minutes) << 8U) | \ | |
495 ((uint32_t)RTC_ByteToBcd2(inStimestructure.Seconds)) | \ | |
496 (((uint32_t)inStimestructure.TimeFormat) << 16U)); | |
497 } | |
498 | |
499 | |
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500 static void DataEX_helper_SetDate(RTC_DateTypeDef inSdatestructure, uint32_t *outDatetmpreg) |
38 | 501 { |
502 *outDatetmpreg = (((uint32_t)RTC_ByteToBcd2(inSdatestructure.Year) << 16U) | \ | |
503 ((uint32_t)RTC_ByteToBcd2(inSdatestructure.Month) << 8U) | \ | |
504 ((uint32_t)RTC_ByteToBcd2(inSdatestructure.Date)) | \ | |
505 ((uint32_t)inSdatestructure.WeekDay << 13U)); | |
506 } | |
507 | |
508 | |
509 | |
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510 static void DataEX_helper_set_Unknown_Date_deviceData(SDeviceLine *lineWrite) |
38 | 511 { |
512 RTC_DateTypeDef sdatestructure; | |
513 RTC_TimeTypeDef stimestructure; | |
514 | |
515 stimestructure.Hours = 1; | |
516 stimestructure.Minutes = 0; | |
517 stimestructure.Seconds = 0; | |
518 | |
519 sdatestructure.Date = 1; | |
520 sdatestructure.Month = 1; | |
521 sdatestructure.Year = 16; | |
522 setWeekday(&sdatestructure); | |
523 | |
524 DataEX_helper_SetTime(stimestructure, &lineWrite->time_rtc_tr); | |
525 DataEX_helper_SetDate(sdatestructure, &lineWrite->date_rtc_dr); | |
526 } | |
527 | |
528 | |
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529 static uint8_t DataEX_helper_Check_And_Correct_Date_deviceData(SDeviceLine *lineWrite) |
38 | 530 { |
531 RTC_DateTypeDef sdatestructure; | |
532 RTC_TimeTypeDef stimestructure; | |
533 | |
534 // from lineWrite to structure | |
535 translateDate(lineWrite->date_rtc_dr, &sdatestructure); | |
536 translateTime(lineWrite->time_rtc_tr, &stimestructure); | |
537 | |
538 if( (sdatestructure.Year >= 15) | |
539 && (sdatestructure.Year <= 30) | |
540 && (sdatestructure.Month <= 12)) | |
541 return 0; | |
542 | |
543 | |
544 DataEX_helper_set_Unknown_Date_deviceData(lineWrite); | |
545 return 1; | |
546 } | |
547 | |
548 | |
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549 static uint8_t DataEX_helper_Check_And_Correct_Value_deviceData(SDeviceLine *lineWrite, int32_t from, int32_t to) |
38 | 550 { |
551 if(lineWrite->value_int32 >= from && lineWrite->value_int32 <= to) | |
552 return 0; | |
553 | |
554 if(lineWrite->value_int32 < from) | |
555 lineWrite->value_int32 = from; | |
556 else | |
557 lineWrite->value_int32 = to; | |
558 | |
559 DataEX_helper_set_Unknown_Date_deviceData(lineWrite); | |
560 return 0; | |
561 } | |
562 | |
563 | |
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564 static void DataEX_check_DeviceData(void) |
38 | 565 { |
566 SDevice *DeviceData = stateDeviceGetPointerWrite(); | |
567 | |
568 DataEX_helper_Check_And_Correct_Date_deviceData(&DeviceData->batteryChargeCompleteCycles); | |
569 DataEX_helper_Check_And_Correct_Date_deviceData(&DeviceData->batteryChargeCycles); | |
570 DataEX_helper_Check_And_Correct_Date_deviceData(&DeviceData->depthMaximum); | |
571 DataEX_helper_Check_And_Correct_Date_deviceData(&DeviceData->diveCycles); | |
572 DataEX_helper_Check_And_Correct_Date_deviceData(&DeviceData->hoursOfOperation); | |
573 DataEX_helper_Check_And_Correct_Date_deviceData(&DeviceData->temperatureMaximum); | |
574 DataEX_helper_Check_And_Correct_Date_deviceData(&DeviceData->temperatureMinimum); | |
575 DataEX_helper_Check_And_Correct_Date_deviceData(&DeviceData->voltageMinimum); | |
576 | |
577 DataEX_helper_Check_And_Correct_Value_deviceData(&DeviceData->batteryChargeCompleteCycles, 0, 10000); | |
578 DataEX_helper_Check_And_Correct_Value_deviceData(&DeviceData->batteryChargeCycles, 0, 20000); | |
579 DataEX_helper_Check_And_Correct_Value_deviceData(&DeviceData->depthMaximum, 0, (500*100)+1000); | |
580 DataEX_helper_Check_And_Correct_Value_deviceData(&DeviceData->diveCycles, 0, 20000); | |
581 DataEX_helper_Check_And_Correct_Value_deviceData(&DeviceData->hoursOfOperation, 0, 1000000); | |
582 DataEX_helper_Check_And_Correct_Value_deviceData(&DeviceData->temperatureMaximum, -30*100, 150*100); | |
583 DataEX_helper_Check_And_Correct_Value_deviceData(&DeviceData->temperatureMinimum, -30*100, 150*100); | |
584 DataEX_helper_Check_And_Correct_Value_deviceData(&DeviceData->voltageMinimum, -1*1000, 6*1000); | |
585 } | |
586 | |
587 | |
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588 static void DataEX_merge_DeviceData_and_store(void) |
38 | 589 { |
590 uint16_t dataLengthRead; | |
591 SDevice DeviceDataFlash; | |
592 SDevice *DeviceData = stateDeviceGetPointerWrite(); | |
593 | |
594 dataLengthRead = ext_flash_read_devicedata((uint8_t *)&DeviceDataFlash,sizeof(SDevice)); | |
595 | |
596 if(dataLengthRead == 0) | |
597 { | |
598 ext_flash_write_devicedata(); | |
599 return; | |
600 } | |
601 | |
602 /* max values */ | |
603 if(DeviceData->batteryChargeCompleteCycles.value_int32 < DeviceDataFlash.batteryChargeCompleteCycles.value_int32) | |
604 { | |
605 DataEX_helper_copy_deviceData(&DeviceData->batteryChargeCompleteCycles, &DeviceDataFlash.batteryChargeCompleteCycles); | |
606 } | |
607 if(DeviceData->batteryChargeCycles.value_int32 < DeviceDataFlash.batteryChargeCycles.value_int32) | |
608 { | |
609 DataEX_helper_copy_deviceData(&DeviceData->batteryChargeCycles, &DeviceDataFlash.batteryChargeCycles); | |
610 } | |
611 if(DeviceData->temperatureMaximum.value_int32 < DeviceDataFlash.temperatureMaximum.value_int32) | |
612 { | |
613 DataEX_helper_copy_deviceData(&DeviceData->temperatureMaximum, &DeviceDataFlash.temperatureMaximum); | |
614 } | |
615 if(DeviceData->depthMaximum.value_int32 < DeviceDataFlash.depthMaximum.value_int32) | |
616 { | |
617 DataEX_helper_copy_deviceData(&DeviceData->depthMaximum, &DeviceDataFlash.depthMaximum); | |
618 } | |
619 if(DeviceData->diveCycles.value_int32 < DeviceDataFlash.diveCycles.value_int32) | |
620 { | |
621 DataEX_helper_copy_deviceData(&DeviceData->diveCycles, &DeviceDataFlash.diveCycles); | |
622 } | |
623 | |
624 /* min values */ | |
625 if(DeviceData->temperatureMinimum.value_int32 > DeviceDataFlash.temperatureMinimum.value_int32) | |
626 { | |
627 DataEX_helper_copy_deviceData(&DeviceData->temperatureMinimum, &DeviceDataFlash.temperatureMinimum); | |
628 } | |
629 // Voltage minimum, keep limit to 2.0 Volt; hw 09.09.2015 | |
630 if(DeviceData->voltageMinimum.value_int32 > DeviceDataFlash.voltageMinimum.value_int32) | |
631 { | |
632 if(DeviceDataFlash.voltageMinimum.value_int32 > 2000) // do not copy back 2000 and below | |
633 DataEX_helper_copy_deviceData(&DeviceData->voltageMinimum, &DeviceDataFlash.voltageMinimum); | |
634 } | |
635 if(DeviceData->voltageMinimum.value_int32 < 2000) | |
636 DeviceData->voltageMinimum.value_int32 = 2000; | |
637 | |
638 DataEX_check_DeviceData (); | |
639 ext_flash_write_devicedata(); | |
640 } | |
641 | |
642 | |
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643 static void DataEX_copy_to_DeviceData(void) |
38 | 644 { |
645 SDataExchangeSlaveToMasterDeviceData * dataInDevice = (SDataExchangeSlaveToMasterDeviceData *)&dataIn; | |
646 SDevice * pDeviceState = stateDeviceGetPointerWrite(); | |
647 | |
648 memcpy(pDeviceState, &dataInDevice->DeviceData[dataInDevice->boolDeviceData], sizeof(SDevice)); | |
649 } | |
650 | |
651 | |
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652 static void DataEX_copy_to_VpmRepetitiveData(void) |
38 | 653 { |
654 SDataExchangeSlaveToMasterDeviceData * dataInDevice = (SDataExchangeSlaveToMasterDeviceData *)&dataIn; | |
655 SVpmRepetitiveData * pVpmState = stateVpmRepetitiveDataGetPointerWrite(); | |
656 | |
657 if(dataInDevice->boolVpmRepetitiveDataValid) | |
658 { | |
659 memcpy(pVpmState, &dataInDevice->VpmRepetitiveData, sizeof(SVpmRepetitiveData)); | |
660 pVpmState->is_data_from_RTE_CPU = 1; | |
661 } | |
662 } | |
663 | |
664 | |
665 void DataEX_control_connection_while_asking_for_sleep(void) | |
666 { | |
667 if(!DataEX_check_header_and_footer_ok()) | |
668 { | |
669 if(DataEX_check_header_and_footer_devicedata()) | |
670 { | |
671 data_old__lost_connection_to_slave_counter_retry = 0; | |
672 data_old__lost_connection_to_slave_counter_temp = 0; | |
673 stateRealGetPointerWrite()->data_old__lost_connection_to_slave = 0; | |
674 } | |
675 else | |
676 { | |
677 stateRealGetPointerWrite()->data_old__lost_connection_to_slave = 1; | |
678 data_old__lost_connection_to_slave_counter_temp += 1; | |
679 data_old__lost_connection_to_slave_counter_total += 1; | |
680 } | |
681 } | |
682 } | |
683 | |
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684 #define AVERAGE_COUNT 4 |
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685 static float getSampleDepth(SDataExchangeSlaveToMaster *d, SDiveState *ds) |
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686 { |
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687 static uint8_t c = 0; |
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688 static float ambient[AVERAGE_COUNT] = {0}; |
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689 static float surface[AVERAGE_COUNT]= {0}; |
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690 static float depth[AVERAGE_COUNT]= {0}; |
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691 |
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692 ambient[c] = d->data[d->boolPressureData].pressure_mbar / 1000.0f; |
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693 surface[c] = d->data[d->boolPressureData].surface_mbar / 1000.0f; |
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694 float density = ((float)( 100 + settingsGetPointer()->salinity)) / 100.0f; |
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695 |
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696 ds->lifeData.pressure_ambient_bar = (ambient[0] + ambient[1] + ambient[2] + ambient[3])/4.0f; |
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697 ds->lifeData.pressure_surface_bar = (surface[0] + surface[1] + surface[2] + surface[3])/4.0f; |
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698 depth[c] = (ambient[c] - surface[c]) / (0.09807f * density); |
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699 |
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700 c++; |
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701 if (c == AVERAGE_COUNT) c = 0; |
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702 |
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703 return (depth[0] + depth[1] + depth[2] + depth[3])/4.0f; |
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704 } |
38 | 705 |
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706 #define TEMP_AVERAGE_COUNT 3 |
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707 static float getTemperature(SDataExchangeSlaveToMaster *d) |
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708 { |
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709 static uint8_t c = 0; |
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710 static float temp[TEMP_AVERAGE_COUNT] = {0}; |
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711 |
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712 temp[c] = d->data[d->boolPressureData].temperature; |
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713 |
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714 c++; |
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715 if (c == TEMP_AVERAGE_COUNT) c = 0; |
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716 |
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717 return (temp[0] + temp[1] + temp[2])/3.0f; |
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718 } |
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719 |
38 | 720 void DataEX_copy_to_LifeData(_Bool *modeChangeFlag) |
721 { | |
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722 SDiveState *pStateReal = stateRealGetPointerWrite(); |
38 | 723 static uint16_t getDeviceDataAfterStartOfMainCPU = 20; |
724 | |
725 /* internal sensor: HUD data | |
726 */ | |
727 for(int i=0;i<3;i++) | |
728 { | |
729 pStateReal->lifeData.ppO2Sensor_bar[i] = get_ppO2Sensor_bar(i); | |
730 pStateReal->lifeData.sensorVoltage_mV[i] = get_sensorVoltage_mV(i); | |
731 } | |
732 pStateReal->lifeData.HUD_battery_voltage_V = get_HUD_battery_voltage_V(); | |
733 | |
734 | |
735 // wireless - �ltere daten aufr�umen | |
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736 for(int i=0;i<(2*NUM_GASES+1);i++) |
38 | 737 { |
738 if(pStateReal->lifeData.bottle_bar[i]) | |
739 { | |
740 if((pStateReal->lifeData.bottle_bar_age_MilliSeconds[i] == 0) || (pStateReal->lifeData.bottle_bar_age_MilliSeconds[i] > 60000)) | |
741 { | |
742 pStateReal->lifeData.bottle_bar_age_MilliSeconds[i] = 0; | |
743 pStateReal->lifeData.bottle_bar[i] = 0; | |
744 } | |
745 else | |
746 pStateReal->lifeData.bottle_bar_age_MilliSeconds[i] += 100; | |
747 } | |
748 } | |
749 | |
750 if(!DataEX_check_header_and_footer_ok()) | |
751 { | |
752 if(DataEX_check_header_and_footer_devicedata()) | |
753 { | |
754 DataEX_copy_to_DeviceData(); | |
755 DataEX_merge_DeviceData_and_store(); | |
756 DataEX_copy_to_VpmRepetitiveData(); | |
757 data_old__lost_connection_to_slave_counter_temp = 0; | |
758 data_old__lost_connection_to_slave_counter_retry = 0; | |
759 pStateReal->data_old__lost_connection_to_slave = 0; | |
760 } | |
761 else | |
762 { | |
763 pStateReal->data_old__lost_connection_to_slave = 1; | |
764 data_old__lost_connection_to_slave_counter_temp += 1; | |
765 data_old__lost_connection_to_slave_counter_total += 1; | |
766 } | |
767 return; | |
768 } | |
141 | 769 else /* RX data OK */ |
770 { | |
771 data_old__lost_connection_to_slave_counter_temp = 0; | |
772 data_old__lost_connection_to_slave_counter_retry = 0; | |
773 pStateReal->data_old__lost_connection_to_slave = 0; | |
774 } | |
38 | 775 |
141 | 776 /* update SPI communication tokens */ |
777 dataOut.header.checkCode[SPI_HEADER_INDEX_SLAVE] = dataIn.header.checkCode[SPI_HEADER_INDEX_SLAVE]; | |
778 dataOut.header.checkCode[SPI_HEADER_INDEX_MASTER] = (dataOut.header.checkCode[SPI_HEADER_INDEX_MASTER] + 1) & 0x7F; | |
779 | |
38 | 780 if(getDeviceDataAfterStartOfMainCPU) |
781 { | |
782 getDeviceDataAfterStartOfMainCPU--; | |
783 if(getDeviceDataAfterStartOfMainCPU == 0) | |
784 { | |
785 dataOut.getDeviceDataNow = 1; | |
141 | 786 getDeviceDataAfterStartOfMainCPU = 10*60*10; /* * 100ms = 60 second => update device data every 10 minutes */ |
38 | 787 } |
788 } | |
789 | |
790 /* new 151207 hw */ | |
791 if(requestNecessary.uw != 0) | |
792 { | |
793 if(((dataIn.confirmRequest.uw) & CRBUTTON) != 0) | |
794 { | |
795 requestNecessary.ub.button = 0; | |
796 } | |
797 | |
798 if(requestNecessary.ub.button == 1) | |
799 { | |
800 setButtonResponsiveness(settingsGetPointer()->ButtonResponsiveness); | |
801 } | |
802 } | |
803 requestNecessary.uw = 0; // clear all | |
804 | |
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805 float meter = 0; |
38 | 806 SSettings *pSettings; |
149 | 807 |
38 | 808 /* uint8_t IAmStolenPleaseKillMe; |
809 */ | |
51
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810 pSettings = settingsGetPointer(); |
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811 |
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812 if(pSettings->IAmStolenPleaseKillMe > 3) |
38 | 813 { |
814 pSettings->salinity = 0; | |
815 dataIn.data[dataIn.boolPressureData].surface_mbar = 999; | |
816 dataIn.data[dataIn.boolPressureData].pressure_mbar = 98971; | |
817 dataIn.mode = MODE_DIVE; | |
818 } | |
819 | |
137
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820 if(pStateReal->data_old__lost_connection_to_slave == 0) |
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821 { |
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822 meter = getSampleDepth(&dataIn, pStateReal); |
38 | 823 |
137
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824 pStateReal->pressure_uTick_old = pStateReal->pressure_uTick_new; |
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825 pStateReal->pressure_uTick_new = dataIn.data[dataIn.boolPressureData].pressure_uTick; |
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826 pStateReal->pressure_uTick_local_new = HAL_GetTick(); |
38 | 827 |
137
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828 pStateReal->lifeData.dateBinaryFormat = dataIn.data[dataIn.boolTimeData].localtime_rtc_dr; |
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829 pStateReal->lifeData.timeBinaryFormat = dataIn.data[dataIn.boolTimeData].localtime_rtc_tr; |
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830 } |
38 | 831 dataOut.setAccidentFlag = 0; |
832 | |
141 | 833 if(pStateReal->data_old__lost_connection_to_slave == 0) |
38 | 834 { |
141 | 835 //Start of diveMode? |
836 if(pStateReal->mode != MODE_DIVE && dataIn.mode == MODE_DIVE) | |
837 { | |
838 if(modeChangeFlag) | |
839 { | |
840 *modeChangeFlag = 1; | |
841 } | |
842 if(stateUsed == stateSimGetPointer()) | |
38 | 843 { |
844 simulation_exit(); | |
845 } | |
141 | 846 // new 170508 |
38 | 847 settingsGetPointer()->bluetoothActive = 0; |
848 MX_Bluetooth_PowerOff(); | |
849 //Init dive Mode | |
141 | 850 decoLock = DECO_CALC_init_as_is_start_of_dive; |
851 pStateReal->lifeData.boolResetAverageDepth = 1; | |
852 pStateReal->lifeData.boolResetStopwatch = 1; | |
38 | 853 } |
141 | 854 |
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855 pStateReal->lifeData.cns = dataIn.data[dataIn.boolToxicData].cns; |
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856 pStateReal->lifeData.otu = dataIn.data[dataIn.boolToxicData].otu; |
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857 pStateReal->lifeData.no_fly_time_minutes = dataIn.data[dataIn.boolToxicData].no_fly_time_minutes; |
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858 pStateReal->lifeData.desaturation_time_minutes = dataIn.data[dataIn.boolToxicData].desaturation_time_minutes; |
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859 |
141 | 860 //End of diveMode? |
861 if(pStateReal->mode == MODE_DIVE && dataIn.mode != MODE_DIVE) | |
862 { | |
863 if(modeChangeFlag) | |
864 { | |
865 *modeChangeFlag = 1; | |
866 } | |
867 createDiveSettings(); | |
38 | 868 |
141 | 869 if(pStateReal->warnings.cnsHigh) |
870 { | |
871 if(pStateReal->lifeData.cns >= 130) | |
872 dataOut.setAccidentFlag += ACCIDENT_CNSLVL2; | |
873 else if(pStateReal->lifeData.cns >= 100) | |
874 dataOut.setAccidentFlag += ACCIDENT_CNS; | |
875 } | |
876 if(pStateReal->warnings.decoMissed) | |
877 dataOut.setAccidentFlag += ACCIDENT_DECOSTOP; | |
878 } | |
879 pStateReal->mode = dataIn.mode; | |
880 pStateReal->chargeStatus = dataIn.chargeStatus; | |
137
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881 |
141 | 882 if(is_ambient_pressure_close_to_surface(&pStateReal->lifeData)) |
883 { | |
884 pStateReal->lifeData.depth_meter = 0; | |
885 } | |
886 else | |
887 { | |
888 pStateReal->lifeData.depth_meter = meter; | |
889 } | |
890 | |
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parents:
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diff
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|
891 pStateReal->lifeData.temperature_celsius = getTemperature(&dataIn); |
137
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892 pStateReal->lifeData.ascent_rate_meter_per_min = dataIn.data[dataIn.boolPressureData].ascent_rate_meter_per_min; |
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893 if(pStateReal->mode != MODE_DIVE) |
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894 pStateReal->lifeData.max_depth_meter = 0; |
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895 else |
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896 { |
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897 if(meter > pStateReal->lifeData.max_depth_meter) |
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898 pStateReal->lifeData.max_depth_meter = meter; |
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899 } |
38 | 900 |
137
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901 if(dataIn.accidentFlags & ACCIDENT_DECOSTOP) |
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902 pStateReal->decoMissed_at_the_end_of_dive = 1; |
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903 if(dataIn.accidentFlags & ACCIDENT_CNS) |
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904 pStateReal->cnsHigh_at_the_end_of_dive = 1; |
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905 |
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906 pStateReal->lifeData.dive_time_seconds = (int32_t)dataIn.data[dataIn.boolTimeData].divetime_seconds; |
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907 pStateReal->lifeData.dive_time_seconds_without_surface_time = (int32_t)dataIn.data[dataIn.boolTimeData].dive_time_seconds_without_surface_time; |
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908 pStateReal->lifeData.counterSecondsShallowDepth = dataIn.data[dataIn.boolTimeData].counterSecondsShallowDepth; |
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909 pStateReal->lifeData.surface_time_seconds = (int32_t)dataIn.data[dataIn.boolTimeData].surfacetime_seconds; |
38 | 910 |
137
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911 pStateReal->lifeData.compass_heading = dataIn.data[dataIn.boolCompassData].compass_heading; |
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912 if(settingsGetPointer()->FlipDisplay) /* consider that diver is targeting into the opposite direction */ |
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913 { |
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914 pStateReal->lifeData.compass_heading -= 180.0; |
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915 if (pStateReal->lifeData.compass_heading < 0) pStateReal->lifeData.compass_heading +=360.0; |
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916 } |
109
65a6e352ce08
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diff
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|
917 |
137
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918 pStateReal->lifeData.compass_roll = dataIn.data[dataIn.boolCompassData].compass_roll; |
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919 pStateReal->lifeData.compass_pitch = dataIn.data[dataIn.boolCompassData].compass_pitch; |
38 | 920 |
137
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921 pStateReal->lifeData.compass_DX_f = dataIn.data[dataIn.boolCompassData].compass_DX_f; |
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922 pStateReal->lifeData.compass_DY_f = dataIn.data[dataIn.boolCompassData].compass_DY_f; |
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923 pStateReal->lifeData.compass_DZ_f = dataIn.data[dataIn.boolCompassData].compass_DZ_f; |
38 | 924 |
137
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925 pStateReal->compass_uTick_old = pStateReal->compass_uTick_new; |
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926 pStateReal->compass_uTick_new = dataIn.data[dataIn.boolCompassData].compass_uTick; |
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927 pStateReal->compass_uTick_local_new = HAL_GetTick(); |
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928 |
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929 memcpy(pStateReal->lifeData.tissue_nitrogen_bar, dataIn.data[dataIn.boolTisssueData].tissue_nitrogen_bar,sizeof(pStateReal->lifeData.tissue_nitrogen_bar)); |
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930 memcpy(pStateReal->lifeData.tissue_helium_bar, dataIn.data[dataIn.boolTisssueData].tissue_helium_bar,sizeof(pStateReal->lifeData.tissue_helium_bar)); |
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931 |
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932 if(pStateReal->mode == MODE_DIVE) |
38 | 933 { |
137
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934 for(int i= 0; i <16; i++) |
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935 { |
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936 pStateReal->vpm.max_crushing_pressure_he[i] = dataIn.data[dataIn.boolCrushingData].max_crushing_pressure_he[i]; |
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937 pStateReal->vpm.max_crushing_pressure_n2[i] = dataIn.data[dataIn.boolCrushingData].max_crushing_pressure_n2[i]; |
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938 pStateReal->vpm.adjusted_critical_radius_he[i] = dataIn.data[dataIn.boolCrushingData].adjusted_critical_radius_he[i]; |
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939 pStateReal->vpm.adjusted_critical_radius_n2[i] = dataIn.data[dataIn.boolCrushingData].adjusted_critical_radius_n2[i]; |
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940 } |
38 | 941 } |
942 | |
137
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943 /* battery and ambient light sensors |
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944 */ |
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945 pStateReal->lifeData.ambient_light_level = dataIn.data[dataIn.boolAmbientLightData].ambient_light_level; |
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946 pStateReal->lifeData.battery_charge = dataIn.data[dataIn.boolBatteryData].battery_charge; |
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947 pStateReal->lifeData.battery_voltage = dataIn.data[dataIn.boolBatteryData].battery_voltage; |
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948 } |
38 | 949 |
950 /* apnea specials | |
951 */ | |
952 if(pStateReal->diveSettings.diveMode == DIVEMODE_Apnea) | |
953 { | |
954 if(pStateReal->mode != MODE_DIVE) | |
955 { | |
956 pStateReal->lifeData.apnea_total_max_depth_meter = 0; | |
957 pStateReal->lifeData.apnea_last_dive_time_seconds = 0; | |
958 pStateReal->lifeData.apnea_last_max_depth_meter = 0; | |
959 } | |
960 else | |
961 { | |
962 if(pStateReal->lifeData.max_depth_meter > pStateReal->lifeData.apnea_total_max_depth_meter) | |
963 pStateReal->lifeData.apnea_total_max_depth_meter = pStateReal->lifeData.max_depth_meter; | |
964 } | |
965 | |
966 if(pStateReal->lifeData.dive_time_seconds > 15) | |
967 { | |
968 pStateReal->lifeData.apnea_last_dive_time_seconds = pStateReal->lifeData.dive_time_seconds; | |
969 } | |
970 | |
971 if(pStateReal->lifeData.counterSecondsShallowDepth) | |
972 { | |
973 if(pStateReal->lifeData.max_depth_meter > 1.5f) | |
974 { | |
975 pStateReal->lifeData.apnea_last_max_depth_meter = pStateReal->lifeData.max_depth_meter; | |
976 } | |
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977 // reset max_depth_meter, average_depth_meter and internal values |
38 | 978 pStateReal->lifeData.max_depth_meter = 0; |
979 pStateReal->lifeData.boolResetAverageDepth = 1; | |
980 pStateReal->lifeData.boolResetStopwatch = 1; | |
981 } | |
982 } | |
983 | |
984 /* average depth | |
985 */ | |
986 float *AvgDepthValue = &pStateReal->lifeData.average_depth_meter; | |
987 float DepthNow = pStateReal->lifeData.depth_meter; | |
988 uint32_t *AvgDepthCount = &pStateReal->lifeData.internal.average_depth_meter_Count; | |
989 uint32_t *AvgDepthTimer = &pStateReal->lifeData.internal.average_depth_last_update_dive_time_seconds_without_surface_time; | |
990 uint32_t AvgSecondsSinceLast; | |
991 uint32_t DiveTime = pStateReal->lifeData.dive_time_seconds_without_surface_time; | |
992 | |
993 if(pStateReal->lifeData.boolResetAverageDepth) | |
994 { | |
995 *AvgDepthValue = DepthNow; | |
996 *AvgDepthCount = 1; | |
997 *AvgDepthTimer = DiveTime; | |
998 pStateReal->lifeData.boolResetAverageDepth = 0; | |
999 } | |
1000 else if (DiveTime > *AvgDepthTimer) | |
1001 { | |
1002 AvgSecondsSinceLast = DiveTime - *AvgDepthTimer; | |
1003 for(int i=0;i<AvgSecondsSinceLast;i++) | |
1004 { | |
1005 *AvgDepthValue = (*AvgDepthValue * *AvgDepthCount + DepthNow) / (*AvgDepthCount + 1); | |
1006 *AvgDepthCount += 1; | |
1007 } | |
1008 *AvgDepthTimer = DiveTime; | |
1009 } | |
1010 if(*AvgDepthCount == 0) | |
1011 *AvgDepthValue = 0; | |
1012 | |
1013 | |
1014 /* stop watch | |
1015 */ | |
1016 if(pStateReal->lifeData.boolResetStopwatch) | |
1017 { | |
1018 pStateReal->lifeData.internal.stopwatch_start_at_this_dive_time_seconds = pStateReal->lifeData.dive_time_seconds; | |
1019 pStateReal->lifeData.boolResetStopwatch = 0; | |
1020 } | |
1021 pStateReal->lifeData.stopwatch_seconds = pStateReal->lifeData.dive_time_seconds - pStateReal->lifeData.internal.stopwatch_start_at_this_dive_time_seconds; | |
1022 | |
1023 /* wireless data | |
1024 */ | |
1025 uint16_t wirelessData[4][3]; | |
1026 for(int i=0;i<4;i++) | |
1027 { | |
1028 pStateReal->lifeData.wireless_data[i].ageInMilliSeconds = dataIn.data[dataIn.boolWirelessData].wireless_data[i].ageInMilliSeconds; | |
1029 pStateReal->lifeData.wireless_data[i].status = dataIn.data[dataIn.boolWirelessData].wireless_data[i].status; | |
1030 pStateReal->lifeData.wireless_data[i].numberOfBytes = dataIn.data[dataIn.boolWirelessData].wireless_data[i].numberOfBytes; | |
1031 for(int j=0;j<12;j++) | |
1032 pStateReal->lifeData.wireless_data[i].data[j] = dataIn.data[dataIn.boolWirelessData].wireless_data[i].data[j]; | |
1033 } | |
1034 | |
1035 // neu 160412 | |
1036 for(int i=0;i<4;i++) | |
1037 { | |
1038 if(pStateReal->lifeData.wireless_data[i].numberOfBytes == 10) | |
1039 { | |
1040 wirelessData[i][0] = (pStateReal->lifeData.wireless_data[i].data[0] >> 4) & 0x7F; | |
1041 wirelessData[i][1] = 0; | |
1042 wirelessData[i][2] = pStateReal->lifeData.wireless_data[i].ageInMilliSeconds; | |
1043 } | |
1044 else | |
1045 { | |
1046 wirelessData[i][0] = 0; | |
1047 wirelessData[i][1] = 0; | |
1048 wirelessData[i][2] = 0; | |
1049 } | |
1050 } | |
1051 | |
1052 // aussortieren doppelte ids, j�ngster datensatz ist relevant | |
1053 for(int i=0;i<3;i++) | |
1054 { | |
1055 if(wirelessData[i][0]) | |
1056 { | |
1057 for(int j=i+1; j<4; j++) | |
1058 { | |
1059 if(wirelessData[i][0] == wirelessData[j][0]) | |
1060 { | |
1061 if(wirelessData[i][2] > wirelessData[j][2]) | |
1062 { | |
1063 wirelessData[i][0] = wirelessData[j][0]; | |
1064 wirelessData[i][1] = wirelessData[j][1]; | |
1065 wirelessData[i][2] = wirelessData[j][2]; | |
1066 } | |
1067 wirelessData[j][0] = 0; | |
1068 wirelessData[j][1] = 0; | |
1069 wirelessData[j][2] = 0; | |
1070 } | |
1071 } | |
1072 } | |
1073 } | |
1074 | |
1075 /* PIC data | |
1076 */ | |
1077 for(int i=0;i<4;i++) | |
1078 { | |
1079 pStateReal->lifeData.buttonPICdata[i] = dataIn.data[dataIn.boolPICdata].button_setting[i]; | |
1080 } | |
1081 | |
1082 /* sensorErrors | |
1083 */ | |
1084 pStateReal->sensorErrorsRTE = dataIn.sensorErrors; | |
1085 } | |
1086 | |
1087 | |
1088 uint8_t DataEX_check_RTE_version__needs_update(void) | |
1089 { | |
1090 if(data_old__lost_connection_to_slave_counter_retry > 10) | |
1091 return 1; | |
1092 else | |
1093 { | |
1094 if(stateRealGetPointer()->data_old__lost_connection_to_slave == 0) | |
1095 { | |
1096 setActualRTEversion(dataIn.RTE_VERSION_high, dataIn.RTE_VERSION_low); | |
1097 | |
1098 if(RTEminimum_required_high() < dataIn.RTE_VERSION_high) | |
1099 return 0; | |
1100 else | |
1101 if((RTEminimum_required_high() == dataIn.RTE_VERSION_high) && (RTEminimum_required_low() <= dataIn.RTE_VERSION_low)) | |
1102 return 0; | |
1103 else | |
1104 return 1; | |
1105 } | |
1106 else | |
1107 return 0; | |
1108 } | |
1109 } | |
1110 | |
1111 | |
1112 /* Private functions ---------------------------------------------------------*/ | |
1113 | |
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1114 /* Check if there is an empty frame provided by RTE (all 0) or even no data provided by RTE (all 0xFF) |
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1115 * If that is not the case the DMA is somehow not in sync |
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1116 */ |
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1117 static uint8_t DataEX_check_header_and_footer_shifted() |
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1118 { |
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1119 uint8_t ret = 1; |
141 | 1120 if((dataIn.footer.checkCode[0] == 0x00) |
1121 && (dataIn.footer.checkCode[1] == 0x00) | |
1122 && (dataIn.footer.checkCode[2] == 0x00) | |
1123 && (dataIn.footer.checkCode[3] == 0x00)) { ret = 0; } | |
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1124 |
141 | 1125 if((dataIn.footer.checkCode[0] == 0xff) |
1126 && (dataIn.footer.checkCode[1] == 0xff) | |
1127 && (dataIn.footer.checkCode[2] == 0xff) | |
1128 && (dataIn.footer.checkCode[3] == 0xff)) { ret = 0; } | |
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1129 |
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1130 return ret; |
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1131 } |
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1132 |
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1133 static uint8_t DataEX_check_header_and_footer_ok(void) |
38 | 1134 { |
1135 if(dataIn.header.checkCode[0] != 0xA1) | |
1136 return 0; | |
141 | 1137 #if USE_OLD_HEADER_FORMAT |
38 | 1138 if(dataIn.header.checkCode[1] != 0xA2) |
1139 return 0; | |
1140 if(dataIn.header.checkCode[2] != 0xA3) | |
1141 return 0; | |
141 | 1142 #endif |
38 | 1143 if(dataIn.header.checkCode[3] != 0xA4) |
1144 return 0; | |
1145 if(dataIn.footer.checkCode[0] != 0xE1) | |
1146 return 0; | |
1147 if(dataIn.footer.checkCode[1] != 0xE2) | |
1148 return 0; | |
1149 if(dataIn.footer.checkCode[2] != 0xE3) | |
1150 return 0; | |
1151 if(dataIn.footer.checkCode[3] != 0xE4) | |
1152 return 0; | |
1153 | |
1154 return 1; | |
1155 } | |
1156 | |
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1157 static uint8_t DataEX_check_header_and_footer_devicedata(void) |
38 | 1158 { |
1159 if(dataIn.header.checkCode[0] != 0xDF) | |
1160 return 0; | |
1161 if(dataIn.header.checkCode[1] != 0xDE) | |
1162 return 0; | |
1163 if(dataIn.header.checkCode[2] != 0xDD) | |
1164 return 0; | |
1165 if(dataIn.header.checkCode[3] != 0xDC) | |
1166 return 0; | |
1167 if(dataIn.footer.checkCode[0] != 0xE1) | |
1168 return 0; | |
1169 if(dataIn.footer.checkCode[1] != 0xE2) | |
1170 return 0; | |
1171 if(dataIn.footer.checkCode[2] != 0xE3) | |
1172 return 0; | |
1173 if(dataIn.footer.checkCode[3] != 0xE4) | |
1174 return 0; | |
1175 | |
1176 return 1; | |
1177 } |